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Interaction of Cardiovascular Nonmodifiable Risk Factors, Comorbidities and Comedications With Ischemia/Reperfusion
Péter Ferdinandy1, Ioanna Andreadou2, Gary F Baxter2
1Department of Pharmacology and Pharmacotherapy, Semmelweis University, Budapest, Hungary (P.F.); Pharmahungary Group, Szeged, Hungary (P.F.); Laboratory of Pharmacology, Faculty of Pharmacy, National and Kapodistrian University of Athens, Athens, Greece (I.A.); Division of Pharmacology, Cardiff School of Pharmacy and Pharmaceutical Sciences, Cardiff University, Cardiff, UK (G.F.B.); Department of Cardiology, Aarhus University Hospital, Aarhus N, Denmark (H.E.B.); The Hatter Cardiovascular Institute, University College London, London, UK (S.M.D.); Institute of Pharmacology, West German Heart and Vascular Center, University Duisburg-Essen, Essen, Germany (D.D.); Department of Medicine, Montreal Heart Institute and Université de Montréal, Montréal, Québec, Canada (D.D.); Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, Texas (D.D.); Department of Cardiovascular Medicine, Mayo Clinic College of Medicine and Science, Rochester, Minnesota (B.J.G.); Institute for Pathophysiology, West German Heart and Vascular Center, University of Essen Medical School, Essen, Germany (G.H.); Cape Heart Institute and Hatter Institute for Cardiovascular Research in Africa, Department of Medicine, University of Cape Town, Cape Town, South Africa (S.L.); Cardiovascular Diseases Research Group, Vall d'Hebron Institut de Recerca (VHIR), Vall d'Hebron Hospital Universitari, Vall d'Hebron Barcelona Hospital Campus, Spain (M.R-M.); Laboratory of Experimental Intensive Care Anesthesiology, Department Anesthesiology, Amsterdam Cardiovascular Sciences, Amsterdam UMC, University of Amsterdam, Amsterdam, the Netherlands (C.J.Z.); Cardiovascular & Metabolic Disorders Program, Duke-National University of Singapore Medical School, Singapore (D.J.H.); National Heart Research Institute Singapore, National Heart Centre, Singapore (D.J.H.); Yong Loo Lin School of Medicine, National University Singapore, Singapore (D.J.H.); Cardiovascular Research Center, College of Medical and Health Sciences, Asia University, Taiwan (D.J.H.); and Institute of Physiology, Justus-Liebig University, Giessen, Germany (R.S.) peter.ferdinandy@pharmahungary.com.
Insights
Cardioprotective therapies show promise but fail in clinical trials because preclinical studies often ignore comorbidities. Addressing cardiovascular risk factors and medications is crucial for developing effective heart protection drugs.
Area of Science:
- Cardiovascular Science
- Pharmacology
- Translational Medicine
Background:
- Cardioprotection strategies like preconditioning, postconditioning, and remote conditioning aim to improve heart resilience against ischemia/reperfusion injury.
- Despite extensive research into endogenous cardioprotection pathways, no specific cardioprotective drugs are currently available for clinical use.
- A significant barrier to clinical translation is the inadequate preclinical evaluation of therapies in models that reflect human ischemic heart disease complexity.
Purpose of the Study:
- To review evidence on how cardiovascular risk factors, comorbidities, and their medications influence the efficacy of cardioprotective interventions.
- To highlight the critical need for incorporating these factors into preclinical and clinical study designs for developing effective cardioprotective therapies.
Main Methods:
- Review of recent preclinical and clinical evidence.
- Focus on the impact of cardiovascular risk factors (e.g., hypertension, diabetes, hyperlipidemia) and associated medications on ischemia/reperfusion injury.
- Analysis of how comorbidities alter cellular signaling pathways relevant to cardioprotection.
Main Results:
- Cardiovascular risk factors and comorbidities fundamentally alter cellular signaling, affecting ischemia/reperfusion injury and response to cardioprotective interventions.
- Medications used to treat comorbidities can also modify cellular signaling, potentially impacting cardioprotection.
- Current preclinical models often lack the complexity of human disease, failing to account for these modifying factors.
Conclusions:
- Rigorous preclinical evaluation that includes comorbidities and their treatments is essential for successful translation of cardioprotective therapies.
- Accounting for patient-specific factors like cardiovascular risk factors, comorbidities, and medications is vital for developing effective cardioprotective strategies.
- This approach aims to maximize the success rate of developing rational, patient-centered cardioprotective therapies.
Abstract:
Preconditioning, postconditioning, and remote conditioning of the myocardium enhance the ability of the heart to withstand a prolonged ischemia/reperfusion insult and the potential to provide novel therapeutic paradigms for cardioprotection. While many signaling pathways leading to endogenous cardioprotection have been elucidated in experimental studies over the past 30 years, no cardioprotective drug is on the market yet for that indication. One likely major reason for this failure to translate cardioprotection into patient benefit is the lack of rigorous and systematic preclinical evaluation of promising cardioprotective therapies prior to their clinical evaluation, since ischemic heart disease in humans is a complex disorder caused by or associated with cardiovascular risk factors and comorbidities. These risk factors and comorbidities induce fundamental alterations in cellular signaling cascades that affect the development of ischemia/reperfusion injury and responses to cardioprotective interventions. Moreover, some of the medications used to treat these comorbidities may impact on cardioprotection by again modifying cellular signaling pathways. The aim of this article is to review the recent evidence that cardiovascular risk factors as well as comorbidities and their medications may modify the response to cardioprotective interventions. We emphasize the critical need for taking into account the presence of cardiovascular risk factors as well as comorbidities and their concomitant medications when designing preclinical studies for the identification and validation of cardioprotective drug targets and clinical studies. This will hopefully maximize the success rate of developing rational approaches to effective cardioprotective therapies for the majority of patients with multiple comorbidities. SIGNIFICANCE STATEMENT: Ischemic heart disease is a major cause of mortality; however, there are still no cardioprotective drugs on the market. Most studies on cardioprotection have been undertaken in animal models of ischemia/reperfusion in the absence of comorbidities; however, ischemic heart disease develops with other systemic disorders (e.g., hypertension, hyperlipidemia, diabetes, atherosclerosis). Here we focus on the preclinical and clinical evidence showing how these comorbidities and their routine medications affect ischemia/reperfusion injury and interfere with cardioprotective strategies.
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