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通过使用ITS1环介导等温扩增结合羟基萘酚蓝的可视化颜色反应进行特异性和灵敏的即用型通用真菌检测。

Specific and sensitive, ready-to-use universal fungi detection by visual color using ITS1 loop-mediated isothermal amplification combined hydroxynaphthol blue.

作者信息

Choopara Ilada, Teethaisong Yothin, Arunrut Narong, Thunyaharn Sudaluck, Kiatpathomchai Wansika, Somboonna Naraporn

机构信息

Program in Biotechnology, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

Department of Microbiology, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

出版信息

PeerJ. 2021 Mar 18;9:e11082. doi: 10.7717/peerj.11082. eCollection 2021.

Abstract

Being ubiquitous, fungi are common opportunistic pathogens to humans that can lead to invasive and life-threatening infections in immunocompromised individuals. Eukaryote-resembling cell membrane and filamentous branches make the fungal diagnosis difficult. This study therefore developed a ready-to-use ITS1 loop-mediated isothermal amplification combined with hydroxynaphthol blue (LAMP-HNB) for rapid, sensitive and specific colorimetric detection of universal fungi in all phyla. The ITS1 LAMP-HNB could identify every evolutionary phylum of fungi according to sequence analyses. We tested a total of 30 clinically relevant fungal isolates (representing three major human pathogenic phyla of fungi, namely Zygomycota, Ascomycota and Basidiomycota) and 21 non-fungal isolates, and the ITS1 LAMP-HNB properly identified all isolates, with a detection limit of as low as 4.6 ag (9.6 copies), which was identical to ITS1 and 18S rDNA PCR. The assays were also validated on the feasibility of point-of-care diagnostic with real food (dry peanuts, chili and garlics) and blood samples. Furthermore, the shelf life of our ready-to-use ITS1 LAMP activity (≥50%) was more than 40 days at 30 °C with 3-5% polyvinyl alcohol or glycerol additive. The results supported the ready-to-use ITS1 LAMP-HNB for simple detection of fungi contamination with high sensitivity in local and resource-constrained areas to prevent opportunistic fungal species infections.

摘要

真菌无处不在,是常见的人类机会性病原体,可导致免疫功能低下个体发生侵袭性和危及生命的感染。真菌类似真核生物的细胞膜和丝状分支使得真菌诊断困难。因此,本研究开发了一种即用型内转录间隔区1环介导等温扩增结合羟基萘酚蓝(LAMP-HNB)方法,用于快速、灵敏且特异的比色法检测所有门类中的通用真菌。根据序列分析,内转录间隔区1 LAMP-HNB能够识别真菌的每个进化门类。我们共检测了30株临床相关真菌分离株(代表人类致病真菌的三个主要门类,即接合菌门、子囊菌门和担子菌门)和21株非真菌分离株,内转录间隔区1 LAMP-HNB正确识别了所有分离株,检测限低至4.6 ag(9.6个拷贝),与内转录间隔区1和18S rDNA PCR相同。该检测方法还在实际食物(干花生、辣椒和大蒜)和血液样本的即时诊断可行性方面得到了验证。此外,在30℃下添加3 - 5%聚乙烯醇或甘油添加剂时,我们的即用型内转录间隔区1 LAMP活性(≥50%)的保质期超过40天。结果支持即用型内转录间隔区1 LAMP-HNB在当地和资源有限地区简单、高灵敏度地检测真菌污染,以预防机会性真菌物种感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b72/7982077/c4017f367ee2/peerj-09-11082-g001.jpg

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