Cribb, Alastair E., and D. McFarlane. “Systemic and Pituitary Pars Intermedia Antioxidant Capacity Associated With Pars Intermedia Oxidative Stress and Dysfunction in Horses”. American Journal of Veterinary Research, vol. 66, no. 12, 2005, pp. 2065-72, https://doi.org/10.2460/ajvr.2005.66.2065.

Genre

  • Journal Article
Contributors
Author: Cribb, Alastair E.
Author: McFarlane, D.
Date Issued
2005
Abstract

OBJECTIVE: To determine whether a deficiency in systemic or local (pars intermedia) antioxidant capacity is associated with pituitary pars intermedia oxidative stress and pituitary pars intermedia dysfunction (PPID) in horses. SAMPLE POPULATION: Blood samples from 20 horses with PPID and 20 healthy client-owned horses, archived paraffin-embedded adrenal gland and substantia nigra tissues from 20 horses, and pituitary gland tissue from 16 horses. PROCEDURES: Total glutathione, superoxide dismutase, and glutathione peroxidase activities were determined in RBCs. Accumulation of a systemic marker of oxidative stress (3-nitrotyrosine) was assessed in plasma and formalin-fixed, paraffin-embedded adrenal gland and substantia nigra tissues. Local antioxidants (total and manganese superoxide dismutase, glutathione peroxidase, and total glutathione) were measured in pars intermedia tissues. RESULTS: No significant differences existed in systemic antioxidant enzyme activity or accumulation of 3-nitrotyrosine between horses with PPID and control horses. In pituitary gland tissues, glutathione peroxidase activity was increased in horses with oxidative stress, whereas total glutathione concentration and superoxide dismutase activity remained unchanged. There was an age-associated decrease in manganese superoxide dismutase activity in the pars intermedia. CONCLUSIONS AND CLINICAL RELEVANCE: There was no evidence of systemic accumulation of oxidative stress markers or deficiencies in antioxidant capacity in horses with PPID, suggesting that these are unlikely to be major predisposing factors in the development of PPID. Manganese superoxide dismutase activity in the pars intermedia decreased significantly with increasing age. Role of an age-associated decrease in antioxidant capacity for the pars intermedia in the development of PPID in horses warrants further investigation.

Note

Department of Biomedical Sciences, Atlantic Veterinary College, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada.

United States

LR: 20061115; PUBM: Print; JID: 0375011; 0 (Antioxidants); 3604-79-3 (3-nitrotyrosine); 55520-40-6 (Tyrosine); 581-05-5 (alpha-MSH); 70-18-8 (Glutathione); EC 1.11.1.9 (Glutathione Peroxidase); EC 1.15.1.1 (Superoxide Dismutase); ppublish

Source type: Electronic(1)

Language

  • English

Subjects

  • Glutathione Peroxidase/metabolism
  • animals
  • Antioxidants/metabolism
  • Horse Diseases/metabolism
  • Glutathione/metabolism
  • Pituitary Diseases/metabolism/veterinary
  • alpha-MSH/metabolism
  • Erythrocytes/metabolism
  • Oxidative Stress/physiology
  • Superoxide Dismutase/metabolism
  • Age Factors
  • Tyrosine/analogs & derivatives/blood
  • horses
  • Pituitary Gland/metabolism
Page range
2065-2072
Host Title
American Journal of Veterinary Research
Host Abbreviated Title
Am.J.Vet.Res.
Volume
66
Issue
12
ISSN
0002-9645

Department