Surgical Science Department, Plastic and Reconstructive Surgery Unit, University of "Tor Vergata", 00133 Rome, Italy.
Institute of Dermatology, F. Policlinico Gemelli IRCSS, Università Cattolica del Sacro Cuore, 00168 Rome, Italy.
Cells. 2019 May 16;8(5):466. doi: 10.3390/cells8050466.
The use of stem cells has been reported to improve hair regrowth in several therapeutic strategies, including reversing the pathological mechanisms, that contribute to hair loss, regeneration of hair follicles, or creating hair using the tissue-engineering approach. Although various promising stem cell approaches are progressing via pre-clinical models to clinical trials, intraoperative stem cell treatments with a one-step procedure offer a quicker result by incorporating an autologous cell source without manipulation, which may be injected by surgeons through a well-established clinical practice. Many authors have concentrated on adipose-derived stromal vascular cells due to their ability to separate into numerous cell genealogies, platelet-rich plasma for its ability to enhance cell multiplication and neo-angiogenesis, as well as human follicle mesenchymal stem cells. In this paper, the significant improvements in intraoperative stem cell approaches, from in vivo models to clinical investigations, are reviewed. The potential regenerative instruments and functions of various cell populaces in the hair regrowth process are discussed. The addition of Wnt signaling in dermal papilla cells is considered a key factor in stimulating hair growth. Mesenchymal stem cell-derived signaling and growth factors obtained by platelets influence hair growth through cellular proliferation to prolong the anagen phase (FGF-7), induce cell growth (ERK activation), stimulate hair follicle development (β-catenin), and suppress apoptotic cues (Bcl-2 release and Akt activation).
干细胞的应用已被报道可通过多种治疗策略改善头发生长,包括逆转导致脱发的病理机制、毛囊再生或采用组织工程方法生成头发。尽管各种有前途的干细胞方法正在通过临床前模型向临床试验推进,但通过一步程序进行术中干细胞治疗可通过整合无需操作的自体细胞源更快地获得结果,这可以通过已建立的临床实践由外科医生注射。许多作者因脂肪来源的基质血管细胞能够分离为多种细胞谱系、富含血小板的血浆能够增强细胞增殖和新血管生成,以及人毛囊间充质干细胞而集中研究这些细胞。本文综述了术中干细胞方法从体内模型到临床研究的重要进展。讨论了各种细胞群在头发生长过程中的潜在再生作用和功能。真皮乳头细胞中的 Wnt 信号被认为是刺激头发生长的关键因素。血小板获得的间充质干细胞衍生的信号和生长因子通过细胞增殖延长生长期(FGF-7)、诱导细胞生长(ERK 激活)、刺激毛囊发育(β-catenin)和抑制凋亡信号(Bcl-2 释放和 Akt 激活)来影响头发生长。