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温敏性角蛋白-甲基纤维素自修复注射水凝胶通过促进快速上皮化加速全层伤口愈合。

Thermoresponsive keratin-methylcellulose self-healing injectable hydrogel accelerating full-thickness wound healing by promoting rapid epithelialization.

机构信息

Biomaterial Tissue Engineering Laboratory, School of Medical Science and Technology, IIT Kharagpur, 721302, West Bengal, India; Immunology and Inflammation Research Laboratory, School of Medical Science and Technology, IIT Kharagpur, 721302, West Bengal, India.

Biomaterial Tissue Engineering Laboratory, School of Medical Science and Technology, IIT Kharagpur, 721302, West Bengal, India.

出版信息

Int J Biol Macromol. 2024 Apr;263(Pt 1):130073. doi: 10.1016/j.ijbiomac.2024.130073. Epub 2024 Feb 9.

DOI:10.1016/j.ijbiomac.2024.130073
PMID:38342268
Abstract

Chronic wounds suffer from impaired healing due to microbial attack and poor vascular growth. Thermoresponsive hydrogels gained attention in wound dressing owing to their gelation at physiological temperature enabling them to take the shape of asymmetric wounds. The present study delineates the development of thermoresponsive hydrogel (MCK), from hair-derived keratin (K) and methylcellulose (MC) in the presence of sodium sulfate. The gelation temperature (T) of this hydrogel is in the range of 30 °C to 33 °C. Protein-polymer interaction leading to thermoreversible sol-gel transition involved in MCK blends has been analyzed and confirmed by FTIR, XRD, and thermal studies. Keratin, has introduced antioxidant properties to the hydrogel imparted cytocompatibility towards human dermal fibroblasts (HDFs) as evidenced by both MTT and live dead assays. In vitro wound healing assessment has been shown by enhanced migration of HDFs in the presence of MCK hydrogel compared to the control. Also, CAM assay and CD31 expression by the Wistar rat model has shown increased blood vessel branching after the implantation of MCK hydrogel. Further, in vivo study, demonstrated MCK efficacy of hydrogel in accelerating full-thickness wounds with minimal scarring in Wistar rats, re-epithelialization, and reinstatement of the epidermal-dermal junction thereby exhibiting clinical relevance for chronic wounds.

摘要

慢性伤口由于微生物攻击和血管生长不良而导致愈合受损。温敏水凝胶因其在生理温度下凝胶化而在伤口敷料中受到关注,这使得它们能够适应不对称伤口的形状。本研究描述了由头发衍生角蛋白(K)和甲基纤维素(MC)在硫酸钠存在下开发的温敏水凝胶(MCK)。该水凝胶的胶凝温度(T)在 30°C 至 33°C 范围内。通过 FTIR、XRD 和热研究分析并证实了涉及 MCK 共混物的蛋白质-聚合物相互作用导致的热可逆溶胶-凝胶转变。角蛋白为水凝胶赋予了抗氧化特性,使水凝胶对人真皮成纤维细胞(HDF)具有细胞相容性,这一点通过 MTT 和死活检测得到了证实。体外伤口愈合评估表明,与对照组相比,MCK 水凝胶存在时 HDF 的迁移得到增强。此外,Wistar 大鼠的 CAM 试验和 CD31 表达表明,在植入 MCK 水凝胶后,血管分支增加。此外,体内研究表明,MCK 水凝胶在加速 Wistar 大鼠全层伤口愈合方面具有疗效,最小程度地减少了疤痕形成、再上皮化和表皮-真皮连接的恢复,从而表现出对慢性伤口的临床相关性。

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