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首页> 外文期刊>Expert opinion on biological therapy >The potential of nestin-expressing hair follicle stem cells in regenerative medicine.
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The potential of nestin-expressing hair follicle stem cells in regenerative medicine.

机译:再生医学中表达巢蛋白的毛囊干细胞的潜力。

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The hair follicle bulge area is an abundant, easily accessible source of actively growing pluripotent adult stem cells. Nestin, a protein marker for neural stem cells, is also expressed in follicle stem cells and their immediate, differentiated progeny. Green fluorescent protein (GFP), whose expression is driven by the nestin regulatory element in transgenic mice, serves to mark hair follicle stem cells. The pluripotent nestin-driven GFP stem cells are positive for the stem cell marker CD34, but negative for keratinocyte marker keratin 15, suggesting their relatively undifferentiated state. These cells can differentiate into neurons, glia, keratinocytes, smooth muscle cells and melanocytes in vitro. In vivo studies show that nestin-driven GFP hair follicle stem cells can differentiate into blood vessels and neural tissue after transplantation to the subcutis of nude mice. Hair follicle stem cells implanted into the gap region of a severed sciatic or tibial nerve greatly enhance the rate of nerve regeneration and the restoration of nerve function. The follicle cells transdifferentiate largely into Schwann cells, which are known to support neuron regrowth. The transplanted mice regain the ability to walk normally. Thus, hair follicle stem cells provide an effective, accessible, autologous source of stem cells for treatment of peripheral nerve injury.
机译:毛囊隆起区域是活跃生长的多能成体干细胞的丰富且容易获得的来源。巢蛋白是神经干细胞的蛋白质标志物,在卵泡干细胞及其直接分化的子代中也表达。绿色荧光蛋白(GFP)在转基因小鼠中由Nestin调节元件驱动表达,可标记毛囊干细胞。多能巢蛋白驱动的GFP干细胞对干细胞标记CD34呈阳性,但对角质形成细胞标记角蛋白15呈阴性,表明其相对未分化状态。这些细胞可以在体外分化为神经元,神经胶质细胞,角质形成细胞,平滑肌细胞和黑素细胞。体内研究表明,巢蛋白驱动的GFP毛囊干细胞移植到裸鼠皮下组织后可以分化为血管和神经组织。植入到切断的坐骨神经或胫骨神经间隙区域的毛囊干细胞大大提高了神经再生的速度和神经功能的恢复。滤泡细胞大量分化为雪旺细胞,后者可支持神经元再生。移植的小鼠恢复了正常行走的能力。因此,毛囊干细胞为治疗周围神经损伤提供了有效,可及,自体的干细胞来源。

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