| Literature DB >> 32953277 |
Ke Sha1,2,3,4,5, Mengting Chen1,2,3, Fangfen Liu1, San Xu1,2, Ben Wang1, Qinqin Peng1,2, Yiya Zhang1,2, Hongfu Xie1,2,3,4, Ji Li1,2,3,4, Zhili Deng1,2,3,4.
Abstract
Platelet-rich plasma (PRP) has been reported recently as a potential therapeutic approach for alopecia, such as androgenetic alopecia, but the exact mechanisms and effects of specific components of this recipe remain largely unknown. In this study, we identified that platelet factor 4 (PF4), a component of PRP, significantly suppressed human hair follicle growth and restrained the proliferation of human dermal papilla cells (hDPCs). Furthermore, our results showed that PF4 upregulated androgen receptor (AR) in human dermal papilla cells in vitro and via hair follicle organ culture. Among the hair growth-promoting and DP-signature genes investigated, PF4 decreased the expression of Wnt5a, Wnt10b, LEF1, HEY1 and IGF-1, and increased DKK1 expression, but did not affect BMP2 and BMP4 expression. Collectively, Our data demonstrate that PF4 suppresses human hair follicle growth possibly via upregulating androgen receptor signaling and modulating hair growth-associated genes, which provides thought-provoking insights into the application and optimization of PRP in treating hair loss. ©2020 Sha et al.Entities:
Keywords: Androgen receptor; Dermal papilla cells; Hair follicle; Hair loss; Platelet factor 4; Platelet-rich plasma
Year: 2020 PMID: 32953277 PMCID: PMC7476492 DOI: 10.7717/peerj.9867
Source DB: PubMed Journal: PeerJ ISSN: 2167-8359 Impact factor: 2.984
Figure 1PF4 suppresses the elongation of hair shaft in cultured human hair follicles.
Isolated human scalp hair follicles were cultured for 8 days in the presence of different doses of PF4. (A) Typical pictures of the hairs at day 0, 2, 4, 6, 8. (B) Data are presented as the percentage of growth (relative to day 0) of the hair follicles treated with PF4 (0, 50, 100 ng/ml). (C) immunostaining of Ki67 in hair follicles treated with PF4 (0, 50, 100 ng/ml) for 8 days. (D) Percentage of Ki67 positive cell in ORS of hair follicles treated with PF4. Data are reported as mean + SEM. Student’s t-test was used to compare data. * P < 0.05,** P < 0.01, comparation between 0 and 50 ng/ml. # P < 0.05, ## P < 0.01, comparation between 0 and 100 ng/ml. Scale bar = 1 mm.
Figure 2PF4 inhibits the proliferation of human DPCs.
(A) Morphology of human DPCs treated with PF4 (0, 50, 100 ng/ml) at indicated days. (B) Human DPCs (1 ×104cells) were plated in 12-well dishes and cultured in the presence of different concentrations of PF4 (0–100 ng/ml) for 8 days. Growth curves indicate the mean of three independent experiments (±SEM). (C) immunostaining of Ki67 in DPCs treated with PF4 (0, 50, 100 ng/ml) for 2 days. (D) Percentage of Ki67 positive DPCs. Student’s t-test was used to compare data. * P < 0.05,** P < 0.01, comparation between 0 and 50 ng/ml. # P < 0.05, ## P < 0.01, comparation between 0 and 100 ng/ml.
Figure 3PF4 increases AR expression in human DPCs.
(A) Effects of PF4 on AR mRNA expression in human DPCs cultured for 24 h. Data are reported as mean + SEM. Student’s t-test was used to compare data. ** P < 0.01. (B) Immunoblotting analysis of AR expression in hDPCs treated with PF4 for 48 h. Each experiment was repeated at least three times, and the typical blot was presented. Tubulin was used as loading control. (C) Immunostaining of AR in cultured human hair follicles treated with PF4 for 8 days. DP indicates dermal papilla; HM denotes hair matrix. DAPI staining (blue) indicates nuclear localization. Scale bar, 50 µm.
Figure 4PF4 decreases the hair growth-promoting properties of hDPCs.
(A–H) Effects of PF4 on hair growth-promoting and DP signature genes (Wnt5a, Wnt10b, DKK1, LEF1, HEY1, IGF-1, BMP2 and BMP4) mRNA expression in human DPCs cultured for 24 h. (I–K) Effects of PF4 on protein expression of Wnt5a, IGF-1 and BMP2 in human DPCs cultured for 48 h. Data are reported as mean + SEM. Student’s t-test was used to compare data. * P < 0.05, ** P < 0.01. “ns” indicates no significant difference.