[选择性反应在药物合成中的发展]
1Department of Pharmaceutical Sciences, Faculty of Pharmacy, Keio University.
本次审查强调了通过化学酶途径合成药物的降解酶和微生物催化剂的使用. 它专注于优化反应和基质设计,以提高选择性和在药物发现中更广泛的应用.
科学领域:
- 生物催化剂和合成化学
- 药用化学和药物发现
- 酶工程和路径设计
背景情况:
- 酶催化为化学合成提供了高的选择性和效率.
- 将微生物和酶催化剂与化学反应相结合,使新的合成策略成为可能.
- 与生物合成酶相比,降解酶提供了更广泛的基质灵活性.
研究的目的:
- 审查微生物和酶催化剂的发现,评估和功能发展.
- 探索药物合成的协同化学酶途径的理性设计.
- 通过反应和基质优化来增强酶反应性和选择性的方法.
主要方法:
- 专注于商业上可用的和公开存储的微生物和酶,以提高其可复制性和可访问性.
- 开发方法,通过优化反应条件和基质结构来增强酶的反应性和选择性.
- 化学酶协同合成策略和药物合成的新选择性反应的系统审查.
主要成果:
- 证明了复杂分子的成功合成,如二基甲基基诺米辛 (DHMEQ),酸和 (S) - 丁-2-碳氧酸.
- 详细优化脂酶催化反应,环氧化酶利用和碳缩酶的应用.
- 展示了将racemates转化为单个反体和选择性化/脱化反应的新途径.
结论:
- 化学酶方法,利用降解酶和优化途径,是合成药物的强大工具.
- 反应条件和基质结构的合理设计显著提高了生物催化效率和选择性.
- 本综述提供了通过生物催化剂促进药物发现的战略和应用的全面概述.
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