Department of Gynecology, Obstetrics and Gynecology Hospital of Fudan University, Shanghai, China.
Shanghai Key Laboratory of Female Reproductive Endocrine Related Diseases, Shanghai, China.
Hum Reprod. 2019 Feb 1;34(2):248-260. doi: 10.1093/humrep/dey344.
Could human umbilical cord mesenchymal stem cell-derived exosomes (hucMSC-Ex) accelerate vaginal epithelium cell (VK2) growth?
HucMSC-Ex play a significant role in promoting proliferation of VK2 cells by accelerating the cell cycle and inhibiting apoptosis through exosomal microRNAs in vitro.
Numerous studies have reported that MSC-Ex play an important role in tissue injury repair.
STUDY DESIGN, SIZE, DURATION: hucMSC and exosomes isolated from their conditioned medium were used to treat a vaginal epithelial cell line (VK2). Normal human fibroblasts (HFF-1) were used as negative control to hucMSC.
PARTICIPANTS/MATERIALS, SETTING, METHODS: VK2 cells were co-cultured with hucMSC whose paracrine effect on the viability, cell cycle and cell apoptosis of VK2 vaginal epithelial cells was further assessed by the CCK-8 assay and flow cytometry. HucMSC-Ex isolated from culture medium by ultracentrifuge were characterized by transmission electron microscopy, nanoparticle tracking analysis and Western blot. HucMSC-Ex at different concentrations and HFF-1 exosomes were used to treat VK2 cells. High-throughput RNA sequencing was utilized to reveal the profile of microRNAs in hucMSC, hucMSC-Ex, HFF-1 and HFF-1 exosomes and GO analysis was applied to demonstrate their functions. To evaluate the function of these specific microRNAs in hucMSC-Ex, VK2 cells were treated with RNA-interfered-hucMSC-Ex (RNAi-hucMSC-Ex) and their proliferation was measured by Label-free Real-time Cellular Analysis System.
The study showed that hucMSC stimulate VK2 cell growth possibly through a paracrine route by promoting cell cycle and inhibiting apoptosis. Compared with control and low dose groups, hucMSC-Ex of high concentration (more than 1000 ng/ml) significantly increased VK2's growth after treatment in a dose-depended manner (P < 0.05). HucMSC-Ex raised the proportion of cells in S-phase and reduced the percentage of apoptotic cells in VK2 cells in comparison with the HFF-1 exosomes and control groups (P < 0.05). microRNAs, including miR-100 (16.92%), miR-146a (9.21%), miR-21 (6.67%), miR-221 (6.39%) and miR-143 (4.63%), were found to be specifically enriched (P < 0.05) in hucMSC-Ex and their functions concentrated on cell cycle, development and differentiation. Collectively, our findings indicate that hucMSC-Ex may play a significant role in accelerating VK2's proliferation by promoting cell cycle and inhibiting apoptosis through exosomal microRNAs in vitro.
LARGE-SCALE DATA: N/A.
LIMITATIONS, REASONS FOR CAUTION: Our study did not confirm the function of hucMSC-Ex or specifically enriched exosomal microRNAs in vivo. miR-100 and miR-146a are well-known immunomodulatory miRNAs that participate in the regulation of inflammatory disorders and may enhance the therapeutic effect of hucMSC-Ex by promoting the surgical injury repair after vaginal reconstruction. But whether it acts through anti-inflammatory responses needs further study.
This finding supports the potential use of hucMSC-Ex as a cell-free therapy of Meyer-Rokitansky-Küster-Hauser syndrome (MRKHS) after vaginoplasty.
STUDY FUNDING/COMPETING INTEREST(S): This study was supported by the Chinese National Nature Sciences Foundation (grant number 91440107, 81471416 and 81771524) and the Strategic Priority Research Program of the Chinese Academy of Sciences (XDB19040102). All authors state that there is no conflict of interest to disclose.
人脐带间充质干细胞来源的细胞外囊泡(hucMSC-Ex)能否加速阴道上皮细胞(VK2)的生长?
hucMSC-Ex 通过外泌体 microRNAs 加速细胞周期并抑制细胞凋亡,在体外显著促进 VK2 细胞的增殖。
大量研究报道 MSC-Ex 在组织损伤修复中发挥重要作用。
研究设计、规模、持续时间:使用 hucMSC 和从其条件培养基中分离的外泌体来治疗阴道上皮细胞系(VK2)。正常人类成纤维细胞(HFF-1)用作 hucMSC 的阴性对照。
参与者/材料、设置、方法:将 VK2 细胞与 hucMSC 共培养,进一步通过 CCK-8 测定和流式细胞术评估 hucMSC 对 VK2 阴道上皮细胞活力、细胞周期和细胞凋亡的旁分泌作用。超速离心从培养基中分离 hucMSC-Ex,通过透射电子显微镜、纳米颗粒跟踪分析和 Western blot 进行表征。用不同浓度的 hucMSC-Ex 和 HFF-1 外泌体处理 VK2 细胞。利用高通量 RNA 测序揭示 hucMSC、hucMSC-Ex、HFF-1 和 HFF-1 外泌体中的 microRNAs 图谱,并应用 GO 分析展示其功能。为了评估这些特定 microRNAs 在 hucMSC-Ex 中的功能,用 RNA 干扰 hucMSC-Ex(RNAi-hucMSC-Ex)处理 VK2 细胞,并通过无标记实时细胞分析系统测量其增殖。
研究表明,hucMSC 通过旁分泌途径刺激 VK2 细胞生长,可能通过促进细胞周期和抑制细胞凋亡来实现。与对照组和低剂量组相比,高浓度(大于 1000ng/ml)的 hucMSC-Ex 以剂量依赖的方式显著增加 VK2 的生长(P<0.05)。与 HFF-1 外泌体和对照组相比,hucMSC-Ex 增加了 VK2 细胞中 S 期细胞的比例,并降低了凋亡细胞的百分比(P<0.05)。microRNAs,包括 miR-100(16.92%)、miR-146a(9.21%)、miR-21(6.67%)、miR-221(6.39%)和 miR-143(4.63%),在 hucMSC-Ex 中被特异性富集(P<0.05),其功能集中在细胞周期、发育和分化上。总的来说,我们的研究结果表明,hucMSC-Ex 通过外泌体 microRNAs 促进细胞周期和抑制凋亡,在体外可能在加速 VK2 增殖方面发挥重要作用。
无。
局限性、谨慎的原因:我们的研究并未在体内证实 hucMSC-Ex 或特异性富集的外泌体 microRNAs 的功能。miR-100 和 miR-146a 是众所周知的免疫调节 microRNAs,参与炎症性疾病的调节,可能通过促进阴道重建后的手术损伤修复来增强 hucMSC-Ex 的治疗效果。但它是否通过抗炎反应起作用仍需要进一步研究。
这一发现支持 hucMSC-Ex 作为 Meyer-Rokitansky-Küster-Hauser 综合征(MRKHS)阴道成形术后无细胞治疗的潜力。
研究资助/利益冲突:本研究得到了中国国家自然科学基金(资助号 91440107、81471416 和 81771524)和中国科学院战略优先研究计划的支持。所有作者均声明不存在利益冲突。