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A Zebrafish Model of Diabetes Mellitus and Metabolic Memory
Published on: February 28, 2013
Clinical significance of 'cardiometabolic memory': a systematic review of randomized controlled trials
Hiroshi Itoh1, Isao Kurihara1, Kazutoshi Miyashita1
1Division of Endocrinology, Metabolism, and Nephrology, Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.
Insights
Cardiometabolic memory explains how treatment benefits persist after trials end. Intensive interventions for diabetes, hypertension, and dyslipidemia show lasting positive effects on cardiovascular outcomes.
Area of Science:
- Cardiology
- Endocrinology
- Pharmacology
Background:
- The 'cardiometabolic memory' phenomenon suggests lasting benefits from past treatments.
- Understanding this memory is crucial for long-term cardiovascular risk management.
Purpose of the Study:
- To systematically review randomized controlled trials (RCTs) investigating cardiometabolic memory.
- To assess the persistence of treatment effects on cardiovascular outcomes after intervention cessation.
Main Methods:
- Systematic review of RCTs published after 2000, identified via PubMed search.
- Inclusion criteria focused on trials with post-trial follow-up for diabetes, hypertension, or dyslipidemia.
- Positive memory defined by sustained cardiovascular outcome superiority despite loss of risk factor control.
Main Results:
- Eight, six, and seven studies showed positive memory for diabetes, hypertension, and dyslipidemia, respectively.
- Intensive glucose lowering aided microangiopathy suppression; macroangiopathy benefits emerged later.
- Blood pressure and LDL cholesterol lowering demonstrated significant long-term cardiovascular event risk reduction.
Conclusions:
- Cardiometabolic memory is clinically relevant across cardiometabolic diseases.
- Transient intensive interventions can establish lasting protective effects.
- This phenomenon highlights the importance of early and aggressive risk factor management.
Abstract:
'Cardiometabolic memory' has been proposed based on clinical evidence to explain how, even after the cessation of a clinical trial, the superiority of one treatment over the outcome persists. To understand the cardiometabolic memory phenomenon, we performed a systematic review of randomized controlled trials (RCTs) using PubMed in August 2016. The search terms 'randomized controlled trial', 'post-trial follow-up' and 'diabetes, hypertension or dyslipidemia' were used, and articles published after the year 2000 were searched. We judged the memory phenomenon to be positive when the cardiovascular outcome at the end of the post-trial follow-up period in the intervention group was significantly superior even though the favorable control of a risk factor (blood glucose, blood pressure or lipid level) during the trial period was lost after the cessation of the intervention. Among 907 articles retrieved in the initial screening, 21 articles were judged as describing a positive memory phenomenon. Eight, six and seven of the articles concerned diabetes, hypertension and dyslipidemia, respectively. Transient intensive glucose lowering rather easily induced memory for the suppression of diabetic microangiopathies, while memory for the suppression of macroangiopathies tended to be first evident in the post-trial follow-up period. Transient intensive blood pressure lowering was generally effective in the formation of memory for the suppression of cardiovascular events and had an especially strong impact on risk reduction of chronic heart failure. Transient intensive LDL cholesterol lowering clearly had a long-term beneficial effect on risk reduction of cardiovascular events. Our systematic review revealed the clinical relevance of cardiometabolic memory.
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