Suppr超能文献

基于逆向代谢概念的新药计算机辅助设计。

Computer-assisted design of new drugs based on retrometabolic concepts.

作者信息

Bodor N, Buchwald P, Huang M J

机构信息

Center for Drug Discovery, University of Florida, Gainesville 32610-0497, USA.

出版信息

SAR QSAR Environ Res. 1998;8(1-2):41-92. doi: 10.1080/10629369808033261.

Abstract

Retrometabolic drug design approaches incorporate metabolic and toxicological considerations into the drug design process and represent a novel, systematic methodology for the design of safe compounds. Two major design concepts aimed to increase the therapeutic index (the activity/toxicity ratio) of drugs were developed. Chemical delivery systems (CDS) are primarily used to allow targeting of the active biological molecules to specific target sites or organs based on predictable enzymatic activation. Soft drug approaches are used to design new drugs by building in the molecule, in addition to the activity, the most desired way in which the molecule is to be deactivated and detoxified subsequent to exerting its biological effects. Special computer programs were developed that starting from a lead compound generate complete libraries of possible soft analogs and then help ranking these candidates based on isosteric-isoelectronic comparisons, predicted solubility/partition properties, and estimated metabolic rates. The novel field of large peptide-CDSs imposes special challenges, but a new, remarkably simple model was developed to estimate partition properties for a wide range of compounds, including quite large peptide derivatives. A suggested change of about five order of magnitudes in the distribution coefficient can explain the "lock in" mechanism of brain-targeting delivery systems.

摘要

逆代谢药物设计方法将代谢和毒理学因素纳入药物设计过程,代表了一种设计安全化合物的新颖、系统的方法。已开发出两种旨在提高药物治疗指数(活性/毒性比)的主要设计理念。化学传递系统(CDS)主要用于基于可预测的酶促激活,使活性生物分子靶向特定靶点或器官。软药方法用于设计新药,即在分子中除了构建活性外,还要构建分子在发挥生物学效应后最理想的失活和解毒方式。开发了特殊的计算机程序,该程序从先导化合物开始生成可能的软类似物的完整文库,然后基于等排 - 等电子比较、预测的溶解度/分配性质和估计的代谢率帮助对这些候选物进行排序。大肽 - CDSs这一新颖领域带来了特殊挑战,但已开发出一种新的、非常简单的模型来估计包括相当大的肽衍生物在内的各种化合物的分配性质。分布系数约五个数量级的建议变化可以解释脑靶向递送系统的“锁定”机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验