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Detection of group 1 Trypanosoma brucei gambiense by loop-mediated isothermal amplification

机译:环介导的等温扩增法检测布鲁氏甘蓝氏锥虫1组

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摘要

Trypanosoma brucei gambiense group 1 is the major causative agent of the Gambian human African trypanosomiasis (HAT). Accurate diagnosis of Gambian HAT is still challenged by lack of precise diagnostic methods, low and fluctuating parasitemia, and generally poor services in the areas of endemicity. In this study, we designed a rapid loop-mediated isothermal amplification (LAMP) test for T. b. gambiense based on the 3= end of the T. b. gambiense-specific glycoprotein (TgsGP) gene. The test is specific and amplifies DNA from T. b. gambiense isolates and clinical samples at 62°C within 40 min using a normal water bath. The analytical sensitivity of the TgsGP LAMP was equivalent to 10 trypanosomes/ml using purified DNA and ̃1 trypanosome/ ml using supernatant prepared from boiled blood, while those of classical PCR tests ranged from 10 to 103 trypanosomes/ml. There was 100% agreement in the detection of the LAMP product by real-time gel electrophoresis and the DNA-intercalating dye SYBR green I. The LAMP amplicons were unequivocally confirmed through sequencing and analysis of melting curves. The assay was able to amplify parasite DNA from native cerebrospinal fluid (CSF) and double-centrifuged supernatant prepared from boiled buffy coat and bone marrow aspirate. The robustness, superior sensitivity, and ability to inspect results visually through color change indicate the potential of TgsGP LAMP as a future point-of-care test.
机译:布鲁氏锥虫冈比亚锥虫1号是冈比亚人类非洲锥虫病(HAT)的主要病原体。冈比亚HAT的准确诊断仍然面临着以下挑战:缺乏精确的诊断方法,寄生虫感染率低和波动大,以及在流行地区的服务质量普遍较差。在这项研究中,我们设计了一种针对T. b。的快速环介导的等温扩增(LAMP)测试。基于T的3 =末端的gambiense。冈比亚特异性糖蛋白(TgsGP)基因。该测试是特异性的,可扩增来自T. b。的DNA。使用常规水浴,在40°C下于62°C分离甘菊源和临床样品。使用纯化的DNA,TgsGP LAMP的分析灵敏度相当于10个锥虫/ ml,使用从沸腾的血液制备的上清液,分析灵敏度相当于̃1个锥虫/ ml,而经典PCR测试的灵敏度为10-103个锥虫/ ml。通过实时凝胶电泳和DNA嵌入染料SYBR green I对LAMP产物的检测有100%的一致性。通过测序和解链曲线的分析明确地确定了LAMP扩增子。该测定法能够从天然脑脊髓液(CSF)和由煮沸的血沉棕黄层和骨髓抽吸液制备的双离心上清液中扩增出寄生虫DNA。坚固性,出色的灵敏度以及通过颜色变化目视检查结果的能力表明TgsGP LAMP作为将来的即时检验的潜力。

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