Streptozotocin-induced diabetes disrupts the body temperature daily rhythm in rats

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Abstract

Background: In mammals, the temperature rhythm is regulated by the circadian pacemaker located in the suprachiasmatic nuclei, and is considered a "marker rhythm". Melatonin, the pineal gland hormone, is a major regulator of the endogenous rhythms including body temperature. Its production is influenced by many factors, such as type 1 diabetes mellitus. In rats, diabetes leads to hypothermia and reduced melatonin synthesis; insulin treatment reestablishes both. Aim: To study the body temperature daily rhythm of diabetic animals and the effects of insulin and/or melatonin treatment on its structure. Methods: We studied the effects of streptozotocin-induced diabetes (60 mg/kg) on the body temperature rhythm of Wistar rats and the possible modifications resulting from early and late treatments with insulin (6U/day) and/or melatonin (daily 0.5 mg/kg). We monitored the daily body temperature rhythm, its rhythmic parameters (MESOR, amplitude and acrophase), glycemia and body weight for 55 days. Data were classified by groups and expressed as mean∈±∈SEM. One-way ANOVA analysis was performed followed by Bonferroni posttest. Statistical significance was set at p∈

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Ramos-Lobo, A. M., Buonfiglio, D. C., & Cipolla-Neto, J. (2015). Streptozotocin-induced diabetes disrupts the body temperature daily rhythm in rats. Diabetology and Metabolic Syndrome, 7(1). https://doi.org/10.1186/s13098-015-0035-2

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