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.

Annals of Medicine
|November 16, 2019
PubMed

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.

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