含复合胶原蛋白的水凝胶对酸性体外损伤后成纤维细胞功能活性的影响

P. A. Markov, P. Eremin, I. Gilmutdinova, A. I. Greben, E. Kostromina, А. S. Sokolov, I. A. Artemyeva
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引用次数: 0

摘要

众所周知,微环境的酸度对参与组织修复的细胞的功能活动有重大影响。迄今为止,含有人体真皮细胞间基质成分的生物材料在酸中毒条件下对成纤维细胞的影响尚未得到充分研究。评估含有真皮成分的复合水凝胶对完整成纤维细胞和酸诱导功能障碍成纤维细胞功能活性的影响。为模拟急性炎症的理化条件,将人的成纤维细胞在 39 °C、过酸化至 pH = 6 的营养培养基中培养一小时。使用光学显微镜和荧光显微镜评估人皮肤成纤维细胞的形态特征。使用流式细胞术评估了凋亡细胞的数量和增殖指数。已经证实,成纤维细胞暴露在酸性介质中会抑制其粘附性并降低细胞生长速度。在含有受损细胞的细胞悬浮液中加入水凝胶可恢复粘附性和细胞生长。成纤维细胞暴露于酸性介质后,活细胞数量减少,凋亡细胞数量增加。在有复合水凝胶存在的情况下培养受损的成纤维细胞,可增加群体中活细胞的数量,减少凋亡细胞的数量。酸引起的成纤维细胞损伤降低了增殖活性指数。研究表明,在培养基中加入水凝胶可刺激完整和受损成纤维细胞的增殖活性。研究结果表明,由细胞外基质成分组成的复合水凝胶能够恢复因暴露于酸性培养基而受损的成纤维细胞的功能活性。研究结果可用于制造生物材料,在急性炎症过度剧烈的情况下提高皮肤再生的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of composite collagen containing hydrogel on the functional activity of fibroblasts after acid-induced in vitro injury
It is well known that the acidity of the microenvironment has a significant impact on the functional activity of cells involved in tissue repair. To date, the effect of biomaterials containing components of the human dermis intercellular matrix on fibroblasts under acidosis has not been fully studied.The aim of the study. To evaluate the effect of a composite hydrogel containing dermal components on the functional activity of intact fibroblasts and fibroblasts with acid-induced dysfunction.Materials and methods. To simulate the physicochemical conditions of acute inflammation, human fibroblasts were incubated for an hour at 39 °C in a nutrient medium overacidified to pH = 6. The morphometric characteristics of human skin fibroblasts were assessed using light and fluorescence microscopy methods. The number of apoptotic cells and proliferation index were assessed using flow cytometry.Results. It has been established that exposure of fibroblasts to an acidic medium inhibits their adhesive properties and reduces the rate of cell growth. The introduction of hydrogel into a cell suspension with damaged cells restores adhesive properties and cell growth. In the fibroblast population, after acid exposure, the number of living cells decreases, and the number of apoptotic cells increases. Cultivation of damaged fibroblasts in the presence of a composite hydrogel increases the number of living cells in the population and reduces the number of apoptotic cells. Acid-induced fibroblast damage reduces the proliferative activity index. It was revealed that the introduction of hydrogel into the culture medium stimulates the proliferative activity of both intact and damaged fibroblasts. The results obtained indicate that a composite hydrogel consisting of extracellular matrix components is capable of restoring the functional activity of fibroblasts damaged as a result of exposure to an acidic medium. The results obtained can be used to create biomaterials that increase the efficiency of skin regeneration in cases of excessively intense acute inflammation.
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