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Advances in Hepatic Tissue Bioengineering with Decellularized Liver Bioscaffold

机译:肝组织生物工程与脱细胞肝生物支点的进展

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The burden of liver diseases continues to grow worldwide, and liver transplantation is the only option for patients with end-stage liver disease. This procedure is limited by critical issues, including the low availability of donor organs; thus, novel therapeutic strategies are greatly needed. Recently, bioengineering approaches using decellularized liver scaffolds have been proposed as a novel strategy to overcome these challenges. The aim of this systematic literature review was to identify the major advances in the field of bioengineering using decellularized liver scaffolds and to identify obstacles and challenges for clinical application. The main findings of the articles and each contribution for technique optimization were highlighted, including the protocols of perfusion and decellularization, duration, demonstration of quality control—scaffold acellularity, matrix composition, and preservation of growth factors—and tissue functionality after recellularization. In previous years, many advances have been made as this technique has evolved from studies in animal models to human livers. As the field develops and this promising technique has become much more feasible, many challenges remain, including the selection of appropriate cell types for recellularization, route of cell administration, cell-seeding protocol, and scalability that must be standardized prior to clinical application.
机译:肝脏疾病的负担仍在全世界生长,肝移植是患有终末期肝病患者的唯一选择。该程序受关键问题的限制,包括捐助器官的低可用性;因此,大力需要新的治疗策略。最近,已经提出了使用脱细胞肝脏脚手架的生物工程方法作为克服这些挑战的新战略。这种系统文献综述的目的是使用脱细胞肝脏脚手架的生物工程领域的主要进展,并识别临床应用的障碍和挑战。突出了文章和各种技术优化贡献的主要发现,包括灌注和脱细胞化,持续时间,质量控制支架的持续时间,术后血管组合物的持续时间,矩阵组合物和组织官能团的保存。在过去几年中,由于这种技术从动物模型的研究发展到人类肝脏,因此已经取得了许多进步。随着该领域的发展和这种有希望的技术变得更加可行,仍然存在许多挑战,包括选择适当的细胞类型,用于临床应用前必须标准化的细胞施用,细胞播种方案和可扩展性。

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