原料药开发的最新进展——提高抗病毒核苷生物利用度和效力的前药策略

Andrzej Kutner
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引用次数: 0

摘要

生物利用度是药物活性的先决条件。体内生物利用度(肠道渗透性)与药物溶解度和药物产物溶出度有关,成为Gordon L. Amidon生物制药分类系统的基础。提高原料药生物利用度的一种方法是化学修饰其结构,从而提高其亲脂性和穿透细胞膜磷脂双层的能力。这些修饰称为前药策略,包括通过引入降低分子亲水性的取代基来衍生原料药。本综述概述了Christopher McGuigan用于获得具有增强生物利用度和活性的抗病毒核苷的前药策略的例子。这些策略主要包括形成和优化酯类和氨基酸酯类、磷酰胺类、十八烷基磷酸盐和双磷酸甲氧甲基磷酸盐的结构。本文详细讨论了SARS-CoV-2抗病毒核苷瑞德西韦的磷酸酰胺前药片段的优化。它显示了由此产生的生物利用度和抗病毒活性的改善。此外,它侧重于现代前药战略,作为原料药开发的主要最新进展之一。该策略首次有效地优化了现有原料药和候选原料药的理化性质,提高了其功能活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in drug substance development – prodrug strategies for enhancing the bioavailability and potency of antiviral nucleosides
Bioavailability is a prerequisite for drug activity. In vivo bioavailability (intestinal permeability), linked to drug substance solubility and drug product dissolution, became the basis of Gordon L. Amidon’s Biopharmaceutical Classification System. One method of improving the drug substance’s bioavailability is to modify its structure chemically, leading to increased lipophilicity and the ability to penetrate the phospholipid bilayer of the cell membrane. These modifications, known as prodrug strategies, involve derivatizing the drug substance by introducing substituents that reduce the hydrophilicity of the molecule. The present mini-review outlines the examples of Christopher McGuigan’s prodrug strategies used to obtain antiviral nucleosides with enhanced bioavailability and activity. These strategies primarily involve forming and optimizing the structure of esters and amino acid esters, phosphoramidates, octadecyl phosphates, and bis-pivaloxymethyl phosphates. The review discusses the optimization of the phosphoramidate prodrug moiety of the SARS-CoV-2 antiviral nucleoside remdesivir in detail. It presents the resulting improvement in bioavailability and antiviral activity. Moreover, it focuses on the modern prodrug strategy as one of the major recent advances in drug substance development. This strategy effectively optimized physicochemical properties and improved the functional activity of the existing drug substances and drug substance candidates for the first time.
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