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将传统人类多能干细胞化学重编程为具有增强多谱系分化潜能的类原始态细胞

Chemical Reversion of Conventional Human Pluripotent Stem Cells to a Naïve-like State with Improved Multilineage Differentiation Potency.

作者信息

Park Tea Soon, Zimmerlin Ludovic, Evans-Moses Rebecca, Zambidis Elias T

机构信息

Department of Oncology, Division of Pediatric Oncology and Institute for Cell Engineering, Johns Hopkins School of Medicine.

Department of Oncology, Division of Pediatric Oncology and Institute for Cell Engineering, Johns Hopkins School of Medicine;

出版信息

J Vis Exp. 2018 Jun 10(136):57921. doi: 10.3791/57921.

Abstract

Naïve human pluripotent stem cells (N-hPSC) with improved functionality may have a wide impact in regenerative medicine. The goal of this protocol is to efficiently revert lineage-primed, conventional human pluripotent stem cells (hPSC) maintained on either feeder-free or feeder-dependent conditions to a naïve-like pluripotency with improved functionality. This chemical naïve reversion method employs the classical leukemia inhibitory factor (LIF), GSK3β, and MEK/ERK inhibition cocktail (LIF-2i), supplemented with only a tankyrase inhibitor XAV939 (LIF-3i). LIF-3i reverts conventional hPSC to a stable pluripotent state adopting biochemical, transcriptional, and epigenetic features of the human pre-implantation epiblast. This LIF-3i method requires minimal cell culture manipulation and is highly reproducible in a broad repertoire of human embryonic stem cell (hESC) and transgene-free human induced pluripotent stem cell (hiPSC) lines. The LIF-3i method does not require a re-priming step prior to the differentiation; N-hPSC can be differentiated directly with extremely high efficiencies and maintain karyotypic and epigenomic stabilities (including at imprinted loci). To increase the universality of the method, conventional hPSC are first cultured in the LIF-3i cocktail supplemented with two additional small molecules that potentiate protein kinase A (forskolin) and sonic hedgehog (sHH) (purmorphamine) signaling (LIF-5i). This brief LIF-5i adaptation step significantly enhances the initial clonal expansion of conventional hPSC and permits them to be subsequently naïve-reverted with LIF-3i alone in bulk quantities, thus obviating the need for picking/subcloning rare N-hPSC colonies later. LIF-5i-stabilized hPSCs are subsequently maintained in LIF-3i alone without the need of anti-apoptotic molecules. Most importantly, LIF-3i reversion markedly improves the functional pluripotency of a broad repertoire of conventional hPSC by decreasing their lineage-primed gene expression and erasing the interline variability of directed differentiation commonly observed amongst independent hPSC lines. Representative characterizations of LIF-3i-reverted N-hPSC are provided, and experimental strategies for functional comparisons of isogenic hPSC in lineage-primed vs. naïve-like states are outlined.

摘要

功能得到改善的未分化人类多能干细胞(N-hPSC)可能会对再生医学产生广泛影响。本方案的目标是有效地将在无饲养层或有饲养层条件下维持的谱系预分化、传统人类多能干细胞(hPSC)逆转为具有改善功能的类似未分化多能性状态。这种化学性未分化逆转方法采用经典的白血病抑制因子(LIF)、糖原合成酶激酶3β(GSK3β)和丝裂原活化蛋白激酶/细胞外信号调节激酶(MEK/ERK)抑制鸡尾酒(LIF-2i),并仅添加一种端锚聚合酶抑制剂XAV939(LIF-3i)。LIF-3i将传统hPSC逆转为一种稳定的多能状态,呈现人类植入前上胚层的生化、转录和表观遗传特征。这种LIF-3i方法所需的细胞培养操作极少,并且在广泛的人类胚胎干细胞(hESC)和无转基因人类诱导多能干细胞(hiPSC)系中具有高度可重复性。LIF-3i方法在分化前不需要重新预分化步骤;N-hPSC可以直接以极高的效率进行分化,并维持核型和表观基因组稳定性(包括印记位点)。为了提高该方法的通用性,首先将传统hPSC在LIF-3i鸡尾酒中培养,并添加另外两种增强蛋白激酶A(福斯高林)和音猬因子(sHH)(嘌呤胺)信号传导的小分子(LIF-5i)。这个简短的LIF-5i适应步骤显著增强了传统hPSC的初始克隆扩增,并使它们随后能够仅用LIF-3i大量逆转为未分化状态,从而无需随后挑选/亚克隆罕见的N-hPSC集落。LIF-5i稳定化的hPSC随后仅在LIF-3i中维持,无需抗凋亡分子。最重要的是,LIF-3i逆转通过降低其谱系预分化基因表达并消除在独立hPSC系中常见的定向分化的系间变异性显著改善了广泛的传统hPSC的功能多能性。提供了LIF-3i逆转的N-hPSC的代表性特征,并概述了在谱系预分化与类似未分化状态下对同基因hPSC进行功能比较的实验策略。

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