Multi-modal data integration using Markov Field graphical networks predicts B cell depletion and immune responses associated with protective intravenous BCG (IV-BCG) vaccination against tuberculosis in macaques
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Shu Wang, Amy J Myers, Edward B Irvine, Chuangqi Wang, Pauline Maiello, Mark A Rodgers, Jaime Tomko, Kara Kracinovsky, H. Jacob Borish, Michael C Chao, Douaa Mugahid, Patricia A. Darrah, Robert A. Seder, Mario Roederer, Charles A Scanga, Philana Ling Lin, Galit Alter, Sarah M Fortune, JoAnne L Flynn, Douglas A Lauffenburger
Paper Link: https://doi.org/10.1101/2024.04.13.589359
Link to Model Validation Datasets: https://fairdomhub.org/studies/1198
Abstract: Multi-modal datasets provide rich information that can help identify critical multi-scale interactions underlying biological systems. However, identifying associations between features and outputs can be beset by spurious connections due to indirect impacts propagating through an unmapped biological network. We applied a probabilistic graphical modeling approach, Markov Fields, to dissect correlations between immune features in a public multi-modal dataset (systems serology, cytokines, cytometry) of macaques undergoing intravenous BCG vaccination against tuberculosis. This yielded an interaction network that interprets network paths underlying vaccine efficacy, and shows how correlations between features often arise indirectly. We next conducted experimental depletion of B cells during vaccination in macaques—which did not reduce protection against tuberculosis—to validate our Markov Field model’s predictions of network-wide shifts post-depletion. Finally, we highlight immune changes predicted to strongly affect intravenous BCG vaccine efficacy, showing that probabilistic graphical models increase the interpretability of multi-modal datasets for identifying new disease targets.
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Created: 1st Dec 2023 at 16:55
Last updated: 31st Jul 2024 at 19:38
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Projects: Hi-IMPAcTB
Web page: https://www.niaid.nih.gov/research/immune-mechanisms-protection-mycobacterium-tuberculosis
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This project houses all the publicly available datasets generated by the Hi-IMPAcTB consortium over the course of its 7+ years.
What is Hi-IMPAcTB?
Hi-IMPAcTB is an ambitious endeavor bringing together a team of international, interdisciplinary researchers to improve our understanding of host-pathogen interactions in the context of tuberculosis (TB). Funded by a multi-center contract from the NIH, the long-term goal of the consortium is to enable principled vaccine design by improving ...
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