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(S)-2-Amino-2-(3-chlorophenyl)ethanol


66 930  results were found

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Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A555
Lokale Artikelnummer:: BOSSBS-12448R-A555
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-FITC
Lokale Artikelnummer:: BOSSBS-12448R-FITC
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Artikel-Nr: (BOSSBS-12448R-CY5)

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-CY5
Lokale Artikelnummer:: BOSSBS-12448R-CY5
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Lieferant:  BIONET RESEARCH
Beschreibung:   2-Amino-5-(2-chlorphenyl)-4-thiazolcarbonsäure

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A680
Lokale Artikelnummer:: BOSSBS-12448R-A680
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-HRP
Lokale Artikelnummer:: BOSSBS-12448R-HRP
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A488
Lokale Artikelnummer:: BOSSBS-12448R-A488
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Artikel-Nr: (ENAMEN30002225.1G)

Lieferant:  SIA ENAMINE
Hersteller-Artikelnummer:: EN30002225.1G
Lokale Artikelnummer:: ENAMEN30002225.1G
Beschreibung:   2-Amino-4-(4-chlorphenyl)thiazol
VE:  1 * 1 g
Market Source Item This is a MarketSource item. Additional charges may apply
Artikel-Nr: (ENAMEN30009527.1G)

Lieferant:  SIA ENAMINE
Hersteller-Artikelnummer:: EN30009527.1G
Lokale Artikelnummer:: ENAMEN30009527.1G
Beschreibung:   5-Amino-3-(4-chlorphenyl)isoxazol
VE:  1 * 1 g
Market Source Item This is a MarketSource item. Additional charges may apply
Artikel-Nr: (BOSSBS-12448R-CY3)

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-CY3
Lokale Artikelnummer:: BOSSBS-12448R-CY3
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A647
Lokale Artikelnummer:: BOSSBS-12448R-A647
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Artikel-Nr: (MOLEM89211937)

Lieferant:  Molekula
Hersteller-Artikelnummer:: M89211937
Lokale Artikelnummer:: MOLEM89211937
Beschreibung:   2-(4-Aminophenyl)ethanol
VE:  1 * 25 g
Market Source Item This is a MarketSource item. Additional charges may apply

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A750
Lokale Artikelnummer:: BOSSBS-12448R-A750
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl

Lieferant:  Bioss
Hersteller-Artikelnummer:: BS-12448R-A350
Lokale Artikelnummer:: BOSSBS-12448R-A350
Beschreibung:   The alcohol dehydrogenase family of proteins metabolize a wide variety of substrates, including retinol, hydroxysteroids, ethanol, aliphatic alcohols and lipid peroxidation products. ADH5 (alcohol dehydrogenase 5 (class III)), also known as FDH (formaldehyde dehydrogenase), ADHX, ADH-3 or GSNOR, is a 374 amino acid cytoplasmic protein that belongs to the class III subfamily of alcohol dehydrogenases. Expressed ubiquitously, ADH5 uses iron as a cofactor to catalytically oxidize both long-chain primary alcohols and S-hydroxymethyl-glutathione, a product formed spontaneously between formaldehyde and glutathione. ADH5 exists as a homodimer and, via its ability to oxidize S-hydroxymethyl-glutathione and, thus, eliminate formaldehyde, functions as an important component of cellular metabolism. Genetic variations in the gene encoding ADH5 may affect drug and alcohol dependence in humans.
VE:  1 * 100 µl
Artikel-Nr: (FLUO005442-25G)

Lieferant:  FLUOROCHEM
Hersteller-Artikelnummer:: 005442-25G
Lokale Artikelnummer:: FLUO005442-25G
Beschreibung:   2-(4-Aminophenyl)ethanol
VE:  1 * 25 g
Market Source Item This is a MarketSource item. Additional charges may apply
Lieferant:  Sigma-Aldrich
Beschreibung:   2-[2-(2-Aminoethoxy)ethoxy]ethanol ≥96% (durch GC)
Preis auf Anfrage
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Lager für diesen Artikel ist begrenzt, kann aber in einem Lagerhaus in Ihrer Nähe zur Verfügung. Bitte stellen Sie sicher, dass Sie in sind angemeldet auf dieser Seite, so dass verfügbare Bestand angezeigt werden können. Wenn das call noch angezeigt wird und Sie Hilfe benötigen, rufen Sie uns an 1-800-932 - 5000.
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