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探索 NSAID 封端肽水凝胶的性质和潜在的生物医学应用。

Exploring the properties and potential biomedical applications of NSAID-capped peptide hydrogels.

机构信息

Centre of Chemistry, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.

出版信息

Soft Matter. 2020 Nov 18;16(44):10001-10012. doi: 10.1039/d0sm01198c.

Abstract

The development of strategies to minimise the adverse side-effects of non-steroidal anti-inflammatory drugs (NSAIDs) remains a challenge for medicinal chemists. One such strategy is the development of NSAID-peptide prodrug conjugates and this conjugation to a peptide often confers the additional property of hydrogelation. This review summarises the work published by our research group, alongside other research groups, on supramolecular hydrogels consisting of short peptides conjugated to NSAIDs. Generally, supramolecular low molecular weight hydrogels (LMWHs) are composed of amphiteric molecules, usually consisting of short peptides attached to an aromatic capping group. When the aromatic capping group is switched for an NSAID to afford hybrid gelators, some conjugates exhibit retained or improved anti-inflammatory properties of the parent drug, and sometimes new and unexpected biological activities are observed. Conjugation to peptides often provides selective COX-2 inhibition over COX-1 inhibtion, which is key to retaining the anti-inflammatory benefits of NSAIDs whilst minimising gastric side-effects. Naproxen is the most commonly employed NSAID capping group, partly due to its similarity in structure to commonly employed naphthalene capping groups. Biomimetic approaches, where canonical amino acids are switched for non-natural amino acids such as d-amino acids or dehydroamino acids, are often employed, to tune the stability. The future direction for this area of research is discussed.

摘要

对于药物化学家来说,开发策略以最小化非甾体抗炎药 (NSAIDs) 的不良反应仍然是一个挑战。一种这样的策略是开发 NSAID-肽前药缀合物,并且这种缀合到肽上通常赋予水凝胶形成的额外性质。这篇综述总结了我们研究小组与其他研究小组一起发表的关于与 NSAIDs 缀合的短肽组成的超分子水凝胶的工作。通常,超分子低分子量水凝胶 (LMWH) 由两性分子组成,通常由连接到芳族封端基团的短肽组成。当将芳族封端基团切换为 NSAID 以获得混合凝胶剂时,一些缀合物表现出母体药物保留或改善的抗炎特性,并且有时观察到新的和意外的生物学活性。与肽的缀合通常提供对 COX-2 的选择性抑制,而对 COX-1 的抑制,这是保留 NSAIDs 的抗炎益处而最小化胃副作用的关键。萘普生是最常用的 NSAID 封端基团,部分原因是其结构与常用的萘封端基团相似。经常采用模拟生物方法,将常见的氨基酸替换为非天然氨基酸,如 D-氨基酸或脱氢氨基酸,以调节稳定性。该研究领域的未来方向进行了讨论。

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