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定义 NG2 表达细胞在多发性硬化症实验模型中的作用。野生型和 NG2 缺失小鼠神经血管单元的生物功能分析。

Defining the role of NG2-expressing cells in experimental models of multiple sclerosis. A biofunctional analysis of the neurovascular unit in wild type and NG2 null mice.

机构信息

Department of Basic Medical Sciences, Neurosciences and Sense Organs, University of Bari School of Medicine, Bari, Italy.

B+LabNet-Environmental Sustainability Lab, University of Brescia, Brescia, Italy.

出版信息

PLoS One. 2019 Mar 14;14(3):e0213508. doi: 10.1371/journal.pone.0213508. eCollection 2019.

Abstract

During experimental autoimmune encephalomyelitis (EAE), a model for multiple sclerosis associated with blood-brain barrier (BBB) disruption, oligodendrocyte precursor cells (OPCs) overexpress proteoglycan nerve/glial antigen 2 (NG2), proliferate, and make contacts with the microvessel wall. To explore whether OPCs may actually be recruited within the neurovascular unit (NVU), de facto intervening in its cellular and molecular composition, we quantified by immunoconfocal morphometry the presence of OPCs in contact with brain microvessels, during postnatal cerebral cortex vascularization at postnatal day 6, in wild-type (WT) and NG2 knock-out (NG2KO) mice, and in the cortex of adult naïve and EAE-affected WT and NG2KO mice. As observed in WT mice during postnatal development, a higher number of juxtavascular and perivascular OPCs was revealed in adult WT mice during EAE compared to adult naïve WT mice. In EAE-affected mice, OPCs were mostly associated with microvessels that showed altered claudin-5 and occludin tight junction (TJ) staining patterns and barrier leakage. In contrast, EAE-affected NG2KO mice, which did not show any significant increase in vessel-associated OPCs, seemed to retain better preserved TJs and BBB integrity. As expected, absence of NG2, in both OPCs and pericytes, led to a reduced content of vessel basal lamina molecules, laminin, collagen VI, and collagen IV. In addition, analysis of the major ligand/receptor systems known to promote OPC proliferation and migration indicated that vascular endothelial growth factor A (VEGF-A), platelet-derived growth factor-AA (PDGF-AA), and the transforming growth factor-β (TGF-β) were the molecules most likely involved in proliferation and recruitment of vascular OPCs during EAE. These results were confirmed by real time-PCR that showed Fgf2, Pdgfa and Tgfb expression on isolated cerebral cortex microvessels and by dual RNAscope-immunohistochemistry/in situ hybridization (IHC/ISH), which detected Vegfa and Vegfr2 transcripts on cerebral cortex sections. Overall, this study suggests that vascular OPCs, in virtue of their developmental arrangement and response to neuroinflammation and growth factors, could be integrated among the classical NVU cell components. Moreover, the synchronized activation of vascular OPCs and pericytes during both BBB development and dysfunction, points to NG2 as a key regulator of vascular interactions.

摘要

在实验性自身免疫性脑脊髓炎(EAE)中,一种与血脑屏障(BBB)破坏相关的多发性硬化症模型中,少突胶质前体细胞(OPC)过度表达神经胶质抗原 2(NG2)的蛋白聚糖,增殖并与微血管壁接触。为了探讨 OPC 是否可能实际招募到神经血管单元(NVU)中,实际上干预其细胞和分子组成,我们通过免疫共聚焦形态计量学来量化在新生后第 6 天的大脑皮质血管生成过程中,野生型(WT)和 NG2 敲除(NG2KO)小鼠的脑微血管接触的 OPC 数量,以及成年新生和 EAE 影响 WT 和 NG2KO 小鼠的皮质中的 OPC 数量。正如在 WT 小鼠的新生后发育过程中观察到的那样,与成年新生 WT 小鼠相比,在 EAE 影响的 WT 成年小鼠中发现了更多的血管旁和血管周 OPC。在 EAE 影响的小鼠中,OPC 主要与紧密连接(TJ)染色模式和屏障渗漏发生改变的 Claudin-5 和 Occludin 微血管相关。相比之下,EAE 影响的 NG2KO 小鼠,其血管相关 OPC 没有明显增加,似乎保留了更好的 TJ 和 BBB 完整性。如预期的那样,在 OPC 和周细胞中缺乏 NG2 会导致血管基底膜分子层粘连蛋白、胶原 VI 和胶原 IV 的含量减少。此外,分析已知促进 OPC 增殖和迁移的主要配体/受体系统表明,血管内皮生长因子 A(VEGF-A)、血小板衍生生长因子-AA(PDGF-AA)和转化生长因子-β(TGF-β)是最有可能参与 EAE 期间血管 OPC 增殖和募集的分子。这些结果通过实时 PCR 得到了证实,该方法显示了在分离的大脑皮质微血管上 Fgf2、Pdgfa 和 Tgfb 的表达,并通过双 RNAscope-免疫组织化学/原位杂交(IHC/ISH)得到了证实,该方法检测到了大脑皮质切片上的 Vegfa 和 Vegfr2 转录物。总的来说,这项研究表明,血管 OPC 由于其发育排列以及对神经炎症和生长因子的反应,可能整合到经典的 NVU 细胞成分中。此外,在 BBB 发育和功能障碍期间,血管 OPC 和周细胞的同步激活表明 NG2 是血管相互作用的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc88/6417733/a7b191f3c77e/pone.0213508.g001.jpg

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