Constitutive differences in antioxidant defense status distinguish alloxan-resistant and alloxan-susceptible mice

CE Mathews, EH Leiter - Free Radical Biology and Medicine, 1999 - Elsevier
CE Mathews, EH Leiter
Free Radical Biology and Medicine, 1999Elsevier
Alloxan (AL), a potent generator of superoxide and hydroxyl radicals, selectively destroys
rodent pancreatic β-cells. Alloxan-susceptible (ALS/Lt) and AL-resistant (ALR/Lt) are inbred
mouse strains derived in Japan by inbreeding CD-1 (ICR) mice with concomitant selection
for high or low sensitivity to a relatively low AL dose. The present study was undertaken to
examine whether resistance was mediated by differences in either systemic or β-cell
antioxidant defense status. Superoxide dismutase (SOD), catalase (CAT), glutathione …
Alloxan (AL), a potent generator of superoxide and hydroxyl radicals, selectively destroys rodent pancreatic β-cells. Alloxan-susceptible (ALS/Lt) and AL-resistant (ALR/Lt) are inbred mouse strains derived in Japan by inbreeding CD-1 (ICR) mice with concomitant selection for high or low sensitivity to a relatively low AL dose. The present study was undertaken to examine whether resistance was mediated by differences in either systemic or β-cell antioxidant defense status. Superoxide dismutase (SOD), catalase (CAT), glutathione reductase (GR), and glutathione peroxidase (GPX) activities were determined in tissues of AL-untreated ALR/Lt and ALS/Lt male mice at 7 weeks of age. Specific activities of pancreatic SOD1, GR, and GPX were significantly increased in ALR/Lt mice compared with ALS/Lt mice. ALR/Lt mice further exhibited higher levels of glutathione in plasma, blood, pancreas, and liver combined with lower constitutive lipid peroxides in serum, liver, and pancreas. These results support the hypothesis that the selection process leading to the development of an AL-resistant mouse strain entailed accumulation of a gene or genes contributing to upregulated antioxidant status.
Elsevier