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[人单根毛囊体外培养模型的建立]

[Establishment of an in vitro culture model of single human hair follicle].

作者信息

Ma Li, Wang Jiping, Feng Suyun, Li Yimin, Zhao Kangfeng, Lei Ming

出版信息

Zhonghua Zheng Xing Wai Ke Za Zhi. 2016 Jan;32(1):55-9.

Abstract

OBJECTIVE

To establish an in vitro culture model of single human hair follicle, and observe their morphological and histological changes.

METHODS

Human hair follicles were isolated from the volunteer patients. After dissecting follicles into single, follicles in growth phase were cultured in Williams E without any serum. This experiment included 3 groups: single follicle without sebaceous gland and other surrounding tissue (control group); single follicle with sebaceous gland and without the other surrounding tissue( experiment group A); single follicles with sebaceous gland and the other surrounding tissue (experiment group B). The survival rate, survival time, growth rate, multiplication capacity and apoptosis of cultured follicles and their morphological and histological changes were observed sequentially.

RESULTS

The hair follicles in experiment groups showed a better viability and a higher growth rate than those in control group. And the follicles in group B could keep growing for more than 25 days, which was longer than those in group A. Moreover, the sebaceous gland and the other surrounding tissue in group B showed great induction effect on follicle-cell proliferation and anti-apoptosis.

CONCLUSION

The in vitro culture model of signal human hair follicles (single follicles including epidermis, sebaceous gland and the other surrounding tissue) had optimized internal environment which is similar to in vivo internal environment.

摘要

目的

建立单个人毛囊的体外培养模型,并观察其形态和组织学变化。

方法

从志愿者患者身上分离出人类毛囊。将毛囊分离成单个后,将处于生长期的毛囊在不含任何血清的Williams E培养基中培养。本实验包括3组:无皮脂腺及其他周围组织的单个毛囊(对照组);有皮脂腺但无其他周围组织的单个毛囊(实验组A);有皮脂腺及其他周围组织的单个毛囊(实验组B)。依次观察培养毛囊的存活率、存活时间、生长率、增殖能力和凋亡情况及其形态和组织学变化。

结果

实验组毛囊的活力和生长率均优于对照组。且B组毛囊可保持生长超过25天,长于A组。此外,B组的皮脂腺及其他周围组织对毛囊细胞增殖和抗凋亡表现出很大的诱导作用。

结论

单个人毛囊(包括表皮、皮脂腺及其他周围组织的单个毛囊)的体外培养模型具有优化的内部环境,类似于体内内部环境。

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