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Diacon, A.

Publications and source records attributed to Diacon, A..

2 recordsLinked to original sources

Antibiotic lethality dictates mycobacterial infection outcomes

Antibiotic development and treatment focus on bacterial growth inhibition, often with limited success. Here, we introduce Antimicrobial Single-Cell Testing (ASCT), an advanced imaging strategy to assess bacterial killing in real-time. By tracking 140 million bacteria and generating over 20,000 in vitro time-kill curves, we can predict Mycobacterium tuberculosis treatment outcomes in mice and humans and link strain-specific survival (drug tolerance) in Mycobacterium abscessus to clinical responses. Using ASCT, we reveal drug tolerance as a distinct genetically encoded bacterial trait conserved across drugs with similar targets and, via genome-wide associations, uncover molecular mechanisms that govern bacterial killing. This study establishes the technical framework and in vivo validation for large-scale bacterial killing assessments to advance our understanding of bacterial survival, antibiotic development and clinical decision-making.

microbiology↗

Novel tuberculosis combination regimens of two and three-months therapy duration

The tuberculosis treatment duration is 4-6 months, but can be 18-20 months with multidrug resistance. Ultrashort regimens that cure regardless of resistance status ["pan-tuberculosis regimens"] would be a major step towards global tuberculosis control. Starting with seven drugs [bedaquiline, delamanid, pretomanid, OPC-167832, sutezolid, moxifloxacin, and pyrazinamide] in clinical testing, we calculated that there were thousands of possible novel combinations to evaluate. We used mathematical and pharmacokinetics/pharmacodynamic-based hollow fiber modeling to reduce this complexity to nine combinations, which we tested. Each regimens fast and slow growth bacteria kill-slope trajectories and times-to-extinction were estimated and translated to minimum required therapy duration in patients. Sputum microbial kill trajectories of two combination regimens that have undergone clinical testing were correctly predicted by this approach. Four pan-tuberculosis regimens were predicted to achieve relapse-free cure after 2-3 months therapy in patients. The kill-slopes were used to design expedited clinical trials that minimize patients risks.

pharmacology and toxicology↗