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成年小鼠表皮角质形成细胞的长期培养

Long-term culture of adult murine epidermal keratinocytes.

作者信息

Yano S, Okochi H

机构信息

Department of Regenerative Medicine, Research Institute, International Medical Centre of Japan, 1-21-1 Toyama, Shinjuku-ku, Tokyo 162-8655, Japan.

出版信息

Br J Dermatol. 2005 Dec;153(6):1101-4. doi: 10.1111/j.1365-2133.2005.06832.x.

Abstract

BACKGROUND

Long-term cultures of epidermal cells from mouse skin have been notoriously difficult to establish.

OBJECTIVES

To develop a modified serum-free medium and technique for long-term culture of adult mouse epidermal keratinocytes.

METHODS

Epidermal cells from trypsin-treated adult mouse dorsal and ventral skin were grown on type I collagen-coated dishes without feeder layers in a serum-free medium supplemented with only 10 ng mL(-1) epidermal growth factor (EGF) and 10(-10) mol L(-1) cholera toxin (CT).

RESULTS

After removing coexisting fibroblasts several times, we were able to obtain almost pure basal epidermal keratinocytes. Our technique supports sustained multiplication of mouse basal keratinocytes for more than 100 population doublings, and they retained the capacity to undergo terminal differentiation when given the appropriate stimulus. The epithelial nature of these cultivated cells was demonstrated both by phase-contrast microscopy and by immunostaining with antikeratin antibodies. EGF and CT, which have been reported to accelerate the cellular growth rate, were essential for successful long-term cultivation during multiple passages.

CONCLUSIONS

Our technique is very simple. It provides a useful and suitable model for investigations of growth, differentiation and skin remodelling in vitro.

摘要

背景

长期培养小鼠皮肤表皮细胞一直以来都极难实现。

目的

开发一种改良的无血清培养基及技术,用于成年小鼠表皮角质形成细胞的长期培养。

方法

将经胰蛋白酶处理的成年小鼠背部和腹部皮肤的表皮细胞,接种于包被有I型胶原蛋白的培养皿上,在无饲养层且仅添加10 ng/mL表皮生长因子(EGF)和10⁻¹⁰ mol/L霍乱毒素(CT)的无血清培养基中培养。

结果

多次去除共存的成纤维细胞后,我们得以获得几乎纯的基底表皮角质形成细胞。我们的技术支持小鼠基底角质形成细胞持续增殖超过100次群体倍增,并且在给予适当刺激时,它们保留了进行终末分化的能力。这些培养细胞的上皮性质通过相差显微镜和抗角蛋白抗体免疫染色得以证实。据报道可加速细胞生长速率的EGF和CT,对于多次传代过程中的成功长期培养至关重要。

结论

我们的技术非常简单。它为体外研究生长、分化和皮肤重塑提供了一个有用且合适的模型。

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