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Updated: Nov 6, 2025

In Silico Clinical Trials for Cardiovascular Disease
Published on: May 27, 2022
A Critical Review of the Efficacy and Safety of Inclisiran
Jennifer Hardy1, Stephanie Niman1, Edward Pereira2
1East Coast Institute for Research, Jacksonville, FL, USA.
Insights
Inclisiran sodium, a novel siRNA therapy, significantly lowers LDL cholesterol by targeting PCSK9 production in the liver. This offers a promising, long-acting treatment option for cardiovascular disease risk reduction.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Genetics
Background:
- Low-density cholesterol (LDL-C) is a key driver of cardiovascular disease (CVD).
- Maximally tolerated statin therapy often fails to achieve target LDL-C goals.
- Residual CVD risk persists despite statin use, necessitating novel therapeutic strategies.
Purpose of the Study:
- To review the clinical and scientific evidence for inclisiran sodium, a novel therapeutic agent.
- To evaluate inclisiran sodium's efficacy and safety in lowering LDL-C.
- To discuss inclisiran sodium's potential as an adjunct therapy for CVD risk reduction.
Main Methods:
- Review of current clinical and scientific literature on inclisiran sodium.
- Analysis of inclisiran sodium's mechanism of action targeting PCSK9 gene expression.
- Evaluation of inclisiran sodium's pharmacokinetic and pharmacodynamic properties.
Main Results:
- Inclisiran sodium significantly reduces hepatic PCSK9 production.
- Inclisiran sodium leads to marked reductions in LDL-C levels.
- Inclisiran sodium demonstrates sustained LDL-C lowering with infrequent subcutaneous dosing (every 6 months).
Conclusions:
- Inclisiran sodium represents a novel therapeutic approach for LDL-C reduction.
- Its efficacy, sustained effect, and infrequent dosing schedule offer potential advantages over existing therapies.
- Inclisiran sodium may address unmet needs in managing residual cardiovascular risk.
Abstract:
The association between low-density cholesterol (LDL-C) and cardiovascular disease (CVD) is well-established, with an emphasis on lowering LDL-C levels to reduce cardiovascular events. Statin therapy has been the traditional treatment for LDL-C reduction, in addition to lifestyle modifications, but studies have shown that a substantial proportion of patients does not reach target LDL-C goals despite receiving maximally tolerated statin medications. Additionally, statin therapy is associated with a few shortcomings as many patients initiated on these medications discontinue treatment within 1 year because of lack of tolerability. Furthermore, guidelines from both the American College of Cardiology and the American Heart Association highlight the importance of obtaining LDL-C goals because of the residual atherosclerotic CVD risk that remains in high-risk populations. That the residual cardiovascular risk remains despite statin therapy highlights the importance of evaluating therapeutic approaches that possess effective lipid lowering that can be used adjunctively with statins. Much focus has been directed towards the proprotein convertase subtilisin/kexin type 9 (PCSK9) pathway, leading to the development of evolocumab and alirocumab, two human monoclonal antibodies directed against PCSK9. These agents have been shown to markedly decrease LDL-C levels and significantly reduce cardiovascular risk, but the need for biweekly or monthly subcutaneous injections has generated concerns for patient compliance. A new pathway is being studied in which a synthetic small interfering ribonucleic acid (siRNA) targets the PCSK9 gene expressed in hepatocytes to prevent PCSK9 production. The siRNA, inclisiran sodium, significantly reduces hepatic production of PCSK9, causing a marked reduction in LDL-C levels, and exhibits sustained pharmacodynamic effects when dosed subcutaneously every 6 months. This review presents and discusses the current clinical and scientific evidence pertaining to inclisiran sodium.
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