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3D 高精度熔融电写入聚己内酯修饰的酵母衍生肽用于伤口愈合。

3D high-precision melt electro written polycaprolactone modified with yeast derived peptides for wound healing.

机构信息

Université libre de Bruxelles (ULB), École polytechnique de Bruxelles - BioMatter unit, Avenue F.D. Roosevelt, 50 - CP 165/61, 1050 Brussels, Belgium; Centre for Food Chemistry and Technology, Ghent University Global Campus, 119-5 Songdomunhwa-Ro, Yeonsu-Gu, Incheon, South Korea; Department of Food Technology, Safety and Health, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000 Ghent, Belgium.

Faculty of Medical Bioengineering, Grigore T. Popa University of Medicine and Pharmacy of Iasi, Romania; Advanced Research and Development Center for Experimental Medicine, Grigore T. Popa University of Medicine and Pharmacy of Iasi, Romania.

出版信息

Biomater Adv. 2023 Jun;149:213361. doi: 10.1016/j.bioadv.2023.213361. Epub 2023 Mar 10.

Abstract

In this study melt electro written (MEW) scaffolds of poly(ε-caprolactone) PCL are decorated with anti-inflammatory yeast-derived peptide for skin wound healing. Initially, 13 different yeast-derived peptides were screened and analyzed using both in vitro and in vivo assays. The MEW scaffolds are functionalized with the selected peptide VLSTSFPPW (VW-9) with the highest activity in reducing pro-inflammatory cytokines and stimulating fibroblast proliferation, migration, and collagen production. The peptide was conjugated to the MEW scaffolds using carbodiimide (CDI) and thiol chemistry, with and without plasma treatment, as well as by directly mixing the peptide with the polymer before printing. The MEW scaffolds modified using CDI and thiol chemistry with plasma treatment showed improved fibroblast and macrophage penetration and adhesion, as well as increased cell proliferation and superior anti-inflammatory properties, compared to the other groups. When applied to full-thickness excisional wounds in rats, the peptide-modified MEW scaffold significantly enhanced the healing process compared to controls (p < 0.05). This study provides proof of concept for using yeast-derived peptides to functionalize biomaterials for skin wound healing.

摘要

在这项研究中,聚己内酯(PCL)的熔融电写入(MEW)支架用具有抗炎作用的酵母衍生肽进行了修饰,用于皮肤伤口愈合。最初,使用体外和体内测定筛选和分析了 13 种不同的酵母衍生肽。MW 支架通过使用具有最高活性的选择肽 VLSTSFPPW(VW-9)进行功能化,该肽可降低促炎细胞因子并刺激成纤维细胞增殖、迁移和胶原生成。该肽通过使用碳二亚胺(CDI)和硫醇化学以及等离子体处理以及通过在打印前直接将肽与聚合物混合,接枝到 MEW 支架上。与未经等离子体处理的 CDI 和硫醇化学修饰的 MEW 支架相比,经等离子体处理的 CDI 和硫醇化学修饰的 MEW 支架显示出改善的成纤维细胞和巨噬细胞渗透和粘附性,以及更高的细胞增殖和更好的抗炎特性。当应用于大鼠全层切除伤口时,与对照组相比,肽修饰的 MEW 支架显著促进了愈合过程(p<0.05)。这项研究为使用酵母衍生肽对生物材料进行功能化以用于皮肤伤口愈合提供了概念验证。

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