Effect of arsenic and chromium on the serum amino-transferases activity in Indian major carp, Labeo rohita
Arsenic and hexavalent chromium toxicity results from their ability to interact with sulfahydryl groups of proteins and enzymes, and to substitute phosphorus in a variety of biochemical reactions. Alanine aminotransferase (ALT; E.C: 2.6.1.2) and Aspartate amino transferase (AST; EC 2.6.1.1) play a c...
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Published in: | International journal of environmental research and public health Vol. 4; no. 3; pp. 224 - 227 |
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01-09-2007
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Abstract | Arsenic and hexavalent chromium toxicity results from their ability to interact with sulfahydryl groups of proteins and enzymes, and to substitute phosphorus in a variety of biochemical reactions. Alanine aminotransferase (ALT; E.C: 2.6.1.2) and Aspartate amino transferase (AST; EC 2.6.1.1) play a crucial role in transamination reactions and can be used as potential biomarkers to indicate hepatotoxicity and cellular damage. While histopathological studies in liver tissue require more time and expertise, simple and reliable biochemical analysis of ALT and AST can be used for a rapid assessment of tissue and cellular damage within 96 h. The main objective of this study was to determine the acute effects of arsenic and hexavalent chromium on the activity of ALT and AST in the Indian major carp, Labeo rohita for 24 h and 96 h. Significant increase in the activity of ALT (P < 0.01) from controls in arsenic exposed fish indicates serious hepatic damage and distress condition to the fish. However, no such significant changes were observed in chromium-exposed fish suggesting that arsenic is more toxic to the fish. These findings indicate that ALT and AST are candidate biomarkers for arsenic-induced hepatotoxicity in Labeo rohita. |
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AbstractList | Arsenic and hexavalent chromium toxicity results from their ability to interact with sulfahydryl groups of proteins and enzymes, and to substitute phosphorus in a variety of biochemical reactions. Alanine aminotransferase (ALT; E.C: 2.6.1.2) and Aspartate amino transferase (AST; EC 2.6.1.1) play a crucial role in transamination reactions and can be used as potential biomarkers to indicate hepatotoxicity and cellular damage. While histopathological studies in liver tissue require more time and expertise, simple and reliable biochemical analysis of ALT and AST can be used for a rapid assessment of tissue and cellular damage within 96 h. The main objective of this study was to determine the acute effects of arsenic and hexavalent chromium on the activity of ALT and AST in the Indian major carp,
Labeo rohita
for 24 h and 96 h. Significant increase in the activity of ALT (P < 0.01) from controls in arsenic exposed fish indicates serious hepatic damage and distress condition to the fish. However, no such significant changes were observed in chromium-exposed fish suggesting that arsenic is more toxic to the fish. These findings indicate that ALT and AST are candidate biomarkers for arsenic-induced hepatotoxicity in
Labeo rohita
. Arsenic and hexavalent chromium toxicity results from their ability to interact with sulfahydryl groups of proteins and enzymes, and to substitute phosphorus in a variety of biochemical reactions. Alanine aminotransferase (ALT; E.C: 2.6.1.2) and Aspartate amino transferase (AST; EC 2.6.1.1) play a crucial role in transamination reactions and can be used as potential biomarkers to indicate hepatotoxicity and cellular damage. While histopathological studies in liver tissue require more time and expertise, simple and reliable biochemical analysis of ALT and AST can be used for a rapid assessment of tissue and cellular damage within 96 h. The main objective of this study was to determine the acute effects of arsenic and hexavalent chromium on the activity of ALT and AST in the Indian major carp, Labeo rohita for 24 h and 96 h. Significant increase in the activity of ALT (P < 0.01) from controls in arsenic exposed fish indicates serious hepatic damage and distress condition to the fish. However, no such significant changes were observed in chromium-exposed fish suggesting that arsenic is more toxic to the fish. These findings indicate that ALT and AST are candidate biomarkers for arsenic-induced hepatotoxicity in Labeo rohita. |
Author | Vutukuru, Sesha Srinivas Prabhath, N Arun Raghavender, M Yerramilli, Anjaneyulu |
AuthorAffiliation | 1 Environmental and Molecular Toxicology Laboratory, Centre for Environment, Institute of Science and Technology, Jawaharlal Nehru Technological University, Kukatpally, Hyderabad-500 072, India 2 Director, Trent Lott Geospatial and Visualization Centre, Visiting Professor Environmental Science and Chemistry, Jackson State University, Jackson, MS 39217-0939, USA |
AuthorAffiliation_xml | – name: 2 Director, Trent Lott Geospatial and Visualization Centre, Visiting Professor Environmental Science and Chemistry, Jackson State University, Jackson, MS 39217-0939, USA – name: 1 Environmental and Molecular Toxicology Laboratory, Centre for Environment, Institute of Science and Technology, Jawaharlal Nehru Technological University, Kukatpally, Hyderabad-500 072, India |
Author_xml | – sequence: 1 givenname: Sesha Srinivas surname: Vutukuru fullname: Vutukuru, Sesha Srinivas email: myvutukuru@yahoo.com organization: Environmental and Molecular Toxicology Laboratory, Centre for Environment, Institute of Science and Technology, Jawaharlal Nehru Technological University, Kukatpally, Hyderabad-500 072, India. myvutukuru@yahoo.com – sequence: 2 givenname: N Arun surname: Prabhath fullname: Prabhath, N Arun – sequence: 3 givenname: M surname: Raghavender fullname: Raghavender, M – sequence: 4 givenname: Anjaneyulu surname: Yerramilli fullname: Yerramilli, Anjaneyulu |
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SubjectTerms | Alanine Transaminase - blood Animals Arsenic - toxicity Aspartate Aminotransferases - blood Biomarkers - blood Carps - blood Chromium - toxicity Lethal Dose 50 Water Pollutants, Chemical - toxicity |
Title | Effect of arsenic and chromium on the serum amino-transferases activity in Indian major carp, Labeo rohita |
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