低温保存
低温保护剂
胚胎干细胞
海藻糖
活力测定
干细胞
生物
基质凝胶
细胞生物学
玻璃化
低温生物学
二甲基亚砜
细胞
化学
男科
生物化学
胚胎
医学
基因
有机化学
作者
Ji Lin,Juan Pablo,Sean P. Palecek
摘要
Abstract Standard human embryonic stem (HES) cell cryopreservation methodologies, including slow freezing and vitrification of colonies in suspension, are plagued by poor viability and high differentiation rates upon recovery. To facilitate research studies and clinical applications of HES cells, we have developed a cryopreservation technique based on stabilizing HES colonies adherent to or embedded in a Matrigel matrix. This method increases cell viability by over an order of magnitude compared with cryopreservation in suspension and reduces differentiation. Loading adherent HES cells with the disaccharide trehalose prior to cryopreserving in a dimethylsulfoxide‐containing cryoprotectant solution further improves cell viability under certain conditions. Our proposed approach has the potential to reduce the time required to amplify frozen stocks of HES cells, minimize risk of clonal selection during freeze–thaw cycles, and facilitate storage of HES cell clone libraries. © 2004 Wiley Periodicals, Inc.
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