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Vlahos, J.

Publications and source records attributed to Vlahos, J..

2 recordsLinked to original sources

Chronic Pod-Mod E-Cigarette Aerosol Exposure Induces Aortic Dysfunction in Hypercholesterolemic Mice: Role of Oxidative Stress and Inflammation

ObjectiveElectronic (e-)cigarettes are the most used tobacco product amongst youth, and adult smokers favor e-cigarettes over approved cessations aids. Despite the lower perceived harm of vaping compared to smoking, inhalation of e-cigarette aerosol elicits cardiovascular responses that may lead to permanent injury when repeated over time. We thus aimed to infer the long-term outcomes of vaping on the function and structure of the aorta and shed light on the underlying cellular and molecular mechanisms. Approach and ResultsWe exposed female hypercholesterolemic mice to either pod-mod e-cigarette aerosol or room air daily for 24 weeks. Chronic inhalation of e-cigarette aerosol triggered accumulation of inflam-matory signals systemically and within aortic tissues, as well as T lymphocyte accrual in the aortic wall. Reduced eNOS expression and enhanced ROS production following eNOS uncoupling and NADPH oxi-dase activation curbed nitric oxide availability in the aorta of mice exposed to e-cigarette aerosol, impairing the endothelium-dependent vasodilatation that regulates blood flow distribution. Inhalation of e-cigarette aerosol thickened and stiffened aortic tissues via collagen deposition and remodeling, hindering the storage of elastic energy and limiting the cyclic distensibility that enables the aorta to function as a pressure reservoir. These effects combined contributed to raising systolic and pulse pressure above control levels. ConclusionsChronic inhalation of aerosol from pod-mod e-cigarettes promotes oxidative stress, inflammation, and fibrosis within aortic tissues, significantly impairing passive and vasoactive aortic functions. This evidence provides new insights on the biological processes that increase the risk for adverse cardio-vascular events as a result of pod-mod e-cigarette vaping.

bioengineering↗

Mapping the unicellular transcriptome of the ascending thoracic aorta to changes in mechanosensing and mechanoadaptation during aging

Aortic stiffening is an inevitable manifestation of chronological aging, yet the mechano-molecular programs that orchestrate region- and layer-specific adaptations along the length and through the wall of the aorta are incompletely defined. Here, we show that the decline in passive cyclic distensibility is more pronounced in the ascending thoracic (ATA) compared to distal segments of the aorta and that tissues in both the medial and adventitial compartments of the ATA stiffen during aging. Single-cell RNA sequencing of aged ATA tissues reveals altered cellular senescence, remodeling, and inflammatory responses accompanied by enrichment of T-lymphocytes and rarefaction of vascular smooth muscle cells, compared to young samples. T-lymphocytes accumulate in the adventitia and likely promote fibrosis, while activation of mechanosensitive piezo-1 enhances medial vasoconstriction. These results portray the immuno-mechanical aging of the ATA as a process that culminates in a stiffer conduit permissive to the accrual of multi-gerogenic signals priming to disease development.

bioengineering↗