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Polyampholytes as Emerging Macromolecular Cryoprotectants

机译:多聚分子冷冻保护剂的多聚胺解

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摘要

Cellular cryopreservation is a platform technology which underpins cell biology, biochemistry, biomaterials, diagnostics, and the cold chain for emerging cell-based therapies. This technique relies on effective methods for banking and shipping to avoid the need for continuous cell culture. The most common method to achieve cryopreservation is to use large volumes of organic solvent cryoprotective agents which can promote either a vitreous (ice free) phase or dehydrate and protect the cells. These methods are very successful but are not perfect: not all cell types can be cryopreserved and recovered, and the cells do not always retain their phenotype and function post-thaw. This Perspective will introduce polyampholytes as emerging macromolecular cryoprotective agents and demonstrate they have the potential to impact a range of fields from cell-based therapies to basic cell biology and may be able to improve, or replace, current solvent-based cryoprotective agents. Polyampholytes have been shown to be remarkable (mammalian cell) cryopreservation enhancers, but their mechanism of action is unclear, which may include membrane protection, solvent replacement, or a yet unknown protective mechanism, but it seems the modulation of ice growth (recrystallization) may only play a minor role in their function, unlike other macromolecular cryoprotectants. This Perspective will discuss their synthesis and summarize the state-of-the-art, including hypotheses of how they function, to introduce this exciting area of biomacromolecular science.
机译:细胞冷冻保存是一种平台技术,其支撑细胞生物学,生物化学,生物材料,诊断和用于新出现的细胞疗法的冷链。该技术依赖于银行和运输的有效方法,以避免需要连续细胞培养物。实现冷冻保存的最常见方法是使用大量的有机溶剂冷冻保护剂,其可以促进玻璃体(自由冰)相或脱水并保护细胞。这些方法非常成功,但并不完美:并非所有细胞类型都可以冷冻保存和恢复,并且细胞并不总是保留其发出后的表型和功能。该透视将使多聚分子冷冻保护剂引入多聚晶体,并证明它们具有从基于细胞的疗法到基本细胞生物学的一系列场的可能性,并且可以能够改善或更换,替换电流的基于溶剂的冷冻保护剂。已显示多聚酰胺术是显着的(哺乳动物细胞)冷冻保存增强剂,但它们的作用机制尚不清楚,这可能包括膜保护,溶剂置换物或尚不清楚的保护机制,但似乎似乎可以调节冰增长(重结晶)与其他大分子冷冻保护剂不同,只在其功能中发挥次要作用。这种观点将讨论其综合,总结了最先进的,包括它们如何运作的假设,以引入这种令人兴奋的生物分子科学领域。

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  • 来源
    《Biomacromolecules》 |2020年第1期|共11页
  • 作者单位

    Univ Warwick Dept Chem Gibbet Hill Rd Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Rd Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Rd Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Rd Coventry CV4 7AL W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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