首页> 美国卫生研究院文献>Tissue Engineering. Part A >Nestin-Expressing Stem Cells from the Hair Follicle Can Differentiate Into Motor Neurons and Reduce Muscle Atrophy after Transplantation to Injured Nerves
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Nestin-Expressing Stem Cells from the Hair Follicle Can Differentiate Into Motor Neurons and Reduce Muscle Atrophy after Transplantation to Injured Nerves

机译:毛囊表达巢蛋白的干细胞可以分化成运动神经元并减少移植到受伤神经后的肌肉萎缩。

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摘要

We have previously shown that nestin-expressing hair follicle stem cells from the mouse and human are multipotent and can differentiate into many cell types, including neurons and glial cells. The nestin-expressing hair follicle stem cells can effect nerve and spinal cord repair upon transplantation in mouse models. In the present study, nestin-expressing hair follicle stem cells expressing red fluorescent protein (RFP) were induced by retinoic acid and fetal bovine serum to differentiate and then transplanted together with Matrigel into the transected distal sciatic or tibial nerve stump of transgenic nude mice ubiquitously expressing green fluorescent protein (GFP). Control mice were transplanted with Matrigel only. The transplanted cells appeared neuron like, with large round nuclei and long extensions. Immunofluorescence staining showed that some of the transplanted cells in the distal nerve stump expressed the neuron marker Tuj1 as well as motor neuron markers Isl 1/2 and EN1. These transplanted cells contacted each other as well as host nerve fibers. Two weeks post-transplantation, nerve fibers in the distal sciatic nerve stump of the transplanted mice had greater expression of motor neuron markers and neurotrophic factor-3 than those in the Matrigel-only transplanted mice. Muscle fiber areas in the nestin-expressing stem cell plus Matrigel-transplanted animals were much bigger than that in the Matrigel-only transplanted animals after 4 weeks. The present results suggest that transplanted nestin-expressing hair follicle stem cells can differentiate into motor neurons and reduce muscle atrophy after sciatic nerve transection. This study demonstrates a new and accessible neuron source to reduce muscle atrophy after nerve injury.
机译:先前我们已经表明,来自小鼠和人的表达巢蛋白的毛囊干细胞具有多能性,可以分化为许多细胞类型,包括神经元和神经胶质细胞。表达巢蛋白的毛囊干细胞在小鼠模型移植后可影响神经和脊髓修复。本研究通过视黄酸和胎牛血清诱导表达红色荧光蛋白(RFP)的表达巢蛋白的毛囊干细胞分化,然后与Matrigel一起移植到横切的转基因裸鼠的坐骨神经末梢或胫骨远端神经残端中。表达绿色荧光蛋白(GFP)。对照小鼠仅移植Matrigel。移植的细胞呈神经元样,具有大的圆形核和长的延伸。免疫荧光染色显示,远端神经残端中的一些移植细胞表达了神经元标记Tuj1以及运动神经元标记Isl 1/​​2和EN1。这些移植的细胞以及宿主神经纤维相互接触。移植后两周,移植小鼠的坐骨神经末梢远端神经纤维的运动神经元标志物和神经营养因子3的表达高于仅Matrigel移植的小鼠。 4周后,表达巢蛋白的干细胞加上基质胶移植的动物的肌纤维面积比仅基质胶移植的动物大。目前的结果表明,移植的表达巢蛋白的毛囊干细胞可以分化为运动神经元并减少坐骨神经横断后的肌肉萎缩。这项研究证明了减少神经损伤后肌肉萎缩的新的可访问神经元来源。

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