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Extravillous trophoblast cells-derived exosomes promote vascular smooth muscle cell migration

机译:绒毛外滋养层细胞衍生的外泌体促进血管平滑肌细胞迁移

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摘要

>Background: Vascular smooth muscle cells (VSMCs) migration is a critical process during human uterine spiral artery (SpA) remodeling and a successful pregnancy. Extravillous trophoblast cells (EVT) interact with VSMC and enhance their migration, however, the mechanisms by which EVT remodel SpA remain to be fully elucidated. We hypothesize that exosomes released from EVT promote VSMC migration.>Methods: JEG-3 and HTR-8/SVneo cell lines were used as models for EVT. Cells were cultured at 37°C and humidified under an atmosphere of 5% CO2-balanced N2 to obtain 8% O2. Cell-conditioned media were collected, and exosomes (exo-JEG-3 and exo- HTR-8/SVneo) isolated by differential and buoyant density centrifugation. The effects of exo-EVT on VSMC migration were established using a real-time, live-cell imaging system (Incucyte™). Exosomal proteins where identified by mass spectrometry and submitted to bioinformatic pathway analysis (Ingenuity software).>Results: HTR-8/SVneo cells were significantly more (~30%) invasive than JEG-3 cells. HTR-8/SVneo cells released 2.6-fold more exosomes (6.39 × 108 ± 2.5 × 108 particles/106 cells) compared to JEG-3 (2.86 × 108 ± 0.78 × 108 particles/106 cells). VSMC migration was significantly increased in the presence of exo-JEG-3 and exo-HTR-8/SVneo compared to control (−exosomes) (21.83 ± 0.49 h and 15.57 ± 0.32, respectively, vs. control 25.09 ± 0.58 h, p < 0.05). Sonication completely abolished the effect of exosomes on VSMC migration. Finally, mass spectrometry analysis identified unique exosomal proteins for each EVT cell line-derived exosomes.>Conclusion: The data obtained in this study are consistent with the hypothesis that the release, content, and bioactivity of exosomes derived from EVT-like cell lines is cell origin-dependent and differentially regulates VSMC migration. Thus, an EVT exosomal signaling pathway may contribute to SpA remodeling by promoting the migration of VSMC out of the vessel walls.
机译:>背景:血管平滑肌细胞(VSMC)迁移是人子宫螺旋动脉(SpA)重塑和成功怀孕期间的关键过程。绒毛外滋养层细胞(EVT)与VSMC相互作用并增强其迁移,然而,EVT重塑SpA的机制仍有待充分阐明。我们假设EVT释放的外来体会促进VSMC迁移。>方法: JEG-3和HTR​​-8 / SVneo细胞系被用作EVT的模型。将细胞在37°C下培养,并在5%CO2平衡的N2气氛下加湿以获得8%的O2。收集细胞条件培养基,并通过微分和浮力密度离心分离外泌体(exo-JEG-3和exo-HTR-8 / SVneo)。 exo-EVT对VSMC迁移的影响是使用实时活细胞成像系统(Incucyte™)建立的。通过质谱鉴定外泌体蛋白并进行生物信息途径分析(Ingenuity软件)。>结果: HTR-8 / SVneo细胞的侵袭性比JEG-3细胞高(约30%)。与HTR-8 / SVneo细胞相比,释放的外泌体增加了2.6倍(6.39×10 8 ±2.5×10 8 颗粒/ 10 6 细胞) JEG-3(2.86×10 8 ±0.78×10 8 粒子/ 10 6 细胞)。与对照组(-exosome)相比,在exo-JEG-3和exo-HTR-8 / SVneo的存在下,VSMC迁移显着增加(分别为21.83±0.49 h和15.57±0.32,而对照组为25.09±0.58 h,p <0.05)。超声处理完全消除了外来体对VSMC迁移的影响。最后,质谱分析鉴定了每个EVT细胞系来源的外泌体的独特外泌体蛋白。>结论:本研究中获得的数据与以下假设相符:来自于EVT细胞系的外泌体的释放,含量和生物活性EVT样细胞系依赖于细胞起源,并差异性调节VSMC迁移。因此,EVT外泌体信号通路可通过促进VSMC移出血管壁来促进SpA重塑。

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