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ADH-150

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols

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ADH-153

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols

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FDH-102

Formate dehydrogenase (FDH) oxidises formate to carbon dioxide while reducing in turn NAD+ to NADH.

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STA-14

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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STA-121

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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Chiral amines kit

Our chiral amines kit contains a comprehensive section of enzymes classes capable of transforming a variety of substrates into primary, secondary and tertiary amines.

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ENE-108

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

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ADH-20

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols

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ADH-244

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols.

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ADH-220

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols.

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IRED-1

An imine reductase (IRED) that catalyses the reductive amination of ketones with small aliphatic amines.

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AmDH-8

Aromatic and aliphatic primary amines can be obtained using Amine Dehydrogenases.

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Cataplatta

Our Cataplatta 96 well plate enzyme kits provide access to new and novel chemistry.

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ADH-101

An alcohol dehydrogenase (ADH) for the reduction of ketones and aldehydes to the corresponding alcohols

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EST-110

Description: Esterase 110

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EST-101

Description: Esterase 101

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EST-112

Description: Esterase 112

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EST-113

Description: Esterase 113

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IRED-101

Description: Imine Reductase for reductive amination

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RTA-102

Aromatic and aliphatic primary amines can be obtained using our Transaminases

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AlaDH-6

Alanine dehydrogenase (AlaDH) catalyses the reductive amination of pyruvate to L-alanine.

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C=C double bond reduction kit

This kit contains 7 ene reductase (ENE) enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group (EWG).

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