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Original Article

Effect of Radiation on Glyoxalase I and Glyoxalase II Activities in Spleen and Liver of Mice

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Pages 233-238 | Received 06 Feb 1992, Accepted 15 Sep 1992, Published online: 03 Jul 2009

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Genrikh S. Ritter, Valeriy P. Nikolin, Nelly A. Popova, Anastasia S. Proskurina, Polina E. Kisaretova, Oleg S. Taranov, Tatiana D. Dubatolova, Evgenia V. Dolgova, Ekaterina A. Potter, Svetlana S. Kirikovich, Yaroslav R. Efremov, Sergey I. Bayborodin, Margarita V. Romanenko, Maria I. Meschaninova, Aliya G. Venyaminova, Nikolay A. Kolchanov, Mikhail A. Shurdov & Sergey S. Bogachev. (2020) Characterization of biological peculiarities of the radioprotective activity of double-stranded RNA isolated from Saccharomyces сerevisiae. International Journal of Radiation Biology 96:9, pages 1173-1191.
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A. Agrawal, S. Shukla & R. K. Kale. (2003) Role of Ca2+ in radiation‐induced damage in murine splenocytes. International Journal of Radiation Biology 79:9, pages 733-746.
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R.S. Luthra & R.K. Kale. (1995) Inhibition of Radiation-induced Changes of Glyoxalase I Activity in Mouse Spleen and Liver by Phenothiazines. International Journal of Radiation Biology 67:4, pages 403-410.
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Articles from other publishers (14)

Mohammad Mazani, Sina Mahdavifard & Alireza Koohi. (2023) Crocetin ameliorative effect on diabetic nephropathy in rats through a decrease in transforming growth factor-β and an increase in glyoxalase-I activity. Clinical Nutrition ESPEN 58, pages 61-66.
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David D. RobertsSukhbir KaurJeffrey S. Isenberg. (2017) Regulation of Cellular Redox Signaling by Matricellular Proteins in Vascular Biology, Immunology, and Cancer. Antioxidants & Redox Signaling 27:12, pages 874-911.
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Tahsina Sharmin Hoque, Misugi Uraji, Md. Anamul Hoque, Yoshimasa Nakamura & Yoshiyuki Murata. (2017) Methylglyoxal induces inhibition of growth, accumulation of anthocyanin, and activation of glyoxalase I and II in Arabidopsis thaliana . Journal of Biochemical and Molecular Toxicology 31:7, pages e21901.
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S. Mahdavifard, S.Z. Bathaie, M. Nakhjavani & M. Taghikhani. (2016) The synergistic effect of antiglycating agents (MB-92) on inhibition of protein glycation, misfolding and diabetic complications in diabetic-atherosclerotic rat. European Journal of Medicinal Chemistry 121, pages 892-902.
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Thomas W. Miller, David R. Soto-Pantoja, Anthony L. Schwartz, John M. Sipes, William G. DeGraff, Lisa A. Ridnour, David A. Wink & David D. Roberts. (2015) CD47 Receptor Globally Regulates Metabolic Pathways That Control Resistance to Ionizing Radiation. Journal of Biological Chemistry 290:41, pages 24858-24874.
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S. Mahdavifard, S.Z. Bathaie, M. Nakhjavani & H. Heidarzadeh. (2014) l-cysteine is a potent inhibitor of protein glycation on both albumin and LDL, and prevents the diabetic complications in diabetic–atherosclerotic rat. Food Research International 62, pages 909-916.
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Edward J. Calabrese. (2013) Biphasic dose responses in biology, toxicology and medicine: Accounting for their generalizability and quantitative features. Environmental Pollution 182, pages 452-460.
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Ashu B. Tiku, Suresh K. Abraham & Raosaheb K. Kale. (2008) Protective effect of the cruciferous vegetable mustard leaf ( Brassica campestris ) against in vivo chromosomal damage and oxidative stress induced by γ‐radiation and genotoxic chemicals . Environmental and Molecular Mutagenesis 49:5, pages 335-342.
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Ganesh C. Jagetia. 2007. The Molecular Targets and Therapeutic Uses of Curcumin in Health and Disease. The Molecular Targets and Therapeutic Uses of Curcumin in Health and Disease 301 320 .
S. Al-Jassabi & B. Al-Bataina .. (2005) Effect of Radiation on Glyoxalase System Activities in Human Red Blood Cell. Journal of Applied Sciences 5:6, pages 1130-1132.
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M Kalapos. (1999) On the promine/retine theory of cell division: now and then. Biochimica et Biophysica Acta (BBA) - General Subjects 1426:1, pages 1-16.
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Dharamainder Choudhary, Dhyan Chandra & Raosaheb K. Kale. (1998) Modulation of radioresponse of glyoxalase system by curcumin. Journal of Ethnopharmacology 64:1, pages 1-7.
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R.K. Kale. (1996) Exploitation of hypoxia for radiation therapy: A lesson from phenothiazines. Medical Hypotheses 47:2, pages 107-110.
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Paul J. Thornalley. (1993) The glyoxalase system in health and disease. Molecular Aspects of Medicine 14:4, pages 287-371.
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