Literature DB >> 28007179

Cellular arsenic transport pathways in mammals.

Barbara A Roggenbeck1, Mayukh Banerjee2, Elaine M Leslie3.   

Abstract

Natural contamination of drinking water with arsenic results in the exposure of millions of people world-wide to unacceptable levels of this metalloid. This is a serious global health problem because arsenic is a Group 1 (proven) human carcinogen and chronic exposure is known to cause skin, lung, and bladder tumors. Furthermore, arsenic exposure can result in a myriad of other adverse health effects including diseases of the cardiovascular, respiratory, neurological, reproductive, and endocrine systems. In addition to chronic environmental exposure to arsenic, arsenic trioxide is approved for the clinical treatment of acute promyelocytic leukemia, and is in clinical trials for other hematological malignancies as well as solid tumors. Considerable inter-individual variability in susceptibility to arsenic-induced disease and toxicity exists, and the reasons for such differences are incompletely understood. Transport pathways that influence the cellular uptake and export of arsenic contribute to regulating its cellular, tissue, and ultimately body levels. In the current review, membrane proteins (including phosphate transporters, aquaglyceroporin channels, solute carrier proteins, and ATP-binding cassette transporters) shown experimentally to contribute to the passage of inorganic, methylated, and/or glutathionylated arsenic species across cellular membranes are discussed. Furthermore, what is known about arsenic transporters in organs involved in absorption, distribution, and metabolism and how transport pathways contribute to arsenic elimination are described.
Copyright © 2016. Published by Elsevier B.V.

Entities:  

Keywords:  Arsenic; Cellular efflux; Cellular uptake; Glutathione; Transport

Mesh:

Substances:

Year:  2016        PMID: 28007179     DOI: 10.1016/j.jes.2016.10.001

Source DB:  PubMed          Journal:  J Environ Sci (China)        ISSN: 1001-0742            Impact factor:   5.565


  13 in total

1.  Exposure to mixtures of mercury, cadmium, lead, and arsenic alters the disposition of single metals in tissues of Wistar rats.

Authors:  Sarah E Orr; Mary C Barnes; Hannah S George; Lucy Joshee; Byunggwon Jeon; Austin Scircle; Oscar Black; James V Cizdziel; Betsy E Smith; Christy C Bridges
Journal:  J Toxicol Environ Health A       Date:  2018-12-03

2.  Using mathematical modeling to infer the valence state of arsenicals in tissues: A PBPK model for dimethylarsinic acid (DMAV) and dimethylarsinous acid (DMAIII) in mice.

Authors:  Lydia M Bilinsky; David J Thomas; Jeffrey W Fisher
Journal:  J Theor Biol       Date:  2018-10-26       Impact factor: 2.691

3.  Metal-induced nephrotoxicity to diabetic and non-diabetic Wistar rats.

Authors:  Muhammad Ahsan Riaz; Zaib Un Nisa; Azra Mehmood; Muhammad Sohail Anjum; Khurram Shahzad
Journal:  Environ Sci Pollut Res Int       Date:  2019-08-27       Impact factor: 4.223

4.  Arsenite Exposure Displaces Zinc from ZRANB2 Leading to Altered Splicing.

Authors:  Mayukh Banerjee; Ana P Ferragut Cardoso; Angeliki Lykoudi; Daniel W Wilkey; Jianmin Pan; Walter H Watson; Nichola C Garbett; Shesh N Rai; Michael L Merchant; J Christopher States
Journal:  Chem Res Toxicol       Date:  2020-04-27       Impact factor: 3.739

Review 5.  Chronic Kidney Disease and Exposure to Nephrotoxic Metals.

Authors:  Sarah E Orr; Christy C Bridges
Journal:  Int J Mol Sci       Date:  2017-05-12       Impact factor: 5.923

6.  Strain differences in arsenic-induced oxidative lesion via arsenic biomethylation between C57BL/6J and 129X1/SvJ mice.

Authors:  Ruirui Wu; Xiafang Wu; Huihui Wang; Xin Fang; Yongfang Li; Lanyue Gao; Guifan Sun; Jingbo Pi; Yuanyuan Xu
Journal:  Sci Rep       Date:  2017-03-17       Impact factor: 4.379

7.  Toxicity, Physiological, and Ultrastructural Effects of Arsenic and Cadmium on the Extremophilic Microalga Chlamydomonas acidophila.

Authors:  Silvia Díaz; Patricia de Francisco; Sanna Olsson; Ángeles Aguilera; Elena González-Toril; Ana Martín-González
Journal:  Int J Environ Res Public Health       Date:  2020-03-03       Impact factor: 3.390

8.  The Human Gut Microbiome's Influence on Arsenic Toxicity.

Authors:  Michael Coryell; Barbara A Roggenbeck; Seth T Walk
Journal:  Curr Pharmacol Rep       Date:  2019-11-25

Review 9.  Recent Advances in Arsenic Research: Significance of Differential Susceptibility and Sustainable Strategies for Mitigation.

Authors:  Tamalika Sanyal; Pritha Bhattacharjee; Somnath Paul; Pritha Bhattacharjee
Journal:  Front Public Health       Date:  2020-10-08

10.  Effects of Orally Ingested Arsenic on Respiratory Epithelial Permeability to Bacteria and Small Molecules in Mice.

Authors:  Michael W Henderson; Jennifer H Madenspacher; Gregory S Whitehead; Seddon Y Thomas; Jim J Aloor; Kymberly M Gowdy; Michael B Fessler
Journal:  Environ Health Perspect       Date:  2017-09-28       Impact factor: 9.031

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