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Inhibition of protein tyrosine phosphatase-1B with antisense oligonucleotides improves insulin sensitivity and
Michael M Swarbrick1, Peter J Havel, Arthur A Levin
1Department of Molecular Biosciences, School of Veterinary Medicine, University of California, Davis, California 95616, USA.
Abstract:
Protein tyrosine phosphatase (PTP)-1B antagonizes insulin signaling and is a potential therapeutic target for insulin resistance associated with obesity and type 2 diabetes. To date, studies of PTP-1B have been limited by the availability of specific antagonists; however, treatment of rodents with antisense oligonucleotides (ASOs) directed against PTP-1B improves insulin sensitivity, inhibits lipogenic gene expression, and reduces triglyceride accumulation in liver and adipose tissue. Here we investigated ASO-mediated PTP-1B inhibition in primates. First, PTP-1B ASO (ISIS 113715) dose-dependently inhibited PTP-1B mRNA and protein expression in cultured monkey hepatocytes. Subcutaneous administration of ISIS 113715 reduced PTP-1B mRNA expression in liver and adipose tissue of normal-weight monkeys by 40-50% and improved insulin sensitivity during an iv glucose tolerance test (IVGTT). In obese, insulin-resistant rhesus monkeys, treatment with 20 mg/kg ISIS 113715 for 4 wk reduced fasting concentrations of insulin and glucose and reduced insulin responses during an IVGTT. In these animals, adiponectin concentrations were also increased by 70%, most of which was an increase of high-molecular-weight oligomers. These effects were not observed in monkeys on a lower, dose-escalation regimen (1-10 mg/kg over 9 wk). Overall, the increase of adiponectin concentrations during ISIS 113715 treatment was correlated with the lowering of insulin responses during IVGTT (r = -0.47, P = 0.042). These results indicate that inhibition of PTP-1B with ASOs such as ISIS 113715 may be a viable approach for the treatment and prevention of obesity-associated insulin resistance and type 2 diabetes because they potently increase adiponectin concentrations in addition to improving insulin sensitivity.
Insights
Antisense oligonucleotides (ASOs) targeting protein tyrosine phosphatase (PTP)-1B improved insulin sensitivity and increased adiponectin in primates. This suggests ASOs are a promising therapy for insulin resistance, obesity, and type 2 diabetes.
Area of Science:
- Biochemistry
- Metabolic Diseases
- Pharmacology
Background:
- Protein tyrosine phosphatase (PTP)-1B negatively regulates insulin signaling.
- PTP-1B is a therapeutic target for insulin resistance, obesity, and type 2 diabetes.
- Antisense oligonucleotides (ASOs) targeting PTP-1B have shown promise in rodent models.
Purpose of the Study:
- To investigate the efficacy of ASO-mediated PTP-1B inhibition in primates.
- To evaluate the impact of PTP-1B inhibition on insulin sensitivity and metabolic markers in non-human primates.
Main Methods:
- Administration of PTP-1B ASO (ISIS 113715) to cultured monkey hepatocytes and non-human primates (normal-weight and obese).
- Dose-dependent assessment of PTP-1B mRNA and protein expression.
- Evaluation of insulin sensitivity using intravenous glucose tolerance tests (IVGTT).
- Measurement of fasting glucose, insulin, and adiponectin concentrations.
Main Results:
- ISIS 113715 dose-dependently inhibited PTP-1B expression in monkey hepatocytes.
- Subcutaneous ISIS 113715 administration reduced PTP-1B mRNA in liver and adipose tissue of normal-weight monkeys, improving insulin sensitivity.
- In obese, insulin-resistant rhesus monkeys, ISIS 113715 treatment increased adiponectin concentrations by 70% and improved insulin sensitivity.
- A higher dose (20 mg/kg) was more effective than a lower, dose-escalation regimen.
Conclusions:
- ASO-mediated inhibition of PTP-1B is effective in primates.
- ISIS 113715 improves insulin sensitivity and increases adiponectin, suggesting potential for treating obesity-associated insulin resistance and type 2 diabetes.
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