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基于Fmoc衍生化阳离子六肽的自支撑水凝胶在潜在生物医学应用中的研究

Self-Supporting Hydrogels Based on Fmoc-Derivatized Cationic Hexapeptides for Potential Biomedical Applications.

作者信息

Diaferia Carlo, Rosa Elisabetta, Gallo Enrico, Smaldone Giovanni, Stornaiuolo Mariano, Morelli Giancarlo, Accardo Antonella

机构信息

Department of Pharmacy and Research Centre on Bioactive Peptides (CIRPeB), University of Naples "Federico II", 80134 Naples, Italy.

IRCCS SDN, Via Gianturco 113, 80143 Naples, Italy.

出版信息

Biomedicines. 2021 Jun 15;9(6):678. doi: 10.3390/biomedicines9060678.

Abstract

Peptide-based hydrogels (PHGs) are biocompatible materials suitable for biological, biomedical, and biotechnological applications, such as drug delivery and diagnostic tools for imaging. Recently, a novel class of synthetic hydrogel-forming amphiphilic cationic peptides (referred to as series K), containing an aliphatic region and a Lys residue, was proposed as a scaffold for bioprinting applications. Here, we report the synthesis of six analogues of the series K, in which the acetyl group at the N-terminus is replaced by aromatic portions, such as the Fmoc protecting group or the Fmoc-FF hydrogelator. The tendency of all peptides to self-assemble and to gel in aqueous solution was investigated using a set of biophysical techniques. The structural characterization pointed out that only the Fmoc-derivatives of series K keep their capability to gel. Among them, Fmoc-K3 hydrogel, which is the more rigid one (G' = 2526 Pa), acts as potential material for tissue engineering, fully supporting cell adhesion, survival, and duplication. These results describe a gelification process, allowed only by the correct balancing among aggregation forces within the peptide sequences (e.g., van der Waals, hydrogen bonding, and π-π stacking).

摘要

基于肽的水凝胶(PHGs)是适用于生物、生物医学和生物技术应用的生物相容性材料,如药物递送和成像诊断工具。最近,一类新型的合成水凝胶形成两亲性阳离子肽(称为K系列)被提出作为生物打印应用的支架,该肽含有一个脂肪族区域和一个赖氨酸残基。在此,我们报道了K系列的六种类似物的合成,其中N端的乙酰基被芳香部分取代,如Fmoc保护基或Fmoc-FF水凝胶剂。使用一组生物物理技术研究了所有肽在水溶液中自组装和凝胶化的趋势。结构表征指出,只有K系列的Fmoc衍生物保持其凝胶化能力。其中,刚性更强的Fmoc-K3水凝胶(G' = 2526 Pa)可作为组织工程的潜在材料,能充分支持细胞黏附、存活和增殖。这些结果描述了一种凝胶化过程,该过程仅通过肽序列内聚集力(如范德华力、氢键和π-π堆积)之间的正确平衡来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b275/8232644/6d2a5741de89/biomedicines-09-00678-g001.jpg

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