Systemic biological mechanisms underpin poor post-discharge growth among severely wasted children with HIV

Evans O. Mudibo, Jasper Bogaert, Caroline Tigoi, Moses M. Ngari, Benson O. Singa, Christina L. Lancioni, Abdoulaye Hama Diallo, Emmie Mbale, Ezekiel Mupere, John Mukisa, Johnstone Thitiri, Molline Timbwa, Elisha Omer, Narshion Ngao, Robert Musyimi, Eunice Kahindi, Roseline Maïmouna Bamouni, Robert H. J. Bandsma, Paul Kelly, Andrew J. Prendergast, Christine J. McGrath, Kirkby D. Tickell, Judd L. Walson, James A. Berkley, James M. Njunge & Gerard Bryan Gonzales

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https://eur01.safelinks.protection.outlook.com/?url=https%3A%2F%2Fdoi.org%2F10.1038%2Fs41467-024-54717-w&data=05%7C02%7CJWahome%40kemri-wellcome.org%7Cf4293f8e2a964539a94b08dd9c3a76da%7Ca5c0a820c8874727ac66403237d8c389%7C0%7C0%7C638838497097388730%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&sdata=AxcmuwjwU2608PqYj0AqceF%2FxfEGU7bnJoIlY7gG584%3D&reserved=0

In sub-Saharan Africa, children with severe malnutrition (SM) and HIV have substantially worse outcomes than children with SM alone, facing higher mortality risk and impaired nutritional recovery post-hospitalisation. Biological mechanisms underpinning this risk remain incompletely understood. This case-control study nested within the CHAIN cohort in Kenya, Uganda, Malawi, and Burkina Faso examined effect of HIV on six months post-discharge growth among children with SM and those at risk of malnutrition, assessed proteomic signatures associated with HIV in these children, and investigated how these systemic processes impact post-discharge growth in children with SM. Using SomaScanTM assay, 7335 human plasma proteins were quantified. Linear mixed models identified HIV-associated biological processes and their associations with post-discharge growth. Using structural equation modelling, we examined directed paths explaining how HIV influences post-discharge growth. Here, we show that at baseline, HIV is associated with lower anthropometry. Additionally, HIV is associated with protein profiles indicating increased complement activation and decreased insulin-like growth factor signalling and bone mineralisation. HIV indirectly affects post-discharge growth by influencing baseline anthropometry and modulating proteins involved in bone mineralisation and humoral immune responses. These findings suggest specific biological pathways linking HIV to poor growth, offering insights for targeted interventions in this vulnerable population.

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We thank the CHAIN Network study for their invaluable contribution to the current study, including provision of data. This work was supported by the Bill & Melinda Gates Foundation (INV-000791) and (OPP1131320) awarded to JAB and JLW. For the purpose of open access, the CHAIN Network has applied a CC BY public copyright license to any author-accepted manuscript version arising from this submission. The study was also supported by theNational Institute for Health and Care Research (NIHR201813) awarded to A.J.P., G.B.G., P.K., J.A.B., K.D.T., J.M.N., and B.O.S.; and Medical Research Council–Department for International Development–Wellcome Trust Joint Global Health Trials scheme (MR/M007367/1) awarded to J.A.B. E.O.M. is a PhD fellow at KEMRI-Wellcome Trust and Wageningen University funded by National Institute for Health Research (NIHR201813). A.J.P. is funded by Wellcome (108065/Z/15/Z). J.M.N. is supported by a Wellcome Trust Intermediate Fellowship (222967/B/21/Z). The funders had no role in the design, conduct, analysis or writing of this manuscript.

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