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Mbio|July 20, 2022
Impaired Succinate Oxidation Prevents Growth and Influences Drug Susceptibility in Mycobacterium tuberculosisCara Adolph, Matthew B McNeil, Gregory M CookProgress in Biophysics and Molecular Biology|November 17, 2019
Two for the price of one: Attacking the energetic-metabolic hub of mycobacteria to produce new chemotherapeutic agentsKiel Hards, Cara Adolph, Liam K Harold, et al.The Lancet. Microbe|December 25, 2025
Global biological sample collections from tuberculosis studies: a scoping reviewCara Adolph, Simon C Mendelsohn, Laura E Via, et al.The Lancet. Microbe|December 25, 2025
The need for interconnected global biorepositories from tuberculosis studies to address fundamental questions at scaleCara Adolph, Simon C Mendelsohn, Laura E Via, et al.Frontiers in Cellular and Infection Microbiology|September 12, 2022
Uncovering interactions between mycobacterial respiratory complexes to target drug-resistant <i>Mycobacterium tuberculosis</i>Matthew B McNeil, Chen-Yi Cheung, Natalie J E Waller, et al.Cell Chemical Biology|December 27, 2023
A dual-targeting succinate dehydrogenase and F<sub>1</sub>F<sub>o</sub>-ATP synthase inhibitor rapidly sterilizes replicating and non-replicating Mycobacterium tuberculosisCara Adolph, Chen-Yi Cheung, Matthew B McNeil, et al.Communications Biology|February 25, 2022
An amiloride derivative is active against the F<sub>1</sub>F<sub>o</sub>-ATP synthase and cytochrome bd oxidase of Mycobacterium tuberculosisKiel Hards, Chen-Yi Cheung, Natalie Waller, et al.ACS Infectious Diseases|September 13, 2024
Identification of Chemical Scaffolds That Inhibit the <i>Mycobacterium tuberculosis</i> Respiratory Complex Succinate DehydrogenaseCara Adolph, Kiel Hards, Zoe C Williams, et al.Pageof 1