血管生成
伤口愈合
免疫系统
炎症
血管内皮生长因子
再生医学
自愈水凝胶
免疫学
材料科学
医学
癌症研究
细胞生物学
生物
干细胞
血管内皮生长因子受体
高分子化学
作者
Yifei Lü,Haisheng Li,Jing Wang,Mengyun Yao,Yuan Peng,Tengfei Liu,Zhou Li,Gaoxing Luo,Jun Deng
标识
DOI:10.1002/adfm.202105749
摘要
Abstract Engineering therapeutic angiogenesis in impaired tissues is critical for chronic wound healing. Materials can be engineered to deliver specific biological cues that enhance angiogenesis. However, currently available materials have limitations for use in angiogenesis engineering since the complex inflammation environment of wounds requires spatiotemporal control. Immune cells are the central component of wound microenvironment and orchestrate immune responses to wound healing. This study presents a novel approach of using a delivery system comprising living Lactococcus , incorporated in a heparin‐poloxamer thermoresponsive hydrogel, designed to bioengineer the wound microenvironment and enhance the angiogenesis in a highly dynamic‐temporal manner. The living system can produce and protect vascular endothelial growth factor (VEGF) to increase proliferation, migration, and tube formation of endothelial cells, as well as secrete lactic acid to shift macrophages toward an anti‐inflammatory phenotype, resulting in successful angiogenesis in diabetic wounds. Further, the delivery system confines the bacterial population to wounds, thereby minimizing the risk of systemic toxicities. Therefore, this living hydrogel system can be harnessed for safe and efficient delivery of therapeutics that drive the wound microenvironment toward rapid healing and may serve as a promising scaffold in regenerative medicine.
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