Literature DB >> 16644014

Application of pharmacokinetic data to the risk assessment of inhaled manganese.

David C Dorman1, Melanie F Struve, Harvey J Clewell, Melvin E Andersen.   

Abstract

There is increased interest within the scientific community concerning the neurotoxicity of manganese owing in part to the use of methylcyclopentadienyl manganese tricarbonyl (MMT) as a gasoline fuel additive and an enhanced awareness that this essential metal may play a role in hepatic encephalopathy and other neurologic diseases. Neurotoxicity generally arises over a prolonged period of time and results when manganese intake exceeds its elimination leading to increases in brain manganese concentration. Neurotoxicity can occur following high dose oral, inhalation, or parenteral exposure or when hepatobiliary clearance of this metal is impaired. Studies completed during the past several years have substantially improved our understanding of the health risks posed by inhaled manganese by determining exposure conditions that lead to increased concentrations of manganese within the central nervous system and other target organs. Many of these studies focused on phosphates, sulfates, and oxides of manganese since these are formed and emitted following MMT combustion by an automobile. These studies have evaluated the role of direct nose-to-brain transport of inhaled manganese and have examined differences in manganese toxicokinetics in potentially sensitive subpopulations (e.g., fetuses, neonates, individuals with compromised hepatic function or sub-optimal manganese intake, and the aged). This manuscript reviews the U.S. Environmental Protection Agency's current risk assessment for inhaled manganese, summarizes these contemporary pharmacokinetic studies, and considers how these data could inform future risk assessments of this metal following inhalation.

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Year:  2006        PMID: 16644014     DOI: 10.1016/j.neuro.2006.03.003

Source DB:  PubMed          Journal:  Neurotoxicology        ISSN: 0161-813X            Impact factor:   4.294


  14 in total

1.  Neuropsychological effects of low-level manganese exposure in welders.

Authors:  Wisanti Laohaudomchok; Xihong Lin; Robert F Herrick; Shona C Fang; Jennifer M Cavallari; Ruth Shrairman; Alexander Landau; David C Christiani; Marc G Weisskopf
Journal:  Neurotoxicology       Date:  2010-12-28       Impact factor: 4.294

2.  Protective effects of antioxidants and anti-inflammatory agents against manganese-induced oxidative damage and neuronal injury.

Authors:  Dejan Milatovic; Ramesh C Gupta; Yingchun Yu; Snjezana Zaja-Milatovic; Michael Aschner
Journal:  Toxicol Appl Pharmacol       Date:  2011-06-13       Impact factor: 4.219

3.  Prolactin is a peripheral marker of manganese neurotoxicity.

Authors:  A P Marreilha Dos Santos; M Lopes Santos; Maria C Batoréu; M Aschner
Journal:  Brain Res       Date:  2011-01-22       Impact factor: 3.252

4.  Estimation of students' exposure to metal concentrations from river-dust episodes during 1994-2012.

Authors:  Hao-Jan Yang; Szu-Chieh Chen; Chiung-Wen Hu; Yi-Chen Chiang; Ching-Tsan Tsai; Pin-Yu Lin; Dian-Jheng Lai; Chung-Yih Kuo
Journal:  Environ Sci Pollut Res Int       Date:  2016-12-30       Impact factor: 4.223

5.  Oxidative damage and neurodegeneration in manganese-induced neurotoxicity.

Authors:  Dejan Milatovic; Snjezana Zaja-Milatovic; Ramesh C Gupta; Yingchun Yu; Michael Aschner
Journal:  Toxicol Appl Pharmacol       Date:  2009-07-14       Impact factor: 4.219

6.  Intellectual function in Mexican children living in a mining area and environmentally exposed to manganese.

Authors:  Horacio Riojas-Rodríguez; Rodolfo Solís-Vivanco; Astrid Schilmann; Sergio Montes; Sandra Rodríguez; Camilo Ríos; Yaneth Rodríguez-Agudelo
Journal:  Environ Health Perspect       Date:  2010-10       Impact factor: 9.031

7.  Effect of chronic low level manganese exposure on postural balance: a pilot study of residents in southern Ohio.

Authors:  J Shawn Standridge; Amit Bhattacharya; Paul Succop; Cyndy Cox; Erin Haynes
Journal:  J Occup Environ Med       Date:  2008-12       Impact factor: 2.162

8.  Chemical and Colloidal Dynamics of MnO2 Nanosheets in Biological Media Relevant for Nanosafety Assessment.

Authors:  Evan P Gray; Cynthia L Browning; Charles A Vaslet; Kyle D Gion; Allen Green; Muchun Liu; Agnes B Kane; Robert H Hurt
Journal:  Small       Date:  2020-03-19       Impact factor: 13.281

9.  The neurotoxic effects of manganese on the dopaminergic innervation of the gill of the bivalve mollusc, Crassostrea virginica.

Authors:  Kesha Martin; Turkesha Huggins; Candice King; Margaret A Carroll; Edward J Catapane
Journal:  Comp Biochem Physiol C Toxicol Pharmacol       Date:  2008-05-13       Impact factor: 3.228

10.  Update on a Pharmacokinetic-Centric Alternative Tier II Program for MMT-Part II: Physiologically Based Pharmacokinetic Modeling and Manganese Risk Assessment.

Authors:  Michael D Taylor; Harvey J Clewell; Melvin E Andersen; Jeffry D Schroeter; Miyoung Yoon; Athena M Keene; David C Dorman
Journal:  J Toxicol       Date:  2012-05-07
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