Fine particulate matter air pollution and aortic perivascular adipose tissue: Oxidative stress, leptin, and vascular dysfunction

P Haberzettl, L Jin, DW Riggs, J Zhao… - Physiological …, 2021 - Wiley Online Library
Exposure to fine particulate matter (PM2. 5) air pollution increases blood pressure, induces
vascular inflammation and dysfunction, and augments atherosclerosis in humans and …

Fine particulate matter air pollution and aortic perivascular adipose tissue: Oxidative stress, leptin, and vascular dysfunction.

P Haberzettl, L Jin, DW Riggs, J Zhao… - Physiological …, 2021 - europepmc.org
Exposure to fine particulate matter (PM 2.5) air pollution increases blood pressure, induces
vascular inflammation and dysfunction, and augments atherosclerosis in humans and …

Fine particulate matter air pollution and aortic perivascular adipose tissue: Oxidative stress, leptin, and vascular dysfunction

P Haberzettl, L Jin, DW Riggs, J Zhao… - Physiological …, 2021 - pubmed.ncbi.nlm.nih.gov
Exposure to fine particulate matter (PM 2.5) air pollution increases blood pressure, induces
vascular inflammation and dysfunction, and augments atherosclerosis in humans and …

[HTML][HTML] Fine particulate matter air pollution and aortic perivascular adipose tissue: Oxidative stress, leptin, and vascular dysfunction

P Haberzettl, L Jin, DW Riggs, J Zhao… - Physiological …, 2021 - ncbi.nlm.nih.gov
Exposure to fine particulate matter (PM 2.5) air pollution increases blood pressure, induces
vascular inflammation and dysfunction, and augments atherosclerosis in humans and …

Fine particulate matter air pollution and aortic perivascular adipose tissue: Oxidative stress, leptin, and vascular dysfunction

P Haberzettl, L Jin, DW Riggs, J Zhao… - Physiological …, 2021 - search.proquest.com
Exposure to fine particulate matter (PM 2.5) air pollution increases blood pressure, induces
vascular inflammation and dysfunction, and augments atherosclerosis in humans and …