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Regenerative Therapeutic Applications of Mechanized Lipoaspirate Derivatives
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作者 shaoheng xiong Qirui WANG +2 位作者 Lihong QIU Jizhong YANG Chenggang YI 《Chinese Journal Of Plastic and Reconstructive Surgery》 2020年第2期120-127,共8页
Autologous adipose tissue is one of the most commonly used fillers.Plastic surgeons are increasingly using it in aesthetic or reconstructive surgery owing to its abundant source,easy availability,and minimal invasiven... Autologous adipose tissue is one of the most commonly used fillers.Plastic surgeons are increasingly using it in aesthetic or reconstructive surgery owing to its abundant source,easy availability,and minimal invasiveness.Increasing amount of evidence has shown its reparative ability rather than just filling utility due to the presence of adipose-derived stem cells(ADSCs)that exhibit multipotential differentiation and paracrine characteristics.However,traditional enzymatic isolation of ADSCs is often difficult in clinical settings,limiting its application.Recently,with the development of mechanical techniques for preparation of lipoaspirates,bioactive adipose tissue can be successfully identified and isolated.Such components with therapeutic potential might also be helpful in tissue repair and regeneration.In this article,we introduced several types of mechanized lipoaspirates derivatives(such as emulsified fat,adipose extracellular matrix(ECM),and cell-free extraction)and their applications from bench to bedside. 展开更多
关键词 Adipose-derived stem cells emulsified fat extracellular matrix cell-free extraction
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S100 calcium-binding protein A9 promotes skin regeneration through toll-like receptor 4 during tissue expansion
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作者 Yu Zhang Yajuan Song +13 位作者 Jing Du Wei Liu Chen Dong Zhaosong Huang Zhe Zhang Liu Yang Tong Wang shaoheng xiong Liwei Dong Yaotao Guo Juanli Dang Qiang He Zhou Yu Xianjie Ma 《Burns & Trauma》 SCIE 2023年第1期611-626,共16页
Background:In plastic surgery,tissue expansion is widely used for repairing skin defects.However,low expansion efficiency and skin rupture caused by thin,expanded skin remain significant challenges in promoting skin r... Background:In plastic surgery,tissue expansion is widely used for repairing skin defects.However,low expansion efficiency and skin rupture caused by thin,expanded skin remain significant challenges in promoting skin regeneration during expansion.S100 calcium-binding protein A9(S100A9)is essential in promoting wound healing;however,its effects on skin regeneration during tissue expansion remain unclear.The aim of the present study was to explore the role of S100A9 in skin regeneration,particularly collagen production to investigate its importance in skin regeneration during tissue expansion.Methods:The expression and distribution of S100A9 and its receptors-toll-like receptor 4(TLR-4)and receptor for advanced glycation end products were studied in expanded skin.These character-istics were investigated in skin samples of rats and patients.Moreover,the expression of S100A9 was investigated in stretched keratinocytes in vitro.The effects of S100A9 on the proliferation and migration of skin fibroblasts were also observed.TAK-242 was used to inhibit the binding of S100A9 to TLR-4;the levels of collagen I(COL I),transforming growth factor beta(TGF-β),TLR-4 and phospho-extracellular signal-related kinase 1/2(p-ERK1/2)in fibroblasts were determined.Furthermore,fibroblasts were co-cultured with stretched S100A9-knockout keratinocytes by siRNA transfection and the levels of COL I,TGF-β,TLR-4 and p-ERK1/2 in fibroblasts were investigated.Additionally,the area of expanded skin,thickness of the dermis,and synthesis of COL I,TGF-β,TLR-4 and p-ERK1/2 were analysed to determine the effects of S100A9 on expanded skin.Results:Increased expression of S100A9 and TLR-4 was associated with decreased extracellular matrix(ECM)in the expanded dermis.Furthermore,S100A9 facilitated the proliferation and migration of human skin fibroblasts as well as the expression of COL I and TGF-βin fibroblasts via the TLR-4/ERK1/2 pathway.We found that mechanical stretch-induced S100A9 expression and secretion of keratinocytes stimulated COL I,TGF-β,TLR-4 and p-ERK1/2 expression in skin fibroblasts.Recombined S100A9 protein aided expanded skin regeneration and rescued dermal thinning in rats in vivo as well as increasing ECM deposition during expansion.Conclusions:These findings demonstrate that mechanical stretch promoted expanded skin regeneration by upregulating S100A9 expression.Our study laid the foundation for clinically improving tissue expansion using S100A9. 展开更多
关键词 S100 calcium-binding protein A9 Skin Soft tissue expansion Mechanical stretch Regeneration Highlights
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