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用于细胞治疗生产的生长因子固定化。

Immobilization of Growth Factors for Cell Therapy Manufacturing.

作者信息

Enriquez-Ochoa Daniela, Robles-Ovalle Pedro, Mayolo-Deloisa Karla, Brunck Marion E G

机构信息

Tecnologico de Monterrey, School of Engineering and Science, FEMSA Biotechnology Center, Monterrey, Mexico.

出版信息

Front Bioeng Biotechnol. 2020 Jun 19;8:620. doi: 10.3389/fbioe.2020.00620. eCollection 2020.

Abstract

Cell therapy products exhibit great therapeutic potential but come with a deterring price tag partly caused by their costly manufacturing processes. The development of strategies that lead to cost-effective cell production is key to expand the reach of cell therapies. Growth factors are critical culture media components required for the maintenance and differentiation of cells in culture and are widely employed in cell therapy manufacturing. However, they are expensive, and their common use in soluble form is often associated with decreased stability and bioactivity. Immobilization has emerged as a possible strategy to optimize growth factor use in cell culture. To date, several immobilization techniques have been reported for attaching growth factors onto a variety of biomaterials, but these have been focused on tissue engineering. This review briefly summarizes the current landscape of cell therapy manufacturing, before describing the types of chemistry that can be used to immobilize growth factors for cell culture. Emphasis is placed to identify strategies that could reduce growth factor usage and enhance bioactivity. Finally, we describe a case study for stem cell factor.

摘要

细胞治疗产品具有巨大的治疗潜力,但由于其制造过程成本高昂,价格令人望而却步。开发具有成本效益的细胞生产策略是扩大细胞治疗应用范围的关键。生长因子是细胞培养中维持细胞和诱导细胞分化所需的关键培养基成分,广泛应用于细胞治疗生产。然而,它们价格昂贵,以可溶性形式使用时通常稳定性和生物活性会降低。固定化已成为优化细胞培养中生长因子使用的一种可能策略。迄今为止,已有多种将生长因子附着到各种生物材料上的固定化技术被报道,但这些技术主要集中在组织工程领域。本文综述简要总结了细胞治疗生产的现状,然后描述了可用于固定化细胞培养生长因子的化学类型。重点是确定可以减少生长因子使用并增强其生物活性的策略。最后,我们描述了干细胞因子的一个案例研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3db/7317031/a70d42348827/fbioe-08-00620-g0001.jpg

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