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Early Detection Methods of Deep Tissue Pressure Injuries:A Systematic Review
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作者 贾菁怡 李正裔 +1 位作者 彭琳晶 姚怡飞 《Journal of Shanghai Jiaotong university(Science)》 EI 2023年第4期526-535,共10页
Deep tissue pressure injuries(DTPIs)have witnessed a growing prevalence in hospitals and other health care units especially among individuals with pathological conditions that give rise to restricted mobility,impaired... Deep tissue pressure injuries(DTPIs)have witnessed a growing prevalence in hospitals and other health care units especially among individuals with pathological conditions that give rise to restricted mobility,impaired sensation,and reduced tissue tolerance.The etiology of DTPIs has been a subject of controversy,to which several explanatory models have been proposed,including direct mechanical insult,ischemia-reperfusion,lymphatic occlusion,and inflammatory cytokines.In line with these pathophysiological scenarios,ultrasound,subepidermal moisture detection,and biomarker technologies have been proposed as potential early detection methods of DTPIs.This paper provides a systematic review involving these three methods.The conclusion is that combining and implementing these methods at different time periods during DTPIs development and progression respectively is likely to be the most universal,effective and promising way for DTPIs diagnosis. 展开更多
关键词 deep tissue pressure injury early detection ultrasound subepidermal moisture detection biomarker technologies
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dECM restores macrophage immune homeostasis and alleviates iron overload to promote DTPI healing
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作者 Ju Zhang Ruijuan Si +6 位作者 Yu Gao Hui Shan Qi Su Zujian Feng Pingsheng Huang Deling Kong Weiwei Wang 《Regenerative Biomaterials》 SCIE EI CSCD 2024年第2期100-113,共14页
Due to its highly insidious and rapid progression,deep tissue pressure injury(DTPI)is a clinical challenge.Our previous study found that DTPI may be a skeletal muscle injury dominated by macrophage immune dysfunction ... Due to its highly insidious and rapid progression,deep tissue pressure injury(DTPI)is a clinical challenge.Our previous study found that DTPI may be a skeletal muscle injury dominated by macrophage immune dysfunction due to excessive iron accu-mulation.Decellularized extracellular matrix(dECM)hydrogel promotes skeletal muscle injury repair.However,its role in po-larizing macrophages and regulating iron metabolism in DTPI remains unclear.Here,porcine dECM hydrogel was prepared,and its therapeutic function and mechanism in repairing DTPI were investigated.The stimulus of dECM hydrogel toward RAW264.7 cells resulted in a significantly higher percentage of CD2o6+macrophages and notably decreased intracellular divalent iron levels.In mice DTPI model,dECM hydrogel treatment promoted M1 to M2 macrophage conversion,improved iron metabolism and reduced oxidative stress in the early stage of DTPI.In the remodeling phase,the dECM hydrogel remarkably enhanced revascularization and accelerated skeletal muscle repair.Furthermore,the immunomodulation of dEcM hydrogels in vivo was mainly involved in the P13k/Akt signaling pathway,as revealed by GO and KEGG pathway analysis,which may ameliorate the iron deposition and promote the healing of DTPI.Our findings indicate that dECM hydrogel is promising in skeletal muscle repair,inflammation resolution and tissue injury healing by effectively restoring macrophage immune homeostasis and normalizing iron metabolism. 展开更多
关键词 deep tissue pressure injury HYDROGEL IMMUNOMODULATION tissue repair
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