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PSC-RED 和 MNC-RED:无白蛋白和低转铁蛋白的稳健红系分化方案,用于生产人去核红细胞。

PSC-RED and MNC-RED: Albumin-free and low-transferrin robust erythroid differentiation protocols to produce human enucleated red blood cells.

机构信息

Department of Cell Biology and Department of Medicine/Hematology, Albert Einstein College of Medicine, Bronx, NY.

Department of Cell Biology and Department of Medicine/Hematology, Albert Einstein College of Medicine, Bronx, NY.

出版信息

Exp Hematol. 2019 Jul;75:31-52.e15. doi: 10.1016/j.exphem.2019.05.006. Epub 2019 Jun 6.

Abstract

Many methods have been developed to produce cultured red blood cells (cRBCs) in vitro but translational applications have been hampered by high costs of production and by low rates of enucleation. We have developed R6 and IMIT, two chemically defined culture media and combined them into robust erythroid differentiation (RED) protocols to differentiate induced-pluripotent stem cells (iPSCs) and peripheral blood mononuclear cells (MNCs) into enucleated erythroid cells. The RED protocols do not require any albumin or animal components and require ten- to twentyfold less transferrin (Tf) than previously, because iron is provided to the differentiating erythroblasts by small amounts of recombinant Tf supplemented with FeIII-EDTA, an iron chelator that allows Tf recycling to take place in cell culture. Importantly, cRBCs produced by iPSC differentiation using the long PSC-RED protocol enucleate at much higher rates than with previous protocols, eliminating one of the impediments to the use of these cells to produce clinically useful cRBCs. The absence of albumin, the reduced amounts of Tf, the improved reproducibility associated with the elimination of all animal components, and the high yield on the RED protocols decrease the cost of production of cultured red blood cells. RED protocols should therefore help to make translational applications of cultured RBCs more economically realistic.

摘要

许多方法已被开发用于体外培养红细胞(cRBCs),但由于生产成本高和去核率低,其转化应用受到阻碍。我们开发了 R6 和 IMT 两种化学成分确定的培养基,并将它们组合成强大的红细胞分化(RED)方案,用于诱导多能干细胞(iPSCs)和外周血单核细胞(MNCs)分化为去核红细胞。RED 方案不需要任何白蛋白或动物成分,所需的转铁蛋白(Tf)比以前少十倍到二十倍,因为铁通过添加少量重组 Tf 和 FeIII-EDTA 来提供给分化的红细胞,FeIII-EDTA 是一种铁螯合剂,允许 Tf 在细胞培养中进行循环利用。重要的是,使用长 PSC-RED 方案从 iPSC 分化产生的 cRBCs 去核率比以前的方案高得多,消除了使用这些细胞生产临床有用的 cRBCs 的一个障碍。RED 方案中白蛋白的缺失、Tf 的减少量、消除所有动物成分带来的更好的重现性以及 RED 方案的高产量降低了培养红细胞的生产成本。因此,RED 方案应该有助于使培养 RBCs 的转化应用更具经济现实性。

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