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整合分子控制以改善冷冻保存结果。

Integrating Molecular Control to Improve Cryopreservation Outcome.

作者信息

Baust John G, Snyder Kristi K, Van Buskirk Robert, Baust John M

机构信息

1 Institute of Biomedical Technology, State University of New York at Binghamton , Binghamton, New York.

2 Department of Biological Sciences, Binghamton University , Binghamton, New York.

出版信息

Biopreserv Biobank. 2017 Apr;15(2):134-141. doi: 10.1089/bio.2016.0119. Epub 2017 Mar 23.

Abstract

Cryopreservation (CP) is a critical component in enabling on-demand access to biological material (macromolecules, cells, and tissues), yet CP has evolved little over the last several decades. Today's CP processes often yield a suboptimal "product," which has slowed progression in areas such as cell therapy and stem cell research. Recent discoveries focusing on molecular control and buffering of cell stress responses to CP as well as the development of new devices that improve sample freezing and thawing are now providing a path to improve sample quality. Numerous reports now identify the problems associated with CP-induced delayed-onset cell death (CIDOCD), with a focus on the mitigation of cell stress responses through freeze media formulation to optimize survival during "cold chain" sample management. Importantly, these new approaches that manage cell stress response are now providing a basis for advancements in cell therapy development. Herein, we provide an overview of the molecular stress responses of cells to CP, including the impact of hypothermic and cell death continuums and the strategies for improving preservation outcome.

摘要

冷冻保存(CP)是实现按需获取生物材料(大分子、细胞和组织)的关键组成部分,但在过去几十年里CP进展甚微。如今的CP流程往往产生次优的“产品”,这减缓了细胞治疗和干细胞研究等领域的发展进程。最近关于分子控制和缓冲细胞对CP应激反应的发现,以及开发出改进样本冻融的新设备,现在为提高样本质量提供了一条途径。现在有大量报告指出了与CP诱导的延迟性细胞死亡(CIDOCD)相关的问题,重点是通过冷冻培养基配方减轻细胞应激反应,以优化“冷链”样本管理期间的存活率。重要的是,这些管理细胞应激反应的新方法现在为细胞治疗发展的进步提供了基础。在此,我们概述细胞对CP的分子应激反应,包括低温和细胞死亡连续体的影响以及改善保存结果的策略。

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