Cao Wenluo, Li Lingna, Mii Sumiyuki, Amoh Yasuyuki, Liu Fang, Hoffman Robert M
AntiCancer Inc., San Diego, CA, United States of America; Department of Surgery, University of California San Diego, San Diego, CA, United States of America; Department of Anatomy, Second Military Medical University, Shanghai, China.
AntiCancer Inc., San Diego, CA, United States of America.
PLoS One. 2015 Aug 5;10(8):e0133475. doi: 10.1371/journal.pone.0133475. eCollection 2015.
We have previously demonstrated that hair follicles contain nestin-expressing pluripotent stem cells that can effect nerve and spinal cord repair upon transplantation. In the present study, isolated whisker follicles from nestin-driven green fluorescent protein (ND-GFP) mice were histocultured on Gelfoam for 3 weeks for the purpose of transplantation to the spinal cord to heal an induced injury. The hair shaft was cut off from Gelfoam-histocultured whisker follicles, and the remaining part of the whisker follicles containing GFP-nestin expressing pluripotent stem cells were transplanted into the injured spinal cord of nude mice, along with the Gelfoam. After 90 days, the mice were sacrificed and the spinal cord lesion was observed to have healed. ND-GFP expression was intense at the healed area of the spinal cord, as observed by fluorescence microscopy, demonstrating that the hair follicle stem cells were involved in healing the spinal cord. Unexpectedly, the transplanted whisker follicles sprouted out remarkably long hair shafts in the spinal cord during the 90 days after transplantation of Gelfoam whisker histocultures to the injured spine. The pigmented hair fibers, grown from the transplanted whisker histocultures, curved and enclosed the spinal cord. The unanticipated results demonstrate the great potential of hair growth after transplantation of Gelfoam hair follicle histocultures, even at an ectopic site.
我们之前已经证明,毛囊中含有表达巢蛋白的多能干细胞,移植后可促进神经和脊髓修复。在本研究中,从巢蛋白驱动的绿色荧光蛋白(ND-GFP)小鼠中分离出的须毛囊在明胶海绵上进行组织培养3周,以便移植到脊髓以修复诱导损伤。将毛干从明胶海绵组织培养的须毛囊上切断,将含有表达GFP-巢蛋白的多能干细胞的须毛囊剩余部分与明胶海绵一起移植到裸鼠的损伤脊髓中。90天后,处死小鼠并观察到脊髓损伤已愈合。通过荧光显微镜观察,在脊髓的愈合区域ND-GFP表达强烈,表明毛囊干细胞参与了脊髓的愈合。出乎意料的是,在将明胶海绵须毛囊组织培养物移植到损伤脊柱后的90天内,移植的须毛囊在脊髓中长出了非常长的毛干。从移植的须毛囊组织培养物中长出的有色毛发纤维弯曲并包裹了脊髓。这些意外结果表明,即使在异位部位,明胶海绵毛囊组织培养物移植后毛发生长的潜力巨大。