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Ketone Reductase Biocatalysis in the Synthesis of Chiral Intermediates Toward Generic Active Pharmaceutical Ingredients

机译:酮还原酶在通用活性药物成分合成手性中间体的生物催化

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摘要

A range of generic active pharmaceutical ingredients were examined for potential chiral alcohol motifs and derivatives within their structures that could be employed as key synthetic intermediates. For seven generic active pharmaceutical ingredients (APIs), eight precursor ketones were acquired and then subjected to reduction by >400 commercially available ketone reductases from different suppliers. Positive screening results were achieved for five ketones screened, with multiple ketone reductases available for each successful ketone. Selectivity was typically >99.5% ee in most cases, including for the opposite enantiomer. The three best examples were then optimized and quickly scaled up to 1 L scale in high conversion and isolated yield while retaining selectivity of >99.5% ee for the desired chiral alcohol enantiomer. This work illustrates that where a wide range of enzymes are available, productive enzymes to give either alcohol enantiomer can be readily identified for many ketones and rapidly scaled up to produce chiral alcohols. This approach is particularly applicable to generating chiral API intermediates.
机译:检查一系列通用活性药物成分,用于潜在的手性酒精基序和其结构内的衍生物,其可用作关键合成中间体。对于七种通用活性药物成分(API),获取8个前体酮,然后通过来自不同供应商的可商购的Ketone还原酶进行八个前体酮。筛选的五种酮均得到阳性筛选结果,可用于每个成功的酮可用多种酮还原酶。在大多数情况下,选择性通常> 99.5%EE,包括对对映体的相对的映体。然后优化三种最佳实例,并在高转化率和分离的产量中快速缩放到1L级,同时保持> 99.5%EE的选择性,用于所需的手性醇对映体。这项工作说明,在可获得广泛的酶的情况下,可以容易地鉴定给予醇对映体的生产酶以用于许多酮并迅速扩大以产生手性醇。这种方法特别适用于产生手性API中间体。

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