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基于片段的方法研究杀菌剂-仿生膜相互作用。

Fragment-based approach to study fungicide-biomimetic membrane interactions.

机构信息

Department of Chemistry, A.I. Virtasen aukio 1, POB 55, 00014 University of Helsinki, Finland.

Institute of Analytical Chemistry, Czech Academy of Sciences, Veveří 97, Brno 60200, Czech Republic.

出版信息

Soft Matter. 2024 Jul 31;20(30):5954-5968. doi: 10.1039/d4sm00648h.

Abstract

In this study, the molecular interactions of the allylamine-type fungicide butenafine and a set of substructures ("fragments") with liposomes mimicking biological membranes were studied to gain a better understanding of the structural factors governing membrane affinity and perturbation. Specifically, drug/fragment-membrane interactions were investigated using an interdisciplinary approach involving micro differential scanning calorimetry, open-tubular capillary electrochromatography, nanoplasmonic sensing, and quartz crystal microbalance. By incubating the drug and the fragment compounds with liposomes with varying lipid composition or by externally adding the compounds to preformed liposomes, a detailed mechanistic picture on the underlying drug/fragment-membrane interactions was obtained. The nature and the degree of ionisation of polar head groups of the lipids had a major influence on the nature of drug-membrane interactions, and so had the presence and relative concentration of cholesterol within the membranes. The in-depth understanding of drug/fragment-membranes interactions established by the presented interdisciplinary fragment-based approach may be useful in guiding the design and early-stage evaluation of prospective antifungal drug candidates, and the discovery of agents with improved membrane penetrating characteristics in general.

摘要

在这项研究中,我们研究了烯丙胺类杀真菌剂布替萘芬与一组模拟生物膜的亚结构(“片段”)的分子相互作用,以更好地了解控制膜亲和力和扰动的结构因素。具体而言,我们使用涉及微差示扫描量热法、开管毛细管电色谱、纳米等离子体传感和石英晶体微天平的跨学科方法研究了药物/片段-膜相互作用。通过将药物和片段化合物与具有不同脂质组成的脂质体孵育,或通过将化合物外部添加到预形成的脂质体中,我们获得了关于潜在药物/片段-膜相互作用的详细机制图。脂质的极性头基团的性质和离子化程度对药物-膜相互作用的性质有重大影响,胆固醇在膜中的存在和相对浓度也是如此。通过所提出的跨学科基于片段的方法建立的药物/片段-膜相互作用的深入理解,可能有助于指导有前景的抗真菌药物候选物的设计和早期评估,以及一般具有改善的膜穿透特性的药剂的发现。

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