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Cell therapy for transplantations in cardiovascular system: decellularization and recellularization of porcine pericardium

机译:心血管系统中移植的细胞疗法:猪心包的脱细胞化和腔内

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Introduction: Immune systems response, which leads to degeneration of allo/xenogeneic aortic heart valves, is the biggest problem of organ-transplantations generally. The immune response is caused by the presence of donor cells in the host organism. There is an effort to find the way, how to diminish this complication. The aim of our study was to prepare a graft made of decellularized porcine pericardium and to recolonize it with adipose tissue-derived stem cells. This graft will be later mechanically stimulated in a bioreactor. Materials and methods: For the decellularization of porcine pericardium we used varied combinations, concentrations, and exposure time of sodium deoxycholate (SDC), sodium dodecyl sulfate (SDS) and Triton X 100. The degree of decellularization process was assessed by hematoxylin-eosin staining and Hoechst staining of histological samples. Biocompatibility of the tissue extracts was evaluated using xCelligence method with rat vascular smooth muscle cells. The decellularized pericardium was seeded with adipose tissue-derived stem cells and cultured for 11 days. Results and discussion: Using various combinations, concentrations and time of incubation on native porcine pericardium we prepared pericardium with a various degree of decellularization. Because of the extremely toxicity of SDS after decellularization, the pericardium was washed out thoroughly to remove the rest of the chemicals used. The Cell-Viability Assay showed very low toxicity of decellularizated pericardium after the washing. For the recellularization we chose pericardium without residual cells. Adipose tissue-derived stem cells seeded on the pericardium attached, spread, and proliferated during an eleven-day culture. These grafts will be further mechanically stimulated in a bioreactor and both stem cell differentiation and their production of extracellular matrix will be assessed. Fig. 1. (A) A histological section of native porcine pericardium stained with Hoechst 33342 (blue - cell nuclei). (B) A histological section of decellularized porcine pericardium stained with Hoechst 33342. Epifluorescence microscope Olympus IX51, DP70 camera, obj. ×10 (A, B). (C) Decellularized porcine pericardium seeded with adipose tissue-derived stem cells on day 5 after seeding, stained with Hoechst 33342 (blue - cell nuclei) and Phalloidin-TRIC (F-actin - red). Epifluorescence microscope Olympus IX71, DP71 camera, obj. ×10(C). Conclusion: We prepared the decellularized porcine pericardium, which allowed adipose tissue-derived stem cells attachment, spreading and proliferation. This method could be important for development of grafts for transplantations in cardiovascular system.
机译:简介:免疫系统反应,导致Allo / Oxenogeneic主动脉瓣膜的退化,通常是器官移植的最大问题。免疫应答是由宿主生物中的供体细胞的存在引起的。有努力找到方法,如何减少这种并发症。我们的研究目的是制备由脱细胞化的猪心包制成的移植物,并用脂肪组织衍生的干细胞重新振缩它。稍后将在生物反应器中机械刺激该移植物。材料和方法:对于猪心包的脱细胞化,我们使用了脱氧胆酸钠(SDC),十二烷基钠(SDS)和Triton X 100的各种组合,浓度和暴露时间。通过苏木精 - 曙红染色评估脱细胞化方法的程度和组织学样品的Hoechst染色。使用具有大鼠血管平滑肌细胞的Xcelligence方法评价组织提取物的生物相容性。用脂肪组织衍生的干细胞播种脱细胞化的心包并培养11天。结果与讨论:利用各种组合,浓度和孵育对天然猪心包的孵化,我们在各种程度的脱细胞化方面制备了心包。由于SDS在脱细胞化后的极度毒性,肉食内容彻底洗掉以除去所用化学物质的其余化学物质。细胞活力测定在洗涤后表现出极低的嗜酸性心包的毒性。对于透闭症,我们选择了没有残留细胞的心包。脂肪组织衍生的干细胞在十一日培养期间覆盖的心包,涂抹,扩散和增殖。将在生物反应器中进一步机械地刺激这些移植物,并评估它们的干细胞分化及其对细胞外基质的产生。图1.(a)用Hoechst 33342(蓝细胞核)染色的天然猪心包的组织学部分。 (b)用Hoechst 33342染色的脱细胞化猪心包的组织学部分。exfloescence显微镜奥林巴斯IX51,DP70相机,OBJ。 ×10(a,b)。 (c)在播种后第5天用脂肪组织衍生的干细胞接种脱细胞的猪心包,用Hoechst 33342(蓝细胞核)和phalphoidin-tric(f-actin-rym)染色。 epifoforeary显微镜奥林巴斯IX71,DP71相机,OBJ。 ×10(c)。结论:我们制备了脱细胞化猪皮,其允许脂肪组织衍生的干细胞附着,扩散和增殖。该方法对于开发心血管系统中移植的移植物可能是重要的。

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