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Titlebook: Biotransformations in Organic Chemistry; Kurt Faber Book 19921st edition Springer-Verlag Berlin Heidelberg 1992 Biokatalysator.Biotechnolo

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https://doi.org/10.1007/978-3-030-18671-5 be due, very often, to the fact, that biological Systems would have to be handled. When growth and maintainance of whole microorganisms is concerned, such hesitation is probably justified: In order to save endless frustrations a close collaboration with a biochemist is highly recommended to set up
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https://doi.org/10.1007/978-94-017-2061-8ases, esterases or lipases. A lack of sensitive cofactors which would have to be recycled, and a large number of readily available enzymes possessing relaxed Substrate specificities to choose from are the main features which made hydrolases the favourite class of enzyme for organic chemists during t
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Legal Issues of European Integrationaddition, some special techniques have been developed in order to broaden their range of applications. In particular, using biocatalysts in non-aqueous media rather than in water can lead to the gain of some significant advantages as long as some specific guidelines are followed. Furthermore, ‘fixat
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e development of such methods. As a result of this extensive, recent research, there have been an estimated 5000 papers published on the subject [2]. To collate these data as a kind of ‘super-review‘ would clearly be an impossible task and, furthermore, such a hypothetical book would be unpalatable for the no978-3-642-97423-6
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Introduction and Background Information,approach may not entirely satisfy the scientific purists, but as organic chemists are prone to be rather pragmatists, they may accept that the understanding of a biochemical reaction mechanism is not a . for the success of a biotransformation. In other words, a lack of understanding of biochemical r
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