The Heart-Brain-Metabolism Axis in Cardiovascular and Neurologic Disease

Daniel T Tardo1, Marta Cortes-Canteli2, Valentin Fuster3

  • 1Cardiovascular and Genomics Research Institute, City St George's University of London, London, United Kingdom; St George's University Hospitals NHS Foundation Trust, London, United Kingdom; School of Medicine, University of Notre Dame Australia, Sydney, Australia.

Insights

The heart-brain-metabolism axis significantly impacts cognitive health, influencing conditions like vascular cognitive impairment and dementia. Understanding these complex interactions is key for developing preventative strategies against cognitive frailty.

Area of Science:

  • Cardiovascular Medicine
  • Neuroscience
  • Metabolic Health

Background:

  • The heart-brain axis (HBA) is increasingly recognized for its role in cognitive function.
  • Recent understanding highlights the HBA's impact on vascular cognitive impairment and dementia (VCID).
  • Autonomic, gut, metabolic, and immune pathways create a complex heart-brain-metabolism axis.

Purpose of the Study:

  • To review the anatomic and physiologic connections within the heart-brain-metabolism axis.
  • To explore how pathologies in cardiovascular, neurologic, metabolic, immune, and gastrointestinal systems contribute to cognitive dysfunction.
  • To emphasize preventative strategies for mitigating risks of VCID and cognitive frailty.

Main Methods:

  • Review of current literature on the heart-brain-metabolism axis.
  • Analysis of pathologic processes affecting interconnected organ systems.
  • Discussion of emerging diagnostic and therapeutic approaches.

Main Results:

  • The heart, brain, gut, and metabolic systems are intricately interconnected.
  • Dysfunction in one system can precipitate pathology in others, leading to VCID and cognitive frailty.
  • Preventative approaches focusing on early identification and intervention are crucial.

Conclusions:

  • Integrated interventions targeting cardiovascular, neurocognitive, and metabolic factors are essential for disease prevention.
  • Emerging tools for cognitive risk prediction in cardiovascular disease show promise.
  • Therapeutic strategies, including gut microbiome modulation and statins, offer potential neuroprotection.

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