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Published on: March 22, 2012
Diagnostic Efficacy of LAMP Assay for Human Fungal Pathogens: a Systematic Review and Meta-analysis
Gurvinder Singh Bumbrah1, Sarika Jain2, Shweta Singh3
1Department of Forensic Sciences, Amity School of Applied Sciences, Amity University Haryana, Gurugram, 122413 Manesar India.
Purpose:
Human fungal infections particularly caused by Candida and Aspergillus have emerged as major public health burden. Long turnaround time and poor sensitivity of the conventional diagnostics are the major impediments for faster diagnosis of human fungal pathogens.
Recent Findings:
To overcome these issues, molecular-based diagnostics have been developed. They offer enhanced sensitivity but require sophisticated infrastructure, skilled manpower, and remained expensive. In that context, loop-mediated isothermal amplification (LAMP) assay represents a promising alternative that facilitates visual read outs. However, to eradicate fungal infections, all forms of fungi must be accurately detected. Thus, a need for alternative testing methodologies is imperative that should be rapid, accurate and facilitate widespread adoption. Therefore, the aim of the present study is to conduct a meta-analysis to assess the diagnostic efficiency of LAMP in the detection of a panel of human fungal pathogens following PRISMA guidelines using scientific databases viz. PubMed, Google Scholar, Science Direct, Scopus, BioRxiv, and MedRxiv.
Summary:
From various studies reported on the diagnosis of fungi, only 9 articles were identified as eligible to meet the criteria of LAMP based diagnosis. Through this meta-analysis, it was found that most of the studies were conducted in China and Japan with sputum and blood as the most common specimens to be used for LAMP assay. The collected data underlined that ITS gene and fluorescence-based detections ranked as the most used target and method. The pooled sensitivity values of meta-analysis ranged between 0.71 and 1.0 and forest plot and SROC (summary receiver operating characteristic) curve revealed a pooled specificity values between 0.13 and 1.0 with the confidence interval of 95%, respectively. The accuracy and precision rates of eligible studies mostly varied between 70 to 100% and 68 to 100%, respectively. A quality assessment based on QUADAS-2 (Quality Assessment of Diagnostic Accuracy Studies) of bias and applicability was conducted which depicted low risk of bias and applicability concerns. Together, LAMP technology could be considered as a feasible alternative to current diagnostics considering high fungal burden for rapid testing in low resource regions.
Insights
Loop-mediated isothermal amplification (LAMP) offers a rapid, accurate diagnostic method for human fungal infections, outperforming conventional tests. This meta-analysis confirms LAMP
Area of Science:
- Medical Mycology
- Diagnostic Microbiology
- Molecular Diagnostics
Background:
- Human fungal infections caused by Candida and Aspergillus pose a significant public health challenge.
- Conventional diagnostic methods for fungal pathogens suffer from long turnaround times and low sensitivity.
- Existing molecular diagnostics are sensitive but require specialized infrastructure and are costly.
Purpose of the Study:
- To conduct a meta-analysis assessing the diagnostic efficiency of loop-mediated isothermal amplification (LAMP) for detecting human fungal pathogens.
- To evaluate LAMP as a rapid, accurate, and widely adoptable alternative to current diagnostic methods.
- To adhere to PRISMA guidelines for systematic reviews and meta-analyses.
Main Methods:
- Systematic literature search of PubMed, Google Scholar, Science Direct, Scopus, BioRxiv, and MedRxiv.
- Inclusion of 9 eligible studies meeting criteria for LAMP-based fungal diagnosis.
- Quality assessment using QUADAS-2 for bias and applicability.
Main Results:
- The meta-analysis included studies primarily from China and Japan, using sputum and blood samples.
- Internal Transcribed Spacer (ITS) gene and fluorescence-based detection were common targets and methods.
- Pooled sensitivity ranged from 0.71 to 1.0, with pooled specificity between 0.13 and 1.0 (95% CI).
- Accuracy and precision rates varied between 70-100% and 68-100%, respectively.
- Studies showed a low risk of bias and applicability concerns.
Conclusions:
- Loop-mediated isothermal amplification (LAMP) is a feasible and promising alternative for rapid fungal diagnostics.
- LAMP technology can facilitate widespread adoption, especially in resource-limited settings.
- Further validation may be needed, but LAMP shows potential to address limitations of current fungal diagnostic methods.
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