在体外和体内通过确定的培养基将体细胞重编程为具有神经元特征的细胞

IF 4 Q2 CELL & TISSUE ENGINEERING
Songwei He , Yiping Guo , Yixin Zhang , Yuan Li , Chengqian Feng , Xiang Li , Lilong Lin , Lin Guo , Haitao Wang , Chunhua Liu , Yi Zheng , Chuanming Luo , Qiang Liu , Fuhui Wang , Hao Sun , Lining Liang , Lingyu Li , Huanxing Su , Jiekai Chen , Duanqing Pei , Hui Zheng
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引用次数: 15

摘要

目前,体细胞向神经元的直接转化需要病毒介导的至少一种转录因子的传递或几种小分子化合物的组合。转录因子的传递可能会影响基因组的稳定性,而小分子化合物在体内应用时可能需要更多的评估。因此,一种仅含有常规生长因子或细胞培养添加剂的培养基是诱导神经元转分化的理想培养基。结果在此,我们报道了一种由碱性成纤维细胞生长因子(bFGF)、N2补充物、白血病抑制因子、维生素C (Vc)和β-巯基乙醇(βMe)组成的培养基(5C)诱导体细胞直接转化为具有神经元特征的细胞。应用5C培养基将小鼠胚胎成纤维细胞(MEFs)转化为TuJ+神经元样细胞,并将其移植到小鼠脑内后能够存活。同样的5C培养液可以在体外将大鼠原代星形胶质细胞转化为具有成熟电生理特征的神经元样细胞,并在体内注入小鼠脑后促进脑损伤的恢复,可能是通过诱导类似的转化。至关重要的是,5C培养基还可以在几种人类细胞类型中诱导神经元特征。综上所述,5C培养基不仅提供了一种无需病毒转染的体外获得具有神经元特征的细胞的方法,而且可能有助于在体内产生神经元,用于神经退行性疾病的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reprogramming somatic cells to cells with neuronal characteristics by defined medium both in vitro and in vivo

Background

Currently, direct conversion from somatic cells to neurons requires virus-mediated delivery of at least one transcriptional factor or a combination of several small-molecule compounds. Delivery of transcriptional factors may affect genome stability, while small-molecule compounds may require more evaluations when applied in vivo. Thus, a defined medium with only conventional growth factors or additives for cell culture is desirable for inducing neuronal trans-differentiation.

Results

Here, we report that a defined medium (5C) consisting of basic fibroblast growth factor (bFGF), N2 supplement, leukemia inhibitory factor, vitamin C (Vc), and β-mercaptoethanol (βMe) induces the direct conversion of somatic cells to cells with neuronal characteristics. Application of 5C medium converted mouse embryonic fibroblasts (MEFs) into TuJ+ neuronal-like cells, which were capable of survival after being transplanted into the mouse brain. The same 5C medium could convert primary rat astrocytes into neuronal-like cells with mature electrophysiology characteristics in vitro and facilitated the recovery of brain injury, possibly by inducing similar conversions, when infused into the mouse brain in vivo. Crucially, 5C medium could also induce neuronal characteristics in several human cell types.

Conclusions

In summary, this 5C medium not only provides a means to derive cells with neuronal characteristics without viral transfection in vitro but might also be useful to produce neurons in vivo for neurodegenerative disease treatment.

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来源期刊
Cell Regeneration
Cell Regeneration Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.80
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Cell Regeneration aims to provide a worldwide platform for researches on stem cells and regenerative biology to develop basic science and to foster its clinical translation in medicine. Cell Regeneration welcomes reports on novel discoveries, theories, methods, technologies, and products in the field of stem cells and regenerative research, the journal is interested, but not limited to the following topics: ◎ Embryonic stem cells ◎ Induced pluripotent stem cells ◎ Tissue-specific stem cells ◎ Tissue or organ regeneration ◎ Methodology ◎ Biomaterials and regeneration ◎ Clinical translation or application in medicine
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