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Prolonged Three-Dimensional Co-Delivery of Yamanaka Factors for Cell Reprogramming

机译:Yamanaka因子在细胞重编程中的三维三维共传递

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Reprogramming somatic cells into a pluripotent state has been widely investigated in two-dimensional (2D) systems but not described in the more biologically faithful three-dimensional (3D) scaffolds. Here, we devise a 3D porous tissue engineering scaffold that could achieve successful and efficient induction of pluripotency. To construct this 3D scaffold, nonviral hybrid nanoparticles were fabricated beforehand by employing calcium phosphate and cationized Pleurotus eryngii polysaccharide to codeliver plasmids OCT4, SOX2, KLF4,and C-MYC (pOSKM). These hybrid nanoparticles were then loaded into a 3D porous collagen scaffold to obtain the so-called pOSKM-activated 3D scaffold. This 3D scaffold could reprogram human umbilical cord mesenchymal stem cells (HUMSCs) into a pluripotent state, generating 3D cell spheres which showed positive expression of pluripotency markers in the 3D scaffolds and tightly packed colonies when transferred to 2D feeder layers. Besides sharing similar morphology, epigenetic modification, and expression of pluripotency genes with the embryonic stem cells, the 3D system-generated colonies could also be expanded on feeder layers for more than 20 passages, indicating the successful establishment of stable induced pluripotent stem cell (iPSC) lines. Our findings represent a first employment of porous 3D scaffolds to achieve successful reprogramming via a one-time transfection, offering a safe, simple, and effective alternative strategy for iPSC generation.
机译:在二维(2D)系统中已经广泛研究了将体细胞重编程为多能状态,但在生物学上更忠实的三维(3D)支架中未进行描述。在这里,我们设计了一种3D多孔组织工程支架,可以成功成功地诱导多能性。要构建此3D支架,可通过使用磷酸钙和阳离子化的杏鲍菇多糖预先编码肝素OCT4,SOX2,KLF4和C-MYC(pOSKM)来制备非病毒杂合纳米颗粒。然后将这些杂化的纳米颗粒装载到3D多孔胶原支架中,以获得所谓的pOSKM激活的3D支架。这种3D支架可以将人脐带间充质干细胞(HUMSC)重新编程为多能状态,生成3D细胞球,当转移到2D饲养层时,该3D细胞球在3D支架中显示出多能性标志物的阳性表达,并且菌落紧密堆积。除了与胚胎干细胞共享相似的形态,表观遗传修饰和多能性基因表达外,还可以在饲养层上扩展3D系统生成的菌落20多个传代,这表明成功建立了稳定的诱导性多能干细胞(iPSC) )行。我们的发现代表了首次使用多孔3D支架通过一次转染来成功完成重编程,从而为iPSC生成提供了安全,简单且有效的替代策略。

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