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首页> 外文期刊>Theranostics >Exosome-like vesicles derived from Hertwig's epithelial root sheath cells promote the regeneration of dentin-pulp tissue
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Exosome-like vesicles derived from Hertwig's epithelial root sheath cells promote the regeneration of dentin-pulp tissue

机译:衍生自Hertwig的上皮根鞘细胞的外鼻腔囊泡促进了牙本质 - 纸浆组织的再生

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Background: The formation of dentin-pulp involves complex epithelial-mesenchymal interactions between Hertwig's epithelial root sheath cells (HERS) and dental papilla cells (DPCs). Earlier studies have identified some of the regulatory molecules participating in the crosstalk between HERS and DPCs and the formation of dentin-pulp. In the present study we focused on the role of HERS-secreted exosomes in DPCs and the formation of dentin-pulp. Specifically, we hypothesized that exosome-like vesicles (ELVs) might mediate the function of HERS and trigger lineage-specific differentiation of dental mesenchymal cells. To test our hypothesis, we evaluated the potential of ELVs derived from a HERS cell line (ELVs-H1) in inducing in vitro and in vivo differentiation of DPCs. Methods: ELVs-H1 were characterized using transmission electron microscopy and dynamic light scattering. The proliferation, migration, and odontoblast differentiation of DPCs after treatment with ELVs-H1, was detected by CCK8, transwell, ALP, and mineralization assays, respectively. Real time PCR and western blotting were used to detect gene and protein expression. For in vivo studies, DPC cells were mixed with collagen gel combined with or without ELVs and transplanted into the renal capsule of rats or subcutaneously into nude mice. HE staining and immunostaining were used to verify the regeneration of dentin-pulp and expression of odontoblast differentiation markers. Results: ELVs-H1 promoted the migration and proliferation of DPCs and also induced odontogenic differentiation and activation of Wnt/β-catenin signaling. ELVs-H1 also contributed to tube formation and neural differentiation in vitro. In addition, ELVs-H1 attached to the collagen gel, and were slowly released and endocytosed by DPCs, enhancing cell survival. ELVs-H1 together with DPCs triggered regeneration of dental pulp-dentin like tissue comprised of hard (reparative dentin-like tissue) and soft (blood vessels and neurons) tissue, in an in vivo tooth root slice model. Conclusion: Our data highlighted the potential of ELVs-H1 as biomimetic tools in providing a microenvironment for specific differentiation of dental mesenchymal stem cells. From a developmental perspective, these vesicles might be considered as novel mediators facilitating the epithelial-mesenchymal crosstalk. Their instructive potency might be exploited for the regeneration of dental pulp-dentin tissues.? The author(s).
机译:背景:牙本质 - 纸浆的形成涉及亨疹的上皮根鞘细胞(HERS)和牙科乳头细胞(DPC)之间的复杂上皮 - 间充质相互作用。早期的研究已经确定了参与HERS和DPC的串扰的一些调节分子以及牙本质浆的形成。在本研究中,我们专注于Hers-Secrited Exosomes在DPC中的作用和牙本质浆的形成。具体而言,我们假设外渗囊泡(ELV)可以介导HERS的功能并引发牙科间充质细胞的谱系特异性分化。为了测试我们的假设,我们评估了在体外诱导中源自HER细胞系(ELVS-H1)的ELV的潜力和DPC的体内分化。方法:使用透射电子显微镜和动态光散射表征ELVS-H1。 CCK8,Transwell,AlP和矿化测定分别检测用ELVS-H1治疗后DPC的增殖,迁移和Odontoblast分化。实时PCR和Western印迹用于检测基因和蛋白质表达。对于体内研究,将DPC细胞与胶原凝胶混合,与或没有ELVs,并将大鼠的肾囊移植到裸鼠中。他使用染色和免疫染色来验证牙本质 - 纸浆的再生和异常子细胞分化标志物的表达。结果:ELVS-H1促进了DPC的迁移和增殖,也诱导了WNT /β-连环蛋白信号传导的异肠病分化和激活。 ELVS-H1还有助于管形成和体外神经分化。此外,ELVS-H1连接到胶原凝胶上,并通过DPC缓慢释放和内吞,增强细胞存活。 ELVS-H1与DPC一起触发牙科牙髓牙本质的再生,如组织中包含硬质(牙本质类药物)和软(血管和神经元)组织的组织,在体内齿根切片模型中。结论:我们的数据突出了ELVS-H1作为培养工具的潜在工具,用于提供牙科间充质干细胞特异性分化的微环境。从发育角度来看,这些囊泡可能被认为是促进上皮 - 间充质串扰的新型介质。他们的有效效力可能被利用牙科牙髓组织的再生。?作者。

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