4.4 Article

Expression and localization of VEGFR-2 in hair follicles during induced hair growth in mice

期刊

ARCHIVES OF DERMATOLOGICAL RESEARCH
卷 310, 期 7, 页码 591-598

出版社

SPRINGER
DOI: 10.1007/s00403-018-1843-7

关键词

VEGFR-2; Hair cycling; Mouse

资金

  1. Zhejiang Provincial Natural Science Foundation of China [LY14H110002, LZ17H110001]
  2. CMA-L'OREAL CHINA HAIR GRANT [H2014-005, H2010-06]
  3. National Natural Science Foundation of China [81472900, 81773350, 81602776]

向作者/读者索取更多资源

Recently, VEGFR-2 has been detected not only in vascular and lymphatic endothelial cells but also in some non-vascular endothelial cells, particularly human hair follicles, sebaceous glands, and sweat glands. In addition, VEGFR-2 has been confirmed to play direct roles in hair follicle keratinocyte regulation beyond simply angiogenesis. To elucidate whether VEGFR-2 activation plays a role in hair follicle cycling regulation, immunofluorescence of VEGFR-2 expression was performed during hair cycling of the dorsum of the mouse induced by hair plucking. We observed that staining for VEGFR-2 in hair follicles during anagen II and IV was much stronger than during anagen VI, catagen and telogen. During anagen II, intense staining for VEGFR-2 was observed on the keratinocyte strands of the hair follicle. Subsequently, we detected intense staining for VEGFR-2 in the ORS, IRS and hair bulb during anagen IV. Moderate staining for VEGFR-2 was detected in the ORS and hair bulb, but staining was most intense in IRS during anagen VI. During catagen, staining for VEGFR-2 in the IRS remained intense, while staining in the ORS and hair bulb was significantly weakened and was negative in the dermal papilla. During telogen, we detected VEGFR-2 in germ cells, cap, and club hair adjoining the epidermis. In conclusion, VEGFR-2 was expressed on the hair follicles of the dorsum of the mouse and varied in expression on the mouse hair follicles during hair cycling, suggesting that VEGFR-2 may exert roles in hair cycle regulation in hair follicles on the dorsum of mice.

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