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Stem cell bioprocessing: fundamentals and principles

机译:干细胞生物加工:基本原理

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摘要

In recent years, the potential of stem cell research for tissue engineering-based therapies and regenerative medicine clinical applications has become well established. In 2006, Chung pioneered the first entire organ transplant using adult stem cells and a scaffold for clinical evaluation. With this a new milestone was achieved, with seven patients with myelomeningocele receiving stem cell-derived bladder transplants resulting in substantial improvements in their quality of life. While a bladder is a relatively simple organ, the breakthrough highlights the incredible benefits that can be gained from the cross-disciplinary nature of tissue engineering and regenerative medicine (TERM) that encompasses stem cell research and stem cell bioprocessing. Unquestionably, the development of bioprocess technologies for the transfer of the current laboratory-based practice of stem cell tissue culture to the clinic as therapeutics necessitates the application of engineering principles and practices to achieve control, reproducibility, automation, validation and safety of the process and the product. The successful translation will require contributions from fundamental research (from developmental biology to the ‘omics’ technologies and advances in immunology) and from existing industrial practice (biologics), especially on automation, quality assurance and regulation. The timely development, integration and execution of various components will be critical—failures of the past (such as in the commercialization of skin equivalents) on marketing, pricing, production and advertising should not be repeated. This review aims to address the principles required for successful stem cell bioprocessing so that they can be applied deftly to clinical applications.
机译:近年来,干细胞研究在基于组织工程的疗法和再生医学临床应用中的潜力已得到公认。 2006年,Chung率先使用成人干细胞和用于临床评估的支架进行了首例全器官移植。有了这个新的里程碑,七名髓鞘膜膨出患者接受了干细胞源性膀胱移植,从而大大改善了他们的生活质量。尽管膀胱是一个相对简单的器官,但这一突破突显了组织工程和再生医学(TERM)的跨学科性质所带来的不可思议的好处,该学科涵盖干细胞研究和干细胞生物加工。毫无疑问,为了将当前基于实验室的干细胞组织培养实践作为治疗手段转移到临床的生物过程技术的发展,需要应用工程原理和实践来实现过程和过程的控制,可重复性,自动化,验证和安全性。产品。成功的翻译需要基础研究(从发育生物学到“组学”技术以及免疫学的进步)和现有的工业实践(生物学)的贡献,特别是在自动化,质量保证和法规方面。各个组件的及时开发,集成和执行将非常关键-过去在营销,定价,生产和广告方面的失败(例如在皮肤等效产品的商业化中)不应重复。这篇综述旨在解决成功进行干细胞生物加工所需的原理,以便可以将其灵活地应用于临床应用。

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