重编程
医学
疾病
生物信息学
糖尿病
代谢性疾病
糖尿病足
重症监护医学
细胞代谢
伤口愈合
治疗方法
炎症
代谢综合征
机制(生物学)
神经科学
胰岛素抵抗
2型糖尿病
肥胖
能量代谢
代谢活性
慢性病
评论文章
生物
作者
Jinyi Li,Ding Xianguang,Ding Yuhan,Huang Haoyue,Zhongyu Xia,Wang Lianhui,Jianda Xu
标识
DOI:10.1016/j.metabol.2025.156455
摘要
As a devastating complication, diabetic foot ulcer (DFU) is characterized by chronic, nonhealing wounds due to vasculopathy and neuropathy. It has emerged as a most challenging chronic disease worldwide, affecting millions of people worldwide. The higher mortality and disability rates urgently require innovative therapeutic strategies. Recently, different from nanotechnology, metabolic reprogramming is believed to be associated with the occurrence and progression of various diseases (including cancer, obesity and neurodegenerative diseases). They can alter their cellular metabolism (involving glucose, lipid, and amino acid metabolism) to cope with different external stimuli and pressures. As a novel potential strategy, metabolic reprogramming also exhibits great potential to improve the wound healing of DFU. This review aims to summarize the current knowledge, biological characteristics, and underlying mechanisms of metabolic reprogramming in DFU. And we propose their potential therapeutic implications to improve wound healing and prevent complications in DFU. In addition, we also highlight the current challenges and the future perspectives.
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