细胞外基质
饥饿
细胞外
医学
化学
生物化学
内科学
作者
Pengfei Chen,Kaifeng Pan,Nan Song,Yang Yang,Chenhui Gu,Peiyu Zhong,Lin Li,Mobai Li,Ying Zhang,Zhanqiu Dai,Liqing Shangguan,Chenyang Lei,Zhaoming Liu,Jianfeng Zhang,Ruikang Tang,Chao Liu,Shunwu Fan,Xianfeng Lin
出处
期刊:Matter
[Elsevier]
日期:2023-02-01
卷期号:6 (2): 397-428
被引量:5
标识
DOI:10.1016/j.matt.2022.12.002
摘要
An adequate nutrient supply is essential for maintaining the function of highly active immune cells; however, in an environment of excessive inflammation, this nutrient supply aggravates inflammation. We propose a “hyperinflammatory starvation therapy” for various diseases caused by excessive metabolism by highly selective restriction of the supply of local nutrients. Here we developed a natural, physiologically triggered, injectable, nano-platelet vesicle-based extracellular matrix hydrogel (NPV-ECM). As a proof of concept, in representative excessive inflammatory disease diabetic wounds, we demonstrated that the NPV-ECM can selectively regulate nutrient transportation based on intermolecular interactions, remodel the local immune microenvironment, limit the state of excess metabolism, promote angiogenesis, and achieve wound healing. Moving into the clinic, we conducted a clinical trial in patients with diabetic foot ulcers to verify the safety and therapeutic effect of the NPV-ECM. This study provides an understanding of the preparation and application of natural ECM biomaterials for hyperinflammatory starvation therapy.
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