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一种用于伤口治疗的聚(甘油 - 癸二酸酯 - 丙烯酸酯)纳米球增强型可注射水凝胶。

A poly (glycerol-sebacate-acrylate) nanosphere enhanced injectable hydrogel for wound treatment.

作者信息

Luo Jiajia, Sun Fenglei, Rao Pinhua, Zhu Tonghe, Liu Yonghang, Du Juan, Chen Sihao, Jin Xiangyun, Jin Jiale, Chai Yi

机构信息

School of Chemistry and Chemical Engineering, Institute for Frontier Medical Technology, Shanghai Engineering Research Center of Pharmaceutical Intelligent Equipment, Shanghai Frontiers Science Research Center for Druggability of Cardiovascular Non-coding RNA, Shanghai University of Engineering Science, Shanghai, China.

Department of Neurosurgery, Weifang People's Hospital, Weifang, Shandong, China.

出版信息

Front Bioeng Biotechnol. 2023 Jan 12;10:1091122. doi: 10.3389/fbioe.2022.1091122. eCollection 2022.

Abstract

Wound repair remains a huge clinical challenge, which can cause bleeding, infection, and patient death. In our current research, a bioactive, injectable, multifunctional composite hydrogel doped with nanospheres was prepared with antibacterial and angiogenesis-promoting functions for the treatment of wounds. Amino groups in ε-polylysine (ε-EPL) undergo dynamic Schiff base reaction cross-linking with oxidized hyaluronic acid (OHA), and F127 exhibits unique temperature sensitivity to form an injectable thermosensitive hydrogel (FHE10), which can form a hydrogel to cover the wound at body temperature. Nanospheres (PNs) prepared using poly (glyceryl-sebacate-acrylate) (PGSA) were loaded into hydrogels (FHE10) for promoting wound repair. The prepared FHE10 exhibited rapid gelation, good injectable abilities, and showed resistance to the flourish of () and (). investigations showed that FHE10 had good hemocompatibility and cytocompatibility. FHE10@PNs exhibited good proliferation, migration, and tube formation of human umbilical vein endothelial cells (HUVECs) and human foreskin fibroblasts (HFF-1). Furthermore, FHE10@PNs significantly promoted reepithelialization and collagen deposition as well as micro-vascularization compared with the use of FHE10 or PNs alone, thereby accelerating the repair of wounds. In general, this study demonstrated that the multifunctional injectable composite hydrogel showed great potential in wound treatment.

摘要

伤口修复仍然是一个巨大的临床挑战,它可能导致出血、感染和患者死亡。在我们目前的研究中,制备了一种掺杂纳米球的具有生物活性、可注射的多功能复合水凝胶,用于伤口治疗,具有抗菌和促进血管生成的功能。ε-聚赖氨酸(ε-EPL)中的氨基与氧化透明质酸(OHA)发生动态席夫碱反应交联,F127表现出独特的温度敏感性,形成可注射的热敏水凝胶(FHE10),它能在体温下形成水凝胶覆盖伤口。使用聚(甘油-癸二酸酯-丙烯酸酯)(PGSA)制备的纳米球(PNs)被加载到水凝胶(FHE10)中以促进伤口修复。制备的FHE10表现出快速凝胶化、良好的可注射能力,并对()和()的繁殖具有抗性。研究表明FHE10具有良好的血液相容性和细胞相容性。FHE10@PNs对人脐静脉内皮细胞(HUVECs)和人包皮成纤维细胞(HFF-1)表现出良好的增殖、迁移和血管生成能力。此外,与单独使用FHE10或PNs相比,FHE10@PNs显著促进了上皮再形成、胶原蛋白沉积以及微血管化,从而加速了伤口修复。总的来说,这项研究表明这种多功能可注射复合水凝胶在伤口治疗中显示出巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8b4/9877222/ebe6a991741d/fbioe-10-1091122-g001.jpg

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