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具有髓鞘形成能力的条件性永生化小鼠雪旺细胞。

Myelination competent conditionally immortalized mouse Schwann cells.

作者信息

Saavedra José T, Wolterman Ruud A, Baas Frank, ten Asbroek Anneloor L M A

机构信息

Neurogenetics Laboratory, Academic Medical Center, Amsterdam, The Netherlands.

出版信息

J Neurosci Methods. 2008 Sep 15;174(1):25-30. doi: 10.1016/j.jneumeth.2008.06.029. Epub 2008 Jul 6.

Abstract

Numerous mouse myelin mutants are available to analyze the biology of the peripheral nervous system related to health and disease in vivo. However, robust in vitro biochemical characterizations of players in peripheral nerve processes are still not possible due to the limited growth capacities of Schwann cells. In order to generate cell lines from peripheral nerves that are amenable to experimental manipulation, we have isolated Schwann cells from transgenic mice (H-2Kb-tsA58) carrying the temperature sensitive SV40 large T oncogene under the control of the interferon gamma (IFNgamma) H-2Kb promoter. These cells are immortalized at 33 degrees C when the SV40 large T antigen has a stable conformation. At the non-permissive temperature of 37 degrees C and in the absence of IFNgamma, the growth rate of the cultures reduces and typical Schwann cell markers such as p75(NGFR) become upregulated. The conditionally immortalized Schwann cells allow genetic manipulation as demonstrated here by the generation of a stable eGFP expressing cell line. They regain their characteristic non-immortalized properties at non-permissive temperature and differentiate to myelin-forming cells when seeded on dorsal root ganglia neurons. The Schwann cell lines derived are valuable tools for in vitro studies involving demyelinating diseases.

摘要

有许多小鼠髓磷脂突变体可用于在体内分析与健康和疾病相关的外周神经系统生物学。然而,由于雪旺细胞的生长能力有限,目前仍无法对外周神经过程中的相关因子进行强大的体外生化特性分析。为了从外周神经中生成适合实验操作的细胞系,我们从转基因小鼠(H-2Kb-tsA58)中分离出雪旺细胞,该小鼠在干扰素γ(IFNγ)H-2Kb启动子的控制下携带温度敏感型SV40大T癌基因。当SV40大T抗原具有稳定构象时,这些细胞在33摄氏度下永生化。在37摄氏度的非允许温度下且不存在IFNγ时,培养物的生长速率降低,并且典型的雪旺细胞标志物如p75(NGFR)上调。如这里通过生成稳定表达eGFP的细胞系所证明的,条件永生化的雪旺细胞允许进行基因操作。它们在非允许温度下恢复其特征性的非永生化特性,并在接种到背根神经节神经元上时分化为形成髓磷脂的细胞。所衍生的雪旺细胞系是用于涉及脱髓鞘疾病的体外研究的有价值工具。

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