关键词: TRIM family proteins anti-oxidant immune response inflammation matrix metalloproteinase matrix remodelling tissue proliferation

Mesh : Animals Antioxidants / metabolism Extracellular Matrix / metabolism pathology Humans Oxidative Stress Signal Transduction Time Factors Tripartite Motif Proteins / metabolism Wound Healing Zinc / deficiency immunology metabolism

来  源:   DOI:10.3390/nu10010016   PDF(Sci-hub)   PDF(Pubmed)

Abstract:
Wound care is a major healthcare expenditure. Treatment of burns, surgical and trauma wounds, diabetic lower limb ulcers and skin wounds is a major medical challenge with current therapies largely focused on supportive care measures. Successful wound repair requires a series of tightly coordinated steps including coagulation, inflammation, angiogenesis, new tissue formation and extracellular matrix remodelling. Zinc is an essential trace element (micronutrient) which plays important roles in human physiology. Zinc is a cofactor for many metalloenzymes required for cell membrane repair, cell proliferation, growth and immune system function. The pathological effects of zinc deficiency include the occurrence of skin lesions, growth retardation, impaired immune function and compromised would healing. Here, we discuss investigations on the cellular and molecular mechanisms of zinc in modulating the wound healing process. Knowledge gained from this body of research will help to translate these findings into future clinical management of wound healing.
摘要:
伤口护理是主要的医疗保健支出。烧伤的治疗,手术和外伤,糖尿病下肢溃疡和皮肤创伤是一个主要的医学挑战,目前的治疗主要集中在支持性护理措施。成功的伤口修复需要一系列紧密协调的步骤,包括凝血,炎症,血管生成,新组织形成和细胞外基质重塑。锌是人体必需的微量元素(微量营养素),在人体生理学中起着重要作用。锌是细胞膜修复所需的许多金属酶的辅因子,细胞增殖,生长和免疫系统功能。缺锌的病理影响包括皮肤病变的发生,生长迟缓,免疫功能受损和受损会愈合。这里,我们讨论了锌在调节伤口愈合过程中的细胞和分子机制的研究。从这项研究中获得的知识将有助于将这些发现转化为伤口愈合的未来临床管理。
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