Laboratorio de Bioinformática, Biología Molecular y Desarrollos Tecnológicos, Laboratorios de Investigación y Desarrollo. Facultad de Ciencias y Filosofía, Universidad Peruana Cayetano Heredia, Lima, 15102, Peru.
Laboratory of Biomolecules, Faculty of Health Sciences, Universidad Peruana de Ciencias Aplicadas (UPC), Lima, 15023, Peru.
Tuberculosis (Edinb). 2022 Dec;137:102273. doi: 10.1016/j.tube.2022.102273. Epub 2022 Nov 14.
Tuberculosis phenotypic detection assays are commonly used in low-resource countries. Therefore, reliable detection methods are crucial for early diagnosis and treatment. The microscopic observation drug susceptibility (MODS) assay is a culture-based test to detect Mycobacterium tuberculosis and characterize drug resistance in 7-10 days directly from sputum. The use of MODS is limited by the availability of supplies necessary for preparing the enriched culture. In this study, we evaluated three dry culture media that are easier to produce and cheaper than the standard one used in MODS [1]: an unsterilized powder-based mixed (Boldú et al., 2007) [2], a sterile-lyophilized medium, and (Sengstake et al., 2017) [3] an irradiated powder-based mixed. Mycobacterial growth and drug susceptibility were evaluated for rifampin, isoniazid, and pyrazinamide (PZA). The alternative cultures were evaluated using 282 sputum samples with positive acid-fast smears. No significant differences were observed in the positivity test rates. The positivity time showed high correlations (Rho) of 0.925, 0.889, and 0.866 between each of the three alternative media and the standard. Susceptibility testing for MDR and PZA showed an excellent concordance of 1 compared to the reference test. These results demonstrate that dry culture media are appropriate and advantageous for use in MODS in low-resource settings.
结核表型检测检测在资源匮乏的国家中较为常见。因此,可靠的检测方法对于早期诊断和治疗至关重要。显微镜观察药物敏感性(MODS)检测是一种基于培养的检测方法,可直接从痰液中在 7-10 天内检测结核分枝杆菌并鉴定耐药性。MODS 的使用受到制备富集培养所需的用品供应的限制。在本研究中,我们评估了三种比 MODS 中使用的标准培养基更容易生产且更便宜的干燥培养介质:未经消毒的粉末混合(Boldú 等人,2007)[2]、无菌冻干培养基和(Sengstake 等人,2017)[3] 辐照粉末混合。评估了利福平、异烟肼和吡嗪酰胺(PZA)对分枝杆菌生长和药物敏感性的影响。使用 282 份抗酸染色阳性的痰液样本评估替代培养物。阳性检测率没有显著差异。阳性时间与标准培养基之间的相关性(Rho)分别为 0.925、0.889 和 0.866,表明三种替代培养基之间的阳性时间高度相关。与参考检测相比,MDR 和 PZA 的药敏试验显示出 1 的极好一致性。这些结果表明,在资源匮乏的环境中,干燥培养介质适合且有利于在 MODS 中使用。