期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
酪醇通过提高糖尿病高糖环境下骨骼肌细胞的活力和旁分泌功能促进糖尿病小鼠缺血下肢的血管新生
1
作者 张建琪 Olivia Marcelina +5 位作者 dyah ari nugrahaningrum 徐志玲 刘才平 王贵学 吴寿荣 江启慧 《医用生物力学》 EI CAS CSCD 北大核心 2019年第A01期79-79,共1页
目的下肢缺血性疾病(HLI)是糖尿病的主要并发症之一,治疗的关键是体内血管重构。但由于糖尿病伴随持续的高血糖,机体发生系统性损伤,血管新生能力被严重破坏,所以阻碍了治疗性血管新生促糖尿病血管重构的作用。骨骼肌细胞(SMC)分泌血管... 目的下肢缺血性疾病(HLI)是糖尿病的主要并发症之一,治疗的关键是体内血管重构。但由于糖尿病伴随持续的高血糖,机体发生系统性损伤,血管新生能力被严重破坏,所以阻碍了治疗性血管新生促糖尿病血管重构的作用。骨骼肌细胞(SMC)分泌血管新生因子,通过细胞间交流在血管重构中发挥重要作用。但在HLI的糖尿病病理条件下(高糖、低氧),骨骼肌细胞功能受损,导致SMC的促血管新生作用下降。小分子化合物酪醇(TYR)具有细胞保护和抗氧化的作用,但在高糖环境中,其对SMC的保护和促血管新生作用仍是未知的。方法将骨骼肌细胞分为3组:对照、高糖、高糖+TYR。利用MTIT法、细胞内活性氧(ROS)检测法和流式细胞术细胞凋亡检测法等考察TYR对SMC细胞活力和凋亡的影响;利用Western Blotting和ELISA考察TYR对血管新生因子(VEGF-A和PDGF-BB)表达和分泌的作用;EdU和transwell实验观察SMC细胞分泌物对血管内皮细胞(HUVECs)和血管平滑肌细胞(MOVAS)增殖和迁移的影响;体内实验通过构建糖尿病下肢缺血小鼠模型,肌肉注射TYR,应用激光多普勒扫描仪分析糖尿病下肢缺血小鼠下肢血流恢复情况,考察酪醇对糖尿病下肢缺血小鼠的治疗作用。结果(1)TYR抑制了高血糖诱导的细胞内活性氧(ROS)水平,降低了细胞凋亡率,提高了SMC细胞活力;(2)TYR促进了高糖环境中SMC细胞VEGF-A和PDGF-BB的表达和分泌;(3)TYR预处理SMC后收集到的条件培养基促进了HUVECs和MOVAS的增值和迁移;(4)TYR改善了糖尿病下肢缺血模型小鼠的血管新生和血流恢复功能。结论用TYR处理SMC可显著提高骨骼肌的细胞活力和旁分泌功能,促进缺血组织中血流恢复和血管新生。研究结果提示对于糖尿病下肢缺血疾病,酪醇是一种具有潜在应用价值的促进血管新生作用的小分子化合物。 展开更多
关键词 酪醇 骨骼肌细胞 细胞保护 治疗性血管新生 糖尿病下肢缺血模型小鼠
在线阅读 下载PDF
Salidroside Pretreatment to Mesenchymal Stem Cells Improves Cell Survival and Migration to Promote Diabetic Wound Healing
2
作者 Olivia Marcelina Jianqi Zhang +5 位作者 dyah ari nugrahaningrum Zhiling Xu Guixue Wang Li Yang Shourong Wu Vivi Kasim 《医用生物力学》 EI CAS CSCD 北大核心 2019年第A01期141-142,共2页
Objective Diabetic patients pose a greater challenge in managing chronic wound healing,leading to a higher amputation risk compared to non-diabetic patients.Due to their paracrine function by secreting various cytokin... Objective Diabetic patients pose a greater challenge in managing chronic wound healing,leading to a higher amputation risk compared to non-diabetic patients.Due to their paracrine function by secreting various cytokines and angiogenic factors,mesenchymal stem cells(MSCs)have been acknowledged to be a potential agent in modulating wound healing process.However,post-transplanted MSCs are vulnerable to death,indicating poor survival and migration ability in the wound site of the host,especially under hyperglycemia.As hyperglycemia induces reactive oxygen species(ROS)generation and cellular apoptosis,improvement of MSCs survival and migration potentials under hyperglycemia could contribute to a more efficient MSCs-based wound healing therapy.Salidroside(Sa),a small-molecule drug derived from Rhodiola plant,has been proved to enhance the paracrine function of skeletal muscle cells,as well as their migration even under hypoxichyperglycemia.Herein,we investigated whether Sa could improve the survival and migration potentials of MSCs,subsequently enhance the wound healing process under hyperglycemia.Methods MSCs were cultured under three conditions:low glucose,high glucose,and high glucose+Sa.qPCR analysis and western blotting were done to examine the mRNA and protein expression level of several factors which are important in upregulating the wound healing process.MTT colorimetric assay,intracellular ROS detection,and flow cytometry assay were employed to examine the effect of Sa in MSCs survival.Transwell chamber assay,scratch assay,and phalloidin staining were done to elucidate the role of Sa in regulating MSCs migration potential.For in vivo experiment,diabetic wound healing mice model was generated to elucidate the effect of Sa-pretreated MSCs transplantation in wound closure rate,as well as re-epithelization status,observed with hematoxylin and eosin staining.The diabetic wound healing mice model were divided into three groups:1)mice injected with PBS,2)mice transplanted with PBS-pretreated MSCs,and 3)mice transplanted with Sa-pretreated MSCs.Results(1)Hyperglycemic condition induced the generation of ROS and suppressed total cell number of MSCs,while Sa treatment into MSCs restored these hyperglycemia-induced alterations.In line with this,total apoptotic cells were also suppressed by treating MSCs with Sa.The expression level of cell survival factor,heme-oxygenase 1(HO-1),was enhanced in Sa-pretreated MSCs.Further treatment of HO-1 inhibitor into Sa-pretreated MSCs nullified the ROS level and total apoptotic cells,indica-ting the importance of HO-1 in mediating the Sa-induced survival of MSCs under hyperglycemia.(2)Transwell chamber and scratch assay results showed that Sa-pretreated MSCs have a higher migration potential under hyperglycemia,supported by higher F-actin polymerization fractal dimension.Fibroblast growth factor 2(FGF2)and hepatocyte growth factor(HGF)expression level,which are essential factors for cell migration,were also improved in Sa-pretreated MSCs under hyperglycemia.(3)In diabetic wound healing mice model,transplantation of Sa-pretreated MSCs resulted in significantly improved wound closure rate and re-epithelization.The protein levels of HO-1,FGF2,and HGF were also enhanced in the tissues obtained from the wound site of diabetic wound healing mice model which were transplanted with Sa-pretreated MSCs.Conclusions Salidroside pretreatment on MSCs could improve their survival and migration potentials,subsequently promoting wound healing process under hyperglycemia.This prospective MSC-based therapy could serve as a novel strategy to improve diabetic wound healing. 展开更多
关键词 SALIDROSIDE MESENCHYMAL stem cells CELL survival CELL transplantation DIABETIC wound HEALING
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部