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Trehalose-Based Polyethers for Cryopreservation and Three-Dimensional Cell Scaffolds

机译:用于冷冻保存和三维细胞支架的海藻糖聚醚

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The capability to slow ice growth and recrystallization is compulsory in the cryopreservation of cells and tissues to avoid injuries associated with the physical and chemical responses of freezing and thawing. Cryoprotective agents (CPAs) have been used to restrain cryoinjury and improve cell survival, but some of these compounds pose greater risks for the clinical application of cryopreserved cells due to their inherent toxicity. Trehalose is known for its unique physicochemical properties and its interaction with the phospholipids of the plasma membrane, which can reduce cell osmotic stress and stabilized the cryopreserved cells. Nonetheless, there has been a shortage of relevant studies on the synthesis of trehalose-based CPAs. We hereby report the synthesis and evaluation of a trehalose-based polymer and hydrogel and its use as a cryoprotectant and three-dimensional (3D) cell scaffold for cell encapsulation and organoid production. In vitro cytotoxicity studies with the trehalose-based polymers (poly(Tre-ECH)) demonstrated biocompatibility up to 100 mg/mL. High post-thaw cell membrane integrity and post-thaw cell plating efficiencies were achieved after 24 h of incubation with skin fibroblast, HeLa (cervical), and PC3 (prostate) cancer cell lines under both controlled-rate and ultrarapid freezing protocols. Differential scanning calorimetry and a splat cooling assay for the determination of ice recrystallization inhibition activity corroborated the unique properties of these trehalose-based polyethers as cryoprotectants. Furthermore, the ability to form hydrogels as 3D cell scaffolds encourages the use of these novel polymers in the development of cell organoids and cryopreservation platforms.
机译:在细胞和组织的冷冻保存中,慢慢生长和重结晶的能力是强制性的,以避免与冷冻和解冻的物理和化学反应相关的伤害。冷冻保护剂(CPA)已被用来抑制冷冻尼治疗并改善细胞存活,但由于其固有的毒性,其中一些化合物对冷冻保存细胞的临床应用产生了更大的风险。以其独特的物理化学性质而闻名海藻糖及其与质膜的磷脂的相互作用,这可以减少细胞渗透应激并稳定冷冻保存细胞。尽管如此,关于对基于海藻糖的CPA合成的相关研究缺乏相关研究。在此,我们报告了海藻糖的聚合物和水凝胶的合成和评价,其用作用于细胞包封和有机胶生产的冷冻保护剂和三维(3D)细胞支架。用基于海藻糖的聚合物(Poly(Tre-Ech))的体外细胞毒性研究证明了生物相容性,可达100mg / ml。在与皮肤成纤维细胞,HELA(宫颈)和PC3(前列腺)癌细胞系下的24小时,在受控速率和超薄冷冻方案下孵育24小时后,实现了高后的抗解冻剂细胞膜完整性和后解冻细胞渗透性。用于测定冰重结晶抑制活性的差分扫描量热量和Splat冷却测定赋予这些海藻糖的聚醚的独特性能作为冷冻保护剂。此外,作为3D细胞支架形成水凝胶的能力促进在细胞有机体和冷冻保存平台的发育中使用这些新型聚合物。

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