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PCSK9 inhibition for LDL lowering and beyond - implications for patients with peripheral artery disease
Katrin Gebauer1, Holger Reinecke1
11 Division of Vascular Medicine, Department of Cardiovascular Medicine, University Hospital Münster, Münster, Germany.
Insights
Lowering low-density lipoprotein cholesterol (LDL-C) with statins and PCSK9 inhibitors significantly reduces cardiovascular events. These therapies offer profound risk reduction beyond current guidelines for high-risk patients.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Biochemistry
Background:
- Low-density lipoprotein cholesterol (LDL-C) is a primary causal factor in atherosclerosis and peripheral arterial disease.
- A direct correlation exists between LDL-C levels and cardiovascular outcomes in high-risk individuals.
- Statins have demonstrated efficacy in reducing LDL-C and improving cardiovascular outcomes.
Purpose of the Study:
- To evaluate the impact of novel LDL-C lowering therapies, including PCSK9 inhibitors, on cardiovascular risk.
- To explore the benefits of more intensive LDL-C reduction beyond current guidelines.
- To investigate the potential of intracellular PCSK9 inhibition for plaque modification.
Main Methods:
- Review of randomized trials on statins and newer lipid-lowering agents.
- Analysis of studies investigating monoclonal antibodies targeting PCSK9.
- Examination of research on small interfering RNA (siRNA) for PCSK9 inhibition.
- Assessment of clinical outcomes in patients with peripheral arterial disease (PAD).
Main Results:
- Intensified LDL-C lowering, achieved with potent statins or additional therapies, leads to greater cardiovascular risk reduction.
- PCSK9-targeting monoclonal antibodies achieve significant LDL-C reduction, surpassing guideline targets.
- PCSK9 inhibition, particularly intracellularly, may offer additional benefits by targeting plaque composition.
Conclusions:
- Combined therapy with statins and PCSK9 inhibitors offers a promising strategy for substantial cardiovascular event reduction.
- Further LDL-C lowering, facilitated by PCSK9 inhibitors, provides significant benefits for high-risk patients, including those with PAD.
- PCSK9 inhibition presents a dual mechanism for cardiovascular protection: lipid reduction and potential plaque stabilization.
Abstract:
Low-density lipoprotein cholesterol (LDL-C) has been proven to be a causal factor of atherosclerosis and, along with other triggers like inflammation, the most frequent reason for peripheral arterial disease. Moreover, a linear correlation between LDL-C concentration and cardiovascular outcome in high-risk patients could be established during the past century. After the development of statins, numerous randomized trials have shown the superiority for LDL-C reduction and hence the decrease in cardiovascular outcomes including mortality. Over the past decades it became evident that more intense LDL-C lowering, by either the use of highly potent statin supplements or by additional cholesterol absorption inhibitor application, accounted for an even more profound cardiovascular risk reduction. Proprotein convertase subtilisin/kexin type 9 (PCSK9), a serin protease with effect on the LDL receptor cycle leading to its degradation and therefore preventing continuing LDL-C clearance from the blood, is the target of a newly developed monoclonal antibody facilitating astounding LDL-C reduction far below to what has been set as target level by recent ESC/EAS guidelines in management of dyslipidaemias. Large randomized outcome trials including subjects with PAD so far have been able to prove significant and even more intense cardiovascular risk reduction via further LDL-C debasement on top of high-intensity statin medication. Another approach for LDL-C reduction is a silencing interfering RNA muting the translation of PCSK9 intracellularly. Moreover, PCSK9 concentrations are elevated in cells involved in plaque composition, so the potency of intracellular PCSK9 inhibition and therefore prevention or reversal of plaques may provide this mechanism of action on PCSK9 with additional beneficial effects on cells involved in plaque formation. Thus, simultaneous application of statins and PCSK9 inhibitors promise to reduce cardiovascular event burden by both LDL-C reduction and pleiotropic effects of both agents.
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