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载金属离子配位纳米粒子的创伤微环境调控聚(L-谷氨酸)复合水凝胶用于有效止血和创面愈合。

Wound microenvironment regulatory poly(L-glutamic acid) composite hydrogels containing metal ion-coordinated nanoparticles for effective hemostasis and wound healing.

机构信息

School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.

Department of Stomatology, Shanghai General Hospital, Shanghai Jiao Tong University, Shanghai, 200080, P. R. China.

出版信息

Biomater Sci. 2024 Feb 27;12(5):1211-1227. doi: 10.1039/d3bm01978k.

DOI:10.1039/d3bm01978k
PMID:38240342
Abstract

Regulating the wound microenvironment to promote proliferation, vascularization, and wound healing is challenging for hemostats and wound dressings. Herein, polypeptide composite hydrogels have been simply fabricated by mixing a smaller amount of metal ion-coordinated nanoparticles into dopamine-modified poly(L-glutamic acid) (PGA), which had a microporous size of 10-16 μm, photothermal conversion ability, good biocompatibility, and multiple biological activities. scratch healing of fibroblast L929 cells and the tube formation of HUVECs provide evidence that the PGA composite hydrogels could promote cell proliferation, migration, and angiogenesis with the assistance of mild photothermia. Moreover, these composite hydrogels plus mild photothermia could effectively eliminate reactive oxygen species (ROS), alleviate inflammation, and polarize the pro-inflammatory M1 macrophage phenotype into the pro-healing M2 phenotype to accelerate wound healing, as assessed by means of fluorescent microscopy, flow cytometry, and quantitative real-time polymerase chain reaction (qRT-PCR). Meanwhile, a rat liver bleeding model illustrates that the composite hydrogels reduced the blood loss ratio to about 10% and shortened the hemostasis time to about 25 s better than commercial chitosan-based hemostats. Furthermore, the full-thickness rat skin defect models showcase that the composite hydrogels plus mild photothermia could proheal wounds completely with a fast healing rate, optimal neovascularization, and collagen deposition. Therefore, the biodegradable polypeptide PGA composite hydrogels are promising as potent wound hemostats and dressings.

摘要

调控伤口微环境以促进增殖、血管生成和伤口愈合,这对于止血剂和伤口敷料来说极具挑战性。在此,通过将少量金属离子配位纳米粒子混合到多巴胺修饰的聚(L-谷氨酸)(PGA)中,简单地制备了多肽复合水凝胶,其具有 10-16μm 的微孔尺寸、光热转换能力、良好的生物相容性和多种生物活性。成纤维细胞 L929 的划痕愈合和 HUVEC 的管形成实验为 PGA 复合水凝胶在温和光热的辅助下能够促进细胞增殖、迁移和血管生成提供了证据。此外,这些复合水凝胶加上温和光热可以有效地消除活性氧(ROS)、减轻炎症,并将促炎 M1 巨噬细胞表型极化为促愈合 M2 表型,从而加速伤口愈合,这可以通过荧光显微镜、流式细胞术和实时定量聚合酶链反应(qRT-PCR)来评估。同时,大鼠肝脏出血模型表明,与商业壳聚糖基止血剂相比,复合水凝胶将失血量比降低到约 10%,并将止血时间缩短到约 25s。此外,大鼠全层皮肤缺损模型表明,复合水凝胶加上温和光热可以完全促进伤口愈合,具有较快的愈合速度、最佳的新生血管化和胶原沉积。因此,可生物降解的多肽 PGA 复合水凝胶有望成为有效的止血剂和伤口敷料。

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