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https://hdl.handle.net/1959.11/48314
Title: | A murine model of tuberculosis/type 2 diabetes comorbidity for investigating the microbiome, metabolome and associated immune parameters | Contributor(s): | Sathkumara, Harindra D (author); Eaton, Janet L (author); Field, Matt A (author); Govan, Brenda L (author); Ketheesan, Natkunam (author) ; Kupz, Andreas (author) | Publication Date: | 2021-06 | Early Online Version: | 2021-03-23 | Open Access: | Yes | DOI: | 10.1002/ame2.12159 | Handle Link: | https://hdl.handle.net/1959.11/48314 | Abstract: | Tuberculosis (TB) is one of the deadliest infectious diseases in the world. The metabolic disease type 2 diabetes (T2D) significantly increases the risk of developing active TB. Effective new TB vaccine candidates and novel therapeutic interventions are required to meet the challenges of global TB eradication. Recent evidence suggests that the microbiota plays a significant role in how the host responds to infection, injury and neoplastic changes. Animal models that closely reflect human physiology are crucial in assessing new treatments and to decipher the underlying immunological defects responsible for increased TB susceptibility in comorbid patients. In this study, using a diet-induced murine T2D model that reflects the etiopathogenesis of clinical T2D and increased TB susceptibility, we investigated how the intestinal microbiota may impact the development of T2D, and how the gut microbial composition changes following a very low-dose aerosol infection with Mycobacterium tuberculosis (Mtb). Our data revealed a substantial intestinal microbiota dysbiosis in T2D mice compared to non-diabetic animals. The observed differences were comparable to previous clinical reports in TB patients, in which it was shown that Mtb infection causes rapid loss of microbial diversity. Furthermore, diversity index and principle component analyses demonstrated distinct clustering of Mtb-infected non-diabetic mice vs. Mtb-infected T2D mice. Our findings support a broad applicability of T2D mice as a tractable small animal model for studying distinct immune parameters, microbiota and the immune-metabolome of TB/T2D comorbidity. This model may also enable answers to be found to critical outstanding questions about targeted interventions of the gut microbiota and the gut-lung axis. | Publication Type: | Journal Article | Grant Details: | NHMRC/APP1052764 NHMRC/APP1140709 NHMRC/APP1120808 |
Source of Publication: | Animal Models and Experimental Medicine, 4(2), p. 181-188 | Publisher: | John Wiley & Sons, Inc | Place of Publication: | United States of America | ISSN: | 2576-2095 2096-5451 |
Fields of Research (FoR) 2020: | 320211 Infectious diseases 320701 Medical bacteriology |
Socio-Economic Objective (SEO) 2020: | 200104 Prevention of human diseases and conditions | Peer Reviewed: | Yes | HERDC Category Description: | C1 Refereed Article in a Scholarly Journal |
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Appears in Collections: | Journal Article School of Science and Technology |
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openpublished/AMurineKetheesan2021JournalArticle.pdf | Published version | 1.7 MB | Adobe PDF Download Adobe | View/Open |
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