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Bioglass promotes wound healing by affecting behaviors of endothelial cells, fibroblasts

机译:通过影响内皮细胞,成纤维细胞的行为来促进伤口愈合

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Introduction: It has been widely accepted that bioactive materials can affect cell behaviors during tissue engineering process. Bioactive silicate material, such as bioglass (BG), is the first man-made inorganic material used in bone tissue engineering because of its excellent osteostimulatory ability. BG has been reported to be able to strongly affect cell behaviors, in particular, stimulate osteogenic differentiation of stem cells as well as vascularization of endothelial cells (ECs), which finally stimulates osteogenesis and angiogenesis. Here, we proposed that the BG may accelerate wound healing through affecting behaviors of cells involved in skin regeneration. Materials and Methods: Bioglass 45S5 and its ion products were used as materials. Human dermal fibroblast (HDFs) and human umbilical vein endothelial cells (HUVECs) were used as cells. Ion products of Bioglass with gradient concentrations were added into cell culture medium to culture these cells in order to detect the effects of Bioglass ion products on cell behaviours. Quantitative real-time polymerase chain reaction was used to assess the expression of relative genes from cells. Immunofluorescence was used to detect relative proteins in cells. Cells were observed with a fluorescence microscope (Leica DM 2500) and images were taken with a CCD camera (Leica DFC 420C). Results and Discussion: After we investigated the effects of BG ion extracts on behaviors of human umbilical vein endothelial cells (HUVECs) and human dermal fibroblasts (HDF) in vitro, we found that BG ionic products with certain concentrations stimulated migration of HUVECs and HDFs, collagen expression and myofibroblast differentiation of HDFs and expressions of vascular endothelial growth factor, basic fibroblast growth factor as well as their receptors from both of cells. In addition, BG ionic extracts prevented death of HUVECs following hypoxia through blocking hemichannel opening while gap junctional communications and vascular endothelial cadherin in HUVECs treated with certain BG ion extracts were enhanced, indicating the stimulatory effects of BG on communications between HUVECs. Application of BG directly on full thickness wound of rat accelerated wound closure through stimulating vascularization and reducing inflammation response in wound site. Conclusions: BG ionic products had strong effects on behaviours of ECs and fibroblasts, which could finally promote wound healing, indicating that BG has great application potential in wound healing.
机译:简介:已普遍接受生物活性材料在组织工程过程中会影响细胞行为。生物活性硅酸盐材料,例如Bioglass(BG),是骨组织工程中使用的第一种用于骨组织工程的人造无机材料,因为其优异的破抑制能力。据报道,BG能够强烈影响细胞行为,特别是刺激干细胞的成骨分化,以及内皮细胞(ECS)的血管化,最终刺激成骨和血管生成。在这里,我们提出通过影响皮肤再生的细胞的行为来加速伤口愈合。材料和方法:生物胶45s5及其离子产物用作材料。使用人的皮肤成纤维细胞(HDF)和人脐静脉内皮细胞(HUVECS)作为细胞。将梯度浓度的生物糖类的离子产物加入细胞培养基中以培养这些细胞,以检测生物胶片离子产物对细胞行为的影响。定量实时聚合酶链反应评估来自细胞的相对基因的表达。使用免疫荧光来检测细胞中的相对蛋白质。用荧光显微镜(Leica DM 2500)观察细胞,用CCD相机(Leica DFC 420c)拍摄图像。结果与讨论:在体外研究人脐静脉内皮细胞(HUVECS)和人类皮肤成纤维细胞(HDF)的行为的影响之后,我们发现BG离子产物具有一定浓度的HUVECS和HDF的迁移,胶原蛋白的表达和血管内皮生长因子,碱性成纤维细胞生长因子以及来自两种细胞的受体的表达和肌纤维细胞分化。此外,BG离子提取物通过阻塞血管通道,通过阻塞血管槽开口,而用某些BG离子提取物处理的HUVEC中的间隙连接通信和血管内皮钙粘蛋白进行缺氧,表明BG对HUVEC之间通信的刺激作用。 BG直接在大鼠加速伤口闭合血管血管闭合损伤伤口位点炎症反应的应用。结论:BG离子产品对ECS和成纤维细胞的行为产生了强烈影响,这可能最终促进伤口愈合,表明BG在伤口愈合中具有很大的应用潜力。

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