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Activation of the endothelin system in healthy and inflamed lungs: A mechanism for cardiovascular effects of air pollution.

机译:在健康和发炎的肺中激活内皮素系统:空气污染的心血管效应机制。

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摘要

Circulating levels of the potent vasoconstrictor endothelin (ET) are increased after inhalation of urban pollutants. This effect could explain the association of air pollution and cardiovascular morbidity and mortality. However, the timing, source, and specific molecular basis of the increased endothelin release are not well defined. We hypothesized that inhalation of urban pollutants rapidly activates pulmonary endothelin system genes, resulting in increased production and spillover of the peptide into circulation. A time-course study confirmed rapid and transient increases of pulmonary preproET-1 and endothelin-converting enzyme-1 mRNA in rats exposed to particulate matter and ozone. Dose-response studies revealed that each pollutant individually activated endothelin system genes, consistent with the concomitant increase of the 21 amino acid peptide ET-1[1-21] and its precursor, bigET-1, in plasma. In contrast, pulmonary preproET-3 mRNA did not correlate with plasma ET-3 levels. Analyses in other organs revealed ozone-induced increases of endothelin gene expression in the brain, pituitary, and heart, substantiating the notion of extrapulmonary effects of pollutants. Surprisingly, co-exposure to particles and ozone increased pulmonary preproET-1 mRNA but not plasma ET-1[1-21] immediately after exposure. This coincided with an increase of matrix metalloproteinase-2, an enzyme that cleaves bigET-1 to ET-1 [1-32], suggesting that factors released during acute lung injury can modify circulating endothelin levels. To examine the effect of particle inhalation on existing lung pathology, we undertook microarray studies using SP-C/TNF-alpha mice with chronic lung inflammation and their wildtype littermates. Real-time PCR confirmed that inhalation of particles increased pulmonary preproET-1 and cytochrome p450 polypeptide 1 a1 mRNA, validating delivery of a biologically effective dose. Remarkably, microarray analyses failed to detect effects of particle exposure on pulmonary gene expression. Our data reinforce the notion that adverse health effects of acute exposure to urban particles may be dominated by physiological response cascades, with some transcriptional regulation such as activation of the endothelin pathway in target cells, rather than widespread changes in genes escaping homeostatic control. The rapid effects on a key vasoregulatory pathway in the lungs and brain provide a biological basis to explain the acute cardiovascular and cerebrovascular events that occur within hours of increased levels of air pollution.
机译:吸入城市污染物后,有效的血管收缩内皮素(ET)的循环水平增加。这种效应可以解释空气污染与心血管疾病发病率和死亡率之间的关系。但是,内皮素释放增加的时机,来源和特定的分子基础尚不明确。我们假设吸入城市污染物会迅速激活肺内皮素系统基因,从而导致肽的增加产量和溢出到循环中。一项时程研究证实,暴露于颗粒物和臭氧的大鼠中肺preproET-1和内皮素转化酶1 mRNA迅速而短暂地增加。剂量反应研究表明,每种污染物都会分别激活内皮素系统基因,这与血浆中21个氨基酸的肽ET-1 [1-21]及其前体bigET-1的随之增加相一致。相反,肺preproET-3 mRNA与血浆ET-3水平不相关。其他器官的分析显示,臭氧诱导的脑,垂体和心脏中内皮素基因表达增加,从而证实了污染物的肺外作用这一概念。令人惊讶的是,暴露于颗粒物和臭氧后,暴露后立即增加了肺preproET-1 mRNA,但没有增加血浆ET-1 [1-21]。这与基质金属蛋白酶2(一种将bigET-1裂解为ET-1的酶)增加有关[1-32],表明急性肺损伤期间释放的因子可以改变循环内皮素水平。为了检查颗粒吸入对现有肺部病理的影响,我们使用患有慢性肺部炎症的SP-C /TNF-α小鼠及其野生型同窝仔进行了微阵列研究。实时PCR证实,吸入颗粒会增加肺preproET-1和细胞色素p450多肽1 a1 mRNA的表达,从而验证了生物学有效剂量的传递。值得注意的是,微阵列分析未能检测到颗粒暴露对肺部基因表达的影响。我们的数据强化了这样的观念,即急性暴露于城市颗粒对健康的不利影响可能是由生理反应级联所主导的,其中包括一些转录调控,例如靶细胞中内皮素途径的激活,而不是逃避稳态控制的基因的广泛变化。对肺和脑中关键血管调节途径的快速影响为解释在空气污染水平升高数小时内发生的急性心血管和脑血管事件提供了生物学基础。

著录项

  • 作者

    Thomson, Errol.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Health Sciences Toxicology.; Chemistry Biochemistry.; Biology Physiology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 298 p.
  • 总页数 298
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学);生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:39:03

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