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Low molecular weight heparin in unstable coronary artery disease

L Wallentin1

  • 1Departments of Cardiology, University Hospital, S-75185 Uppsala, Sweden. Lars.Wallentin@card.uas.lul.se

Insights

Low molecular weight heparins (LMWHs) offer improved treatment for unstable coronary artery disease (CAD) compared to unfractionated heparin. LMWHs reduce cardiac events and can be used long-term, especially in patients with myocardial damage.

Area of Science:

  • Cardiology
  • Pharmacology
  • Thrombosis Research

Background:

  • Unstable coronary artery disease (CAD) pathogenesis involves thrombosis over ruptured atherosclerotic plaques.
  • Aspirin is standard therapy, reducing ischemic events and mortality in unstable CAD.
  • Unfractionated heparin provides acute benefits but lacks sustained long-term effects.

Purpose of the Study:

  • To evaluate the efficacy and safety of low molecular weight heparins (LMWHs) compared to unfractionated heparin in managing unstable CAD.
  • To assess the benefits of prolonged outpatient LMWH treatment in conjunction with aspirin.
  • To determine the role of LMWHs in patients undergoing invasive procedures for unstable CAD.

Main Methods:

  • Review of randomized clinical trials comparing LMWHs (dalteparin, enoxaparin) with unfractionated heparin in unstable CAD.
  • Analysis of studies investigating prolonged outpatient LMWH therapy.
  • Evaluation of LMWH use as a 'bridge-to-revascularisation' strategy.

Main Results:

  • LMWHs, particularly dalteparin and enoxaparin, demonstrate comparable or superior efficacy to unfractionated heparin in reducing acute cardiac events (death, MI).
  • Prolonged outpatient LMWH treatment, combined with aspirin, further reduced risks in patients with elevated troponin levels, but increased bleeding risk.
  • LMWH therapy is effective when continued until invasive procedures.

Conclusions:

  • Low molecular weight heparins should replace unfractionated heparin as routine treatment for unstable CAD due to convenience and efficacy.
  • LMWHs are valuable for bridging to revascularisation procedures.
  • Further research is needed to evaluate combinations of LMWHs with new antiplatelet agents.

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