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Fabricating retinal pigment epithelial cell sheets derived from human induced pluripotent stem cells in an automated closed culture system for regenerative medicine

机译:在用于再生医学的自动封闭培养系统中制备源自人诱导的多能干细胞的视网膜色素上皮细胞片

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摘要

Regenerative medicine has received a lot of attention as a novel strategy for injuries and diseases that are difficult to cure using current techniques. Cell production, which is vital for regenerative medicine, has undergone remarkable progress via breakthroughs in developmental biology and tissue engineering; currently, cell production requires numerous experimental operators performing manual, small-scale cell cultures. Other major obstacles for cell production and regenerative medicine include the variable quality of products based on the experimental procedure, the skills of operators, the level of labor required for production, and costs. Technological developments are required to overcome this, including automation instead of manual culture. Age-related macular regeneration (AMD) is a refractory ocular disease that causes severe deterioration in central vision due to senescence in the retinal pigment epithelium (RPE). Recently, we performed an autologous transplantation of induced pluripotent stem (iPS) cell-derived RPE cell sheets and started clinical research on allografts from RPE cell suspensions differentiated from iPS cells. The use of regenerative therapies for AMD using iPS cell-derived RPE is expected to become more widespread. In the present study, human iPS cell-derived RPE cells were cultured to form RPE cell sheets using equipment with a closed culture module. The quality of the automated cultured RPE cell sheets was confirmed by comparing their morphological and biological properties with those of manually generated RPE cell sheets. As a result, machine-cultured RPE sheets displayed the same quality as manually cultured RPE sheets, showing that iPS cell-derived RPE cell sheets were successfully cultured by an automated process.
机译:再生医学作为治疗使用现有技术难以治愈的伤害和疾病的新策略而受到了广泛的关注。通过再生生物学和组织工程学的突破,对再生医学至关重要的细胞生产取得了显着进展。目前,细胞生产需要大量的实验操作人员进行手动的小规模细胞培养。细胞生产和再生医学的其他主要障碍包括基于实验程序的产品质量可变,操作员的技能,生产所需的劳动力水平以及成本。需要技术发展来克服这一问题,包括自动化而不是人工文化。年龄相关性黄斑再生(AMD)是一种难治性眼部疾病,由于视网膜色素上皮(RPE)的衰老,导致中央视力严重恶化。最近,我们进行了诱导多能干细胞(iPS)衍生的RPE细胞片的自体移植,并开始了对从iPS细胞分化而来的RPE细胞悬液进行同种异体移植的临床研究。使用iPS细胞衍生的RPE的AMD再生疗法的使用有望变得更加广泛。在本研究中,使用具有封闭培养模块的设备将人iPS细胞衍生的RPE细胞培养形成RPE细胞片。通过将自动培养的RPE细胞片的形态和生物学特性与人工生成的RPE细胞片的形态和生物学特性进行比较,可以确定其质量。结果,机器培养的RPE片表现出与手动培养的RPE片相同的质量,表明通过自动过程成功培养了源自iPS细胞的RPE细胞片。

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