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Multipotent nestin-expressing stem cells capable of forming neurons are located in the upper middle and lower part of the vibrissa hair follicle

机译:能够形成神经元的表达多效巢蛋白的干细胞位于触须毛囊的上部中部和下部

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摘要

We have previously demonstrated that the neural stem-cell marker nestin is expressed in hair follicle stem cells. Nestin-expressing cells were initially identified in the hair follicle bulge area (BA) using a transgenic mouse model in which the nestin promoter drives the green fluorescent protein (ND-GFP). The hair-follicle ND-GFP-expressing cells are keratin 15-negative and CD34-positive and could differentiate to neurons, glia, keratinocytes, smooth muscle cells and melanocytes in vitro. Subsequently, we showed that the nestin-expressing stem cells could affect nerve and spinal cord regeneration after injection in mouse models. In the present study, we separated the mouse vibrissa hair follicle into three parts (upper, middle and lower). Each part of the follicle was cultured separately in DMEM-F12 containing B-27 and 1% methylcellulose supplemented with basic FGF. After 2 mo, the nestin-expressing cells from each of the separated parts of the hair follicle proliferated and formed spheres. Upon transfer of the spheres to RPMI 1640 medium containing 10% FBS, the nestin-expressing cells in the spheres differentiated to neurons, as well as glia, keratinocytes, smooth muscle cells and melanocytes. The differentiated cells were produced by spheres which formed from nestin-expressing cells from all segments of the hair follicle. However, the differentiation potential is greatest in the upper part of the follicle. This result is consistent with trafficking of nestin-expressing cells throughout the hair follicle from the bulge area to the dermal papilla that we previously observed. The nestin-expressing cells from the upper part of the follicle produced spheres in very large amounts, which in turn differentiated to neurons and other cell types. The results of the present study demonstrate that multipotent, nestin-expressing stem cells are present throughout the hair follicle and that the upper part of the follicle can produce the stem cells in large amounts that could be used for nerve and spinal cord repair.
机译:我们以前已经证明了神经干细胞标志物Nestin在毛囊干细胞中表达。最初使用转基因小鼠模型在毛囊隆起区(BA)中鉴定出表达巢蛋白的细胞,其中巢蛋白启动子驱动绿色荧光蛋白(ND-GFP)。表达毛囊的ND-GFP细胞角蛋白15阴性,CD34阳性,在体外可分化为神经元,胶质细胞,角质形成细胞,平滑肌细胞和黑素细胞。随后,我们表明在小鼠模型中,表达巢蛋白的干细胞可能会影响神经和脊髓的再生。在本研究中,我们将小鼠触须毛囊分为三个部分(上部,中部和下部)。卵泡的每个部分分别在含有B-27和1%甲基纤维素的碱性FGF的DMEM-F12中培养。 2个月后,来自毛囊每个分离部分的表达巢蛋白的细胞增殖并形成球体。将球体转移到含有10%FBS的RPMI 1640培养基中后,球体中表达巢蛋白的细胞分化为神经元,以及神经胶质细胞,角质形成细胞,平滑肌细胞和黑素细胞。分化的细胞是由球形的产生的,球形是由毛囊所有节段中表达巢蛋白的细胞形成的。但是,在卵泡的上部分化潜能最大。该结果与我们先前观察到的表达巢蛋白的细胞在整个毛囊中从隆起区域到真皮乳头的运输一致。来自卵泡上部的表达巢蛋白的细胞大量产生球体,进而分化为神经元和其他细胞类型。本研究的结果表明,在整个毛囊中都存在表达多效巢蛋白的干细胞,并且毛囊的上部可以大量产生干细胞,可用于神经和脊髓修复。

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