<p>Diabetic myocardial disorder is characterized by myocardial dysfunction in diabetes mellitus patients, independent of other heart disease causes like coronary artery disease or hypertension. This condition threatens the well-being of patients. At the cellular and molecular levels, disruptions in cardiomyocyte metabolism, abnormal calcium signaling, and increased reactive oxygen species production, among others, interconnect to create a complex pathological network that worsens myocardial cell damage and leads to cardiac dysfunction symptoms. The limited effectiveness of current pharmacological treatments has increased the appeal of non-pharmacological therapies, especially exercise therapy. Exercise is anticipated to ameliorate diabetic myocardial disease through pleiotropic beneficial effects. The fundamental mechanisms behind these benefits remain unclear; further investigation of these mechanisms will aid in developing targeted therapies. This paper aims to explore how exercise affects myocardial metabolism, antioxidant capacity, fibrosis, and microangiopathy while providing an overview of key mechanisms and recent breakthroughs to encourage ongoing research in this area.</p> Graphical Abstract <p>Exercise integrates these independent mechanisms and interacts to mitigate disease processes, including cardiomyocyte metabolism, oxidative stress, myocardial fibrosis, and microangiopathy.</p> <p></p>

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Exercise Empowerment: A Multifaceted Anatomy in Managing Diabetic Myocardial Disorder

  • Congfei Chen,
  • Longfei Xu,
  • Kun Wang,
  • Tianhui Wang

摘要

Diabetic myocardial disorder is characterized by myocardial dysfunction in diabetes mellitus patients, independent of other heart disease causes like coronary artery disease or hypertension. This condition threatens the well-being of patients. At the cellular and molecular levels, disruptions in cardiomyocyte metabolism, abnormal calcium signaling, and increased reactive oxygen species production, among others, interconnect to create a complex pathological network that worsens myocardial cell damage and leads to cardiac dysfunction symptoms. The limited effectiveness of current pharmacological treatments has increased the appeal of non-pharmacological therapies, especially exercise therapy. Exercise is anticipated to ameliorate diabetic myocardial disease through pleiotropic beneficial effects. The fundamental mechanisms behind these benefits remain unclear; further investigation of these mechanisms will aid in developing targeted therapies. This paper aims to explore how exercise affects myocardial metabolism, antioxidant capacity, fibrosis, and microangiopathy while providing an overview of key mechanisms and recent breakthroughs to encourage ongoing research in this area.

Graphical Abstract

Exercise integrates these independent mechanisms and interacts to mitigate disease processes, including cardiomyocyte metabolism, oxidative stress, myocardial fibrosis, and microangiopathy.