Didactical approaches and insights into environmental processes and cardiovascular hazards of arsenic contaminants

Arsenic, as a metalloid, has the ability to move and transform in different environmental media. Its widespread contamination has become a significant environmental problem and public concern. Arsenic can jeopardize multiple organs through various pathways, influenced by environmental bioprocesses....

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Veröffentlicht in:Chemosphere (Oxford) 2024-03, Vol.352, p.141381-141381, Article 141381
Hauptverfasser: Han, Yapeng, Gao, Tiantian, Li, Xiaozhi, Wāng, Yán
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Sprache:eng
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Zusammenfassung:Arsenic, as a metalloid, has the ability to move and transform in different environmental media. Its widespread contamination has become a significant environmental problem and public concern. Arsenic can jeopardize multiple organs through various pathways, influenced by environmental bioprocesses. This article provides a comprehensive overview of current research on the cardiovascular hazards of arsenic. A bibliometric analysis revealed that there are 376 papers published in 145 journals, involving 40 countries, 631 institutions, and 2093 authors, all focused on arsenic-related concerns regarding cardiovascular health. China and the U.S. have emerged as the central hubs of collaborative relationships and have the highest number of publications. Hypertension and atherosclerosis are the most extensively studied topics, with redox imbalance, apoptosis, and methylation being the primary mechanistic clues. Cardiovascular damage caused by arsenic includes arrhythmia, cardiac remodeling, vascular leakage, and abnormal angiogenesis. However, the current understanding is still inadequate over cardiovascular impairments, underlying mechanisms, and precautionary methods of arsenic, thus calling an urgent need for further studies to bridge the gap between environmental processes and arsenic hazards. [Display omitted] •Bibliometrics is used to visualize the association between arsenic and cardiovascular diseases.•Environmental arsenic jeopardizes cardiovascular system in different scenarios.•Arsenic increases risks of arrhythmia, hypertension, and atherosclerosis.•Arsenic causes QT interval prolongation, cardiac remodeling, and vascular leakage.•Redox imbalance, apoptosis, and methylation are primary mechanistic clues.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2024.141381