首页> 美国卫生研究院文献>Cellular Reprogramming >Induced Pluripotent Stem Cell Reprogramming by Integration-Free Sendai Virus Vectors from Peripheral Blood of Patients with Craniometaphyseal Dysplasia
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Induced Pluripotent Stem Cell Reprogramming by Integration-Free Sendai Virus Vectors from Peripheral Blood of Patients with Craniometaphyseal Dysplasia

机译:颅脑干Dy发育不良患者外周血无整合型仙台病毒载体诱导多能干细胞重编程

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摘要

Studies of rare genetic bone disorders are often limited due to unavailability of tissue specimens and the lack of animal models fully replicating phenotypic features. Craniometaphyseal dysplasia (CMD) is a rare monogenic disorder characterized by hyperostosis of craniofacial bones concurrent with abnormal shape of long bones. Mutations for autosomal dominant CMD have been identified in the ANK gene (ANKH). Here we describe a simple and efficient method to reprogram adherent cells cultured from peripheral blood to human induced pluripotent stem cells (hiPSCs) from eight CMD patients and five healthy controls. Peripheral blood mononuclear cells (PBMCs) were separated from 5–7 mL of whole blood by Ficoll gradient, expanded in the presence of cytokines and transduced with Sendai virus (SeV) vectors encoding OCT3/4, SOX2, KLF4, and c-MYC. SeV vector, a cytoplasmic RNA vector, is lost from host cells after propagation for 10–13 passages. These hiPSCs express stem cell markers, have normal karyotypes, and are capable of forming embryoid bodies in vitro as well as teratomas in vivo. Further differentiation of these patient-specific iPSCs into osteoblasts and osteoclasts can provide a useful tool to study the effects CMD mutations on bone, and this approach can be applied for disease modeling of other rare genetic musculoskeletal disorders.
机译:由于组织标本的缺乏和缺乏能够完全复制表型特征的动物模型,对罕见遗传性骨疾病的研究通常受到限制。颅骨phy骨发育不良(CMD)是一种罕见的单基因疾病,其特征是颅面骨骨质增生,同时长骨形状异常。在ANK基因(ANKH)中已鉴定出常染色体显性CMD突变。在这里,我们描述了一种简单有效的方法,可将八种CMD患者和五名健康对照者从外周血培养的粘附细胞重编程为人诱导的多能干细胞(hiPSC)。通过Ficoll梯度将外周血单核细胞(PBMC)与5-7 mLmL全血分离,在存在细胞因子的情况下扩增,并用编码OCT3 / 4,SOX2,KLF4和c-MYC的仙台病毒(SeV)载体转导。 SeV载体是一种细胞质RNA载体,在传播10-13代后会从宿主细胞中丢失。这些hiPSC表达干细胞标记,具有正常的核型,并且能够在体外以及体内形成畸胎瘤。将这些患者特异性iPSC进一步分化为成骨细胞和破骨细胞,可以提供有用的工具来研究CMD突变对骨骼的影响,并且该方法可以用于其他罕见遗传性肌肉骨骼疾病的疾病建模。

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