Impaired cardiovascular structure and function in adult survivors of severe acute malnutrition

Ingrid A Tennant1, Alan T Barnett1, Debbie S Thompson1

  • 1From the Tropical Medicine Research Institute (D.S.T., M.S.B.), Departments of Surgery, Radiology, Anaesthesia, and Intensive Care (I.A.T., A.T.B.), Medicine (Cardiology) (E.E.C., A.P.C.), and UWI Solutions for Developing Countries (T.E.F.), University of the West Indies, Mona, Kingston, Jamaica; Institute Biomedical Technology, Ghent University, Gent, Belgium (J.K., P.S.); MRC Lifecourse Epidemiology Unit (C.O.) and DOHAD Division (M.A.H.), University of Southampton, Southampton, United Kingdom; Centre for Human Evolution, Adaptation, and Disease, Liggins Institute, University of Auckland, Auckland, New Zealand (P.D.G.); and Division of Diabetes, Cardiovascular Medicine, and Nutrition, King's College and King's Health Partners, London, United Kingdom (J.K.C.).

Insights

Adults who survived severe acute malnutrition (SAM) in childhood have poorer cardiovascular function, including smaller cardiac output and higher blood pressure, increasing their risk for hypertension later in life.

Area of Science:

  • Cardiovascular Medicine
  • Pediatric Health
  • Nutritional Science

Background:

  • Severe acute malnutrition (SAM) in children under five is a global health concern with unknown long-term cardiovascular effects.
  • SAM presents in two forms: oedematous (kwashiorkor) and non-oedematous (marasmus).

Purpose of the Study:

  • To investigate the long-term cardiovascular structure and function in adult survivors of childhood SAM compared to healthy controls.
  • To test the hypothesis that SAM survivors exhibit poorer cardiovascular outcomes.

Main Methods:

  • A study involving 116 adult SAM survivors (54 marasmic, 62 kwashiorkor) and 45 matched controls.
  • Standardized measurements included anthropometry, blood pressure, echocardiography, and arterial tonometry.
  • Analysis focused on left ventricular indices, outflow tract diameter, carotid parameters, pulse wave velocity, and systemic vascular resistance.

Main Results:

  • SAM survivors showed reduced left ventricular outflow tract diameter, stroke volume, and cardiac output compared to controls.
  • Pulse wave velocity was lower in SAM survivors, but diastolic blood pressure and systemic vascular resistance were significantly higher.
  • No significant cardiac or large vessel remodeling was observed, except for closer index relationships in marasmus survivors.

Conclusions:

  • Adult survivors of childhood SAM exhibit impaired cardiovascular function, characterized by reduced cardiac output and elevated peripheral resistance.
  • These findings suggest a heightened risk of developing hypertension in later life, particularly if obesity occurs.
  • Long-term cardiovascular monitoring of SAM survivors is warranted.

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