CA2310616C - Method and apparatus for preserving human saliva for testing - Google Patents

Method and apparatus for preserving human saliva for testing Download PDF

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Publication number
CA2310616C
CA2310616C CA002310616A CA2310616A CA2310616C CA 2310616 C CA2310616 C CA 2310616C CA 002310616 A CA002310616 A CA 002310616A CA 2310616 A CA2310616 A CA 2310616A CA 2310616 C CA2310616 C CA 2310616C
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kit
solution
metabolites
saliva
enzyme
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CA2310616A1 (en
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David R. Schneider
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L3/00Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
    • B01L3/50Containers for the purpose of retaining a material to be analysed, e.g. test tubes
    • B01L3/502Containers for the purpose of retaining a material to be analysed, e.g. test tubes with fluid transport, e.g. in multi-compartment structures
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B10/00Other methods or instruments for diagnosis, e.g. instruments for taking a cell sample, for biopsy, for vaccination diagnosis; Sex determination; Ovulation-period determination; Throat striking implements
    • A61B10/0045Devices for taking samples of body liquids
    • A61B10/0051Devices for taking samples of body liquids for taking saliva or sputum samples
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12QMEASURING OR TESTING PROCESSES INVOLVING ENZYMES, NUCLEIC ACIDS OR MICROORGANISMS; COMPOSITIONS OR TEST PAPERS THEREFOR; PROCESSES OF PREPARING SUCH COMPOSITIONS; CONDITION-RESPONSIVE CONTROL IN MICROBIOLOGICAL OR ENZYMOLOGICAL PROCESSES
    • C12Q1/00Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions
    • C12Q1/26Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions involving oxidoreductase
    • C12Q1/32Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions involving oxidoreductase involving dehydrogenase
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2200/00Solutions for specific problems relating to chemical or physical laboratory apparatus
    • B01L2200/16Reagents, handling or storing thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2400/00Moving or stopping fluids
    • B01L2400/06Valves, specific forms thereof
    • B01L2400/0633Valves, specific forms thereof with moving parts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2400/00Moving or stopping fluids
    • B01L2400/06Valves, specific forms thereof
    • B01L2400/0633Valves, specific forms thereof with moving parts
    • B01L2400/0672Swellable plugs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2400/00Moving or stopping fluids
    • B01L2400/06Valves, specific forms thereof
    • B01L2400/0677Valves, specific forms thereof phase change valves; Meltable, freezing, dissolvable plugs; Destructible barriers
    • B01L2400/0683Valves, specific forms thereof phase change valves; Meltable, freezing, dissolvable plugs; Destructible barriers mechanically breaking a wall or membrane within a channel or chamber

Abstract

A method and apparatus for the preservation of a saliva sample for use in subsequent quantitative chemical assays. The method involves collecting a saliva sample at a location, directly into a specimen cup. The specimen cup contains a predetermined volume of aqueous solution of pH buffered saline and enzymatic inhibitor and is optionally adapted with a constituent compound specific, qualitative test unit.

Description

CA 02310616 2000-05-18 Pam 9 8 /2 5089 i: rr` `
fP~ 20 F ~ ~1999 METHOD AND APPARATUS FOR
PRESERVING HUMAN SALIVA FOR TESTING
Field of the Invention This invention relates to a method for the preservation of bodily fluid samples. More particularly, this invention relates to a method for the preservation and storage of human saliva samples for use in subsequent drug testing.
Background Drug and alcohol abuse are common problems in today's society, destroying the afflicted in.: .:'uals and adversely effecting those close to them.
While drug and alcohol abuse are problems for society as a whole, employers are particularly susceptible to its deleterious effects. In the modem work place, focused and efficient employees are essential for employers who wish to maintain high quality and productivity while minimizing costs and absenteeism. In order for employees to attain and sustain high productivity, it is crucial that each employee be both healthy and alert. An employee who is in poor health or who is inattentive reduces efficiency and may increase the risk of injury to themselves and other employees. Reduced productivity and quality, increased health care costs and the potential for long term abuse are only three problems an employer may encounter when an employee abuses drugs or alcohol.
In an effort to combat drug and alcohol abuse in the work place, many employers require employees to undergo mandatory drug testing. These tests, which are usually spontaneously ordered, generally require the employee to leave his place of business and travel to a nearby test facility. Alternatively, the testing could take place at the work site but many of these tests require a urine sample that naturally involves providing the employee with at least a minimum of privacy.
The present manner of testing therefore results i- at least two problems: 1) the employee is required to leave their job to undergo testing when they could otherwise be working; and 2) the privacy required by urine tests affords the employee the opportunity to submit a fraudulent sample (e.g., the employee could obtain a sample from another person and submit that drug free sample for testing).
Thus, it would be desirable for an employer to have a method of testing an AMENOf D S'NEET
employee at their place of business, with only a minimum level of personal inconvenience to the employee. Alternatively, a similar method is useful in assisting a law enforcement officer preserve a suspect saliva sample for later forensic testing, e.g., to determine an individual's blood alcohol or other drug level. As a method of sparing the inconvenience and expense associated with laboratory drug testing, it would also be desirable if a qualitative test could be performed at the time of saliva collection to determine if quantitative testing is justified.

The present invention to provides a method of preserving saliva in a liquid solution for subsequent chemical assays. This method would allow the employee to remain at his or her place of business, require only a minor inconvenience during testing and provide the necessary safeguards against submission of fraudulent tests while insuring that an accurate and precise drug test can be taken at a later time.

The present invention is also useful in providing a qualitative, instantaneous test for a drug after the saliva sample has been tamper-proof sealed.
Brief Description of the Drawings Figure 1 is a perspective view of a specimen cup of the instant invention;
and Figure 2 is a cross-sectional view of a capillary of the specimen cup shown in Figure 1.

Summary of the Invention The present invention is a method and composition for the preservation of a saliva sample for use in subsequent quantitative chemical assays. The method involves collecting a saliva sample at a location, directly into a specimen cup. The specimen cup containing a predetermined volume of aqueous solution of pH
buffered saline and an enzymatic inhibitor.
The specimen bottle is optionally adapted with a constituent compound specific, qualitative test unit contained within a capillary extending from the bottle. The qualitative test unit contains vacuum packed ampoule containing dried enzyme, a solution swellable plug and a suitable colorometric reagent.
Upon CA 02310616 2000-05-18 PC`M 98/ 25089 breaking the ampoule, a predetermined volume of solution is drawn into the capillary, thereby activating the qualitative test unit. The solution swellable plug shortly thereafter swells to close off the qualitative test volume from the specimen cup contents.
After a tamper-proof seal has been made the specimen cup is then transported to an off-site second location, where the saliva sample-solution is quantitatively assayed for a saliva constituent compound by conventional means common to blood or urine assays.
Description of the Preferred Embodiment(s) Many hydrophilic compounds in general and alcohol in particular, once absorbed from the intestinal tract, and into the bloodstream are evenly mixed into the total body water of the body. For the purpose of the instant invention, a hydrophilic compound is defined as a substance that is found in the body plasma, either in the administered form or as a metabolite thereof. While the description details a method and composition for the preservation of a saliva sample for determination of ethanol content, it is appreciated that the instant invention is operative for the measurement of various other hydrophilic compounds absorbed and excreted by the parenchyma. These other compounds illustratively include:
protein; mucin; marijuana, opiates, cocaine, cannibinoids, metabolites thereof;
catecholamine and catecholamine derivatives. Fat tissues include tissues or tissue fractions bounded by lipid membranes such as erythrocytes. Hydrophilic compounds enter such a tissue, but are not dissolved into the fat, but rather into the water contained within that Lissue. Thus, alcohol for example, is entirely found after several circulation times to be in a volume of approximately 0.60-0.68 liters/kg in a male, and about 0.52-0.54 liter/kg in a female. Once in the body water, alcohol is distributed throughout this volume of water and is subjected to metabolism, excretion, partitioning and excretion limits.
Some parts of blood, especially the water component of blood, are essential for the perfusion of glandular tissues such as the exocrine glands of the alimentary tract - those glands of the mouth and buccal cavity, the pancreas and other organs lower in this path. In particular, the perfusion of the salivary glands AMENOEO SMM
of the pharyngeal and buccal cavity, including the parotid glands, the submaxillary glands, and the sublingual glands are of importance to this method. During the process of the blood perfusing these glands, nutrients (amino acids, carbohydrates and fats) and bulk water are taken from the capillary bed(s) of these glands, and are exposed to the individual cells of the gland. Such cells are commonly called the "parenchymal" cells of the gland - e.g., the cells that "secrete" water, protein or other substances (mucin, etc.). It is the "bulk water" fraction, e.g., the water present in the parenchyma, that composes the fluid portion of any secretion from a gland. Finally, a substar_ce dissolved within the "bulk water" of the gland, is often excreted when the gland is called upon to excrete. In the case of any of the salivary glands, water, and some protein material is excreted into the saliva.
Thus, excretions of the salivary glands are composed of an isotonic or slightly hypertonic aqueous salt solution, generated from blood plasma. These excretions can also contain various enzymes as are characteristic to the gland, the various enzymes having proteolytic activity to break down or metabolize proteins to peptides and/or amino acids; complex carbohydrate cleavage properties; and to a lesser extent lipid metabolizing properties.
Ethyl alcohol ("alcohol"), when present in the plasma (or blood) from the consumption of ethanol, is a component of the blood that perfuses the salivary glands. It is known that alcohol is extracted into the saliva and that it is concentrated from the plasma during this process, so that, in humans, there is a concentration of 8-15% over the concentration present in an equivalent blood sample. Saliva ethanol content has been measured to be about 9% higher than in capillary blood, C. Lenter, GeigyScientific Tables, Vol. 1, Units ofMeasurement, Body Fluids, Compositions of the Body, Nutrition, Basle: Ciba-Geigy, 1981.
In a saliva sample, measurement of blood alcohol level is determined by quantifying the alcohol concentration in a saliva sample.

Studies indicate a high correlation between ethanol concentrations in simultaneously drawn blood, breath and saliva samples. A correlation coefficient of r=0.97 was measured between blood and saliva. A mean saliva-blood concentration difference of 9.4 concentration percent was observed.
Statistically, at a 95% confidence level saliva alcohol concentration ranges from 88 to 136 concentration percent of the simultaneous blood alcohol level (BAL). A.W.
Jones, Clin. Chem. (1993), Vol. 39(9):1837-1843.
Studies perfonned by the inventor have determined that the volume of any random "spit" of saliva from the mouth will average approximately 2.0 milliliters, typically ranging from 1.85 to about 2.35 milliliters. Such a sample of saliva can be used for the estimation of the concentration of alcohol present in the blood that perfused the salivary glands producing the saliva sample.
If a person cannot spit, e.g., they are frightened or scared or otherwise rendered unable to generate a sample of saliva, substances are optionally contacted with the buccal cavity to generate a reflex stimulation of saliva by the above named glands. These substances illustratively include citric acid (e.g., a lemon wedge) or milk.
The sample of saliva when caught and preserved in a suitable solution is subsequently used to estimate a blood concentration of alcohol in the person from whom it is taken.
The solution into which the saliva is placed includes an agent for lessening the degradation of the saliva by the inhibition of enzymatic metabolism of the alcohol or test substance present in the sample by bacteria, fungi, white blood cells, macrophages, or other organisms that can reside in the environment of the buccal or respiratory cavities of the sample donor. The solution contains an ionic solute present at a concentration in the range of osmalities associated with normal physiological body fluids. The body fluids including body plasma, urine and saliva.
In a preferred embodiment of the instant invention a specimen solution is prepared which contains a salt and dilute aqueous protein matrix solution that mimics body plasma or urine, and an enzymatic inhibiting agent. Commercially available salt and dilute protein matrices are operative in the instant invention. A
salt and protein matrix mimics the osmality, composition, pH and general properties of body plasma or urine. The known parameters associated with body plasma serves as a baseline calibration for quantitative analysis of the sample within the matrix solution. The constituent substances of such a salt and protein matrix illustratively includes: bicarbonate, calcium, chloride, phosphate, potassium, sodium, sulfate, sulfite, albumins, amino acids, nucleotides, nucleosides, urea, creatine, citrate, formate and lactate. The salt and protein matrix is optionally replaced by a solution conventionally used for the storage of bodily fluids, illustratively including: a buffered salt solution of isotonic saline (0.085 g/L NaCI); and 50 mM phosphate buffered saline. The pH of such a solution is preferably between 7 and 8.

An enzymatic inhibiting agent of the instant invention is present in a concentration from 0.01 to 10 mole percent, relative to the specimen solution water. The agent serves to arrest the action of enzymes that degrade substances such as drugs or alcohol within living cells contained in the sample or in the solution of the specimen cup. In embodiments of the instant invention operative in determining alcohol concentration, the inhibition of alcohol dehydrogenase is of particular concern. More preferably, the enzyme inhibiting agent is present from 0.05 to I mole percent relative to the specimen solution. Representative enzymatic inhibiting agents of the instant invention include: aminoglycosides, cephelosporins, tetracyclines, sulfa-drugs, penicillins and similar antibiotics.
It is appreciated that the optimal enzymatic inhibiting agent concentration is dictated by the efficacy of the specific compound in disrupting enzymatic activity. The agents of the instant invention also may have secondary biocidal effects on organisms present in the specimen cup. Preferably, the enzymatic inhibiter functions to interfere with glycolysis pathway reactions.
Optionally, a fungicide (or mycocide) is added to the specimen solution.
Preferably, the fungicide (or mycocide) is present in a concentration from about 0.01 to 10 mole percent, relative to the specimen solution water. More preferably, the fungicide (or mycocide) is present in a concentration from about 0.05 to 1 mole percent, relative to the specimen solution water. Fungicides or mycocides operative in the instant invention illustratively include: polymyxins, polynoxylins, nystatin, hedaquinium chlorides, tetrachloroisophtalonitrile and ketoconazole.
Optionally, a bactericide is added to the specimen solution. Preferably, the bactericide is present in a concentration from about 0.01 to 10 mole percent, relative to the specimen solution water. More preferably, the bactericide is present in a concentration from about 0.05 mole percent, relative to the specimen solution water. Bactericides operative in the instant invention illustratively includes:
aninoglycosides, cephelosporins, tetracyclenes, sulfa-drugs, penicillins and similar antibiotics.

The order by which these reagents are prepared or mixed is not essential and has no bearing on the ultimate utility of the solution in the instant invention.
The above reagents should be well mixed, and preferably dispensed into sterile containers, with a volume of between 10 and 40 milliliters and preferably of at least 15 and less than about 18 ml. This volume of material and reagent is well suited to analysis by a laboratory to determine the concentration of alcohol present in the specimen cup by conventional techniques such as an alcohol dehydrogenase assay. Optionally, a different volume of specimen cup solution is utilized for collection of a sample, as analysis techniques dictate. It is appreciated that dilution of the sample with large volumes of specimen cup solution may require a primary amplification of the sample to produce accurate assay results.
The specimen cup preferably has means of sealing so as to prevent tampering or opening prior to testing. The specimen cup more preferably has a port for the extraction of a test aliquot.

In the operation of the instant invention, a test participant expectorates into a specimen cup containing matrix solution. Once a sample has been taken, the cup is sealed and transported to an off-site laboratory for later testing.
Preferably the sample containing specimen cup is stored at a temperature between about 4 C
and 25 C.

A sample aliquot of 100 microliters (0.1 ml), is then assayed, the values so obtained multiplied by a factor of 44.8 to estimate a blood alcohol concentration in milligrams per deciliters (mg/dl) in the original blood sample.
Studies performed by the inventor found an error of 6 to 8 concentration percent when comparisons are made between saliva samples of the instant invention and simultaneously drawn venal blood levels containing ethyl alcohol. The comparative analyses were performed by gas chromatography.
A second embodiment of the instant invention applicable to blood alcohol testing incorporates a means for quantitating the amount of alcohol present in the sample at the sample gathering location, or by having a reagent system that performs the required chemistry, and a coupled detector system that allows analysis and/or visualization of the sample.
To add such a component to the collection system, in addition to the above specimen solution reagents for collecting, holding and maintaining the saliva sample, an in situ analysis solution additionally contains reagents for performing analysis of alcohol using an enzymatic assay incorporating the formation of NADPH from NADP acting as a cofactor in conjunction with the enzyme alcohol dehydrogenase conversion of ethanol to acetaldehyde. It is appreciated that the use of alcohol oxidase, alone or in concert with a peroxidase enzyme, also may provide a colorometric redox product. Under the conditions of the test, alcohol in the saliva sample reacts with the enzyme and excess NADP to form a product, acetaldehyde, and the reduced cofactor, NADPH in quantitative yield.
Furthermore, for the detection of a saliva constituent compound other than alcohol, a different enzyme system is required, these enzymes are known to the art, as is the usage of catalytic antibodies for performing redox chemistry on constituent compounds.

A further reagent required to detenmine the concentration of alcohol from a saliva sample causes an interaction of NADPH with nitro blue tetrazolium (NBT). NBT will interact with NADPH in a quantitative manner to form a reduced formazan. Such compounds are intensely colored - usually dark blue, and are thus readily quantitated by spectrophotometric means.
The following examples are given for the purpose of illustrating various embodiments of the invention and are not meant to limit the present invention in any fashion.
Figure 1 shows a specimen cup generically at 10 designed for on the spot qualitative detection of a saliva constituent compound and subsequent quantitative assays. A threaded lid 12 is adapted to selectively seal the mouth 14 of a bottle 16. A tamper-proof adhesive tape is optionally deployed in contact with both the lid 12 and the bottle 16 following the collection of a saliva sample (not shown).
The bottle 16 has at least one hollow capillary 18 extending from the bottle wall 20. The capillary 18 extends from the bottle wall 20 at a position so as to assure that the specimen solution within the bottle 16 covers the capillary opening when the specimen cup 10 is disposed in an upright position. Preferably, the capillary 18 is in integral part of the bottle 16. The bottle 16 being injection molded of a suitable thermoplastic material. The bottle 16 is of a clear or translucent appearance.
A specimen cup designed for on the spot qualitative detection of a saliva constituent compound is designed to withdraw a predetermined solution volume for detection and then to isolate that volume from the bulk of the specimen solution. Isolation of the detection volume assures that the reagents of the qualitative detection do not interfere with the subsequent qualitative assays.
Figure 2 shows a cross-sectional view of the capillary 18. The wall thickness of the capillary 18 is optionally less than that of the bottle wall 20. A thin capillary wall is flexible and allows the capillary to be bent. A thin walled ampoule 24 is adapted to insert within the bore of the capillary 18. The ampoule 24 fills the majority of the capillary bore volume. The ampoule 24 contains the reagents for in situ colorometric detection collectively shown at 26, as well as a solution swellable plug material 28. Preferably, the contents of the ampoule are stored under vacuum. The reagents 26 include a freeze dried enzyme specific to the saliva constituent of interest and a suitable redox activated colorometric indicator. Optionally, the enzyme and indicator are mixed with an inert substrate such as glass wool. The solution swellable plug 28 is preferably an inert hydrophilic polymer which is susceptible to rapid hydration upon contact with the specimen solution. The solution swellable plug 28 is illustratively cellulose, carboxymethyl cellulose, gelatine, alginates, and mixtures thereof.

An ampoule containing the constituent compound specific reagents and a swellable plug material is inserted into the flexible capillary. A measured amount of solution is sealed in the bottle. A saliva sample is collected by the user removing the lid and expectorating into the bottle, thereafter the bottle is resealed 5 and optionally tamper-proof sealed with an adhesive tape. Upon swirling the saliva solution, the capillary is bent so as to break the ampoule contained therein.
As the ampoule breaks, solution fills the capillary in order to equilibrate the pressure between the capillary and the head space within the specimen cup bottle.
The amount of solution drawn into the capillary is controlled by the pressure and 10 volume of the ampoule. Once solution has filled the capillary, the detection reagents become activated and the swellable plug hydrates to close off the detection volume from the remainder of the solution. Based on the quantity of detection reagents used, a colorometric change is used to indicate a minimal amount of constituent compound being present in the saliva sample. Multiple capillaries integrated into the specimen cup bottle are therefore used for duplicate testing, incremental detection of a single substance, or base line detection of multiple substances. The colorometric change in the test reagents associated with compound detection is observable through the clear or translucent wall of the capillary.

An ampoule of the instant invention is constructed from a glass tube, such as a Pasteur pipette or melting point tube. One end of the glass tube is flame sealed and then the swellable plug material and the detection reagents sequentially added to the tube. The open end of the ampoule then engages a vacuum line in order to reduce the pressure within the vial. While the vacuum line is evacuating the tube, a region of the tube above the reagents is softened by means of a heat source until the tube seals and is drawn free of the vacuum line. The vacuum line is maintained by a conventional means such as a mechanical rotary pump or an aspirator. The vacuum sealed ampoule is optionally scored or otherwise weakened at a specific point in order to facilitate a controlled fracture.
Example 1:
The following compounds are individually operative as enzymatic inhibitor components of a specimen solution of the instant invention. The approximate efficacious concentrations for individual enzymatic inhibitor components is also provided.
N. Compound .on . ntr8 ion 1. 2-deoxyglucose 10 mM;
2. rotenone 1-5 mM;
3. reduced glutathione (GSH) 1 mM;
4. octaoate 0.5 mM;
5. P-NADH 1.0 mM;
6. hydrogen peroxide H2O2 and Fe' 1.0 mM each;
7. iodoacetate 1 mM;
8. iodoacetamide 1 mM;
9. soluble cyanides 1 mM;
10. aluminum metal 1 mM;
11. chlorhexidine 5 mM;
12. soluble azides 0.5 mM;
13. butylparabens 5 mM;
14. cyclohexyladenosine 5 mM;
15. alpha-cyano-4-hydroxycinnamate 1 mM;
16. alpha-cyano-beta (1-phenylindol-3-yl) acrylate 1 mM;
17. glycerol 1 mM;
18. paraquat 1 mM;
19. mannoheptulose 1 mM;
20. 3-bromopyruvate 0.5 mM;
21. glucose 1, 6-bisphosphate 1 mM;
22. Cibacron Blue 3G-A 1 mM;
23. 3-deoxyhglucosone (3-DG) 1 mM;
24. actinomycin D 1 mM;
25. cycloheximide 1 mM;
26. magnesium citrate 1 mM;
27. oxalates 1 mM;
28. glutamates 1 mM;
29. soluble fluorides and nitroprussides 4 mM;

CA 02310616 2000-05-18 PCT/US 9 8 /2 5 0 8 g ;PENUS 2 0 DEC 1999 Fxam 1}e2:

To I liter of sterile, deionized water the following compounds are added to yield a solution concentration suitable for the storage of a bodily fluid:
2.0 mM, NaCI, 0.35 mM KCI, 0.07 m CaClz, 0.1 mM CaSO410.12 mM NazPO4, 23 mg creatine, 300 mg urea, 3 mg lactic acid and 0.5 mg bovine serum albumin.
The solution is buffered to pH 7.1 using disodium EDTA. The enzymatic inhibitor iodoacetate from Example 1 is added to yield a concentration of 1.3 mM.
Example3:

15.0 ml of the specimen solution of Example 2 is placed in a 2 ounce, graduated specimen cup having a sealable lid. A test subject expectorates into the specimen cup. The total volume of specimen solution and saliva is measured to be 17 ml. A 100 microliter (0.1 ml) is then assayed, the values so obtained multiplied by a factor of 44.8 to estimate a blood alcohol concentration in mg/dl in the original blood sample. This multiplication factor incorporates the fact that saliva concentration of ethyl alcohol is 1.13-1.15 fold over that of the test subject's simultaneous BAL. The aliquot is quantitatively assayed by conventional, gas chromatography techniques, as is a simultaneously drawn venal blood sample. An error of 7.1 concentration percent exists between the BAL based on the saliva sample relative to the blood sample. The area present in the specimen solution serving as a standard for the quantitive assay.
Example 4:

The m--thod as described in Example 3 is repeated with an aliquot being assayed by conventional gas chromatography techniques for methylamphetamine.
An error of between 5 and 11 concentration percent is observed for the saliva-test based levels of methylamphetamine obtained from the instant invention, as compared to the test subject blood.
Example 5:
The method as described in Example 3 is repeated with an aliquot being assayed by conventional gas chromatography techniques for catecholamine. An error of between 5 and 9 concentration percent is observed for the saliva-test based A~l1END~D SHE~1 CA 02310616 2000-05-18 pCTIUS 9 8/ 2 5 0 8 9 levels of catecholamine obtained from the instant invention, as compared to the test subject blood.
Examgle6:
The method as described in Example 3 is repeated with an aliquot being assayed by conventional gas chromatography techniques for an opiate. An error of between 6 and 12 concentration percent is observed for the saliva-test based levels of an opiate or opiate metabolite obtained from the instant invention, as compared to the teo, -ubject blood.

The invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.

ANIENDED SIM

Claims (25)

Claims
1. An assay sample collection kit for the direct collection and preservation of a saliva sample for subsequent assay of a hydrophilic compound therein comprising:
a) an ionic solute that upon dilution to a preselected volume in water yields a solution with an osmality of a normal physiological body fluid;
and b) an enzymatic inhibitor of an enzyme capable of utilizing said hydrophilic compound as a substrate, said enzyme present in the saliva sample.
2. The kit of claim 1 wherein said ionic solute is a salt and protein matrix that has at least one constituent concentration of a normal body fluid.
3. The kit of claim 2 further comprising a buffer to maintain said solution as a predetermined pH between 7 and 8 following introduction of the saliva sample.
4. The kit of claim 2 wherein said hydrophilic compound is ethanol and said enzyme is alcohol dehydogenase.
5. The kit of claim 2 wherein said body fluid is plasma or urine.
6. The kit of claim 1 wherein said hydrophilic compound is selected from a group consisting of: ethanol, protein, marijuana, marijuana metabolites, opiates, opiate metabolites, cannibinoids, cannibinoid metabolites, cocaine, cocaine metabolites, catecholanine derivatives and metabolites thereof.
7. The kit of claim 2 wherein said salt and protein matrix contains substances selected from the group consisting of: bicarbonate, calcium, chloride, phosphate, potassium, sodium, sulfate, sulfite, albumins, amino acids, bilirubin, nucleotides, nucleosides, urea, creatine, citrate, formate and lactate.
8. The kit of claim 1 wherein said enzymatic inhibitor is selected from the group consisting of: 2-deoxyglucose; rotenone; reduced glutathione (GSH);
octaoate; .beta.-NADH; hydrogen peroxide H202 and Fe~; iodoacetate;
iodoacetamide; soluble cyanides; aluminum metal; chlorhexidine; soluble azides;
butylparabens; cyclohexyladenosine; alpha-cyano-4-hydroxycinnamate; alpha-cyano-beta (1-phenylindol-3-yl) acrylate; glycerol; paraquat; mannoheptulose;

bromopyruvate; glucose 1, 6-bisphosphate; Cibacron Blue 3G-A; 3-deoxyhglucosone (3-DG); actinomycin D; cycloheximide; Mg2 citrate; oxalates;
glutamates; soluble fluorides and nitroprussides.
9. The kit of claim 6 wherein said enzymatic inhibitor functions to interfere with glycolysis pathway reactions.
10. The kit of claim 1 further comprising: a bactericide present in a concentration from about 0.1 to 10 mole percent.
11. The kit of claim 1 further comprising: a fungicide present in a concentration from about 0.1 to 10 mole percent.
12. A method for determining the presence of a compound in a saliva sample comprising the steps of:

a) collecting a saliva sample at a first location directly into a specimen cup, said specimen cup containing a measured aqueous solution consisting essentially of: pH buffered saline, and an enzymatic inhibitor;
b) sealing said specimen cup against tampering;
c) transporting said specimen cup to a second location; and d) assaying said specimen for said compound at said second location.
13. The method of claim 12 wherein said compound is selected from a group consisting of ethanol, protein, marijuana, marijuana metabolites, opiates, opiate metabolites, cannibinoids, cannibinoid metabolites, cocaine, cocaine metabolites, catecholanine derivatives and metabolites thereof.
14. A method of claim 12 wherein said compound is ethanol.
15. The method of claim 12 wherein said measured aqueous solution has a volume ranging from between 10 and 40 milliliters.
16. The method of claim 12 wherein said measured solution further consists essentially of: a salt and protein matrix simulating a body fluid composition.
17. The method of claim 16 wherein said matrix is a quantitative assay standard.
18. The method of claim 12 wherein said measured solution further comprises a fungicide.
19. The method of claim 12 wherein said measured solution further comprises a bactericide.
20. A saliva sample collection kit for qualitative detection and quantitative assay of a hydrophilic compound within saliva comprising:
a) an ionic solute that upon dilution to a preselected volume in water yields a solution with an osmality of a normal physiological body fluid;

b) an enzymatic inhibitor of an enzyme capable of utilizing said hydrophilic compound as a substrate, said enzyme present in the saliva sample;

c) a specimen bottle containing said solution and said inhibitor, said bottle having a compressible, light-transmitting capillary extending therefrom, the capillary having an opening covered by said solution and a fused distal portion;
d) an ampoule adapted to fit within the capillary, said ampoule having an internal pressure less than one atmosphere;
e) an enzyme adapted to yield a product from the hydrophilic compound as a substrate, wherein said enzyme is contained within said ampoule;

and f) a colorometric indicator system adjacent to said enzyme for redox coupling to said product, wherein said indicator system is contained within said ampoule.
21. The kit of claim 20 wherein said specimen bottle is composed of a thermoplastic.
22. The kit of claim 20 further comprising a solution swellable plug, wherein said plug is contained within said ampoule.
23. The kit of claim 20 wherein said ionic solute is a salt and protein matrix that has at least one constituent concentration of a normal body fluid.
24. The kit of claim 20 wherein said hydrophilic compound is ethanol and said enzyme is selected from the group consisting of alcohol dehydrogenase;
and alcohol oxidase/peroxidase.
25. The kit of claim 24 wherein said indicator system is NADP reacting in a reduced form with nitro blue tetrazolium.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107266561A (en) * 2017-08-01 2017-10-20 浙江理工大学 A kind of preparation method of the gossypin enzymolysis product coupling protein matter detected for historical relic

Families Citing this family (52)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7569342B2 (en) 1997-12-10 2009-08-04 Sierra Molecular Corp. Removal of molecular assay interferences
WO2000055635A1 (en) * 1999-03-16 2000-09-21 Serex Inc. Method and device for detection of apo a, apo b and the ratio thereof in saliva
US6489172B1 (en) * 2000-01-05 2002-12-03 Varian, Inc. Saliva sampling device
US6699722B2 (en) 2000-04-14 2004-03-02 A-Fem Medical Corporation Positive detection lateral-flow apparatus and method for small and large analytes
US6623698B2 (en) 2001-03-12 2003-09-23 Youti Kuo Saliva-monitoring biosensor electrical toothbrush
US6663831B2 (en) 2001-04-04 2003-12-16 Forefront Diagnostics, Inc. “One-device” system for testing constituents in fluids
US7879293B2 (en) * 2001-09-28 2011-02-01 Orasure Technologies, Inc. Sample collector and test device
AU2002347859A1 (en) * 2001-10-11 2003-04-22 Genacy System, method, and apparatus for submitting genetic samples and receiving genetic testing results anonymously
US6907879B2 (en) 2002-02-04 2005-06-21 Ndt Agent delivery and aspiration device
US7482116B2 (en) * 2002-06-07 2009-01-27 Dna Genotek Inc. Compositions and methods for obtaining nucleic acids from sputum
US20040087874A1 (en) * 2002-10-28 2004-05-06 David Schneider Saliva collection system
US7560272B2 (en) 2003-01-04 2009-07-14 Inverness Medical Switzerland Gmbh Specimen collection and assay container
CA2521904A1 (en) 2003-04-01 2004-10-21 Proactive Oral Solutions, Inc. Caries risk test for predicting and assessing the risk of disease
US7114403B2 (en) * 2003-05-30 2006-10-03 Oakville Hong Kong Co., Ltd Fluid collection and application device and methods of use of same
US20050106753A1 (en) * 2003-07-11 2005-05-19 Oakville Trading Hong Kong Limited Sanitary fluid collection, application and storage device and methods of use of same
AU2004291923B2 (en) * 2003-11-14 2011-01-20 Alere Switzerland Gmbh Sample collection cup with integrated activatable sample analysis system
NZ547175A (en) * 2003-11-14 2009-11-27 Oakville Hong Kong Co Ltd Sample collection cup with integrated sample analysis system
WO2005050167A2 (en) * 2003-11-14 2005-06-02 Oakville Hong Kong Co., Limited Rapid sample collection and analysis device
AT500882A3 (en) * 2004-10-06 2009-12-15 Greiner Bio One Gmbh IN-VITRO DIAGNOSTICS FOR STORAGE VOLUME DETERMINATION
US20060199269A1 (en) * 2005-03-07 2006-09-07 Schneider David R Method for assessing pyrimidine metabolism
CA2600758C (en) * 2005-03-16 2016-01-12 Dna Genotek Inc. Compositions and method for storage of nucleic acid from bodily fluids
US20070031293A1 (en) * 2005-08-04 2007-02-08 Beatty Christopher C Method and apparatus for collecting and diluting a liquid sample
CN100478671C (en) * 2005-10-25 2009-04-15 艾康生物技术(杭州)有限公司 Detector and method for liquid sampler
US8871155B2 (en) 2005-11-30 2014-10-28 Alere Switzerland Gmbh Devices for detecting analytes in fluid sample
US8221381B2 (en) * 2005-12-09 2012-07-17 Dna Genotek Inc. Container system for releasably storing a substance
AU2007280929B2 (en) 2006-07-26 2012-03-22 Abbott Rapid Diagnostics International Unlimited Company Analysis device for biological sample
US20080306362A1 (en) * 2007-06-05 2008-12-11 Owen Davis Device and system for monitoring contents of perspiration
WO2009075001A1 (en) * 2007-12-13 2009-06-18 Biocell Center S.P.A. Method of collection and preservation of fluids and/or materials, in particular of organic fluids and/or materials containing stem cells, and device employable in such method
GB0725234D0 (en) * 2007-12-24 2008-02-06 Oxtex Ltd Electrochemical assays
EP2231437A4 (en) * 2007-12-27 2011-01-05 Alexander Schoenfeld Sobriety interlock device
CN101881735B (en) * 2010-06-11 2011-11-16 赵永秀 Method for detecting paraquat in urine
US20120168024A1 (en) * 2010-12-29 2012-07-05 Robin Beck Breath Containment Keepsake Item and Method
EP3150702B1 (en) 2011-06-19 2021-05-19 DNA Genotek, Inc. Devices, solutions and methods for sample collection
US20160015725A1 (en) * 2012-02-14 2016-01-21 The Wistar Institute Of Anatomy And Biology Methods of controlling tumor bioenergetics networks
CN102768277B (en) * 2012-07-25 2014-05-07 成都协和生物技术有限责任公司 Sample diluent of oral mucosal transudate for detecting HIV antibody by colloidal gold method, and preparation method thereof
US10197480B2 (en) 2012-11-07 2019-02-05 Sandstone Diagnostics, Inc. Methods and devices for processing samples and counting cells
JP6590697B2 (en) 2012-11-07 2019-10-16 サンドストーン ダイアグノスティックス インコーポレイテッドSandstone Diagnostics,Inc. Methods and devices for sample processing and cell counting
CA2897117C (en) 2013-02-07 2021-06-22 Sandstone Diagnostics, Inc. Automated sample processing, fluid distribution, and sedimentation assay
US10073069B2 (en) 2013-04-23 2018-09-11 Cordant Research Solutions, Llc Systems and methods to determine body drug concentration from an oral fluid
EP3172570A4 (en) * 2014-07-25 2017-12-27 Becton, Dickinson and Company Analyte test strip assays, and test strips and kits for use in practicing the same
US20180031543A1 (en) * 2015-02-09 2018-02-01 Abogen, Inc. Devices, solutions and methods for sample collection related applications, analysis and diagnosis
US20170350797A1 (en) * 2016-06-06 2017-12-07 Preston Estep Sample collection and DNA preservation device
US10870109B2 (en) 2017-05-20 2020-12-22 Sandstone Diagnostics, Inc. Sample cup
USD867611S1 (en) 2018-01-29 2019-11-19 Sandstone Diagnostics, Inc. Sample cup
CN113316646A (en) 2018-11-20 2021-08-27 光谱解决方案有限责任公司 Sample collection system including sealing cap and valve
US20200391203A1 (en) * 2019-06-13 2020-12-17 Roger Wallace Giese Low-alcohol jar for serial saliva and breath metabolomics
US11701094B2 (en) 2019-06-20 2023-07-18 Spectrum Solutions L.L.C. Sample collection system including valve and plug assemblies
CN116615642A (en) * 2020-11-24 2023-08-18 亚克西斯股份有限公司 Detection kit
CN114588956B (en) * 2020-12-03 2023-06-16 中国科学院大连化学物理研究所 Microfluidic chip glutathione local hydrophilic modification method based on laminar flow effect
CN112640885B (en) * 2020-12-08 2022-04-12 河北工程大学 Room temperature preservation method of fatigue human saliva sample
CN114368498B (en) * 2021-06-15 2023-04-04 百康芯(天津)生物科技有限公司 Production processing treatment process of disposable virus sampling tube
CN113966737B (en) * 2021-11-17 2022-10-04 深圳市华晨阳科技有限公司 Cell preservation solution for in-vitro analysis and detection and preparation method thereof

Family Cites Families (83)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2591927A (en) * 1948-10-06 1952-04-08 Sidney A Gladstone Obtaining tumor tissue specimen
US3542025A (en) * 1968-05-29 1970-11-24 Fuller Lab Inc Surgical type scrubbing sponge
US4063558A (en) * 1975-11-07 1977-12-20 Avtex Fibers Inc. Article and method for making high fluid-holding fiber mass
US4114605A (en) * 1976-11-02 1978-09-19 University Of Alabama In Birmingham Intraoral cup for collecting saliva and method of using the same
US4232552A (en) * 1978-09-28 1980-11-11 Akzona Incorporated Temperature indicating compositions of matter
US4362645A (en) * 1978-09-28 1982-12-07 Akzona, Inc. Temperature indicating compositions of matter
US4339207A (en) * 1978-09-28 1982-07-13 Akzona Incorporated Temperature indicating compositions of matter
US4292978A (en) * 1979-12-26 1981-10-06 Guth Richard U Breath test mouthpiece
US4580577A (en) * 1981-01-12 1986-04-08 Brien Joseph O Method and apparatus for collecting saliva
US4418702A (en) * 1981-01-12 1983-12-06 Metpath Inc. Method and apparatus for collecting saliva
JPS58225029A (en) * 1982-06-21 1983-12-27 Showa Yakuhin Kako Kk Simple diagnostic method for tooth decay and device therefor
GB8306353D0 (en) * 1983-03-08 1983-04-13 Stuart J F B Monitoring of drug levels
US4734360A (en) * 1983-07-12 1988-03-29 Lifescan, Inc. Colorimetric ethanol analysis method and test device
US4900666A (en) * 1983-07-12 1990-02-13 Lifescan, Inc. Colorimetric ethanol analysis method and test device
US4642286A (en) * 1984-05-07 1987-02-10 Moldowan Mervin J Composition and method for ethanol determination
US4810633A (en) * 1984-06-04 1989-03-07 Miles Inc. Enzymatic ethanol test
US4635488A (en) * 1984-12-03 1987-01-13 Schleicher & Schuell, Inc. Nonintrusive body fluid samplers and methods of using same
US4692407A (en) * 1985-01-31 1987-09-08 Forsyth Dental Infirmary For Children Method for the determination of Streptococcus mutans
US4786596A (en) * 1985-02-20 1988-11-22 Chem-Elec., Inc. Method of preparing a test strip for alcohol testing
US4774962A (en) * 1985-09-23 1988-10-04 Walter Sarstedt Kunststoff-Spritzgusswerk Method of extracting human saliva
US4839296A (en) * 1985-10-18 1989-06-13 Chem-Elec, Inc. Blood plasma test method
US4705514A (en) * 1986-01-22 1987-11-10 Barnhardt Manufacturing Corporation Absorbent dental roll
US4853325A (en) * 1986-03-26 1989-08-01 Synbiotics Corporation Saliva test for feline leukemia virus
US4740475A (en) * 1986-03-28 1988-04-26 Medi-Scan, Inc. Integral substance detection device and method
US4935346A (en) * 1986-08-13 1990-06-19 Lifescan, Inc. Minimum procedure system for the determination of analytes
US4800083A (en) * 1986-10-20 1989-01-24 R. P. Scherer Corporation Sustained release method and product
US4770853A (en) 1986-12-03 1988-09-13 New Horizons Diagnostics Corporation Device for self contained solid phase immunodiffusion assay
KR900005223B1 (en) * 1986-12-11 1990-07-21 가부시끼가이샤 호리바 세이사꾸쇼 Method of measuring ion-concentration and the like and a calibrating sheet as well as a calibrating method of measuring device used therein
US5036000A (en) * 1986-12-16 1991-07-30 Enzymatics, Inc. Threshold color control system
US5032506A (en) * 1986-12-16 1991-07-16 Enzymatics, Inc. Color control system
US4843377A (en) * 1987-04-21 1989-06-27 Guardian Technologies, Inc. Remote confinement system
US4999613A (en) * 1987-04-21 1991-03-12 Guardian Technologies, Inc. Remote confinement system
US4997771A (en) * 1987-04-27 1991-03-05 Schering Corporation Method for measuring the BZ-1 receptor binding activity in a test sample or test compound
US4817632A (en) 1987-06-23 1989-04-04 Bioquant, Inc. Oral fluid collection article
US5447837A (en) * 1987-08-05 1995-09-05 Calypte, Inc. Multi-immunoassay diagnostic system for antigens or antibodies or both
US5149623A (en) * 1988-02-09 1992-09-22 Virotest, Inc. Rapid, easy, and economical screening test for antibodies to human immunodeficiency virus
US5126247A (en) * 1988-02-26 1992-06-30 Enzymatics, Inc. Method, system and devices for the assay and detection of biochemical molecules
US5232914A (en) * 1988-04-11 1993-08-03 Epitope, Inc. Solid, storage-stable, germicidal, pre-iodine composition
US5112758A (en) * 1988-05-09 1992-05-12 Epitope, Inc. Treating body fluids for diagnostic testing
US4916435A (en) * 1988-05-10 1990-04-10 Guardian Technologies, Inc. Remote confinement monitoring station and system incorporating same
US5112741A (en) * 1988-07-07 1992-05-12 Enzymatics, Inc. Acetaldehyde trapping system
US4925629A (en) 1988-07-28 1990-05-15 Bioquant, Inc. Diagnostic device
US5017471A (en) * 1988-08-26 1991-05-21 Epitope, Inc. Reagent for peroxidase detection
US5248791A (en) * 1989-04-10 1993-09-28 Abbott Laboratories Reagents, methods and kits for an amphetamine-class fluorescence polarization immunoassay
US5101015A (en) * 1989-04-10 1992-03-31 Abbott Laboratories Reagents for an amphetamine-class fluorescence polarization immunoassay
US5339829A (en) * 1989-09-21 1994-08-23 Epitope, Inc. Oral collection device
US5022409A (en) * 1989-09-21 1991-06-11 Epitope, Inc. Oral rinse immunoglobulin collection kit for immunoassay and method thereof
US5335673A (en) * 1989-09-21 1994-08-09 Epitope, Inc. Oral collection device and method for immunoassay
US5479937A (en) * 1989-09-21 1996-01-02 Epitope, Inc. Oral collection device
US5103836A (en) * 1990-02-28 1992-04-14 Epitope, Inc. Oral collection device and kit for immunoassay
US5244815A (en) * 1990-01-19 1993-09-14 Lamina Ltd. Fingerprint test pad and method for fingerprinting using particle based immunoassay
GB9002274D0 (en) * 1990-02-01 1990-03-28 Cranfield Biotech Ltd Colorimetric analysis
US5173433A (en) * 1990-10-11 1992-12-22 Toxi-Lab Incorporated Method for chemical analysis
US5091153A (en) * 1990-10-11 1992-02-25 Toxi-Lab Incorporated Chemical analysis test device
JPH06102605B2 (en) * 1990-11-19 1994-12-14 昭和薬品化工株式会社 Dental test agent composition
US5141854A (en) * 1990-12-13 1992-08-25 Hoffman-La Roche, Inc. Enzymatic composition for ethanol assay
US5393496A (en) * 1990-12-18 1995-02-28 Saliva Diagnostic Systems, Inc. Saliva sampling device and sample adequacy system
US5268148A (en) * 1990-12-18 1993-12-07 Saliva Diagnostic Systems, Inc. Saliva sampling device and sample adequacy system
US5283038A (en) 1990-12-18 1994-02-01 Saliva Diagnostic Systems, Inc. Fluid sampling and testing device
GB9118913D0 (en) * 1991-09-04 1991-10-23 Lion Lab Plc Method and apparatus for determining the concentration of components of liquid systems
US5179288A (en) * 1991-09-30 1993-01-12 Ortho Pharmaceutical Corporation Apparatus and method for measuring a bodily constituent
US5211182A (en) * 1991-10-23 1993-05-18 Deutsch Marshall E Home ovulation test kit and method
US5334502A (en) * 1991-11-27 1994-08-02 Osborn Laboratories, Inc. Method of collecting, identifying, and quantifying saliva
US5278079A (en) * 1992-09-02 1994-01-11 Enzymatics, Inc. Sealing device and method for inhibition of flow in capillary measuring devices
US5290683A (en) * 1992-11-19 1994-03-01 Yedy Israel Rapid analysis of ethanol in body fluids
KR970001146B1 (en) * 1993-07-16 1997-01-29 엘지전자 주식회사 Gas measuring bio-sensor and manufacturing method
US5563073A (en) * 1993-08-31 1996-10-08 Titmas; Ted Personal blood alcohol level testing kit
KR970010981B1 (en) * 1993-11-04 1997-07-05 엘지전자 주식회사 Alcohol concentration measuring bio-sensor, manufacturing method and related apparatus
US5714341A (en) * 1994-03-30 1998-02-03 Epitope, Inc. Saliva assay method and device
US5695930A (en) * 1994-11-10 1997-12-09 Weinstein; David E. HIV test kit method for detecting anti-HIV-I antibodies in saliva
IT1274481B (en) 1995-05-12 1997-07-17 Indena Spa PHARMACEUTICAL COMPOSITIONS FOR THE TREATMENT OF ALCOHOL-DEPENDENCE
US5786228A (en) * 1995-06-07 1998-07-28 Biex, Inc. Fluid collection kit and method
US5695929A (en) * 1995-06-07 1997-12-09 Goldstein; Andrew S. Substitute saliva standard
US5786227A (en) * 1995-06-07 1998-07-28 Biex, Inc. Fluid collection kit and method
EP0857214A1 (en) * 1995-10-16 1998-08-12 Smithkline Beecham Plc Novel saliva binding protein
US5830154A (en) * 1996-01-11 1998-11-03 Epitope, Inc. Device for collecting substances for testing
TW452494B (en) 1996-03-12 2001-09-01 Jang De Shan Herbal composition for stimulating blood circulation
US5935864A (en) 1996-10-07 1999-08-10 Saliva Diagnostic Systems Inc. Method and kit for collecting samples of liquid specimens for analytical testing
KR20000069296A (en) 1996-12-05 2000-11-25 윌리암 제이.하트만 Extracts of Salvia Species Having Antiviral Activity
US5908771A (en) 1997-01-31 1999-06-01 R. J. Reynolds Tobacco Company Method for regeneration of salvia species
EP0875250A1 (en) 1997-04-29 1998-11-04 Heilmittelbetrieb Isernhagen GmbH Use of an extract of Salvia officinalis to combat the Dupuytren's contracture
US5989840A (en) 1997-05-29 1999-11-23 Americare International Diagnostics, Inc. Estimation of active infection by heliobacter pylori
US5891697A (en) 1997-09-25 1999-04-06 Washington State University Research Foundation Monoterpene synthases from common sage (Salvia officinalis)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107266561A (en) * 2017-08-01 2017-10-20 浙江理工大学 A kind of preparation method of the gossypin enzymolysis product coupling protein matter detected for historical relic
CN107266561B (en) * 2017-08-01 2020-08-07 浙江理工大学 Preparation method of cotton cellulose enzymatic hydrolysate coupled protein for cultural relic detection

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US6291178B1 (en) 2001-09-18
AU1602199A (en) 1999-06-15
JP2001524321A (en) 2001-12-04
DE69839613D1 (en) 2008-07-24
EP1032709B1 (en) 2008-06-11
EP1032709A1 (en) 2000-09-06
NZ505342A (en) 2002-03-28
ATE397891T1 (en) 2008-07-15
EP1032709A4 (en) 2007-01-10
WO1999027139A1 (en) 1999-06-03
US5968746A (en) 1999-10-19
AU754598B2 (en) 2002-11-21

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