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Cardiovascular Responses to Environmental Stress: In vitro particulate matter exposure causes direct and lung-mediated indirect effects on cardiomyocyte function

机译:心血管对环境压力的反应:体外颗粒物暴露对心肌细胞功能造成直接和肺介导的间接影响

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摘要

Particulate matter (PM) exposure induces a pathological response from both the lungs and the cardiovascular system. PM is capable of both manifestation into the lung epithelium and entrance into the bloodstream. Therefore, PM has the capacity for both direct and lung-mediated indirect effects on the heart. In the present studies, we exposed isolated rat cardiomyocytes to ultrafine particulate matter (diesel exhaust particles, DEP) and examined their contractile function and calcium handling ability. In another set of experiments, lung epithelial cells (16HBE14o- or Calu-3) were cultured on permeable supports that allowed access to both the basal (serosal) and apical (mucosal) media; the basal media was used to culture cardiomyocytes to model the indirect, lung-mediated effects of PM on the heart. Both the direct and indirect treatments caused a reduction in contractility as evidenced by reduced percent sarcomere shortening and reduced calcium handling ability measured in field-stimulated cardiomyocytes. Treatment of cardiomyocytes with various anti-oxidants before culture with DEP was able to partially prevent the contractile dysfunction. The basal media from lung epithelial cells treated with PM contained several inflammatory cytokines, and we found that monocyte chemotactic protein-1 was a key trigger for cardiomyocyte dysfunction. These results indicate the presence of both direct and indirect effects of PM on cardiomyocyte function in vitro. Future work will focus on elucidating the mechanisms involved in these separate pathways using in vivo models of air pollution exposure.
机译:颗粒物(PM)暴露会引起肺和心血管系统的病理反应。 PM既能表现在肺上皮中又能进入血液。因此,PM具有对心脏直接和肺介导的间接作用的能力。在本研究中,我们将离体的大鼠心肌细胞暴露于超细颗粒物(柴油机排气颗粒,DEP)中,并检查了它们的收缩功能和钙处理能力。在另一组实验中,将肺上皮细胞(16HBE140-或Calu-3)培养在可渗透的支持物上,该支持物可同时进入基础(浆膜)和顶端(粘膜)培养基。基础培养基用于培养心肌细胞,以模拟PM对心脏的间接,肺介导作用。直接和间接治疗均导致收缩力降低,这在野外刺激的心肌细胞中测量到的减少的肌节缩短百分比和钙处理能力降低中得到了证明。在用DEP培养之前用各种抗氧化剂处理心肌细胞能够部分预防收缩功能障碍。 PM处理的肺上皮细胞的基础培养基含有几种炎性细胞因子,并且我们发现单核细胞趋化蛋白1是心肌细胞功能障碍的关键触发因素。这些结果表明在体外PM对心肌细胞功能的直接和间接作用均存在。未来的工作将集中在使用体内空气污染暴露模型阐明这些独立途径中涉及的机制上。

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