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Exosomes from LPS-Stimulated hDPSCs Activated the Angiogenic Potential of HUVECs In Vitro

机译:来自LPS刺激的HDPSCS的外来体在体外激活HUVECS的血管生成潜力

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Background . Exosomes from human dental pulp stem cells (hDPSCs) were indicated to play a positive role in vascular regeneration processes. But the angiogenic capabilities of exosomes from inflammatory hDPSCs and the underlying mechanism remain unknown. In this study, the inflammatory factor lipopolysaccharide (LPS) was used to stimulate hDPSCs, and exosomes were extracted from these hDPSCs. The proangiogenic potential of exosomes was examined, and the underlying mechanism was studied. Method . Exosomes were isolated from hDPSCs with or without LPS stimulation (N-EXO and LPS-EXO) and cocultured with human umbilical vein endothelial cells (HUVECs). The proangiogenic potential of exosomes was evaluated by endothelial cell proliferation, migration, and tube formation abilities in vitro. To investigate the proangiogenic mechanism of LPS-EXO, microRNA sequencing was performed to explore the microRNA profile of N-EXO and LPS-EXO. Gene Ontology (GO) analysis was used to study the functions of the predicted target genes. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis was used to estimate the signaling pathways associated with the inflammation-induced angiogenesis process. Result . Compared to the uptake of N-EXO, uptake of LPS-EXO activated the angiogenic potential of HUVECs by promoting the proliferation, migration, and tube formation abilities in vitro. The mRNA expression levels of vascular endothelial growth factor (VEGF) and kinase-insert domain-containing receptor (KDR) in the LPS-EXO group were significantly higher than those in the N-EXO group. MicroRNA sequencing showed that 10 microRNAs were significantly changed in LPS-EXO. Pathway analysis showed that the genes targeted by differentially expressed microRNAs were involved in multiple angiogenesis-related pathways. Conclusion . This study revealed that exosomes derived from inflammatory hDPSCs possessed better proangiogenic potential in vitro. This is the first time to explore the role of exosomal microRNA from hDPSCs in inflammation-induced angiogenesis. This finding sheds new light on the effect of inflammation-stimulated hDPSCs on tissue regeneration.
机译:背景 。表明了人类牙髓干细胞(hDPSCs)外来体发挥血管再生过程中的积极作用。但从炎症hDPSCs及机制外来体的血管生成能力仍下落不明。在这项研究中,炎性因子脂多糖(LPS)来刺激hDPSCs,并且从这些hDPSCs提取外来体。外来体的促血管生成潜力进行了检查,及相关机制进行了研究。方法 。外来体是从有或没有LPS刺激(N-EXO和LPS-EXO)hDPSCs分离并用人脐静脉内皮细胞(HUVEC)共培养。外来体的促血管生成潜力是通过内皮细胞增殖,迁移和体外管腔形成能力评价。为了研究LPS-EXO的促血管生成机制,进行微RNA测序探索的N- EXO和LPS-EXO的微小RNA谱。基因本体论(GO)分析用于研究的预测的靶基因的功能。京都基因与基因组百科(KEGG)途径分析来估计与所述炎症诱导的血管生成过程相关联的信令通路。结果 。相比的N- EXO,LPS-EXO的摄取的摄取活化的HUVEC的血管生成潜力通过促进增殖,迁移和管形成的能力在体外。经LPS EXO组中的血管内皮生长因子(VEGF)和激酶插入结构域的受体(KDR)的mRNA表达水平高于所述N EXO组显著高。微RNA测序表明,10个微RNA在LPS-EXO显著改变。路径分析表明,差异表达的microRNA有针对性的基因参与了多次血管生成相关途径。结论 。这项研究发现,炎性hDPSCs衍生外来体附身在体外更好的促血管生成的潜力。这是第一次探索外来体的microRNA在炎症诱发血管生成hDPSCs作用。这一发现对炎症刺激hDPSCs的组织再生的作用揭示新的光。

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