Imaging and Circulating Biomarker-Defined Cardiac Pathology in Pulmonary Tuberculosis: A Systematic Review.

Anoop S V Shah, Dominik Zenner, Marcello S Scopazzini, Katherine J Hill, Edith D Majonga, Helen Ayles

Journal: Global heart 2024;19(1):84

PMID: 39524989

Abstract

BACKGROUND

Pulmonary tuberculosis (PTB) is associated with increased cardiovascular disease (CVD) mortality. However, underlying pathophysiological mechanisms are poorly understood. This systematic review aims to synthesise the evidence on the prevalence of cardiac pathology based on cardiac imaging and circulating biomarkers in patients with PTB.

METHODS

We systematically searched databases for studies in patients with PTB evaluating cardiac pathology (pericardial effusion or left ventricular dysfunction) on echocardiography; late gadolinium enhancement on cardiac magnetic resonance imaging (CMR); myocardial inflammation on positron-emission tomography (PET); coronary artery stenosis on CT coronary angiography (CTCA); and cardiac troponin (cTn) and/or B-type natriuretic peptides (BNP) assessment.

RESULTS

Seven studies were included across 1,333 participants with PTB. Four studies used echocardiography (n = 1,111). The prevalence of pericardial effusion ranged from 14.1-55.9%; and left ventricular systolic impairment from 0-4.25%. One study used CMR and PET-CT (n = 26); and two studies used PET-CT alone (n = 196). The prevalence of pericardial and/or myocardial inflammation ranged from 0.6-21.8%. One study evaluated cTn, Creatine Kinase-MB (CK-MB), and BNP (n = 800), of whom 246 had raised cTn. No study reported cardiac pathology using CTCA.

CONCLUSION

Pericardial effusion is the commonest reported cardiac pathology in PTB. To date, only one study has evaluated cardiac biomarkers and studies evaluating myocardial or coronary disease on advanced imaging remain limited. Our study highlights the paucity of evidence on the presence of cardiac pathology in PTB. Studies are required to determine the prevalence of, and disease mechanisms associated with cardiac pathology among patients with PTB.

Copyright: © 2024 The Author(s).

Address: Department of Non-Communicable Diseases Epidemiology, Faculty of Epidemiology and Population Health, London School of Hygiene and Tropical Medicine, Keppel Street, London, WC1E 7HT, United Kingdom.; Zambart, University of Zambia Ridgeway Campus, Off-Nationalist Road, Lusaka, Zambia.; Infection and Global Health Division, School of Medicine, Medical & Biological Sciences, University of St Andrews, St Andrews, KY16 9 AJ, United Kingdom.; Biomedical Research Training Institute, Harare, Zimbabwe.; University of Zimbabwe, Faculty of Medicine and Health Sciences, Department of Oncology, Medical Physics & Imaging Sciences, Harare, Zimbabwe.; Centre for Public Health and Policy, Wolfson Institute of Population Health, Queen Mary University of London, Mile End Road, London, E1 4 NS, United Kingdom.; Zambart, University of Zambia Ridgeway Campus, Off-Nationalist Road, Lusaka, Zambia.; Department of Clinical Research, Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, Keppel Street, London, WC1E 7HT, United Kingdom.; Department of Non-Communicable Diseases Epidemiology, Faculty of Epidemiology and Population Health, London School of Hygiene and Tropical Medicine, Keppel Street, London, WC1E 7HT, United Kingdom.
Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.