多能性人胚胎干细胞再生人体组织和器官技术专利

Xuejun H. Parsons, Y. Teng, Dennis A. Moore, E. Snyder
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引用次数: 22

摘要

人类胚胎干细胞(hESCs)具有遗传稳定性,具有无限的扩增能力和不受限制的可塑性,为体外衍生大量疾病靶向人类体细胞提供了多能库,这些细胞仅限于需要修复的谱系。开发基于hesc的治疗方案,为缺乏的受损或丢失的组织或器官提供最佳的再生和重建治疗方案,在医疗保健方面有很大的需求。尽管围绕hESCs的所有权存在争议,但与hESCs相关的专利申请数量正在迅速增长。本文综述了hESCs的衍生、维持、分化和治疗操作技术的不同专利申请。许多已公布的专利申请都是基于先前在动物系统中建立的方法和通过自发胚层分化的多能细胞的多谱系倾向。在临床环境中安全有效的人体组织和器官再生的创新人类干细胞技术仍有待开发。我们对hESC技术当前专利状况的总体看法表明,当获得用于再生治疗的临床相关谱系时,直接控制和调节hESC多能性命运的新型治疗策略的hESC专利申请趋势,特别是在三维环境中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Patents on Technologies of Human Tissue and Organ Regeneration from Pluripotent Human Embryonic Stem Cells
Human embryonic stem cells (hESCs) are genetically stable with unlimited expansion ability and unrestricted plasticity, proffering a pluripotent reservoir for in vitro derivation of a large supply of disease-targeted human somatic cells that are restricted to the lineage in need of repair. There is a large healthcare need to develop hESC-based therapeutic solutions to provide optimal regeneration and reconstruction treatment options for the damaged or lost tissue or organ that have been lacking. In spite of controversy surrounding the ownership of hESCs, the number of patent applications related to hESCs is growing rapidly. This review gives an overview of different patent applications on technologies of derivation, maintenance, differentiation, and manipulation of hESCs for therapies. Many of the published patent applications have been based on previously established methods in the animal systems and multi-lineage inclination of pluripotent cells through spontaneous germ-layer differentiation. Innovative human stem cell technologies that are safe and effective for human tissue and organ regeneration in the clinical setting remain to be developed. Our overall view on the current patent situation of hESC technologies suggests a trend towards hESC patent filings on novel therapeutic strategies of direct control and modulation of hESC pluripotent fate, particularly in a 3-dimensional context, when deriving clinically-relevant lineages for regenerative therapies.
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