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首页> 外文期刊>Biomacromolecules >Synthetically Scalable Poly(ampholyte) Which Dramatically Enhances Cellular Cryopreservation
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Synthetically Scalable Poly(ampholyte) Which Dramatically Enhances Cellular Cryopreservation

机译:综合可缩放的聚(两种透光元),可显着增强蜂窝冷冻保存

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The storage and transport of frozen cells underpin the emerging/existing cell-based therapies and are used in every biomedical research lab globally. The current gold-standard cryoprotectant dimethyl sulfoxide (DMSO) does not give quantitative cell recovery in suspension or in two-dimensional (2D) or three-dimensional (3D) cell models, and the solvent and cell debris must be removed prior to application/transfusion. There is a real need to improve this 50-year-old method to underpin emerging regenerative and cell-based therapies. Here, we introduce a potent and synthetically scalable polymeric cryopreservation enhancer which is easily obtained in a single step from a low cost and biocompatible precursor, poly(methyl vinyl ether-alt-maleic anhydride). This poly(ampholyte) enables post-thaw recoveries of up to 88% for a 2D cell monolayer model compared to just 24% using conventional DMSO cryopreservation. The poly(ampholyte) also enables reduction of [DMSO] from 10 wt % to just 2.5 wt % in suspension cryopreservation, which can reduce the negative side effects and speed up post-thaw processing. After thawing, the cells have reduced membrane damage and faster growth rates compared to those without the polymer. The polymer appears to function by a unique extracellular mechanism by stabilization of the cell membrane, rather than by modulation of ice formation and growth. This new macromolecular cryoprotectant will find applications across basic and translational biomedical science and may improve the cold chain for cell-based therapies.
机译:冷冻细胞的储存和运输是基于新的/现有的基于细胞的疗法,并在全球的每个生物医学研究实验室中使用。目前的金标准冷冻保护剂二甲基亚砜(DMSO)不含悬浮液或二维(2D)或三维(3D)细胞模型中的定量细胞回收,并且必须在施用之前除去溶剂和细胞碎片/输血。真正需要改善这种50岁的方法来支撑出新的再生和基于细胞的疗法。在这里,我们介绍一种有效的合成可伸缩的聚合物冷冻保存增强剂,其在从低成本和生物相容性前体,聚(甲基乙烯基醚 - ALT-马来酸酐)中容易地获得。该聚(两道散晶)通过使用常规DMSO冷冻保存,2D细胞单层模型的解冻后回收率高达88%,而2D细胞单层模型相比。聚(两晶硅)还使得在悬浮冷冻保存中将[DMSO]从10wt%降低至仅2.5wt%,这可以降低负副作用并加速解冻后加工。在解冻后,与没有聚合物的人相比,细胞具有减少的膜损伤和更快的生长速率。聚合物通过稳定细胞膜来通过独特的细胞外机构起作用,而不是通过冰形成和生长的调节来起作用。这种新的大分子冷冻保护剂将在基础和翻译生物医学科学中找到应用,并可以改善基于细胞的疗法的冷链。

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