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Scalable Culture and Cryopreservation of Human Embryonic Stem Cells on Microcarriers

机译:人类胚胎干细胞在微载体上的可扩展培养和冷冻保存

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As a result of their pluripotency and potential for unlimited self-renewal,human embryonic stem cells(hESCs)hold tremendous promise in regenerative medicine.An essential prerequisite for the widespread application of hESCs is the establishment of effective and efficient protocols for large-scale cell culture,storage,and distribution.At laboratory scales hESCs are cultured adherent to tissue culture plates;these culture techniques are labor-intensive and do not scale to high cell numbers.In an effort to facilitate larger scale hESC cultivation,we investigated the feasibility of culturing hESCs adherent to microcarriers.We modified the surface of Cytodex 3 microcarriers with either Matrigel or mouse embryonic fibroblasts(MEFs).hESC colonies were effectively expanded in a pluripotent,undifferentiated state on both Matrigel-coated microcarriers and microcarriers seeded with a MEF monolayer.While the hESC expansion rate on MEF-microcarriers was less than that on MEF-plates,the doubling time of hESCs on Matrigel-microcarriers was indistinguishable from that of hESCs expanded on Matrigel-coated tissue culture plates.Standard hESC cryopreservation methodologies are plagued by poor viability and high differentiation rates upon thawing.Here,we demonstrate that cryopreservation of hESCs adherent to microcarriers in cryovials provides a higher recovery of undifferentiated cells than cryopreservation of cells in suspension.Together,these results suggest that microcarrier-based stabilization and culture may facilitate hESC expansion and storage for research and therapeutic applications.
机译:由于人类胚胎干细胞的多能性和无限的自我更新潜力,它在再生医学中具有广阔的前景。hESC广泛应用的必要前提是建立有效且高效的大规模细胞实验方案培养,储存和分配。在实验室规模下,将hESCs粘附在组织培养板上进行培养;这些培养技术劳动强度大,并且无法扩展到高细胞数量。为了促进大规模hESC培养,我们研究了hESCs的可行性。我们用Matrigel或小鼠胚胎成纤维细胞(MEFs)修饰了Cytodex 3微载体的表面.hESC菌落在Matrigel包被的微载体和用MEF单层接种的微载体上以多能,未分化状态有效扩增。尽管在MEF微载体上的hESC扩展速率小于在MEF板上的hESC扩展速率,但倍增时间hESCs在基质胶微载体上的表达与在基质胶包被的组织培养板上扩增的hESC的区别是不明显的。标准的hESC冷冻保存方法受解冻时生存力差和分化率高的困扰。总的来说,这些结果表明基于微载体的稳定化和培养可促进hESC的扩增和储存,以用于研究和治疗应用。

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