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Full-Text Articles in Diseases

The Impact Of Volatile Organic Compound Exposure On Subclinical Biomarkers Of Cardiovascular Injury., Breandon Taylor Dec 2022

The Impact Of Volatile Organic Compound Exposure On Subclinical Biomarkers Of Cardiovascular Injury., Breandon Taylor

Electronic Theses and Dissertations

Pollution has been identified as the leading environmental cause of non-communicable disease and premature deaths globally. Volatile organic compounds (VOCs) are gaseous chemical constituents of pollution derived from a variety of sources, including industrial solvents and byproducts, automobile exhaust, tobacco smoke, cleaning supplies, and personal care products. VOCs are also abundant at various Superfund and Hazardous Waste Sites. Emerging data suggest that VOC exposure is associated with several adverse health outcomes, including cardiovascular disease (CVD). VOCs and their metabolites can potentially damage the endothelial lining of blood vessels, resulting in perturbed vascular function and vascular inflammation. We hypothesize that VOC …


Pollution And Heart Disease, Fall/Winter 2006, Issue 13 Sep 2019

Pollution And Heart Disease, Fall/Winter 2006, Issue 13

Sustain Magazine

No abstract provided.


Worldwide Trends In Blood Pressure From 1975 To 2015: A Pooled Analysis Of 1479 Population-Based Measurement Studies With 19·1 Million Participants, Bin Zhou, James Bentham, Mariachiara Di Cesare, Honor Bixby, Goodarz Danaei, Melanie J. Cowan, Christopher J. Paciorek, Gitanjali Singh, Kaveh Hajifathalian, James E. Bennett, Cristina Taddei, Con Burns, Tara Coppinger, Ver Bilano, Rodrigo M. Carrillo-Larco, Shirin Djalalinia, Shahab Khatibzadeh, Charles Lugero, Niloofar Peykari, Wan Zhu Zhang, Yuan Lu, Gretchen A. Stevens, Leanne M. Riley, Pascal Bovet, Paul Elliott, Dongfeng Gu, Nayu Ikeda, Rod T. Jackson, Michel Joffres, Andre Pascal Kengne, Tiina Laatikainen, Tai Hing Lam, Avula Laxmaiah, Jing Liu Nov 2016

Worldwide Trends In Blood Pressure From 1975 To 2015: A Pooled Analysis Of 1479 Population-Based Measurement Studies With 19·1 Million Participants, Bin Zhou, James Bentham, Mariachiara Di Cesare, Honor Bixby, Goodarz Danaei, Melanie J. Cowan, Christopher J. Paciorek, Gitanjali Singh, Kaveh Hajifathalian, James E. Bennett, Cristina Taddei, Con Burns, Tara Coppinger, Ver Bilano, Rodrigo M. Carrillo-Larco, Shirin Djalalinia, Shahab Khatibzadeh, Charles Lugero, Niloofar Peykari, Wan Zhu Zhang, Yuan Lu, Gretchen A. Stevens, Leanne M. Riley, Pascal Bovet, Paul Elliott, Dongfeng Gu, Nayu Ikeda, Rod T. Jackson, Michel Joffres, Andre Pascal Kengne, Tiina Laatikainen, Tai Hing Lam, Avula Laxmaiah, Jing Liu

Publications

Background Raised blood pressure is an important risk factor for cardiovascular diseases and chronic kidney disease. We estimated worldwide trends in mean systolic and mean diastolic blood pressure, and the prevalence of, and number of people with, raised blood pressure, defined as systolic blood pressure of 140 mm Hg or higher or diastolic blood pressure of 90 mm Hg or higher. Methods For this analysis, we pooled national, subnational, or community population-based studies that had measured blood pressure in adults aged 18 years and older. We used a Bayesian hierarchical model to estimate trends from 1975 to 2015 in mean …


Air Pollution, Pulmonary Oxidative Stress, And The Endothelin System In The Development Of Cardiovascular Injury., Jordan B. Finch Aug 2016

Air Pollution, Pulmonary Oxidative Stress, And The Endothelin System In The Development Of Cardiovascular Injury., Jordan B. Finch

Electronic Theses and Dissertations

The goal of this project was to examine the role of endothelin-1 (ET-1) as a mediator in the pathway between air pollution exposure and the development of vascular injury. A human cohort and male mice (C57BL/6 and ecSOD-Tg) were used to evaluate changes in the ET-1 system in response to exposures of fine particulate matter (PM2.5). Human ET-1 levels were significantly associated with environmental factors and markers of vascular change, but were decreased with increased PM2.5. No association was seen between ET-1 and endothelial progenitor cells (EPCs) except for EPC-4, possibly indicating a regulatory relationship with this specific population. In …