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A High-Throughput Luciferase Assay to Evaluate Proteolysis of the Single-Turnover Protease PCSK9
Published on: August 28, 2018
Effects of PCSK9 inhibition on glucose metabolism and β-cell function in humans: a pilot study
Simona Moffa1, Teresa Mezza1,2, Pietro Manuel Ferraro3
1Centro Malattie Endocrine e Metaboliche, Fondazione Policlinico Universitario Agostino Gemelli IRCCS, Rome, Italy.
Background:
Anti-PCSK9 monoclonal antibodies are effective in reducing LDL-C and cardiovascular events by neutralizing circulating PCSK9. PCSK9, however, is also expressed in tissues, including the pancreas, and studies on PCSK9 KO mice have shown impaired insulin secretion. Statin treatment is already known to affect insulin secretion. Our aim was to conduct a pilot study to evaluate the effect of anti-PCSK9 mAb on glucose metabolism and β-cell function in humans.
Methods:
Fifteen non-diabetic subjects, candidates for anti-PCSK9 mAb therapy, were enrolled. All underwent OGTT at baseline and after 6 months of therapy. During OGTT, insulin secretion parameters were derived from C-peptide by deconvolution (β cell glucose sensitivity). Surrogate insulin sensitivity indices were also obtained from OGTT (Matsuda).
Results:
Glucose levels during OGTT were unchanged after 6 months of anti-PCSK9 mAb treatment, as well as insulin and C-peptide levels. The Matsuda index remained unchanged, while β-cell glucose sensitivity improved post-therapy (before: 85.3 ± 65.4; after: 118.6 ± 70.9 pmol min-1m-2mM-1; p<0.05). Using linear regression, we found a significant correlation between βCGS changes and BMI (p=0.004). Thus, we compared subjects with values above and below the median (27.6 kg/m2) and found that those with higher BMI had a greater increase in βCGS after therapy (before: 85.37 ± 24.73; after: 118.62 ± 26.83 pmol min-1m-2mM-1; p=0.007). There was also a significant correlation between βCGS change and Matsuda index through linear regression (p=0.04), so we analyzed subjects who had values above and below the median (3.8). This subgroup analysis showed a slight though not significant improvement in βCGS in more insulin resistant patients, (before: 131.4 ± 69.8; after: 170.8 ± 92.7 pmol min-1m-2mM-1; p=0.066).
Conclusions:
Our pilot study demonstrates that six-month treatment with anti-PCSK9 mAb improves β-cell function, and does not alter glucose tolerance. This improvement is more evident in patients with greater insulin-resistance (low Matsuda) and higher BMI.
Insights
Anti-PCSK9 monoclonal antibodies improve pancreatic beta-cell function in a pilot study. This therapy enhanced glucose sensitivity without affecting glucose levels, particularly in patients with higher BMI and insulin resistance.
Area of Science:
- Cardiovascular Research
- Metabolic Disorders
- Pharmacology
Background:
- Anti-PCSK9 monoclonal antibodies effectively lower LDL-C and cardiovascular events.
- PCSK9 is expressed in the pancreas, and PCSK9 knockout mice show impaired insulin secretion.
- Statins are known to impact insulin secretion, prompting investigation into PCSK9 inhibitors.
Purpose of the Study:
- To evaluate the effect of anti-PCSK9 monoclonal antibody (mAb) therapy on glucose metabolism and beta-cell function in humans.
- To assess changes in glucose tolerance, insulin secretion, and insulin sensitivity.
- To explore correlations between treatment effects and patient characteristics like BMI and insulin resistance.
Main Methods:
- A pilot study involving 15 non-diabetic subjects undergoing anti-PCSK9 mAb therapy.
- Oral glucose tolerance tests (OGTT) were performed at baseline and after 6 months.
- Beta-cell glucose sensitivity was calculated using C-peptide deconvolution, and insulin sensitivity was assessed using the Matsuda index.
Main Results:
- Anti-PCSK9 mAb treatment did not alter glucose, insulin, or C-peptide levels during OGTT.
- The Matsuda insulin sensitivity index remained unchanged.
- Beta-cell glucose sensitivity significantly improved post-treatment (p<0.05), especially in patients with higher BMI and greater insulin resistance.
Conclusions:
- Six-month anti-PCSK9 mAb treatment improves beta-cell function without affecting glucose tolerance.
- The observed improvement in beta-cell function is more pronounced in individuals with higher BMI and insulin resistance.
- This pilot study suggests a potential beneficial effect of anti-PCSK9 mAb on pancreatic beta-cell function.
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