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基于非对映异构脱氢三肽混合物的新型超分子水凝胶在潜在药物递送应用中的研究

New Supramolecular Hydrogels Based on Diastereomeric Dehydrotripeptide Mixtures for Potential Drug Delivery Applications.

作者信息

Oliveira Carlos B P, Carvalho André, Pereira Renato B, Pereira David M, Hilliou Loic, Jervis Peter J, Martins José A, Ferreira Paula M T

机构信息

Chemistry Centre, School of Sciences, University of Minho, 4710-057 Braga, Portugal.

REQUIMTE/LAQV, Laboratório de Farmacognosia, Departamento de Química, Faculdade de Farmácia, Universidade do Porto, R. Jorge Viterbo Ferreira, n228, 4050-313 Porto, Portugal.

出版信息

Gels. 2024 Sep 30;10(10):629. doi: 10.3390/gels10100629.

Abstract

Self-assembly of peptide building blocks offers unique opportunities for bottom-up preparation of exquisite nanostructures, nanoarchitectures, and nanostructured bulk materials, namely hydrogels. In this work we describe the synthesis, characterization, gelation, and rheological properties of new dehydrotripeptides, Cbz--Lys(Cbz)-,-Asp-∆Phe-OH and (2-Naph)--Lys(2-Naph)-,-Asp-∆Phe-OH, containing a -terminal lysine residue --capped with carboxybenzyl (Cbz) and 2-Naphthylacetyl (2-Naph) aromatic moieties, an aspartic acid residue (Asp), and a -terminal dehydrophenylalanine (∆Phe) residue. The dehydrotripeptides were obtained as diastereomeric mixtures (,, and ,,Z), presumably via aspartimide chemistry. The dehydrotripeptides afforded hydrogels at exceedingly low concentrations (0.1 and 0.04 wt%). The hydrogels revealed exceptional elasticity (G' = 5.44 × 10 and 3.43 × 10 Pa) and self-healing properties. STEM studies showed that the diastereomers of the Cbz-capped peptide undergo , generating a fibrillar 3D network, while the diastereomers of the 2-Naph-capped dehydropeptide seem to undergo self-sorting, originating a fibril network with embedded spheroidal nanostructures. The 2-Naph-capped hydrogel displayed full fast recovery following breakup by a mechanical stimulus. Spheroidal nanostructures are absent in the recovered hydrogel, as seen by STEM, suggesting that the mechanical stimulus triggers rearrangement of the spheroidal nanostructures into fibers. Overall, this study demonstrates that diastereomeric mixtures of peptides can be efficacious gelators. Importantly, these results suggest that the structure (size, aromaticity) of the capping group can have a directing effect on the self-assembly (co-assembly vs. self-sorting) of diastereomers. The cytotoxicity of the newly synthesized gelators was evaluated using human keratinocytes (HaCaT cell line). The results indicated that the two gelators exhibited some cytotoxicity, having a small impact on cell viability. In sustained release experiments, the influence of the charge on model drug compounds was assessed in relation to their release rate from the hydrogel matrix. The hydrogels demonstrated sustained release for methyl orange (anionic), while methylene blue (cationic) was retained within the network.

摘要

肽构建模块的自组装为自下而上制备精致的纳米结构、纳米构造和纳米结构化块状材料(即水凝胶)提供了独特的机会。在这项工作中,我们描述了新型脱氢三肽Cbz-Lys(Cbz)-Asp-∆Phe-OH和(2-Naph)-Lys(2-Naph)-Asp-∆Phe-OH的合成、表征、凝胶化和流变学性质,这些脱氢三肽含有一个末端赖氨酸残基,其被羧苄基(Cbz)和2-萘乙酰基(2-Naph)芳香基团封端,一个天冬氨酸残基(Asp),以及一个末端脱氢苯丙氨酸(∆Phe)残基。这些脱氢三肽以非对映异构体混合物(,,和,,Z)的形式获得,可能是通过天冬酰亚胺化学过程。这些脱氢三肽在极低浓度(0.1和0.04 wt%)下就能形成水凝胶。这些水凝胶表现出卓越的弹性(G' = 5.44×10和3.43×10 Pa)和自愈性能。扫描透射电子显微镜(STEM)研究表明,Cbz封端肽的非对映异构体发生聚集,形成纤维状三维网络,而2-Naph封端脱氢肽的非对映异构体似乎进行自分类,形成带有嵌入球状纳米结构的纤维网络。2-Naph封端的水凝胶在受到机械刺激破裂后能完全快速恢复。如STEM所见,在恢复的水凝胶中不存在球状纳米结构,这表明机械刺激触发了球状纳米结构重排为纤维。总体而言,这项研究表明肽的非对映异构体混合物可以是有效的凝胶剂。重要的是,这些结果表明封端基团的结构(大小、芳香性)对非对映异构体的自组装(共组装与自分类)可以有指导作用。使用人角质形成细胞(HaCaT细胞系)评估了新合成凝胶剂的细胞毒性。结果表明这两种凝胶剂表现出一定的细胞毒性,对细胞活力有较小影响。在缓释实验中,评估了模型药物化合物的电荷对其从水凝胶基质中释放速率的影响。水凝胶对甲基橙(阴离子型)表现出缓释,而亚甲基蓝(阳离子型)则保留在网络中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7f0/11507963/577a5614709f/gels-10-00629-g007.jpg

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