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The use of structural alerts to avoid the toxicity of pharmaceuticals

机译:使用结构警报来避免药物的毒性

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In order to identify compounds with potential toxicity problems, particular attention is paid to structural alerts, which are high chemical reactivity molecular fragments or fragments that can be transformed via bioactivation by human enzymes into fragments with high chemical reactivity. The concept has been introduced in order to reduce the likelihood that future candidate substances as pharmaceuticals will have undesirable toxic effects. A significant proportion (~78–86%) of drugs characterized by residual toxicity contain structural alerts; there is also evidence indicating the formation of active metabolites as a causal factor for the toxicity of 62–69% of these molecules. On the other hand, the pharmacological action of certain drugs depends on the formation of reactive metabolites. Detailed assessment of the potential for the formation of active metabolites is recommended to characterize a biologically active compound. Although many prescribed drugs frequently contain structural alerts and form reactive metabolites, the vast majority of these drugs are administered in low daily doses. Avoiding structural alerts has become almost a norm in new drug design. An in-depth review of the biochemical reactivity of these structural alerts for new drug candidates is critical from a safety point of view and is currently being monitored in the discovery of drugs. The chemical strategies applied to structural alerts in molecules to limit the toxicity are: ? partial replacement or full replacement of the structural alert; ? reduction of electronic density; ? introduction of a structural element of metabolic interest (metabolic switching); ? multiple approaches. Therefore, chemical intervention strategies to eliminate bioactivation are often interactive processes; their success depends largely on a close working relationship between drug chemists, pharmacologists and researchers in metabolic science.
机译:为了鉴定具有潜在毒性问题的化合物,特别注意结构警报,这些警报是高化学反应性的分子片段或可以通过人类酶的生物活化作用转变成具有高化学反应性的片段的片段。引入该概念是为了减少将来的候选药物(如药物)具有不良毒性作用的可能性。以残留毒性为特征的药物中,很大一部分(〜78-86%)具有结构性警戒;也有证据表明,活性代谢物的形成是这些分子中62–69%毒性的原因。另一方面,某些药物的药理作用取决于反应性代谢产物的形成。建议对活性代谢物形成的可能性进行详细评估,以表征生物活性化合物。尽管许多处方药经常包含结构警报并形成反应性代谢产物,但这些药物中的绝大多数以低日剂量给药。避免结构性警报几乎已成为新药设计中的一种规范。从安全的角度出发,深入审查这些结构警报对新候选药物的生物化学反应性至关重要,目前正在发现药物时对其进行监控。应用于分子结构警报以限制毒性的化学策略为:部分替换或完全替换结构警报; ?电子密度降低; ?引入具有代谢作用的结构元素(代谢转换); ?多种方法。因此,消除生物活化的化学干预策略通常是相互作用的过程。它们的成功很大程度上取决于药物化学家,药理学家和代谢科学研究人员之间的密切合作关系。

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