Amoebic keratitis (AK) caused by Acanthamoeba is one of the most serious corneal infections. AK is frequently misdiagnosed initially as viral, bacterial, or fungal keratitis, thus ensuring treatment delays. Accordingly, the early detection of Acanthamoeba would contribute significantly to disease management and selection of an appropriate anti-amoebic therapy. Recently, the loop-mediated isothermal amplification (LAMP) method has been applied to the clinical diagnosis of a range of infectious diseases. Here, we describe a rapid and efficient LAMP-based method targeting Acanthamoeba 18S rDNA gene for the detection of Acanthamoeba using clinical ocular specimens in the diagnosis of AK. Acanthamoeba LAMP assays detected 11 different strains including all AK-associated species. The copy number detection limit for a positive signal was 10 DNA copies of 18S rDNA per reaction. No cross-reactivity with the DNA of fungi or other protozoa was observed. The sensitivity of LAMP assay was higher than those of Nelson primer PCR and JDP primer PCR. In the present study, LAMP assay based on directly heat-treated samples was found to be as efficient at detecting Acanthamoeba as DNA extracted using a commercial kit, whereas PCR was only effective when commercial kit-extracted DNA was used. This study showed that the devised Acanthamoeba LAMP assay could be used to diagnose AK in a simple, sensitive, and specific manner.
Citations
Citations to this article as recorded by
Ultrasensitive and rapid diagnostic tool for detection of Acanthamoeba castellanii Susanna Haapanen, Maarit S. Patrikainen, Seppo Parkkila Diagnostic Microbiology and Infectious Disease.2023; 107(2): 116014. CrossRef
A simple and visible detection method for the rapid diagnosis of Ustilaginoidea virens in rice seeds by a loop‐mediated isothermal amplification assay Wei Wang, Hang Yin, Ning Huang, Cuijing Zhu, Yufei Wang, Xintong Qi, Lu Ma, Yunxin Fan, Yao Yu, Hongsheng Zhang, Yongmei Bao Journal of Phytopathology.2021; 169(6): 369. CrossRef
Efficient nested-PCR-based method development for detection and genotype identification of Acanthamoeba from a small volume of aquatic environmental sample Tsui-Kang Hsu, Jung-Sheng Chen, Hsin-Chi Tsai, Chi-Wei Tao, Yu-Yin Yang, Ying-Chin Tseng, Yi-Jie Kuo, Dar-Der Ji, Jagat Rathod, Bing-Mu Hsu Scientific Reports.2021;[Epub] CrossRef
Development of Visually Improved Loop Mediated Isothermal Amplification for the Diagnosis of Plasmodium vivax Malaria in a Tertiary Hospital in Chandigarh, North India Hargobinder Kaur, Rakesh Sehgal, Devendra Bansal, Ali A. Sultan, Ashish Bhalla, Sunit C. Singhi The American Journal of Tropical Medicine and Hygiene.2018; 98(5): 1374. CrossRef
Detection of Acanthamoeba spp. in water samples collected from natural water reservoirs, sewages, and pharmaceutical factory drains using LAMP and PCR in China Anna Lass, Milena Guerrero, Xiuping Li, Gabriele Karanis, Liqing Ma, Panagiotis Karanis Science of The Total Environment.2017; 584-585: 489. CrossRef
Water-borne protozoa parasites: The Latin American perspective Félix Manuel Rosado-García, Milena Guerrero-Flórez, Gabriele Karanis, María Del Carmen Hinojosa, Panagiotis Karanis International Journal of Hygiene and Environmental Health.2017; 220(5): 783. CrossRef
Evaluation of Loop-mediated Isothermal Amplification Assay for Rapid Diagnosis of Acanthamoeba Keratitis Abhishek Mewara, Sumeeta Khurana, Shakila Yoonus, Kirti Megha, Parveen Tanwar, Amit Gupta, Rakesh Sehgal Indian Journal of Medical Microbiology.2017; 35(1): 90. CrossRef
Acanthamoeba keratitis: improving the Scottish diagnostic service for the rapid molecular detection of Acanthamoeba species Claire Low Alexander, Michael Coyne, Brian Jones, Deepa Anijeet
Journal of Medical Microbiology
.2015; 64(7): 682. CrossRef
Molecular diagnosis in clinical parasitology: When and why? Samson SY Wong, Kitty SC Fung, Sandy Chau, Rosana WS Poon, Sally CY Wong, Kwok-Yung Yuen Experimental Biology and Medicine.2014; 239(11): 1443. CrossRef