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Protection from olanzapine-induced metabolic toxicity in mice by acetaminophen and tetrahydroindenoindole
H G Shertzer1, E L Kendig, H A Nasrallah
1Department of Environmental Health and Center for Environmental Genetics, University of Cincinnati Medical Center, Cincinnati, OH 45267-0056, USA. shertzhg@ucmail.uc.edu
Objective:
In mice and in humans, treatment with the second-generation antipsychotic drug olanzapine (OLZ) produces excessive weight gain, adiposity and secondary metabolic complications, including loss of glucose and insulin homeostasis. In mice consuming a high-fat (HF) diet, a similar phenotype develops, which is inhibited by the analgesic acetaminophen (APAP) and by the antioxidant tetrahydroindenoindole (THII). Therefore, we examined the ability of APAP and THII to prevent metabolic changes in mice receiving OLZ.
Design And Measurement:
C57BL/6J mice received either a normal diet or a HF diet, and were administered daily dosages of OLZ (3 mg kg(-1) body weight), alone or with APAP (30 mg kg(-1) body weight) or THII (4.5 mg kg(-1) body weight), for 10 weeks. Parameters of body composition and metabolism, including glucose and insulin homeostasis and oxidative stress, were examined.
Results:
OLZ treatment doubled the HF diet-induced increases in body weight and percent body fat. These increases were partially prevented by both APAP and THII, although food consumption was constant in all groups. The THII protection was associated with an increase in whole body and mitochondrial respiration. OLZ also exacerbated, and both APAP and THII prevented, HF diet-induced loss of glucose tolerance and insulin resistance. As increased body fat promotes insulin resistance by a pathway involving oxidative stress, we evaluated production of reactive oxygen and lipid peroxidation in white adipose tissue (WAT). HF diet caused an increase in lipid peroxidation, NADPH-dependent O(2) uptake and H(2)O(2) production, which were further exacerbated by OLZ. APAP, THII and the NADPH oxidase inhibitor, diphenyleneiodonium chloride, each abolished oxidative stress in WAT.
Conclusions:
We conclude that both APAP and THII intervene in the development of obesity and metabolic complications associated with OLZ treatment.
Insights
Acetaminophen (APAP) and tetrahydroindenoindole (THII) partially prevent olanzapine-induced weight gain and metabolic dysfunction in mice. These compounds also reversed olanzapine-exacerbated glucose intolerance and insulin resistance by reducing oxidative stress.
Area of Science:
- Pharmacology
- Metabolic Research
- Obesity Studies
Background:
- Second-generation antipsychotic olanzapine (OLZ) causes significant weight gain, adiposity, and metabolic disturbances like impaired glucose and insulin homeostasis in humans and mice.
- A high-fat (HF) diet in mice mimics OLZ-induced metabolic complications.
- Previous studies indicated that acetaminophen (APAP) and tetrahydroindenoindole (THII) can inhibit these adverse effects.
Purpose of the Study:
- To investigate the efficacy of APAP and THII in preventing OLZ-induced metabolic alterations in mice fed a HF diet.
- To assess the impact of APAP and THII on body composition, glucose/insulin homeostasis, and oxidative stress markers.
Main Methods:
- C57BL/6J mice were fed either a normal or HF diet for 10 weeks.
- Daily administration of OLZ (3 mg/kg), alone or combined with APAP (30 mg/kg) or THII (4.5 mg/kg).
- Evaluation of body composition, glucose tolerance, insulin resistance, and oxidative stress in white adipose tissue (WAT).
Main Results:
- OLZ doubled HF diet-induced weight and fat gain; APAP and THII partially prevented these effects without altering food intake.
- THII administration was linked to increased whole-body and mitochondrial respiration.
- OLZ worsened HF diet-induced glucose intolerance and insulin resistance; APAP and THII reversed these impairments by reducing oxidative stress in WAT.
Conclusions:
- Acetaminophen (APAP) and tetrahydroindenoindole (THII) demonstrate potential in mitigating obesity and metabolic complications associated with olanzapine treatment.
- Both compounds effectively counteracted OLZ-induced metabolic dysfunction, suggesting a role in managing side effects of antipsychotic medications.
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