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毛囊相关多能(HAP)干细胞的冷冻保存维持分化和毛发生长潜能。

Cryopreservation of Hair-Follicle Associated Pluripotent (HAP) Stem Cells Maintains Differentiation and Hair-Growth Potential.

作者信息

Hoffman Robert M, Kajiura Satoshi, Cao Wenluo, Liu Fang, Amoh Yasuyuki

机构信息

AntiCancer, Inc, 7917 Ostrow St, San Diego, CA, 92111, USA.

Department of Surgery, University of California, San Diego, CA, USA.

出版信息

Adv Exp Med Biol. 2016;951:191-198. doi: 10.1007/978-3-319-45457-3_16.

Abstract

Hair follicles contain nestin-expressing pluripotent stem cells which originate above the bulge area of the follicle, below the sebaceous gland. We have termed these cells hair follicle-associated pluripotent (HAP) stem cells. We have established efficient cryopreservation methods of the hair follicle that maintain the pluripotency of HAP stem cells as well as hair growth. We cryopreserved the whole hair follicle by slow-rate cooling in TC-Protector medium or in DMSO-containing medium and storage in liquid nitrogen or at -80 °C. After thawing and culture of the cryopreserved whisker follicles, growing HAP stem cells formed hair spheres. The hair spheres contained cells that differentiated to neurons, glial cells, and other cell types. The hair spheres derived from slow-cooling cryopreserved hair follicles were as pluripotent as hair spheres from fresh hair follicles. We have also previously demonstrated that cryopreserved mouse whisker hair follicles maintain their hair-growth potential. DMSO better cryopreserved mouse whisker follicles compared to glycerol. DMSO-cryopreserved hair follicles also maintained the HAP stem cells, evidenced by P75 expression. Subcutaneous transplantation of DMSO-cryopreserved hair follicles in nude mice resulted in extensive hair fiber growth over 8 weeks, indicating the functional recovery of hair-shaft growth of cryopreserved hair follicles. HAP stem cells can be used for nerve and spinal-cord repair. This biobanking of hair follicles can allow each patient the potential for their own stem cell use for regenerative medicine or hair transplantation.

摘要

毛囊中含有表达巢蛋白的多能干细胞,这些干细胞起源于毛囊皮脂腺下方的隆突区上方。我们将这些细胞称为毛囊相关多能(HAP)干细胞。我们已经建立了有效的毛囊冷冻保存方法,该方法既能维持HAP干细胞的多能性,又能保持毛发生长。我们通过在TC-保护剂培养基或含二甲亚砜(DMSO)的培养基中缓慢降温,然后在液氮或-80°C下储存,对整个毛囊进行冷冻保存。对冷冻保存的须毛囊进行解冻和培养后,生长的HAP干细胞形成了毛球。毛球中含有可分化为神经元、神经胶质细胞和其他细胞类型的细胞。缓慢冷却冷冻保存的毛囊产生的毛球与新鲜毛囊产生的毛球具有同样的多能性。我们之前还证明,冷冻保存的小鼠须毛囊保持了它们的毛发生长潜力。与甘油相比,DMSO能更好地冷冻保存小鼠须毛囊。DMSO冷冻保存的毛囊也维持了HAP干细胞,这通过P75表达得以证明。将DMSO冷冻保存的毛囊皮下移植到裸鼠体内,在8周内导致了广泛的毛纤维生长,表明冷冻保存的毛囊毛干生长功能得以恢复。HAP干细胞可用于神经和脊髓修复。这种毛囊生物样本库可为每位患者提供利用自身干细胞进行再生医学或毛发移植的潜力。

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