...
首页> 外文期刊>Archives of Toxicology >Toxicophore exploration as a screening technology for drug design and discovery: techniques, scope and limitations
【24h】

Toxicophore exploration as a screening technology for drug design and discovery: techniques, scope and limitations

机译:毒死动物探索作为药物设计和发现的筛选技术:技术,范围和局限性

获取原文
获取原文并翻译 | 示例

摘要

Toxicity is a common drawback of newly designed chemotherapeutic agents. With the exception of pharmacophore-induced toxicity (lack of selectivity at higher concentrations of a drug), the toxicity due to chemotherapeutic agents is based on the toxicophore moiety present in the drug. To date, methodologies implemented to determine toxicophores may be broadly classified into biological, bioanalytical and computational approaches. The biological approach involves analysis of bioactivated metabolites, whereas the computational approach involves a QSAR-based method, mapping techniques, an inverse docking technique and a few toxicophore identification/estimation tools. Being one of the major steps in drug discovery process, toxicophore identification has proven to be an essential screening step in drug design and development. The paper is first of its kind, attempting to cover and compare different methodologies employed in predicting and determining toxicophores with an emphasis on their scope and limitations. Such information may prove vital in the appropriate selection of methodology and can be used as screening technology by researchers to discover the toxicophoric potentials of their designed and synthesized moieties. Additionally, it can be utilized in the manipulation of molecules containing toxicophores in such a manner that their toxicities might be eliminated or removed.
机译:毒性是新设计的化学治疗剂的常见缺点。除了药效团诱导的毒性(在较高浓度的药物中缺乏选择性)之外,由于化学治疗剂引起的毒性是基于药物中存在的毒性基团。迄今为止,为确定毒理基团而实施的方法可大致分为生物学,生物分析和计算方法。生物学方法涉及对生物活化代谢物的分析,而计算方法涉及基于QSAR的方法,作图技术,反向对接技术和一些毒基鉴定/估计工具。作为药物发现过程中的主要步骤之一,已证明毒物载体鉴定是药物设计和开发中必不可少的筛选步骤。该论文是同类文章中的第一篇,试图覆盖和比较在预测和确定有毒物质方面所采用的不同方法,重点是其范围和局限性。此类信息可能在适当选择方法中被证明至关重要,并可被研究人员用作筛选技术,以发现其设计和合成部分的毒理学潜力。另外,它可以以可消除或消除其毒性的方式用于操作含毒性载体的分子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号