2013PubMedRequires access

[Observation on both Na(+)-K+ Atpase activity and expression of Na(+)-K+ AtPase alpha1 mRNA in lung tissues of rats acute poisoned with nickel carbonyl].

Haiying Shi, Ning Wang, Qiuying Wang, Hongquan Pu, Xiaopei Zhang, Hui Shang, Xiaoqiang Xuan, Guoyu Ma, Ning Hui Cheng

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Abstract

OBJECTIVE: To examine the change of Na(+)-K+ ATPase activity and the expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues of rats poisoned by nickel carbonyl and to discuss the mechanism of lung injury. METHODS: One hundred seventy healthy rats (85 male and 85 female) were exposed by inhalation of 20,135 and 250 mg/m3 nickel carbonyl for 30 min. Rats poisoned by chlorine gas with a concentration 250 mg/m3 served as positive group and healthy SD rats served as no-treatment negative group. The rats were euthanized on 1, 2, 3 and 7 d after the administration of nickel carbonyl or chlorine gas. In various treatment groups, Na(+)-K+ ATPase activity was studied by colorimetric method and the expressions of Na(+)-K+ ATPase alpha1 mRNA were determined by RT-PCR. RESULTS: Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues decreased in all treatment groups and chlorine gas-poisoned group, especially it was obvious decreased on the 2ed and 3rd day (P < 0.05). CONCLUSION: Nickel carbonyl could induce lung damage and decrease Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung.

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OBJECTIVE: To examine the change of Na(+)-K+ ATPase activity and the expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues of rats poisoned by nickel carbonyl and to discuss the mechanism of lung injury. METHODS: One hundred seventy healthy rats (85 male and 85 female) were exposed by inhalation of 20,135 and 250 mg/m3 nickel carbonyl for 30 min. Rats poisoned by chlorine gas with a concentration 250 mg/m3 served as positive group and healthy SD rats served as no-treatment negative group. The rats were euthanized on 1, 2, 3 and 7 d after the administration of nickel carbonyl or chlorine gas. In various treatment groups, Na(+)-K+ ATPase activity was studied by colorimetric method and the expressions of Na(+)-K+ ATPase alpha1 mRNA were determined by RT-PCR. RESULTS: Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues decreased in all treatment groups and chlorine gas-poisoned group, especially it was obvious decreased on the 2ed and 3rd day (P < 0.05). CONCLUSION: Nickel carbonyl could induce lung damage and decrease Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung.

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Available abstract

OBJECTIVE: To examine the change of Na(+)-K+ ATPase activity and the expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues of rats poisoned by nickel carbonyl and to discuss the mechanism of lung injury. METHODS: One hundred seventy healthy rats (85 male and 85 female) were exposed by inhalation of 20,135 and 250 mg/m3 nickel carbonyl for 30 min. Rats poisoned by chlorine gas with a concentration 250 mg/m3 served as positive group and healthy SD rats served as no-treatment negative group. The rats were euthanized on 1, 2, 3 and 7 d after the administration of nickel carbonyl or chlorine gas. In various treatment groups, Na(+)-K+ ATPase activity was studied by colorimetric method and the expressions of Na(+)-K+ ATPase alpha1 mRNA were determined by RT-PCR. RESULTS: Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung tissues decreased in all treatment groups and chlorine gas-poisoned group, especially it was obvious decreased on the 2ed and 3rd day (P < 0.05). CONCLUSION: Nickel carbonyl could induce lung damage and decrease Na(+)-K+ ATPase activity and expressions of Na(+)-K+ ATPase alpha1 mRNA in lung.

Key concepts: Chemistry, ATPase, Lung, Inhalation, Internal medicine, Chlorine, Messenger RNA, Endocrinology

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[Observation on both Na(+)-K+ Atpase activity and expression of Na(+)-K+ AtPase alpha1 mRNA in lung tissues of rats acute poisoned with nickel carbonyl]. — Research Paper | ScholarLens