Xiao Shun-e, Hu Zhi-qi, Feng Chuan-bo, Liu Ge, Miao Yong
Department of Plastic Surgery, Nanfang Hospital, Southern Medical University, Guangzhou 510515, China.
Zhonghua Zheng Xing Wai Ke Za Zhi. 2012 May;28(3):208-12.
To construct a convenient, reliable and visual model of hair follicle development to test the hair-inductive potential of follicular cells and investigate the molecular mechanism regulating hair follicle morphogenesis and cycling.
An open chamber was transplanted into the nude mice dorsal skin, dermal and epidermal cells isolated from newborn C57BL/6 mice skin were mixed at a specific ratio and then injected into the chamber together, 1 week after transplantation, the chamber was removed, and then, hair formation and regeneration after hair plucking was observed.
1 week after cells implantation, the wound was moist without apparent contraction and among that pink and translucent tissue was formed. 2 weeks after implantation, the wound healed completely. 3 weeks after implantation, black hair grew from the skin was observed. 4 weeks after implantation, thick and black hair grew from the skin vertically. Completely developed structure of hair follicle was observed with paraffin section and HE staining. 1 week after plucking, new hair had regrown. The ratio of cell component was varied, whereas the other component was fixed at 1 x 10(7) cells. When the number of epidermal cells was reduced to 1 x 10(6) cells, the efficiency of hair follicle reconstitution was mostly unchanged. On the other hand, the density of newly formed hair was diminished considerably by reducing the number of dermal cells to 5 x 10(6) cells or lower. Neither epidermal cells nor dermal cells transplanted alone formed hair follicle.
Newborn mice skin cells transplanted by chamber method can construct a complete model of hair follicle development, which can be used to test the hair-inductive potential of follicular cells and investigate the molecular mechanism regulating hair follicle morphogenesis and cycling.
构建一种方便、可靠且可视化的毛囊发育模型,以测试毛囊细胞的毛发诱导潜能,并研究调节毛囊形态发生和周期的分子机制。
将一个开放式腔室移植到裸鼠背部皮肤,从新生C57BL/6小鼠皮肤分离的真皮和表皮细胞按特定比例混合后一起注入腔室,移植1周后取出腔室,然后观察拔毛后的毛发形成和再生情况。
细胞植入1周后,伤口湿润,无明显收缩,其中形成了粉红色半透明组织。植入2周后,伤口完全愈合。植入3周后,观察到皮肤长出黑色毛发。植入4周后,皮肤垂直长出浓密黑色毛发。通过石蜡切片和HE染色观察到毛囊结构完全发育。拔毛1周后,新毛发已重新生长。细胞成分比例不同,而其他成分固定为1×10(7)个细胞。当表皮细胞数量减少到1×10(6)个细胞时,毛囊重建效率基本不变。另一方面,将真皮细胞数量减少到5×10(6)个细胞或更低时,新形成毛发的密度显著降低。单独移植表皮细胞或真皮细胞均未形成毛囊。
通过腔室法移植新生小鼠皮肤细胞可构建完整的毛囊发育模型,可用于测试毛囊细胞的毛发诱导潜能,并研究调节毛囊形态发生和周期的分子机制。