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  • Langue : anglais

    Edité par IWA Publishing, London, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-UnisGrand Eagle Retail

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 151,40

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    Expédition nationale : Etats-Unis

    Quantité disponible : 1 disponible(s)

    Paperback. Etat : new. Paperback. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms. The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA. Pure target DNA representing unique genes in the organisms were synthesized by PCR.Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target. Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal. Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source. Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water.DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is, recognition of specific DNA sequences in the target organisms. The Analyte 2000 was the biosensor that was used. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.…

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : PBShop.store US, Wood Dale, IL, Etats-UnisPBShop.store US

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    Etat: Neuf

    EUR 151,62

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    Expédition nationale : Etats-Unis

    Quantité disponible : 9 disponible(s)

    PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000.

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : PBShop.store UK, Fairford, GLOS, Royaume-UniPBShop.store UK

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    Etat: Neuf

    EUR 147,02

    EUR 3,83 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 7 disponible(s)

    PAP. Etat : New. New Book. Shipped from UK. Established seller since 2000.

  • Langue : anglais

    Edité par WERF, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Brook Bookstore On Demand, Napoli, NA, ItalieBrook Bookstore On Demand

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    Etat: Neuf

    EUR 152,60

    EUR 4,00 expédition 
    Expédition depuis Italie vers Etats-Unis

    Quantité disponible : 7 disponible(s)

    Etat : new.

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Majestic Books, Hounslow, Royaume-UniMajestic Books

    Vendeur avec une évaluation de 4 étoiles
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    Etat: Neuf

    EUR 165,04

    EUR 7,56 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 3 disponible(s)

    Etat : New. pp. 72 6:B&W 8.25 x 11 in or 280 x 210 mm Perfect Bound on White w/Gloss Lam.

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Books Puddle, Woodside, NY, Etats-UnisBooks Puddle

    Vendeur avec une évaluation de 4 étoiles
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    Etat: Neuf

    EUR 174,01

    EUR 3,50 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 3 disponible(s)

    Etat : New. pp. 72.

  • Langue : anglais

    Edité par Iwa Pub, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Speedyhen, Hertfordshire, Royaume-UniSpeedyhen

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    Etat: Neuf

    EUR 130,17

    EUR 47,67 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 7 disponible(s)

    Etat : NEW.

  • Langue : anglais

    Edité par IWA Publishing, GB, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Rarewaves USA, HEBRON, KY, Etats-UnisRarewaves USA

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 184,43

     Frais de port gratuits 
    Expédition nationale : Etats-Unis

    Quantité disponible : 4 disponible(s)

    Paperback. Etat : New. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms.   The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA.  Pure target DNA representing unique genes in the organisms were synthesized by PCR. Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target.  Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal.  Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source.  Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water. DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. This publication can be purchased and downloaded via Pay Per View on Water Intelligence Online - click on the Pay Per View icon below.…

  • Langue : anglais

    Edité par IWA Publishing, GB, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Rarewaves.com USA, London, LONDO, Royaume-UniRarewaves.com USA

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 185,85

     Frais de port gratuits 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 4 disponible(s)

    Paperback. Etat : New. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms.   The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA.  Pure target DNA representing unique genes in the organisms were synthesized by PCR. Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target.  Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal.  Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source.  Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water. DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. This publication can be purchased and downloaded via Pay Per View on Water Intelligence Online - click on the Pay Per View icon below.…

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : THE SAINT BOOKSTORE, Southport, Royaume-UniTHE SAINT BOOKSTORE

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 172,47

    EUR 15,00 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 9 disponible(s)

    Paperback / softback. Etat : New. New copy - Usually dispatched within 3 working days.

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Kennys Bookshop and Art Galleries Ltd., Galway, GY, IrlandeKennys Bookshop and Art Galleries Ltd.

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 178,21

    EUR 9,50 expédition 
    Expédition depuis Irlande vers Etats-Unis

    Quantité disponible : 7 disponible(s)

    Etat : New. 2004. paperback. . . . . .

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Biblios, frankfurt am main, HESSE, AllemagneBiblios

    Vendeur avec une évaluation de 4 étoiles
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    Etat: Neuf

    EUR 181,81

    EUR 9,95 expédition 
    Expédition depuis Allemagne vers Etats-Unis

    Quantité disponible : 3 disponible(s)

    Etat : New. pp. 72.

  • Langue : anglais

    Edité par WERF, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : moluna, Greven, Allemagnemoluna

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 155,63

    EUR 48,99 expédition 
    Expédition depuis Allemagne vers Etats-Unis

    Quantité disponible : 5 disponible(s)

    Etat : New. KlappentextrnrnTwo methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is rec.

  • Langue : anglais

    Edité par IWA Publishing Sep 2004, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : AHA-BUCH GmbH, Einbeck, AllemagneAHA-BUCH GmbH

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 183,42

    EUR 35,00 expédition 
    Expédition depuis Allemagne vers Etats-Unis

    Quantité disponible : 2 disponible(s)

    Taschenbuch. Etat : Neu. Neuware - Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms. The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA. Pure target DNA representing unique genes in the organisms were synthesized by PCR. Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target. Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal. Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and 'cleaning' Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source. Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water. DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells.…

  • Langue : anglais

    Edité par IWA Publishing, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Kennys Bookstore, Olney, MD, Etats-UnisKennys Bookstore

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 226,92

    EUR 9,22 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 7 disponible(s)

    Etat : New. 2004. paperback. . . . . . Books ship from the US and Ireland.

  • Langue : anglais

    Edité par IWA Publishing, GB, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Rarewaves USA United, HEBRON, KY, Etats-UnisRarewaves USA United

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 191,47

    EUR 43,89 expédition 
    Expédition nationale : Etats-Unis

    Quantité disponible : 4 disponible(s)

    Paperback. Etat : New. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms.   The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA.  Pure target DNA representing unique genes in the organisms were synthesized by PCR. Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target.  Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal.  Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source.  Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water. DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. This publication can be purchased and downloaded via Pay Per View on Water Intelligence Online - click on the Pay Per View icon below.…

  • Langue : anglais

    Edité par Werf, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : preigu, Osnabrück, Allemagnepreigu

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 172,05

    EUR 70,00 expédition 
    Expédition depuis Allemagne vers Etats-Unis

    Quantité disponible : 1 disponible(s)

    Taschenbuch. Etat : Neu. Sensor Technology for Water Quality Monitoring | Fiber-Optic Biosensor | A. C. Cannons (u. a.) | Taschenbuch | Werf Report S | Kartoniert / Broschiert | Englisch | 2004 | Werf | EAN 9781843396772 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. …

  • Langue : anglais

    Edité par IWA Publishing, GB, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : Rarewaves.com UK, London, Royaume-UniRarewaves.com UK

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 181,77

    EUR 75,58 expédition 
    Expédition depuis Royaume-Uni vers Etats-Unis

    Quantité disponible : 4 disponible(s)

    Paperback. Etat : New. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms.   The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA.  Pure target DNA representing unique genes in the organisms were synthesized by PCR. Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target.  Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal.  Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source.  Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water. DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. This publication can be purchased and downloaded via Pay Per View on Water Intelligence Online - click on the Pay Per View icon below.…

  • Langue : anglais

    Edité par IWA Publishing, London, 2004

    1843396777 / 9781843396772

    • Couverture souple

    Vendeur : AussieBookSeller, Truganina, VIC, AustralieAussieBookSeller

    Vendeur avec une évaluation de 5 étoiles
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    Etat: Neuf

    EUR 244,02

    EUR 32,48 expédition 
    Expédition depuis Australie vers Etats-Unis

    Quantité disponible : 1 disponible(s)

    Paperback. Etat : new. Paperback. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is recognition of specific DNA sequences in the target organisms. The biosensor that was used, the Analyte 2000, was originally developed for the detection of chemicals. It utilizes a fiber optic wave guide that propagates an evanescent light wave of very specific wavelength. The light excites fluorescent molecules bound to the waveguide, but not in the bulk solution, which theoretically enhances signal while reducing background interference. Attempts to develop this system for the detection of DNA were not successful due to poor detection of the target molecules. An assay analogous to a sandwich immunoassay was designed for use on the Analyte 2000. Specific oligonucleotide probes were designed to bind to the waveguides via biotin-streptavidin interaction, and were used to capture the target DNA. Pure target DNA representing unique genes in the organisms were synthesized by PCR.Detection of captured DNA was then attempted using an oligonucleotide detection probe designed to bind to the target. Two detection systems were employed: an indirect signal amplification system based on biotin-tyramide deposition, or direct detection of fluorescent signal from Cy-5 molecules. In all experiments performed there was very little difference between the signal generated with or without the target molecules. Many experiments were conducted to attempt to identify reasons for the poor signal. Signal was only of any significance when target amplicons were internally labeled with Cy-5 by PCR. Real time PCR as a method to detect the pathogens was also investigated. Though the PCR technique itself is very rapid, DNA extraction and purification requires preparation time. Filtration of up to one liter of well water, followed by concentration and "cleaning" Helicobacter pylori cells by immunomagnetic separation, was used to detect H. pylori seeded in a water source. Following cell lysis, the extracted DNA could be used directly in conventional PCR targeting the 16S rRNA gene to detect less than 265 cells per liter of water.DNA purification was not required for this level of detection. Initial studies to amplify lysed cells by real time PCR indicated that an incorrect product was made. When purified DNA was used for real time PCR, the correct product was produced from DNA representing as few as 100 cells. Two methods for the detection of important human pathogens, Cryptosporidium parvum and Helicobacter pylori, were investigated: a fiber optic biosensor, and real time PCR. The mechanism for specific detection in both methods is, recognition of specific DNA sequences in the target organisms. The Analyte 2000 was the biosensor that was used. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.…