首页> 外文会议>International Conference on Tissue Engineering >Neuromuscular regeneration using scaffolds with mesenchymal stem cells (MSCs) isolated from human umbilical cord Wharton's jelly: functional and morphological analysis using rat sciatic nerve neurotmesis injury model
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Neuromuscular regeneration using scaffolds with mesenchymal stem cells (MSCs) isolated from human umbilical cord Wharton's jelly: functional and morphological analysis using rat sciatic nerve neurotmesis injury model

机译:使用具有间充质干细胞(MSCs)的支架从人脐带涡轮果冻中分离的神经肌肉再生:使用大鼠坐骨神经神经性损伤模型的功能和形态学分析

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Peripheral nerves possess the capacity of self-regeneration after traumatic injury but the extent of regeneration is often poor and may benefit from exogenous factors that enhance growth. Neonatal tissues are routinely discarded at parturition so little ethical controversy attends the harvest of the Mesenchymal Stem Cells (MSCs) which may play an important therapeutic role through the secretion of soluble trophic factors which enhance and assist in repair by paracrine activation of surrounding cells. The use of cellular systems is a rational approach for delivering neurotrophic factors at the nerve lesion site, and in our recent research work we have been evaluating the therapeutic value of MSCs isolated from the Wharton jelly (WJ) in nerve repair associated to different tube-guides made of biodegradable and biocompatible biomaterials. The WJ MSCs in vitro studies included cell characterization by immunocytochemistry, karyotype analysis, tri-lineage differentiation capacity and flow cytometry and also citocompatibility by measuring the intracellular calcium concentration ([Ca~(2+)]i) in the presence of different tube-guides. Biomaterials like PVA, PVA loaded with MWCNTs (functionalized carbon nanotubes, PVA-CNTs), PVA loaded with polypyrrole (PVA-PPy), and PLC associated to MSCs were tested in terms of cytocompatibility and in vivo in the rat sciatic nerve neurotmesis injury model. The regenerated nerves and tibialis anterior (TA) muscles were processed for stereological studies after 20 weeks. The functional recovery was assessed serially for gait biomechanical analysis, by EPT, SFI and SSI, and by WRL. Histopathology of lung, liver, kidneys, regional lymph nodes ensured the biomaterials biocompatibility. The karyotype analysis of the MSCs excluded the presence of neoplastic signs, thus supporting the suitability of isolation and expansion protocols. The MSCs were positive for C-kit, Nanog and vimentin, and negative for CD31, following the International Society for Cellular Therapy (ISCT) definition. Results obtained from epifluorescence by measuring the [Ca~(2+)]i of the MSCs cultured on tube-guides confirmed the ability to support their expansion, adhesion, and differentiation. Our results showed that the use of MSCs enhanced the recovery of sensory and motor function in neurotmesis injuries showing a thicker myelin sheath. MSCs isolated from WJ delivered through biomaterials should be regarded as a potentially valuable tool to improve clinical outcome especially after trauma to sensory nerves. In addition, these cells represent a non controversial source of primitive mesenchymal progenitor cells that can be harvested after birth, cryogenically stored, thawed, and expanded for therapeutic uses.
机译:外周神经具有创伤后损伤后自我再生能力,但再生程度往往差,可能受益于增强生长的外源因素。新生儿组织经常丢弃分娩,因此很少的道德争议参加间充质干细胞(MSCs)的收获,其通过分泌可溶性营养因子来发挥重要治疗作用,其增强和协助通过周围细胞的旁静脉激活进行修复。使用细胞系统是一种合理的方法,用于递送神经病变部位的神经营养因子,并且在我们最近的研究工作中,我们一直在评估与不同管道相关的沃顿果冻(WJ)中分离的MSCs的治疗价值 - 由可生物降解和生物相容性生物材料制成的导轨。体外研究的WJ MSCs包括免疫细胞化学,核型分析,三谱分析能力和流式细胞术的细胞表征,并且通过测量不同管的存在细胞内钙浓度([Ca〜(2 +)] I),还通过测量细胞内钙浓度([Ca〜(2 +)] i)指南。 PVA等生物材料,用MWCNT(官能化碳纳米管,PVA-CNT),用聚吡咯(PVA-PPY)的PVA,以及与MSCs相关的PLC的PVA进行测试,并在大鼠坐骨神经神经神经性损伤模型中进行体内进行测试。在20周后处理再生神经和胫骨前(TA)肌肉进行立体学研究。通过EPT,SFI和SSI和WRL串行评估功能恢复以进行步进生物力学分析。肺,肝,肾,区域淋巴结的组织病理学确保了生物材料的生物相容性。 MSCs的核型分析排除了肿瘤标志的存在,从而支持隔离和扩展方案的适用性。在国际细胞治疗(ISCT)定义的国际社会之后,MSCs对C-kit,Nanog和Vimentin以及CD31的阴性是阳性的。通过测量在管引导件上培养的MSCs的[Ca〜(2 +)]从eBiforegy获得的结果证实了支持其膨胀,粘附和分化的能力。我们的研究结果表明,MSCs的使用增强了神经介质损伤中感觉和电机功能的回收,显示出厚度髓鞘。从生物材料递送的WJ隔离的MSC应该被视为一种潜在有价值的工具,以改善临床结果,尤其是在创伤到感官神经后。此外,这些细胞代表了最初的间充质祖细胞的非争议源,其可以在出生后,低温储存,解冻和扩展以用于治疗用途。

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