Chiaraviglio Lucius, Kirby James E
Department of Pathology, Beth Israel Deaconess Medical Center, Boston, Massachusetts, USA.
Department of Pathology, Beth Israel Deaconess Medical Center, Boston, Massachusetts, USA
Antimicrob Agents Chemother. 2015 Dec;59(12):7517-29. doi: 10.1128/AAC.01248-15. Epub 2015 Sep 21.
Legionella pneumophila is a Gram-negative opportunistic human pathogen that causes a severe pneumonia known as Legionnaires' disease. Notably, in the human host, the organism is believed to replicate solely within an intracellular compartment, predominantly within pulmonary macrophages. Consequently, successful therapy is predicated on antimicrobials penetrating into this intracellular growth niche. However, standard antimicrobial susceptibility testing methods test solely for extracellular growth inhibition. Here, we make use of a high-throughput assay to characterize intracellular growth inhibition activity of known antimicrobials. For select antimicrobials, high-resolution dose-response analysis was then performed to characterize and compare activity levels in both macrophage infection and axenic growth assays. Results support the superiority of several classes of nonpolar antimicrobials in abrogating intracellular growth. Importantly, our assay results show excellent correlations with prior clinical observations of antimicrobial efficacy. Furthermore, we also show the applicability of high-throughput automation to two- and three-dimensional synergy testing. High-resolution isocontour isobolograms provide in vitro support for specific combination antimicrobial therapy. Taken together, findings suggest that high-throughput screening technology may be successfully applied to identify and characterize antimicrobials that target bacterial pathogens that make use of an intracellular growth niche.
嗜肺军团菌是一种革兰氏阴性机会性人类病原体,可引发一种名为军团病的严重肺炎。值得注意的是,在人类宿主中,该生物体被认为仅在细胞内区室中复制,主要是在肺巨噬细胞内。因此,成功的治疗取决于抗菌药物能否渗透到这个细胞内生长微环境中。然而,标准的抗菌药物敏感性测试方法仅检测细胞外生长抑制情况。在此,我们利用一种高通量检测方法来表征已知抗菌药物的细胞内生长抑制活性。对于选定的抗菌药物,随后进行了高分辨率剂量反应分析,以表征和比较巨噬细胞感染和无菌生长检测中的活性水平。结果支持了几类非极性抗菌药物在消除细胞内生长方面的优越性。重要的是,我们的检测结果与先前关于抗菌药物疗效的临床观察结果具有良好的相关性。此外,我们还展示了高通量自动化在二维和三维协同检测中的适用性。高分辨率等剂量线等效图为特定的联合抗菌治疗提供了体外支持。综上所述,研究结果表明高通量筛选技术可成功应用于识别和表征针对利用细胞内生长微环境的细菌病原体的抗菌药物。