Balance between fibroblast growth factor 10 and secreted frizzled-relate protein-1 controls the development of hair follicle by competitively regulating beta-catenin signaling
文献类型: 外文期刊
第一作者: Zhang, Haihua
作者: Zhang, Haihua;Wang, Shiyong;Si, Huazhe;Li, Guangyu;Zhang, Haihua;Nan, Weixiao
作者机构:
关键词: Dermal papilla; Fibroblast growth factor 10; Hair cycle; Our root sheath; Secreted frizzled-relate protein-1
期刊名称:BIOMEDICINE & PHARMACOTHERAPY ( 影响因子:6.529; 五年影响因子:5.979 )
ISSN: 0753-3322
年卷期: 2018 年 103 卷
页码:
收录情况: SCI
摘要: Growth of hairs depends on the regular development of hair follicles which are hypothesized to be regulated by fibroblast growth factor 10 (FGF10) and secreted frizzled-relate protein-1 (sFRP1). In the current study, the effect of FGF10 or sFRP1 on hair follicle cells was assessed and the possible mechanism mediating the interaction between FGF10 and sFRP1 in hair follicle cells was explored. Out root sheath (ORS) and dermal papilla (DP) cells were isolated from mink skin tissues and subjected to administrations of FGF10 (50 ng/ml) or sFRP1 (10 ng/ml). Then proliferation, cell cycle distribution, and migration potentials of both cell types were detected. Moreover, the nuclear translocation of beta-catenin was determined. The results showed that the administration of FGF10 increased cell proliferation and migration potential in both cell types, which was associated with the up-regulated nuclear level of beta-catenin. To the contrary, the administration of sFRP1 decreased cell proliferation and migration potentials while induced the G1 cell cycle arrest in both cell types by inhibiting nuclear translocation of beta-catenin. Compared with the sole administrations, the co-treatment of FGF10 and sFRP1 had a medium effect on cell proliferation, cell cycle distribution, cell migration, and nuclear beta-catenin level, representing an antagonistic interaction between the two factors, which was exerted by competitively regulating beta-catenin pathway. Conclusively, the cycle of hair follicles was promoted by FGF10 while blocked by sFRP1 and the interplay between the two factors controlled the development of hair follicles by competitively regulating beta-catenin signaling.
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