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Atmospheric nanoparticles affect vascular function using a 3D human vascularized organotypic chip

机译:大气纳米粒子影响血管功能使用3 d人体血管organotypic芯片

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摘要

Inhaled atmospheric nanoparticles (ANPs) can migrate into human blood vessels. However, the exact pathogenesis has not yet been well elucidated. In this study, a perfusable 3D human microvessel network was constructed in a microfluidic device. This functional 3D micro-tissue partly mimicked the physiological response of human vessels. Intravascular nanoparticles tend to adsorb proteins to form a protein corona. Based on this pathological response, vessel permeability and vasoconstriction resulting from ANP stimulation might be related to vascular inflammation. It mediated abnormal expression of nuclear factor-kappa B (NF-kappa B) and an influx of intracellular Ca2+ ([Ca2+]i). This biological behavior disturbed the normal expression of intercellular cell adhesion molecule 1 (ICAM-1) and vascular endothelial growth factor (VEGF). The imbalance of nitric oxide (NO) and endothelin-1 (ET-1) further resulted in endothelial cell contraction. All these bio-events induced the loss of tight junctions (ZO-1) which enhanced vessel permeability. Meanwhile, ANP induced-vascular toxicity was also found in mice. Our observations provide a plausible explanation for how the ANPs affect human vascular function. The vessel-on-chip provides a bridge between in vitro results and human responses. We aimed to use this human 3D functional microvascular model to mimic the physiological responses of human vessels. This model is suitable for the evaluation of vascular toxicity after the human vessel exposure to ANPs.
机译:吸入大气纳米颗粒(anp)人类迁移到血管。确切的发病机制还没有好阐明。微脉管网络中构建微流控装置。micro-tissue部分模仿生理反应人类的船只。纳米颗粒吸附蛋白质的形成蛋白质电晕。反应,血管渗透性血管收缩导致的ANP刺激可能与血管炎症。介导核的异常表达factor-kappa B (nf -κB)和大量的细胞内钙离子([Ca2 +]我)。行为扰乱了正常的表达在细胞间的细胞粘附分子1 (ICAM-1)和血管内皮生长因子(VEGF)。一氧化氮(NO)和不平衡进一步导致endothelin-1 (ET-1)内皮细胞收缩。bio-events诱导紧密连接的损失(ZO-1),增强血管渗透性。与此同时,ANP induced-vascular毒性也在老鼠身上发现的。anp如何影响的合理的解释人类血管的功能。提供了一个体外结果和之间的桥梁人类的反应。微血管功能模型来模拟人类血管的生理反应。模型适用于血管的评价人类血管暴露于anp后毒性。

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