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芹菜素自组装胶原生物基质重塑肥胖创面微环境及其管理和修复。

Apigenin Self-Assembled Collagen Biomatrix for Reprogramming the Obese Wound Microenvironment for Its Management and Repair.

机构信息

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

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

出版信息

ACS Appl Bio Mater. 2024 Mar 18;7(3):1317-1335. doi: 10.1021/acsabm.3c00609. Epub 2024 Feb 15.

DOI:10.1021/acsabm.3c00609
PMID:38357783
Abstract

Wound management in obesity is complicated by excessive exudates from wounded areas, pressure ulcerations due to stacking of the fat layer, and vascular rarefaction. The current study explored the development of biomaterials for reprogramming the altered wound microenvironment under obese conditions. Self-assembled collagen biomatrix with trans and browning activator, apigenin, was fabricated as a soft tissue regenerative wound dressing material. The as-synthesized self-assembled collagen biomatrix exhibited excellent thermal, mechanical, and biological stability with a superior wound exudate absorption capacity. The apigenin self-assembled collagen biomatrix exhibited porous 3-D microstructure that mimicked the extracellular matrix that promoted cell adhesion and proliferation. The apigenin self-assembled collagen multifunctional biomatrix triggered adaptive localized thermogenesis in the subcutaneous fat layer, resulting in the activation of angiogenesis and fibroblast spreading and migration. The wound healing assay performed in DIO-C57BL6 mice showed faster tissue regeneration within 9 days, with well-defined neo-epidermis, blood vessel formation, thick collagen deposition, minimal inflammation, and significant activation of browning in the subcutaneous adipose layer. This study paves the way forward for the development of specialized regenerative biomatrices that reprogram the obese wound bed for faster tissue regeneration.

摘要

肥胖患者的伤口管理较为复杂,其伤口部位会有过多渗出物、脂肪层堆积导致压疮,以及血管稀疏。本研究探索了用于重新编程肥胖状态下改变的伤口微环境的生物材料的开发。用反式和 b 型褐变激活剂芹菜素自组装胶原生物基质,制成软组织再生伤口敷料材料。合成的自组装胶原生物基质具有出色的热稳定性、机械稳定性和生物稳定性,具有优异的伤口渗出物吸收能力。芹菜素自组装胶原生物基质具有模仿细胞外基质的多孔 3D 微观结构,促进细胞黏附和增殖。芹菜素自组装胶原多功能生物基质在皮下脂肪层引发适应性局部产热,从而激活血管生成和成纤维细胞的扩散和迁移。在 DIO-C57BL6 小鼠中进行的伤口愈合试验表明,组织再生速度更快,在 9 天内即可形成明确的新生表皮、血管形成、厚的胶原沉积、最小的炎症和皮下脂肪层中明显的褐变激活。本研究为开发专门的再生生物基质铺平了道路,这些生物基质可用于更快地组织再生,重新编程肥胖患者的伤口床。

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