Umbilical cord mesenchymal stem cells from gestational diabetes show impaired ability to up-regulate paracellular permeability from sub-endothelial niche.

IF 6.7 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Samar Salem, Lopa Leach
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引用次数: 0

Abstract

In vitro studies have shown that Wharton's jelly mesenchymal stem cells (WJ-MSCs) can cross umbilical and uterine endothelial barriers and up-regulate endothelial junctional integrity from sub-endothelial niches. This pericytic behaviour may be lost in pregnancies complicated by gestational diabetes (GDM), where increased vascular permeability and junctional disruption are reported. The aim of the present study was to investigate whether WJ-MSCs isolated from GDM pregnancies displayed any changes in morphology, proliferation, VEGF-A secretion, and their ability to influence paracellular junctional composition and permeability. WJ-MSCs were isolated from human umbilical cords from normal pregnancies (nWJ-MSCs, n=13) and those complicated by GDM (gWJ-MSCs), either diet-controlled (d-GDM, n=13) or metformin-treated (m-GDM, n=9). We recorded that 4-fold more WJ-MSCs migrated from m-GDM, and 2.5-fold from d-GDM cord samples compared with the normal pregnancy. gWJ-MSCs showed a less predominance of spindle-shaped morphology and secreted 3.8-fold more VEGF-A compared with nWJ-MSCs. The number of cells expressing CD105 (Endoglin) was higher in gWJ-MSCs compared with nWJ-MSCs (17%) at P-2. The tracer leakage after 24 h across the HUVEC + gWJ-MSCs bilayer was 22.13% and 11.2% higher in the m-GDM and d-GDM, respectively, HUVEC + nWJ-MSCs. Transfection studies with siRNAs that target Endoglin were performed in n-WJ-MSCs; transfected cells were co-cultured with HUVEC followed by permeability studies and VE-cadherin analyses. Loss of Endoglin also led to increased VEGF-A secretion, increased permeability and affected endothelial stabilization. These results reinforce the pericytic role of nWJ-MSCs to promote vascular repair and the deficient ability of gWJ-MSCs to maintain endothelial barrier integrity.

妊娠期糖尿病患者的脐带间充质干细胞上调血管内皮下壁龛旁通透性的能力受损
体外研究表明,沃顿果冻间充质干细胞(WJ-间充质干细胞)可穿过脐带和子宫内皮屏障,并从内皮下壁龛上调内皮连接完整性。在妊娠糖尿病(GDM)并发症的妊娠中,这种包膜行为可能会丧失,有报道称妊娠糖尿病会增加血管通透性和连接破坏。本研究旨在探讨从 GDM 妊娠中分离出的 WJ-间充质干细胞在形态、增殖、VEGF-A 分泌及其影响细胞旁连接组成和通透性的能力方面是否有任何变化。我们从正常妊娠(nWJ-MSCs;n=13)和GDM并发妊娠(gWJ-MSCs)(饮食控制型(d-GDM;n=13)或二甲双胍治疗型(m-GDM;n=9)的人类脐带中分离了WJ-间充质干细胞。 我们记录到,与正常妊娠相比,m-GDM 脐带样本中迁移的 WJ 间充质干细胞多 4 倍,d-GDM 脐带样本中迁移的 WJ 间充质干细胞多 2.5 倍。与nWJ-间充质干细胞相比,gWJ-间充质干细胞在P-2时表达CD105(Endoglin)的细胞数量更高(17%)。HUVEC + gWJ-MSCs双分子层24小时后的示踪剂渗漏率在m-GDM和d-GDM中分别比HUVEC + nWJ-MSCs高22.13%和11.2%。对 n-WJ-MSCs 进行了靶向 Endoglin 的 siRNA 转染研究;将转染细胞与 HUVEC 共同培养,然后进行通透性研究和 VE 粘连蛋白分析。 Endoglin 的缺失也会导致 VEGF-A 分泌增加、通透性增加并影响内皮的稳定性。这些结果加强了nWJ-间充质干细胞在促进血管修复方面的包膜作用,以及gWJ-间充质干细胞在维持内皮屏障完整性方面的不足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Clinical science
Clinical science 医学-医学:研究与实验
CiteScore
11.40
自引率
0.00%
发文量
189
审稿时长
4-8 weeks
期刊介绍: Translating molecular bioscience and experimental research into medical insights, Clinical Science offers multi-disciplinary coverage and clinical perspectives to advance human health. Its international Editorial Board is charged with selecting peer-reviewed original papers of the highest scientific merit covering the broad spectrum of biomedical specialities including, although not exclusively: Cardiovascular system Cerebrovascular system Gastrointestinal tract and liver Genomic medicine Infection and immunity Inflammation Oncology Metabolism Endocrinology and nutrition Nephrology Circulation Respiratory system Vascular biology Molecular pathology.
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