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酰基试剂在制备和药物化学中的合成方法、性质和应用

Synthetic Approaches, Properties, and Applications of Acylals in Preparative and Medicinal Chemistry.

机构信息

Institute of Pharmacy, University of Greifswald, 17489 Greifswald, Germany.

出版信息

Molecules. 2024 Sep 19;29(18):4451. doi: 10.3390/molecules29184451.

Abstract

Diesters of geminal diols (R-CH(O-CO-R'), RR'C(OCOR″), etc. with R = H, aryl or alkyl) are termed acylals according to IUPAC recommendations (Rule P-65.6.3.6 Acylals) if the acids involved are carboxylic acids. Similar condensation products can be obtained from various other acidic structures as well, but these related "non-classical acylals", as one might call them, differ in various aspects from classical acylals and will not be discussed in this article. Carboxylic acid diesters of geminal diols play a prominent role in organic chemistry, not only in their application as protective groups for aldehydes and ketones but also as precursors in the total synthesis of natural compounds and in a variety of organic reactions. What is more, acylals are useful as a key structural motif in clinically validated prodrug approaches. In this review, we summarise the syntheses and chemical properties of such classical acylals and show what potentially under-explored possibilities exist in the field of drug design, especially prodrugs, and classify this functional group in medicinal chemistry.

摘要

根据 IUPAC 建议(规则 P-65.6.3.6 醛),如果涉及的酸是羧酸,那么二甘醇的二酯(R-CH(O-CO-R'),RR'C(OCOR")等,其中 R = H、芳基或烷基)被称为醛。类似的缩合产物也可以从各种其他酸性结构中获得,但这些相关的“非经典醛”,正如人们可能会称呼它们的那样,在各个方面与经典醛不同,因此本文将不对此进行讨论。二甘醇羧酸二酯在有机化学中起着重要的作用,不仅作为醛和酮的保护基团,而且作为天然化合物全合成的前体和各种有机反应的前体。更重要的是,醛作为已在临床验证的前药方法中的关键结构基序非常有用。在这篇综述中,我们总结了此类经典醛的合成和化学性质,并展示了药物设计领域,特别是前药领域中存在哪些潜在探索不足的可能性,并在前药设计中对该官能团进行了药物化学分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/706e/11434492/5ea7bb48dbf6/molecules-29-04451-g001.jpg

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