Bentaleb El Mehdi, Abid Mohammed, El Messaoudi My Driss, Lakssir Brahim, Ressami El Mostafa, Amzazi Saaïd, Sefrioui Hassan, Ait Benhassou Hassan
Moroccan Foundation for Advanced Science, Innovation and Research (MAScIR), Rabat Design Center, Avenue Mohamed El Jazouli - Madinat Al Irfane, 10100, Rabat, Morocco.
Laboratory of Biochemistry and Immunology, Faculty of Sciences, Mohammed V University, Rabat, Morocco.
BMC Infect Dis. 2016 Sep 27;16(1):517. doi: 10.1186/s12879-016-1864-9.
Tuberculosis (TB) is a major global health problem and remains the leading cause of morbidity and mortality in developing countries. Routinely used TB diagnostic methods, in most endemic areas, are time-consuming, often less-sensitive, expensive and inaccessible to most patients. Therefore, there is an urgent need for the development of early, easy to use and effective diagnosis tools of TB, which can be effectively integrated into resource limited settings, to anticipate the early treatment and limit further spread of the disease. Over the last decade, Loop-mediated isothermal amplification (LAMP) assays have become a powerful tool for rapid diagnosis of infectious diseases because of the simplicity of device requirements. Indeed, LAMP is a simple, quick and cost effective Isothermal Nucleic Acid Amplification diagnostic test (INAAT) that has the potential to be used in TB endemic settings of resource-poor countries.
In the present study, we have developed a simple and rapid TB molecular diagnostic test using a Single-Step Loop-mediated isothermal DNA amplification (SS-LAMP) method for the detection of Mycobacterium tuberculosis complex (MTBC) strains, with a simplified sample preparation procedure, eliminating DNA extraction prior to LAMP amplification, DNA initial denaturation and enzymatic inactivation steps during the amplification process. To perform our in-house SS-LAMP assay, a set of six specific primers was specifically designed to recognize eight distinct regions on the MTBC species-specific repetitive insertion sequence 6110 (IS6110). The amplification of the targeted DNA was carried out under isothermal conditions at 65 °C within 1 h. Our protocol was firstly optimized using 60 of confirmed MTBC isolates and a recombinant pGEMeasy-IS6110 vector for sensitivity testing. Thereafter, the assay was evaluated on liquefied sputum specimens collected from 157 Moroccan patients suspected of having TB.
Our SS-LAMP developed assay was able to detect MTBC DNA directly from liquefied sputum samples without any prior DNA extraction, denaturation nor the final enzymatic inactivation step. When compared to routinely used Löwenstein Jensen (LJ) Culture method, our SS-LAMP assay is rapid and showed specificity and sensitivity of 99.14 % and 82.93 % respectively which are within the international standards. In addition, the limit of detection of our assay was found to be as little as 10 copies of bacterial DNA.
To our knowledge, this is the first study using a single step LAMP (SS-LAMP) procedure as a rapid, easy to perform and cost effective testing for TB early detection. This innovative assay could be suitable for low-income countries with restricted health equipment facilities.
结核病是一个重大的全球健康问题,仍然是发展中国家发病和死亡的主要原因。在大多数流行地区,常规使用的结核病诊断方法耗时、往往不太敏感、昂贵且大多数患者无法使用。因此,迫切需要开发早期、易于使用且有效的结核病诊断工具,这些工具可以有效地整合到资源有限的环境中,以预期早期治疗并限制疾病的进一步传播。在过去十年中,环介导等温扩增(LAMP)检测由于对设备要求简单,已成为快速诊断传染病的有力工具。事实上,LAMP是一种简单、快速且经济高效的等温核酸扩增诊断测试(INAAT),有潜力用于资源匮乏国家的结核病流行地区。
在本研究中,我们开发了一种简单快速的结核病分子诊断测试,使用单步环介导等温DNA扩增(SS-LAMP)方法检测结核分枝杆菌复合群(MTBC)菌株,简化了样本制备程序,省去了LAMP扩增前的DNA提取、DNA初始变性和扩增过程中的酶失活步骤。为了进行我们的内部SS-LAMP检测,专门设计了一组六个特异性引物,以识别MTBC物种特异性重复插入序列6110(IS6110)上的八个不同区域。目标DNA的扩增在65℃等温条件下1小时内完成。我们的方案首先使用60株已确认的MTBC分离株和重组pGEMeasy-IS6110载体进行优化以进行灵敏度测试。此后,该检测方法在从157名疑似患有结核病的摩洛哥患者收集的液化痰标本上进行评估。
我们开发的SS-LAMP检测方法能够直接从液化痰样本中检测MTBC DNA,无需任何预先的DNA提取、变性或最终的酶失活步骤。与常规使用的罗-琴(LJ)培养方法相比,我们的SS-LAMP检测方法快速,特异性和灵敏度分别为99.14%和82.93%,均在国际标准范围内。此外,我们检测方法的检测限低至10份细菌DNA拷贝。
据我们所知,这是第一项使用单步LAMP(SS-LAMP)程序作为快速、易于操作且经济高效的结核病早期检测测试的研究。这种创新的检测方法可能适用于卫生设备设施有限的低收入国家。