Vasculopathy related to manic/hypomanic symptom burden and first-generation antipsychotics in a sub-sample from the

Jess G Fiedorowicz1, William H Coryell, John P Rice

  • 1Mathematics in Psychiatry, Washington University School of Medicine, St. Louis, MO, USA. jess-fiedorowicz@uiowa.edu

Insights

Mood disorders, particularly manic/hypomanic symptoms, are linked to poorer vascular health and endothelial dysfunction. Long-term antipsychotic use, especially older types, may increase arterial stiffness and blood pressure in these patients.

Area of Science:

  • Psychiatry
  • Cardiology
  • Vascular Medicine

Background:

  • Mood disorders are a significant risk factor for cardiovascular disease.
  • The underlying mechanisms linking mood disorders to cardiovascular complications remain unclear.

Purpose of the Study:

  • To investigate the dose-dependent relationship between mood disorder chronicity and treatment, and the development of vasculopathy.
  • To explore the association between mood symptom burden and vascular function.

Main Methods:

  • Prospective follow-up of participants in the National Institute of Mental Health Collaborative Depression Study (CDS).
  • Cross-sectional assessment of metabolic and vascular function in a sub-sample after a mean follow-up of 27 years.

Main Results:

  • Manic/hypomanic symptom burden, not depressive symptoms, correlated with reduced flow-mediated dilation.
  • Cumulative exposure to antipsychotics and mood stabilizers was linked to increased augmentation pressure and mean aortic systolic blood pressure.
  • First-generation antipsychotics were specifically associated with arterial stiffness, mediated by increased brachial systolic pressure; second-generation antipsychotics were linked to metabolic issues but not vasculopathy.

Conclusions:

  • Chronicity of mood symptoms contributes to vasculopathy in a dose-dependent manner.
  • Increased manic/hypomanic symptoms are associated with impaired endothelial function.
  • First-generation antipsychotic exposure may contribute to arterial stiffness, potentially via elevated blood pressure, highlighting the need for vascular phenotyping in mood disorder research.
Abstract

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