Literature DB >> 22085607

Manganese accumulation in nail clippings as a biomarker of welding fume exposure and neurotoxicity.

Krishnan Sriram1, Gary X Lin, Amy M Jefferson, Jenny R Roberts, Ronnee N Andrews, Michael L Kashon, James M Antonini.   

Abstract

Occupational exposure to welding fumes (WF) is thought to cause Parkinson's disease (PD)-like neurological dysfunction. An apprehension that WF may accelerate the onset of PD also exists. Identifying reliable biomarkers of exposure and neurotoxicity are therefore critical for biomonitoring and neurological risk characterization of WF exposure. Manganese (Mn) in welding consumables is considered the causative factor for the neurological deficits seen in welders. Hence, we sought to determine if Mn accumulation in blood or nail clippings can be a marker for adverse exposure and neurotoxicity. To model this, rats were exposed by intratracheal instillation to dissolved or suspended fume components collected from gas metal arc-mild steel (GMA-MS) or manual metal arc-hard surfacing (MMA-HS) welding. Trace element analysis revealed selective Mn accumulation in dopaminergic brain areas, striatum (STR) and midbrain (MB), following exposure to the two fumes. This caused dopaminergic abnormality as evidenced by loss of striatal tyrosine hydroxylase (Th; 25-32% decrease) and Parkinson disease (autosomal recessive, early onset) 7 (Park7; 25-46% decrease) proteins. While blood Mn was not detectable, Mn levels in nails strongly correlated with the pattern of Mn accumulation in the striatum (R(2)=0.9386) and midbrain (R(2)=0.9332). Exposure to manganese chloride (MnCl(2)) caused similar Mn accumulation in STR, MB and nail. Our findings suggest that nail Mn has the potential to be a sensitive and reliable biomarker for long-term Mn exposure and associated neurotoxicity. The non-invasive means by which nail clippings can be collected, stored, and transported with relative ease, make it an attractive surrogate for biomonitoring WF exposures in occupational settings. Published by Elsevier Ireland Ltd.

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Year:  2011        PMID: 22085607     DOI: 10.1016/j.tox.2011.10.021

Source DB:  PubMed          Journal:  Toxicology        ISSN: 0300-483X            Impact factor:   4.221


  16 in total

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2.  Manganese oxidation state as a cause of irritant patch test reactions.

Authors:  Laurie Shallcross; Simon Ritchie; Erin Harberts; Antonella Tammaro; Joanna Gaitens; Anthony A Gaspari
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3.  Determinants of manganese in prenatal dentin of shed teeth from CHAMACOS children living in an agricultural community.

Authors:  Robert B Gunier; Asa Bradman; Michael Jerrett; Donald R Smith; Kim G Harley; Christine Austin; Michelle Vedar; Manish Arora; Brenda Eskenazi
Journal:  Environ Sci Technol       Date:  2013-09-23       Impact factor: 9.028

4.  Association between long-term occupational manganese exposure and bone quality among retired workers.

Authors:  Defu Li; Xiaoting Ge; Zhenfang Liu; Lulu Huang; Yanting Zhou; Peng Liu; Lian Qin; Suzhen Lin; Chaoqun Liu; Qingzhi Hou; Longman Li; Hong Cheng; Songfeng Ou; Fu Wei; Yuefei Shen; Yunfeng Zou; Xiaobo Yang
Journal:  Environ Sci Pollut Res Int       Date:  2019-12-03       Impact factor: 4.223

5.  Small airway epithelial cells exposure to printer-emitted engineered nanoparticles induces cellular effects on human microvascular endothelial cells in an alveolar-capillary co-culture model.

Authors:  Jennifer D Sisler; Sandra V Pirela; Sherri Friend; Mariana Farcas; Diane Schwegler-Berry; Anna Shvedova; Vincent Castranova; Philip Demokritou; Yong Qian
Journal:  Nanotoxicology       Date:  2014-11-11       Impact factor: 5.913

6.  Manganese accumulation in hair and teeth as a biomarker of manganese exposure and neurotoxicity in rats.

Authors:  Guiqiang Liang; Li'e Zhang; Shuyan Ma; Yingnan Lv; Huiyan Qin; Xiaowei Huang; Li Qing; Qin Li; Kangcheng Chen; Feng Xiong; Yifei Ma; Jie Nong; Xiaobo Yang; Yunfeng Zou
Journal:  Environ Sci Pollut Res Int       Date:  2016-03-15       Impact factor: 4.223

7.  Effects of copy center particles on the lungs: a toxicological characterization using a Balb/c mouse model.

Authors:  Sandra Pirela; Ramon Molina; Christa Watson; Joel M Cohen; Dhimiter Bello; Philip Demokritou; Joseph Brain
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Review 8.  Manganese Toxicity Upon Overexposure: a Decade in Review.

Authors:  Stefanie L O'Neal; Wei Zheng
Journal:  Curr Environ Health Rep       Date:  2015-09

9.  A possible relationship between telomere length and markers of neurodegeneration in rat brain after welding fume inhalation exposure.

Authors:  Mohammad Shoeb; Gul M Mustafa; Vamsi K Kodali; Kelly Smith; Katherine A Roach; Gregory Boyce; Terence Meighan; Jenny R Roberts; Aaron Erdely; James M Antonini
Journal:  Environ Res       Date:  2019-11-05       Impact factor: 6.498

10.  Toenail metal concentration as a biomarker of occupational welding fume exposure.

Authors:  Rachel Grashow; Jinming Zhang; Shona C Fang; Marc G Weisskopf; David C Christiani; Jennifer M Cavallari
Journal:  J Occup Environ Hyg       Date:  2014       Impact factor: 2.155

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