Tuberculosis infection prevention and control: why we need a whole systems approach

Author:

Kielmann KarinaORCID,Karat Aaron S.,Zwama Gimenne,Colvin Christopher,Swartz Alison,Voce Anna S.,Yates Tom A.,MacGregor Hayley,McCreesh Nicky,Kallon Idriss,Vassall Anna,Govender Indira,Seeley Janet,Grant Alison D.

Abstract

AbstractInfection prevention and control (IPC) measures to reduce transmission of drug-resistant and drug-sensitive tuberculosis (TB) in health facilities are well described but poorly implemented. The implementation of TB IPC has been assessed primarily through quantitative and structured approaches that treat administrative, environmental, and personal protective measures as discrete entities. We present an on-going project entitled Umoya omuhle (“good air”), conducted in two provinces of South Africa, that adopts an interdisciplinary, ‘whole systems’ approach to problem analysis and intervention development for reducing nosocomial transmission of Mycobacterium tuberculosis (Mtb) through improved IPC. We suggest that TB IPC represents a complex intervention that is delivered within a dynamic context shaped by policy guidelines, health facility space, infrastructure, organisation of care, and management culture. Methods drawn from epidemiology, anthropology, and health policy and systems research enable rich contextual analysis of how nosocomial Mtb transmission occurs, as well as opportunities to address the problem holistically. A ‘whole systems’ approach can identify leverage points within the health facility infrastructure and organisation of care that can inform the design of interventions to reduce the risk of nosocomial Mtb transmission.

Funder

Economic and Social Research Council

Publisher

Springer Science and Business Media LLC

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health,General Medicine

Reference16 articles.

1. Pokharel S, Raut S, Adhikari B. Tackling antimicrobial resistance in low-income and middle-income countries. BMJ Glob Health. 2019;4:e002104.

2. van der Westhuizen HM, Nathavitharana RR, Pillay C, Schoeman I, Ehrlich R. The high-quality health system ‘revolution’: Re-imagining tuberculosis infection prevention and control. J Clin Tuberc Other Mycobact Dis. 2019;17:100118.

3. O’Neill J. Tackling drug-resistance infections globally: final report and recommendations. 2016.https://amr-review.org/sites/%0Adefault/files/160518_Final paper_with cover.pdf. Accessed 14 Nov 2019.

4. Kendall EA, Fofana MO, Dowdy DW. Burden of transmitted multidrug resistance in epidemics of tuberculosis: a transmission modelling analysis. Lancet Respir Med. 2015;3:963–72.

5. World Health Organization. Guidelines on tuberculosis infection prevention and control, 2019 update. Annex 6: Results of the systematic reviews on the development of these guidelines. 2019. https://www.who.int/tb/areas-of-work/preventive-care/infection-control/Annex 6-SystematicReviewsResults.pdf?ua=1&ua=1.Accessed 28 Nov 2019.

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