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Decellularized kidney matrix as functional material for whole organ tissue engineering

机译:脱细胞肾脏基质作为整个器官组织工程的功能材料

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摘要

Renal transplantation is currently the most effective treatment for end-stage renal disease, which represents one of the major current public health problems. However, the number of available donor kidneys is drastically insufficient to meet the demand, causing prolonged waiting lists. For this reason, tissue engineering offers great potential to increase the pool of donated organs for kidney transplantation, by way of seeding cells on supporting scaffolding material. Biological scaffolds are prepared by removing cellular components from the donor organs using a decellularization process with detergents, enzymes or other cell lysing solutions. Extracellular matrix which makes up the scaffold is critical to directing the cell attachment and to creating a suitable environment for cell survival, proliferation and differentiation. Researchers are now studying whole intact scaffolds produced from the kidneys of animals or humans without adversely affecting extracellular matrix, biological activity and mechanical integrity. The process of recellularization includes cell seeding strategies and the choice of the cell source to repopulate the scaffold. This is the most difficult phase, due to the complexity of the kidney. Indeed, no studies have provided sufficient results of complete renal scaffold repopulation and differentiation. This review summarizes the research that has been conducted to obtain decellularized kidney scaffolds and to repopulate the scaffolds, evaluating the best cell sources, the cell seeding methods and the cell differentiation in kidney scaffolds.
机译:肾移植目前是最终阶段肾病最有效的治疗方法,这代表了目前主要的公共卫生问题之一。然而,可用的供体肾脏的数量急剧上不足以满足需求,导致延长等待名单。因此,通过在支撑脚手架材料上的播种细胞,组织工程可以增加增加肾移植的捐赠器官库的潜力。通过使用具有洗涤剂,酶或其他细胞裂解溶液的脱细胞化方法从供体器官中除去细胞组分来制备生物支架。构成支架的细胞外基质对于指导细胞附着并为细胞存活,增殖和分化产生合适的环境至关重要。研究人员正在研究从动物或人类的肾脏产生的全完整支架,而不会对细胞外基质,生物活性和机械完整性产生不利影响。透速过程包括细胞播种策略和细胞源的选择来重新填充支架。这是最困难的阶段,因为肾脏的复杂性。实际上,没有研究完全肾脏脚手架重新灌注和分化的效果。本综述总结了已经进行的研究,以获得脱细胞化的肾脏支架,并将支架进行重新预期,评价最佳细胞来源,细胞播种方法和肾脏支架中的细胞分化。

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