Cardiovascular critical event pathways for the progression of heart failure; a report from the ATLAS study

J G Cleland1, K Thygesen, B F Uretsky

  • 1Department of Cardiology, Castle Hill Hospital, Castle Road, University of Hull, Kingston upon Hull, HU16 5JQ, U.K.

European Heart Journal
|August 9, 2001
PubMed

Insights

High-dose lisinopril significantly reduced death and hospitalization in chronic heart failure patients. This treatment strategy delayed mortality and worsening heart failure events by over seven months.

Area of Science:

  • Cardiology
  • Pharmacology
  • Clinical Medicine

Background:

  • Heart failure progression involves critical cardiovascular events.
  • Understanding these event sequences is crucial for effective treatment.
  • The role of specific drug dosages in modulating these pathways requires investigation.

Purpose of the Study:

  • To determine the sequence of critical cardiovascular events in heart failure progression.
  • To investigate whether the etiology of heart failure or high-dose versus low-dose lisinopril impacts these event pathways.

Main Methods:

  • Post-hoc analysis of the ATLAS database (3164 chronic heart failure patients).
  • Patients randomized to low-dose (2.5-5.0 mg/day) or high-dose (32.5-35.0 mg/day) lisinopril.
  • Median follow-up of 46 months, analyzing cardiovascular events and mortality.

Main Results:

  • High-dose lisinopril significantly reduced the risk of death or hospitalization for any reason (P=0.002).
  • High-dose lisinopril significantly reduced death or hospitalization for worsening heart failure (P<0.001).
  • High-dose lisinopril delayed all-cause mortality and heart failure hospitalization by 7.1 months.

Conclusions:

  • Vascular and arrhythmic events contribute to heart failure progression and sudden death.
  • High-dose lisinopril's benefits may stem from reducing vascular events and improving ventricular remodeling.
  • These findings support high-dose lisinopril as a strategy to decrease mortality and hospitalizations in heart failure.
Abstract

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