期刊
TOXICOLOGY AND APPLIED PHARMACOLOGY
卷 211, 期 2, 页码 166-174出版社
ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.taap.2005.07.007
关键词
manganese sulfated; inhalation exposure; Sprague-Dawley rats; bioaccumulation; locomotor effect
Methylcyclopentadienyl manganese tricarbonyl (MMT) is an organic compound that was introduced as an antiknock additive to replace lead in unleaded fuel. The combustion of MMT results in the emission of fine Mn particulates mainly in the form of manganese sulfate and manganese phosphate. The objective of this study is to determine the effects of subchronic exposure to Mn sulfate in different tissues, on locomotor activity, on neuropathology, and on blood serum biochemical parameters. A control group and three groups of 30 male SpragueDawley rats were exposed 6-h/day, 5 days/week for 13 consecutive weeks at 30, 300. or 3000 mu g/m(3) Mn Sulfate. Locomotor activity was measured during 36 h using an Auto-Track System. Blood and the following tissues were collected and analyzed for manganese content by neutron activation analysis: olfactory bulb, globus pallidus, caudate/putamen, cerebellum, frontal cortex, liver, lung, testis, and kidney. Neuronal cell counts were obtained for the caudate/putamen and the globus pallidus and clinical biochemistry was assessed. Manganese concentrations were increased in blood, kidney, lung, and testis and in all brain regions in the 3000 mu g/m(3) exposure group. Significant differences were also noted in the 300 mu g/m(3) exposure group, Neuronal cell counts for the globus pallidus were significantly different between the two highest exposed groups and the controls. Locomotor activity for all exposure concentrations and resting time for the middle and highest concentrations for the two night resting periods were significantly increased. Total ambulatory count was decreased significantly for all exposure concentrations. Biochemical profiles also presented significant differences. No body weight loss was observed between all groups. These results suggest that neurotoxicity could occur at low exposure levels of Mn sulfate, one of the main combustion products of MMT. (c) 2005 Elsevier Inc. All rights reserved.
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