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Published on: May 14, 2013
HDL therapy today: from atherosclerosis, to stent compatibility to heart failure
C R Sirtori1, M Ruscica2, L Calabresi2
1Dyslipidemia Center, A.S.S.T. Grande Ospedale Metropolitano Niguarda, Milan, Italy.
Insights
High-density lipoprotein (HDL) therapy shows promise for improving cardiovascular health. HDL may enhance stent biocompatibility and reduce heart failure complications by removing arterial cholesterol.
Area of Science:
- Cardiovascular Medicine
- Lipid Metabolism
- Atherosclerosis Research
Background:
- High-density lipoprotein (HDL) cholesterol is inversely associated with cardiovascular events, though causality is debated.
- HDL possesses atheroprotective mechanisms, including cholesterol efflux and anti-inflammatory effects via ligands like S1P.
- Emerging research suggests HDL's potential in slowing or reversing atherosclerosis progression.
Purpose of the Study:
- To explore novel indications for HDL therapy beyond atherosclerosis.
- To evaluate the impact of different HDL formulations on cardiovascular health.
- To investigate HDL's role in conditions such as coronary stent biocompatibility and heart failure.
Main Methods:
- Review of experimental studies and clinical investigations on HDL formulations.
- Analysis of data on HDL's effects on coronary stent biocompatibility.
- Examination of studies investigating HDL therapy in heart failure models.
Main Results:
- HDL formulations demonstrated potential in improving coronary stent biocompatibility by reducing arterial cell proliferation and thrombogenicity.
- HDL infusions or apoA-I gene transfer showed efficacy in reversing cardiac abnormalities and improving cardiac metabolism in heart failure.
- Low HDL-C levels are linked to increased heart failure risk, suggesting a therapeutic role for HDL.
Conclusions:
- HDL therapy holds potential for treating atherosclerosis and other conditions impacting human health.
- HDL therapy may offer benefits in improving stent biocompatibility and managing heart failure.
- Further research into HDL's multifaceted roles is warranted for broader therapeutic applications.
Abstract:
Epidemiologically, high-density lipoprotein (HDL) cholesterol levels have been inversely associated to cardiovascular (CV) events, although a Mendelian Randomisation Study had failed to establish a clear causal role. Numerous atheroprotective mechanisms have been attributed to HDL, the main being the ability to promote cholesterol efflux from arterial walls; anti-inflammatory effects related to HDL ligands such as S1P (sphingosine-1-phosphate), resolvins and others have been recently identified. Experimental studies and early clinical investigations have indicated the potential of HDL to slow progression or induce regression of atherosclerosis. More recently, the availability of different HDL formulations, with different phospholipid moieties, has allowed to test other indications for HDL therapy. Positive reports have come from studies on coronary stent biocompatibility, where the use of HDL from different sources reduced arterial cell proliferation and thrombogenicity. The observation that low HDL-C levels may be associated with an enhanced risk of heart failure (HF) has also suggested that HDL therapy may be applied to this condition. HDL infusions or apoA-I gene transfer were able to reverse heart abnormalities, reduce diastolic resistance and improve cardiac metabolism. HDL therapy may be effective not only in atherosclerosis, but also in other conditions, of relevant impact on human health.Key messagesHigh-density lipoproteins have as a major activity that of removing excess cholesterol from tissues (particularly arteries).Knowledge on the activity of high-density lipoproteins on health have however significantly widened.HDL-therapy may help to improve stent biocompatibility and to reduce peripheral arterial resistance in heart failure.
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