1. Combined effects of ovariectomy and streptozotocin-induced diabetes in the articular cartilage of rats.
- Author
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Saeki Fernandes A, Fonseca CCN, Rodrigues da Silva Sasso G, Carvalho Cezar L, Aparecida Dos Santos M, Simões MJ, Simões RS, and Florencio-Silva R
- Subjects
- Animals, Bone Density drug effects, Diabetes Mellitus, Experimental pathology, Estradiol pharmacology, Female, Femur drug effects, Glycosaminoglycans analysis, Random Allocation, Rats, Rats, Wistar, Streptozocin, Cartilage, Articular pathology, Diabetes Mellitus, Experimental complications, Ovariectomy adverse effects
- Abstract
Aim: To evaluate the combined effects of streptozotocin-induced diabetes (Di) and ovariectomy in the articular cartilage of rats., Methods: Forty adult female Wistar rats were ovariectomized (OVX) or sham-operated. After recovery from surgery, the animals were assigned randomly into four groups: OVX control (OVX-C); OVX treated with 10 µg/kg/day of 17β-estradiol (OVX-E); sham-operated subjected to Di (Sham-Di); and OVX subjected to Di (OVX-Di). After 60 days of treatment, the animals were euthanized and the distal femurs with articular cartilage were processed for paraffin-embedding. Sections were stained with hematoxylin and eosin for histomorphometry, Picro-Sirius Red for collagen, or Alcian Blue for glycosaminoglycan (GAG) content. To detect apoptosis, sections were stained with an antibody to cleaved caspase-3 (casp-3)., Results: Articular cartilage thickness and GAG content were significantly lower (p < 0.05) in the OVX-Di group, which also showed a higher number of casp-3-positive chondrocytes than the other groups. Interestingly, the higher percentage (p < 0.05) of mature collagen fibers was seen in the OVX-Di group, may be as a result of a reduced extracellular matrix remodeling of the articular cartilage., Conclusion: Our results indicate that the combination of ovariectomy and streptozotocin-induced diabetes produces more deleterious effects in articular cartilage of rats than either condition alone.
- Published
- 2018
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