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Robertson, G. T.

Publications and source records attributed to Robertson, G. T..

2 recordsLinked to original sources

GSK2556286 is a novel antitubercular drug candidate effective in vivo with the potential to shorten tuberculosis treatment

As a result of a high-throughput compound screening campaign of Mycobacterium tuberculosis infected macrophages, a new preclinical drug candidate for the treatment of tuberculosis has been identified. GSK2556286 inhibits growth within human macrophages (IC50 = 0.07 {micro}M), is active against extracellular bacteria in cholesterol-containing culture media and exhibits no cross-resistance with known antitubercular drugs. In addition, it has shown efficacy in different mouse models of tuberculosis (TB) and has an adequate safety profile in two preclinical species. These features indicate a compound with a novel mode of action, although still not fully defined, that is effective against both multidrug or extensively-resistant (M/XDR) and drug-sensitive (DS) M. tuberculosis with the potential to shorten the duration of treatment in novel combination drug regimens. One Sentence SummaryGSK2556286 is a novel preclinical drug candidate for the treatment of tuberculosis with a new mode of action potentially able to contribute to the shortening of TB chemotherapy.

pharmacology and toxicology↗

Combination of Mycobacterium tuberculosis RS ratio and CFU improves the ability of murine efficacy experiments to distinguish between drug treatments

Murine tuberculosis drug efficacy studies have historically monitored bacterial burden based on colony forming units of M. tuberculosis in lung homogenate. In an alternative approach, a recently described molecular pharmacodynamic marker called the RS ratio quantifies drug effect on a fundamental cellular process: ongoing ribosomal RNA synthesis. Here we evaluated the ability of different pharmacodynamic markers to distinguish between treatments in three BALB/c mouse experiments at two institutions. We confirmed that different pharmacodynamic markers measure distinct biological responses. We found that a combination of pharmacodynamic markers distinguishes between treatments better than any single marker. The combination of the RS ratio with colony forming units showed the greatest ability to recapitulate the rank order of regimen treatment-shortening activity, providing proof of concept that simultaneous assessment of pharmacodynamic markers measuring different properties will enhance insight gained from animal models and accelerate development of new combination regimens. These results suggest potential for a new era in which antimicrobial therapies are evaluated not only on culture-based measures of bacterial burden but also on molecular assays that indicate how drugs impact the physiological state of the pathogen.

microbiology↗