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Updated: Jun 27, 2026

Permanent Ligation of the Left Anterior Descending Coronary Artery in Mice: A Model of Post-myocardial Infarction Remodelling and Heart Failure
Published on: December 2, 2014
Potential novel pharmacological therapies for myocardial remodelling
Ulf Landmesser1, Kai C Wollert, Helmut Drexler
1Deparment of Cardiology and Angiology, Hannover Medical School, Carl-Neuberg-Str.1, 30625 Hannover, Germany.
Insights
Left ventricular remodelling after heart attack and heart failure needs new treatments. Preclinical studies offer targets, but clinical translation must consider existing therapies to avoid overestimating effects.
Area of Science:
- Cardiology
- Translational Medicine
- Pharmacology
Background:
- Left ventricular (LV) remodelling is a key target in myocardial infarction (MI) and chronic heart failure (CHF) patients.
- Current therapies like ACE inhibitors, ARBs, and beta-blockers improve outcomes partly by affecting LV remodelling.
- Despite optimal treatment, significant LV remodelling persists, linked to poor prognosis, necessitating novel strategies.
Purpose of the Study:
- To review current understanding of LV remodelling targets.
- To discuss challenges in translating preclinical findings into clinical practice for LV remodelling.
- To highlight potential novel therapeutic strategies for preventing or reversing LV remodelling.
Main Methods:
- Review of accumulating evidence on LV remodelling.
- Analysis of current pharmacological treatments and their effects.
- Examination of preclinical study insights and potential novel targets.
- Discussion of challenges in clinical translation of experimental findings.
Main Results:
- Established therapies impact LV remodelling, but novel strategies are needed.
- Preclinical studies identify targets like nitric oxide pathways, oxidant stress, inflammation, matrix metalloproteinases, and stem cell therapy.
- A key challenge is that preclinical studies often omit established drug regimens, potentially overestimating novel intervention effects.
Conclusions:
- Novel therapeutic strategies are crucial to prevent or reverse LV remodelling in MI and CHF.
- Preclinical research provides valuable targets, but clinical translation requires careful consideration of existing treatments.
- Understanding the interplay between novel interventions and established therapies is essential for developing effective clinical strategies.
Abstract:
Left ventricular (LV) remodelling remains an important treatment target in patients after myocardial infarction (MI) and chronic heart failure (CHF). Accumulating evidence has supported the concept that beneficial effects of current pharmacological treatment strategies to improve the prognosis in these patients, such as angiotensin-converting enzyme (ACE) inhibition, angiotensin type 1 receptor blocker therapy, and beta-blocker therapy, are related, at least in part, to their effects on LV remodelling and dysfunction. However, despite modern reperfusion therapy after MI and optimized treatment of patients with CHF, LV remodelling is observed in a substantial proportion of patients and is associated with an adverse clinical outcome. These observations call for novel therapeutic strategies to prevent or even reverse cardiac remodelling. Recent insights from experimental studies have provided new targets for interventions to prevent or reverse LV remodelling, i.e. reduced endothelial nitric oxide (NO) synthase-derived NO availability, activation of cardiac and leukocyte-dependent oxidant stress pathways, inflammatory pathway activation, matrix-metalloproteinase activation, or stem cell transfer and delivery of novel paracrine factors. An important challenge in translating these observations from preclinical studies into clinical treatment strategies relates to the fact that clinical studies are designed on top of established pharmacological therapy, whereas most experimental studies have tested novel interventions without concomitant drug regimens such as ACE inhibitors or beta-blockers. Therefore, animal studies may overestimate the effect of potential novel treatment strategies on LV remodelling and dysfunction, since established pharmacological therapies may act, in part, via identical or similar signalling pathways. Nevertheless, preclinical studies provide essential information for identifying potential novel targets, and their potential drawbacks, and are required for developing novel clinical treatment strategies to prevent or reverse LV remodelling and dysfunction.
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