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首页> 外文期刊>ACS applied materials & interfaces >Chitosan-Intercalated Montmorillonite/Poly(vinyl alcohol) Nanofibers as a Platform to Guide Neuronlike Differentiation of Human Dental Pulp Stem Cells
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Chitosan-Intercalated Montmorillonite/Poly(vinyl alcohol) Nanofibers as a Platform to Guide Neuronlike Differentiation of Human Dental Pulp Stem Cells

机译:壳聚糖嵌入的蒙脱石/聚(乙烯醇)纳米纤维作为引导人牙髓干细胞的神经元分化的平台

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In this study, we present a novel chitosan-intercalated montmorillonite/poly(vinyl alcohol) (OMMT/PVA) nanofibrous mesh as a microenvironment for guiding differentiation of human dental pulp stem cells (hDPSCs) toward neuronlike cells. The OMMT was prepared through ion exchange reaction between the montmorillonite (MMT) and chitosan. The PVA solutions containing various concentrations of OMMT were electrospun to form 3D OMMT-PVA nanofibrous meshes. The biomechanical and biological characteristics of the nanofibrous meshes were evaluated by ATR-FTIR, XRD, SEM, MTT, and LDH specific activity, contact angle, and DAPI staining. They were carried out for mechanical properties, overall viability, and toxicity of the cells. The hDPSCs were seeded on the prepared scaffolds and induced with neuronal specific differentiation media at two differentiation stages (2 days at preinduction stage and 6 days at induction stage). The neural differentiation of the cells cultured on the meshes was evaluated by determining the expression of Oct-4, Nestin, NF-M, NF-H, MAP2, and III-tubulin in the cells after preinduction, at induction stages by real-time PCR (RT-PCR) and immunostaining. All the synthesized nanofibers exhibited a homogeneous morphology with a favorable mechanical behavior. The population of the cells differentiated into neuronlike cells in all the experimental groups was significantly higher than that in control group. The expression level of the neuronal specific markers in the cells cultured on 5% OMMT/PVA meshes was significantly higher than the other groups. This study demonstrates the feasibility of the OMMT/PVA artificial nerve graft cultured with hDPSCs for regeneration of damaged neural tissues. These fabricated matrices may have a potential in neural tissue engineering applications.
机译:在这项研究中,我们将一种新型壳聚糖插入的甲基氨铁岩/聚(OMMT / PVA)(OMMT / PVA)纳米纤维网作为微环境,用于将人牙牙髓干细胞(HDPSC)的分化朝向神经元细胞的微观环境。通过Montmorillonite(MMT)和壳聚糖之间的离子交换反应制备OMMT。含有各种浓度OMMT的PVA溶液是Electrom淘权以形成3D OMMT-PVA纳米纤维网。通过ATR-FTIR,XRD,SEM,MTT和LDH特异性活性,接触角和DAPI染色来评估纳米纤维网的生物力学和生物学特性。它们是用于机械性能,整体活力和细胞的毒性。将HDPSCS接种在制备的支架上,并在两个分化阶段用神经元特异性分化介质(在诱导阶段在诱导阶段进行6天)。通过实际时间测定在引导后在细胞中的10℃,巢蛋白,NF-M,NF-H,MAP2和III-Timulin的表达,在诱导阶段确定在电池中的表达,通过实际时间来评价网眼上培养的细胞的神经分化。 PCR(RT-PCR)和免疫染色。所有合成的纳米纤维均具有良好的力学行为表现出均匀的形态。分化为在所有实验组中的神经元细胞中的细胞的群体显着高于对照组中的细胞。在5%OMMT / PVA网状物上培养的细胞中神经元特异性标记的表达水平显着高于其他基团。本研究表明,OMMT / PVA人造神经移植物与HDPSC培养的可行性,用于再生受损神经组织。这些制造的基质可以具有神经组织工程应用的潜力。

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