Department of Medical Microbiology and Infectious Diseases, Erasmus University Medical Centre, Rotterdam, The Netherlands.
Global Health Institute, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Antimicrob Agents Chemother. 2020 Jun 23;64(7). doi: 10.1128/AAC.00280-20.
One of the reasons for the lengthy tuberculosis (TB) treatment is the difficulty to treat the nonmultiplying mycobacterial subpopulation. In order to assess the ability of (new) TB drugs to target this subpopulation, we need to incorporate dormancy models in our preclinical drug development pipeline. In most available dormancy models, it takes a long time to create a dormant state, and it is difficult to identify and quantify this nonmultiplying condition. The 18b strain might overcome some of these problems, because it is dependent on streptomycin for growth and becomes nonmultiplying after 10 days of streptomycin starvation but still can be cultured on streptomycin-supplemented culture plates. We developed our 18b dormancy time-kill kinetics model to assess the difference in the activity of isoniazid, rifampin, moxifloxacin, and bedaquiline against log-phase growth compared to the nonmultiplying subpopulation by CFU counting, including a novel area under the curve (AUC)-based approach as well as time-to-positivity (TTP) measurements. We observed that isoniazid and moxifloxacin were relatively more potent against replicating bacteria, while rifampin and high-dose bedaquiline were equally effective against both subpopulations. Moreover, the TTP data suggest that including a liquid culture-based method could be of additional value, as it identifies a specific mycobacterial subpopulation that is nonculturable on solid media. In conclusion, the results of our study underline that the time-kill kinetics 18b dormancy model in its current form is a useful tool to assess TB drug potency and thus has its place in the TB drug development pipeline.
结核病(TB)治疗时间长的原因之一是难以治疗非增殖分枝杆菌亚群。为了评估(新)抗结核药物靶向该亚群的能力,我们需要在我们的临床前药物开发管道中纳入休眠模型。在大多数可用的休眠模型中,需要很长时间才能产生休眠状态,并且很难识别和量化这种非增殖状态。18b 株可能会克服其中的一些问题,因为它的生长依赖于链霉素,在链霉素饥饿 10 天后变为非增殖,但仍可以在添加链霉素的培养板上培养。我们开发了我们的 18b 休眠时间杀伤动力学模型,通过 CFU 计数来评估异烟肼、利福平、莫西沙星和贝达喹啉对对数生长期和非增殖亚群的活性差异,包括一种新的基于 AUC 的方法和阳性时间 (TTP) 测量。我们观察到异烟肼和莫西沙星对复制细菌的活性相对更强,而利福平高剂量和贝达喹啉对两个亚群的效果相同。此外,TTP 数据表明,包括液体培养方法可能会更有价值,因为它可以识别出一种在固体培养基上不可培养的特定分枝杆菌亚群。总之,我们研究的结果强调,目前形式的时间杀伤动力学 18b 休眠模型是评估抗结核药物效力的有用工具,因此在抗结核药物开发管道中具有其地位。