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咖啡因增强胶原作为局部微环境转棕色生物基质用于肥胖症软组织修复和再生。

Caffeine-reinforced Collagen as Localized Microenvironmental Trans-Browning Bio-Matrix for Soft Tissue Repair and Regeneration in Bariatric Condition.

机构信息

Biological Materials Laboratory, Council of Scientific and Industrial Research- Central Leather Research Institute, Chennai, TN, 600020, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Adv Biol (Weinh). 2024 Mar;8(3):e2300544. doi: 10.1002/adbi.202300544. Epub 2023 Dec 28.

Abstract

The wound exudates, hypoperfusion of the subcutaneous fat layer, and poor vasculature worsen wound management in obese subjects. In the current study, a multifunctional Caffeine-reinforced collagen biomaterial is developed that can simultaneously modulate lipid metabolism and angiogenesis in obese wound microenvironments for faster tissue regeneration. The biomaterial is fabricated specialized for obese conditions to initiate simultaneous lipolysis and angiogenesis locally in the hypoxic subcutaneous fat in wound margins of obese subjects. Caffeine-reinforced collagen biomatrix shows better structural integrity, thermal stability, bio-compatibility, and lesser proteolytic susceptibility. Caffeine-collagen biomaterial promote angiogenesis, fibroblast migration, and localized browning of white adipocytes to activate thermogenesis in the subcutaneous fat layer at the wound site. Full-thickness excision wound healing studies performed in obese C57BL6 mice shows faster wound closure within day 9 when compare to control mice. The Caffeine-reinforced collagen biomaterial remodeled the wound site locally by activating fibroblast to secrete collagen, activate endothelial cells to promote angiogenesis, and induce browning in white adipocytes in subcutaneous fat. The study opens a new direction in bariatric tissue regenerative medicine by locally modulating lipid metabolism, angiogenesis, and trans-browning at the injured site for faster complete restoration of the damaged tissue.

摘要

肥胖患者的伤口渗出物、皮下脂肪层灌注不足和血管不良会使伤口管理恶化。在本研究中,开发了一种多功能咖啡因增强型胶原生物材料,它可以同时调节肥胖伤口微环境中的脂肪代谢和血管生成,以实现更快的组织再生。该生物材料是专门为肥胖情况制造的,可以在肥胖患者伤口边缘的缺氧皮下脂肪中局部启动同时的脂肪分解和血管生成。咖啡因增强型胶原生物基质具有更好的结构完整性、热稳定性、生物相容性和较低的蛋白水解敏感性。咖啡因-胶原生物材料促进血管生成、成纤维细胞迁移和白色脂肪细胞的局部棕色化,以在伤口部位的皮下脂肪层激活产热作用。在肥胖 C57BL6 小鼠中进行的全层切除伤口愈合研究表明,与对照组小鼠相比,当使用咖啡因增强型胶原生物材料时,伤口在第 9 天内更快地闭合。咖啡因增强型胶原生物材料通过激活成纤维细胞分泌胶原、激活内皮细胞促进血管生成以及诱导皮下脂肪中白色脂肪细胞的棕色化来局部重塑伤口部位。该研究为肥胖症组织再生医学开辟了一个新的方向,通过局部调节受伤部位的脂肪代谢、血管生成和跨棕色化作用,以更快地完全恢复受损组织。

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