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小鼠真皮细胞对毛发生长调节的影响取决于新生小鼠的细胞数量和出生后年龄。

Effects of murine dermal cells on the regulation of hair growth is dependent on the cell number and post-natal age of newborn mice.

作者信息

Park Kyoung-Chan, Choi Hae-Ryung, Na Jung-Im, Cho Hyun-Joo, Nam Kyung-Mi, Choi Jee-Woong, Na Se-Young, Huh Chang-Hun

机构信息

Department of Dermatology, Seoul National University College of Medicine, Seoul, Seoul National University Bundang Hospital, Seongnam, Korea.

出版信息

Ann Dermatol. 2012 Feb;24(1):94-8. doi: 10.5021/ad.2012.24.1.94. Epub 2012 Feb 2.

Abstract

Dermal cells from neonatal mice can initiate the formation of hair follicles (HFs) when combined with adult mouse epidermal cells and transplanted subcutaneously into athymic mice. In the present study, the effects of dermal cells on HF formation were tested in terms of total cell number and the time course of cell harvest. Results demonstrated that the number of dermal cells is critical to the formation of HF. Furthermore, hair forming ability is rapidly decreasing as the neonatal mice age. To examine potential differences in gene expression, cDNA array was performed. Results demonstrate that numerous molecules which are directly involved in receptor and signaling correlated with decreased hair inductivity in early time points after delivery. It is reported that bone morphogenic protein (BMP)-6 and Wnt3a treatment increased hair inductivity of dermal papilla cells. But in our study, no changes were observed in the expression levels of BMP-6 and Wnt3a. However, several Wnt related genes demonstrate increased or decreased expression levels. Thus, our results suggest that co-ordinated regulation of these molecules will be important in hair neogenesis within our model system.

摘要

将新生小鼠的真皮细胞与成年小鼠的表皮细胞结合,并皮下移植到无胸腺小鼠体内时,可启动毛囊(HFs)的形成。在本研究中,从总细胞数和细胞收获的时间进程方面测试了真皮细胞对毛囊形成的影响。结果表明,真皮细胞的数量对毛囊的形成至关重要。此外,随着新生小鼠年龄的增长,毛发形成能力迅速下降。为了检测基因表达的潜在差异,进行了cDNA阵列分析。结果表明,在出生后的早期时间点,许多直接参与受体和信号传导的分子与毛发诱导能力下降相关。据报道,骨形态发生蛋白(BMP)-6和Wnt3a处理可提高真皮乳头细胞的毛发诱导能力。但在我们的研究中,未观察到BMP-6和Wnt3a表达水平的变化。然而,几个与Wnt相关的基因显示出表达水平的增加或降低。因此,我们的结果表明,在我们的模型系统中,这些分子的协调调节对毛发新生将是重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9956/3283862/0179478f9799/ad-24-94-g001.jpg

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