Aircraft noise exposure drives the activation of white blood cells and induces microvascular dysfunction in mice
Воздействие шума авиации вызывает активацию лейкоцитов и индуцирует микрососудистую дисфункцию у мышей
2021-07-08
SCID: 54.1/dcqjmyfp
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aircraft noise exposuremicrovascular dysfunctionphagocytic NADPH oxidase (gp91phox / NOX-2)proteomic analysis (mass spectrometry)white blood cell activation
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Abstract (AI)
Epidemiological studies showed that traffic noise has a dose-dependent association with increased cardiovascular morbidity and mortality. Whether microvascular dysfunction contributes significantly to the cardiovascular health effects by noise exposure remains to be established. The connection of inflammation and immune cell interaction with microvascular damage and functional impairment is also not well characterized. Male C57BL/6J mice or gp91phox−/y mice with genetic deletion of the phagocytic NADPH oxidase catalytic subunit (gp91phox or NOX-2) were used at the age of 8 weeks, randomly instrumented with dorsal skinfold chambers and exposed or not exposed to aircraft noise for 4 days. Proteomic analysis (using mass spectrometry) revealed a pro-inflammatory phenotype induced by noise exposure that was less pronounced in noise-exposed gp91phox−/y mice. Using in vivo fluorescence microscopy, we found a higher number of adhesive leukocytes in noise-exposed wild type mice. Dorsal microvascular diameter (by trend), red blood cell velocity, and segmental blood flow were also decreased by noise exposure indicating microvascular constriction. All adverse effects on functional parameters were normalized or improved at least by trend in noise-exposed gp91phox−/y mice. Noise exposure also induced endothelial dysfunction in cerebral microvessels, which was associated with higher oxidative stress burden and inflammation, as measured using video microscopy. We here establish a link between a pro-inflammatory phenotype of plasma, activation of circulating leukocytes and microvascular dysfunction in mice exposed to aircraft noise. The phagocytic NADPH oxidase was identified as a central player in the underlying pathophysiological mechanisms.
Key Findings
1
Aircraft noise exposure for 4 days induces a pro-inflammatory plasma proteomic phenotype in mice, shown by mass spectrometry.
2
Genetic deletion of the phagocytic NADPH oxidase catalytic subunit (gp91phox/NOX-2) attenuates the pro-inflammatory proteomic changes, leukocyte adhesion, and microvascular functional impairments caused by noise.
3
Noise causes endothelial dysfunction and increased oxidative stress and inflammation in cerebral microvessels, measured by video microscopy.
4
Noise exposure increases adhesive leukocytes in vivo, indicating activation of circulating white blood cells.
5
Noise-exposed mice show microvascular dysfunction: decreased red blood cell velocity, reduced segmental blood flow, and trend toward smaller dorsal microvascular diameter.
Research Object
Mice exposed to aircraft noise (dorsal skinfold chamber and cerebral microvessels in male C57BL/6J and gp91phox−/y mice)
Research Subject
Activation of circulating white blood cells, pro-inflammatory plasma phenotype and resultant microvascular dysfunction (vasoconstriction, reduced RBC velocity/flow, endothelial dysfunction) and the role of phagocytic NADPH oxidase (gp91phox/NOX-2)
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2021-07-08
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