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Inclisiran for the treatment of dyslipidemia
Toshiyuki Nishikido1,2, Kausik K Ray1
1a Imperial Centre for Cardiovascular Disease Prevention (ICCP), Department of Primary Care and Public Health , School of Public Health, Imperial College London , UK.
Insights
Inclisiran, a novel siRNA therapy, significantly reduces LDL-C by over 50% with infrequent dosing. This PCSK9 inhibitor offers a promising new strategy for managing dyslipidemia and cardiovascular risk.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Molecular Biology
Background:
- Dyslipidemia is a major cardiovascular disease risk factor.
- Existing therapies inadequately reduce LDL-C in high-risk patients.
- Proprotein convertase subtilisin/kexin type 9 (PCSK9) inhibition is a novel therapeutic strategy.
Purpose of the Study:
- To review current PCSK9 inhibitors.
- To discuss phase I and II clinical trial results of inclisiran.
- To highlight inclisiran's potential in managing hypercholesterolemia.
Main Methods:
- Inclisiran, a synthetic small interfering RNA (siRNA), targets PCSK9 mRNA synthesis in hepatocytes.
- Review of existing literature and clinical trial data for inclisiran.
- Comparison of inclisiran with current PCSK9 monoclonal antibodies.
Main Results:
- Inclisiran demonstrated a dose-dependent, long-term, significant reduction in LDL-C.
- Inclisiran has been well-tolerated and safe in clinical trials.
- Inclisiran offers advantages over monoclonal antibodies with twice-yearly dosing.
Conclusions:
- Inclisiran effectively lowers LDL-C by over 50% with infrequent administration.
- Inclisiran represents a promising advancement in treating dyslipidemia.
- Further studies are needed to establish long-term safety in high-risk populations.
Introduction:
Dyslipidemia is one of the most important risk factors for cardiovascular disease. Insufficient reduction in LDL-C from existing therapies in patients at high risk of atherogenic cardiovascular disease is an unmet clinical need. Circulating PCSK9 causes hypercholesterolemia by reducing LDL receptors in hepatocytes. Areas covered: PCSK9 inhibition has emerged as a promising new therapeutic strategy to reduce LDL-C. Inclisiran, a novel, synthetic, siRNA molecule, inhibits PCSK9 synthesis in hepatocytes. Inclisiran targets intracellular PCSK9 synthesis specifically, resulting in a dose-dependent, long-term, significant reduction in LDL-C. Inclisiran has been well tolerated and safe, without severe adverse events so far. This review discusses current PCSK9 inhibitors and the results of phase I and II clinical trials of inclisiran. Expert opinion: Plasma PCSK9 enhances the degradation of LDL receptor, resulting in accumulation of LDL-C in the circulation. Current approaches with monoclonal antibodies sequester circulating PCSK9 but require frequent injections. Inclisiran inhibits translation of PCSK9 mRNA and thus switches off PCSK9 production and provides advantages over monoclonal antibodies with an infrequent dosing interval of twice a year to reduce LDL-C by over 50%. Ongoing studies will establish the long-term safety of inclisiran in patients with high cardiovascular risk and an elevated LDL-C.
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