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1.
Sci Rep ; 14(1): 10612, 2024 05 09.
Article in English | MEDLINE | ID: mdl-38719936

ABSTRACT

Molecular diagnostics involving nucleic acids (DNA and RNA) are regarded as extremely functional tools. During the 2020 global health crisis, efforts intensified to optimize the production and delivery of molecular diagnostic kits for detecting SARS-CoV-2. During this period, RT-LAMP emerged as a significant focus. However, the thermolability of the reagents used in this technique necessitates special low-temperature infrastructure for transport, storage, and conservation. These requirements limit distribution capacity and necessitate cost-increasing adaptations. Consequently, this report details the development of a lyophilization protocol for reagents in a colorimetric RT-LAMP diagnostic kit to detect SARS-CoV-2, facilitating room-temperature transport and storage. We conducted tests to identify the ideal excipients that maintain the molecular integrity of the reagents and ensure their stability during room-temperature storage and transport. The optimal condition identified involved adding 5% PEG 8000 and 75 mM trehalose to the RT-LAMP reaction, which enabled stability at room temperature for up to 28 days and yielded an analytical and diagnostic sensitivity and specificity of 83.33% and 90%, respectively, for detecting SARS-CoV-2. This study presents the results of a lyophilized colorimetric RT-LAMP COVID-19 detection assay with diagnostic sensitivity and specificity comparable to RT-qPCR, particularly in samples with high viral load.


Subject(s)
COVID-19 , Colorimetry , Freeze Drying , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , RNA, Viral , SARS-CoV-2 , Humans , COVID-19/diagnosis , COVID-19/virology , SARS-CoV-2/isolation & purification , SARS-CoV-2/genetics , Colorimetry/methods , Nucleic Acid Amplification Techniques/methods , Molecular Diagnostic Techniques/methods , RNA, Viral/analysis , RNA, Viral/genetics , Sensitivity and Specificity , Reagent Kits, Diagnostic/standards , COVID-19 Nucleic Acid Testing/methods
2.
PLoS Negl Trop Dis ; 18(5): e0011637, 2024 May.
Article in English | MEDLINE | ID: mdl-38713648

ABSTRACT

BACKGROUND: Diagnosis of visceral leishmaniasis (VL) in resource-limited endemic regions is currently based on serological testing with rK39 immunochromatographic tests (ICTs). However, rK39 ICT frequently has suboptimal diagnostic accuracy. Furthermore, treatment monitoring and detection of VL relapses is reliant on insensitive and highly invasive tissue aspirate microscopy. Miniature direct-on-blood PCR nucleic acid lateral flow immunoassay (mini-dbPCR-NALFIA) is an innovative and user-friendly molecular tool which does not require DNA extraction and uses a lateral flow strip for result read-out. This assay could be an interesting candidate for more reliable VL diagnosis and safer test of cure at the point of care. METHODOLOGY/PRINCIPLE FINDINGS: The performance of mini-dbPCR-NALFIA for diagnosis of VL in blood was assessed in a laboratory evaluation and compared with the accuracy of rK39 ICTs Kalazar Detect in Spain and IT LEISH in East Africa. Limit of detection of mini-dbPCR-NALFIA was 650 and 500 parasites per mL of blood for Leishmania donovani and Leishmania infantum, respectively. In 146 blood samples from VL-suspected patients from Spain, mini-dbPCR-NALFIA had a sensitivity of 95.8% and specificity 97.2%, while Kalazar Detect had a sensitivity of 71.2% and specificity of 94.5%, compared to a nested PCR reference. For a sample set from 58 VL patients, 10 malaria patients and 68 healthy controls from Ethiopia and Kenya, mini-dbPCR-NALFIA had a pooled sensitivity of 87.9% and pooled specificity of 100% using quantitative PCR as reference standard. IT LEISH sensitivity and specificity in the East African samples were 87.9% and 97.4%, respectively. CONCLUSIONS/SIGNIFICANCE: Mini-dbPCR-NALFIA is a promising tool for simplified molecular diagnosis of VL and follow-up of treated patients in blood samples. Future studies should evaluate its use in endemic, resource-limited settings, where mini-dbPCR-NALFIA may provide an accurate and versatile alternative to rK39 ICTs and aspirate microscopy.


Subject(s)
Leishmania donovani , Leishmaniasis, Visceral , Sensitivity and Specificity , Leishmaniasis, Visceral/diagnosis , Leishmaniasis, Visceral/parasitology , Humans , Leishmania donovani/genetics , Leishmania donovani/isolation & purification , Immunoassay/methods , Leishmania infantum/genetics , Leishmania infantum/isolation & purification , Polymerase Chain Reaction/methods , Spain , Molecular Diagnostic Techniques/methods , Female , Male , Adult , Adolescent , Child , Young Adult , Middle Aged , Africa, Eastern , DNA, Protozoan/genetics , DNA, Protozoan/blood , Child, Preschool
3.
Mycopathologia ; 189(3): 38, 2024 May 05.
Article in English | MEDLINE | ID: mdl-38704795

ABSTRACT

OBJECTIVES: To describe the epidemiology of Pneumocystis jirovecii pneumonia and colonization diagnosed by next-generation sequencing (NGS) and explore the usefulness of the number of P. jirovecii sequence reads for the diagnosis of P. jirovecii pneumonia. METHODS: We examined the NGS results for P. jirovecii in respiratory samples collected from patients and analysed their clinical, radiological and microbiological characteristics. RESULTS: Among 285 respiratory samples collected over a 12-month period (January to December 2022), P. jirovecii sequences were detected in 56 samples from 53 patients. Fifty (94.3%) of the 53 patients were HIV-negative. Following our case definitions, 37 (69.8%) and 16 (30.2%) of the 53 patients had P. jirovecii infection and colonization respectively. P. jirovecii infection was associated with presence of underlying disease with immunosuppression (94.6% vs 18.8%, P < 0.05), positive serum 1,3-ß-D-glucan (41.2% vs 0%, P < 0.01) and higher number of P. jirovecii sequence reads (P < 0.005). In contrast, P. jirovecii colonization was associated with the male sex (93.8% vs 54.1%, P < 0.01), another definitive infectious disease diagnosis of the respiratory tract (43.8% vs 2.7%, P < 0.001) and higher survival (100% vs 67.6%, P < 0.01). Although P. jirovecii pneumonia was associated with higher number of P. jirovecii reads in respiratory samples, only a sensitivity of 82.14% and a specificity of 68.75% could be achieved. CONCLUSION: Detection of P. jirovecii sequences in respiratory samples has to be interpreted discreetly. A combination of clinical, radiological and laboratory findings is still the most crucial in determining whether a particular case is genuine P. jirovecii pneumonia.


Subject(s)
High-Throughput Nucleotide Sequencing , Pneumocystis carinii , Pneumonia, Pneumocystis , Humans , Pneumonia, Pneumocystis/diagnosis , Pneumonia, Pneumocystis/microbiology , Male , Pneumocystis carinii/genetics , Pneumocystis carinii/isolation & purification , Female , Middle Aged , Aged , Adult , Aged, 80 and over , Respiratory System/microbiology , Young Adult , Molecular Diagnostic Techniques/methods
4.
Viral Immunol ; 37(4): 177-185, 2024 05.
Article in English | MEDLINE | ID: mdl-38625025

ABSTRACT

Viral infections are major causes of mortality in solid-organ and hematopoietic stem cell transplant recipients. Epstein-Barr virus (EBV) and Parvovirus B19 (B19V) are among the common viral infections after transplantation and were recommended for increased screening in relevant guidelines. Therefore, the development of rapid, specific, and cost-effective diagnostic methods for EBV and B19V is of paramount importance. We applied Fluorescence of Loop Primer Upon Self-Dequenching Loop-mediated Isothermal Amplification (FLOS-LAMP) for the first time to develop a novel multiplex assay for the detection of EBV and B19V; the fluorophore attached to the probe are self-quenched in unbound state. After binding to the dumbbell-shaped DNA target, the fluorophore is dequenched, resulting in fluorescence development. The novel multiplex FLOS-LAMP assay was optimized by testing various ratios of primer sets. This novel assay, with great specificity, did not cross-react with the common virus. For the detection of EBV and B19V, the limits of detection could reach 969 and 798 copies/µL, respectively, and the assay could be completed within 25 min. Applying this novel assay to detect 200 clinical transplant individuals indicated that the novel assay had high specificity and good sensitivity. We developed multiplex FLOS-LAMP assay for the detection of EBV and B19V, which has the potential to become an important tool for clinical transplant patient screening.


Subject(s)
Epstein-Barr Virus Infections , Herpesvirus 4, Human , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Parvovirus B19, Human , Sensitivity and Specificity , Humans , Herpesvirus 4, Human/genetics , Herpesvirus 4, Human/isolation & purification , Nucleic Acid Amplification Techniques/methods , Parvovirus B19, Human/genetics , Parvovirus B19, Human/isolation & purification , Epstein-Barr Virus Infections/diagnosis , Epstein-Barr Virus Infections/virology , Molecular Diagnostic Techniques/methods , Fluorescence , DNA Primers/genetics , Transplant Recipients , Parvoviridae Infections/diagnosis , Parvoviridae Infections/virology , DNA, Viral/genetics , Organ Transplantation
5.
Viruses ; 16(4)2024 Mar 26.
Article in English | MEDLINE | ID: mdl-38675848

ABSTRACT

Rapid and early detection of infectious diseases in pigs is important, especially for the implementation of control measures in suspected cases of African swine fever (ASF), as an effective and safe vaccine is not yet available in most of the affected countries. Additionally, analysis for swine influenza is of significance due to its high morbidity rate (up to 100%) despite a lower mortality rate compared to ASF. The wide distribution of swine influenza A virus (SwIAV) across various countries, the emergence of constantly new recombinant strains, and the danger of human infection underscore the need for rapid and accurate diagnosis. Several diagnostic approaches and commercial methods should be applied depending on the scenario, type of sample and the objective of the studies being implemented. At the early diagnosis of an outbreak, virus genome detection using a variety of PCR assays proves to be the most sensitive and specific technique. As the disease evolves, serology gains diagnostic value, as specific antibodies appear later in the course of the disease (after 7-10 days post-infection (DPI) for ASF and between 10-21 DPI for SwIAV). The ongoing development of commercial kits with enhanced sensitivity and specificity is evident. This review aims to analyse recent advances and current commercial kits utilised for the diagnosis of ASF and SwIAV.


Subject(s)
African Swine Fever , Influenza A virus , Orthomyxoviridae Infections , Reagent Kits, Diagnostic , Sensitivity and Specificity , Animals , African Swine Fever/diagnosis , African Swine Fever/virology , African Swine Fever/epidemiology , Swine , Orthomyxoviridae Infections/diagnosis , Orthomyxoviridae Infections/veterinary , Orthomyxoviridae Infections/virology , Influenza A virus/genetics , Influenza A virus/isolation & purification , African Swine Fever Virus/genetics , African Swine Fever Virus/isolation & purification , Clinical Laboratory Techniques/methods , Swine Diseases/diagnosis , Swine Diseases/virology , Molecular Diagnostic Techniques/methods
6.
Biosensors (Basel) ; 14(4)2024 Mar 27.
Article in English | MEDLINE | ID: mdl-38667150

ABSTRACT

Since its first appearance in 1981, HIV-1 has remained a global concern. Current methods for diagnosing HIV-1, while effective, are mostly specific to a given subtype of HIV-1 and often require expensive equipment and highly trained individuals to collect and process the sample. It is necessary to develop a sensitive diagnostic method that can be administered with minimal equipment to provide better care in low-resource settings. Loop-mediated isothermal amplification is a rapid and sensitive method for detecting the presence of specific nucleic acid sequences. Herein we report the development and comparison of two different HIV LAMP assays, integrase and VPR, as well as the comparison between TRIZol and magnetic beads RNA extraction methods for each assay. Our analysis shows that the integrase assay was able to detect the virus from multiple subtypes in under 30 min with a variable limit of detection (LOD) that was dependent on the HIV-1 subtype.


Subject(s)
HIV Infections , HIV-1 , Nucleic Acid Amplification Techniques , HIV-1/isolation & purification , HIV-1/genetics , Nucleic Acid Amplification Techniques/methods , Humans , HIV Infections/diagnosis , HIV Infections/virology , Molecular Diagnostic Techniques/methods , Limit of Detection , RNA, Viral/analysis
7.
Biosens Bioelectron ; 257: 116292, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38653014

ABSTRACT

We report the development and initial validation of a paper-based nucleic acid testing platform that integrates Loop-mediated isothermal amplification (LAMP) with clustered regularly interspaced short palindromic repeats (CRISPR) technology, referred to as PLACID (Paper-based LAMP-CRISPR Integrated Diagnostics). LAMP eliminates the need for thermal cycling, resulting in simplified instrumentation, and the CRISPR-associated protein (Cas 12a) system eliminates false positive signals from LAMP products, resulting in highly selective and sensitive assays. We optimized the assay to perform both amplification and detection entirely on paper, eliminating the need for complex fluid handling steps and lateral flow assay transfers. Additionally, we engineered a smartphone-operated system that includes a low-powered, non-contact IR heating chamber to actuate paper-based LAMP and CRISPR reactions and enable the detection of fluorescent signals from the paper. The platform demonstrates high specificity and sensitivity in detecting nucleic acid targets with a limit of detection of 50 copies/µL. We integrate an equipment-free sample preparation separation technology designed to streamline the preparation of crude samples prior to nucleic acid testing. The practical utility of our platform is demonstrated by the successful detection of spiked SARS-CoV-2 RNA fragments in saliva, E. Coli in soil, and pathogenic E. Coli in clinically fecal samples of infected patients. Furthermore, we demonstrate that the paper-based LAMP CRISPR chips employed in our assays possess a shelf life of several weeks, establishing them as viable candidates for on-site diagnostics.


Subject(s)
Biosensing Techniques , COVID-19 , CRISPR-Cas Systems , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Paper , SARS-CoV-2 , Nucleic Acid Amplification Techniques/methods , Nucleic Acid Amplification Techniques/instrumentation , Humans , Biosensing Techniques/methods , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , COVID-19/diagnosis , COVID-19/virology , Molecular Diagnostic Techniques/methods , Molecular Diagnostic Techniques/instrumentation , CRISPR-Cas Systems/genetics , Limit of Detection , Clustered Regularly Interspaced Short Palindromic Repeats/genetics , Equipment Design , COVID-19 Nucleic Acid Testing/methods , COVID-19 Nucleic Acid Testing/instrumentation , Escherichia coli/genetics , Escherichia coli/isolation & purification , CRISPR-Associated Proteins/genetics , Smartphone
8.
J Clin Microbiol ; 62(5): e0174923, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38624235

ABSTRACT

The timely identification of microbial pathogens is essential to guide targeted antimicrobial therapy and ultimately, successful treatment of an infection. However, the yield of standard microbiology testing (SMT) is directly related to the duration of antecedent antimicrobial therapy as SMT culture methods are dependent on the recovery of viable organisms, the fastidious nature of certain pathogens, and other pre-analytic factors. In the last decade, metagenomic next-generation sequencing (mNGS) has been successfully utilized as a diagnostic tool for various applications within the clinical laboratory. However, mNGS is resource, time, and labor-intensive-requiring extensive laborious preliminary benchwork, followed by complex bioinformatic analysis. We aimed to address these shortcomings by developing a largely Automated targeted Metagenomic next-generation sequencing (tmNGS) PipeLine for rapId inFectIous disEase Diagnosis (AMPLIFIED) to detect bacteria and fungi directly from clinical specimens. Therefore, AMPLIFIED may serve as an adjunctive approach to complement SMT. This tmNGS pipeline requires less than 1 hour of hands-on time before sequencing and less than 2 hours of total processing time, including bioinformatic analysis. We performed tmNGS on 50 clinical specimens with concomitant cultures to assess feasibility and performance in the hospital laboratory. Of the 50 specimens, 34 (68%) were from true clinical infections. Specimens from cases of true infection were more often tmNGS positive compared to those from the non-infected group (82.4% vs 43.8%, respectively, P = 0.0087). Overall, the clinical sensitivity of AMPLIFIED was 54.6% with 85.7% specificity, equating to 70.6% and 75% negative and positive predictive values, respectively. AMPLIFIED represents a rapid supplementary approach to SMT; the typical time from specimen receipt to identification of potential pathogens by AMPLIFIED is roughly 24 hours which is markedly faster than the days, weeks, and months required to recover bacterial, fungal, and mycobacterial pathogens by culture, respectively. IMPORTANCE: To our knowledge, this represents the first application of an automated sequencing and bioinformatics pipeline in an exclusively pediatric population. Next-generation sequencing is time-consuming, labor-intensive, and requires experienced personnel; perhaps contributing to hesitancy among clinical laboratories to adopt such a test. Here, we report a strong case for use by removing these barriers through near-total automation of our sequencing pipeline.


Subject(s)
Bacteria , Bacterial Infections , Fungi , High-Throughput Nucleotide Sequencing , Metagenomics , Mycoses , Humans , High-Throughput Nucleotide Sequencing/methods , Fungi/genetics , Fungi/isolation & purification , Fungi/classification , Bacteria/genetics , Bacteria/isolation & purification , Bacteria/classification , Bacterial Infections/diagnosis , Bacterial Infections/microbiology , Metagenomics/methods , Mycoses/diagnosis , Mycoses/microbiology , Automation, Laboratory/methods , Sensitivity and Specificity , Molecular Diagnostic Techniques/methods , Time Factors , Computational Biology/methods , Male , Female , Child , Adolescent , Adult , Child, Preschool
11.
Ann Clin Microbiol Antimicrob ; 23(1): 37, 2024 Apr 25.
Article in English | MEDLINE | ID: mdl-38664821

ABSTRACT

PURPOSE: Group B Streptococcus (GBS) is the leading cause of invasive infections in newborns. The prevention of GBS neonatal disease relies on the administration of an intrapartum antibiotic prophylaxis to GBS-colonized women. In recent years, rapid intrapartum detection of GBS vaginal colonization using real-time nucleic acid amplification tests (NAATs) emerged as an alternative to antenatal culture screening methods. METHODS: We compared the performances of two loop-mediated isothermal amplification (LAMP) tests, the Ampliflash® GBS and the PlusLife® GBS tests, to standard culture for GBS detection in vaginal specimens from pregnant women. The study was conducted from April to July 2023 in a French hospital of the Paris area. RESULTS: A total of 303 samples were analyzed, including 85 culture-positive samples (28.1%). The Ampliflash® GBS test and the PlusLife® GBS tests gave a result for 100% and 96.3% tests, respectively. The performances of the tests were as follows: sensitivity 87.1% (95% confidence interval (CI) 78.3-92.6) and 98.7% (95% CI 93.0-99.8), specificity 99.1% (95% CI 96.7-99.8), and 91.9% (95% CI 87.3-95.0), respectively. False negative results of the Ampliflash® GBS test correlated with low-density GBS cultures. Time-to-results correlated with GBS culture density only for the PlusLife® GBS test (p < 0.001). CONCLUSION: Both techniques provide excellent analytical performances with high sensitivity and specificity together with a short turnaround time and results available in 10 to 35 min. Their potential to further reduce the burden of GBS neonatal disease compared with antenatal culture screening needs to be assessed in future clinical studies.


Subject(s)
Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Pregnancy Complications, Infectious , Sensitivity and Specificity , Streptococcal Infections , Streptococcus agalactiae , Vagina , Humans , Female , Nucleic Acid Amplification Techniques/methods , Streptococcus agalactiae/genetics , Streptococcus agalactiae/isolation & purification , Pregnancy , Streptococcal Infections/diagnosis , Streptococcal Infections/microbiology , Vagina/microbiology , Pregnancy Complications, Infectious/diagnosis , Pregnancy Complications, Infectious/microbiology , Molecular Diagnostic Techniques/methods , Infant, Newborn , Adult
12.
Int J Mol Sci ; 25(8)2024 Apr 11.
Article in English | MEDLINE | ID: mdl-38673821

ABSTRACT

Isothermal nucleic acid amplification-based lateral flow testing (INAA-LFT) has emerged as a robust technique for on-site pathogen detection, providing a visible indication of pathogen nucleic acid amplification that rivals or even surpasses the sensitivity of real-time quantitative PCR. The isothermal nature of INAA-LFT ensures consistent conditions for nucleic acid amplification, establishing it as a crucial technology for rapid on-site pathogen detection. However, despite its considerable promise, the widespread application of isothermal INAA amplification-based lateral flow testing faces several challenges. This review provides an overview of the INAA-LFT procedure, highlighting its advancements in detecting plant viruses. Moreover, the review underscores the imperative of addressing the existing limitations and emphasizes ongoing research efforts dedicated to enhancing the applicability and performance of this technology in the realm of rapid on-site testing.


Subject(s)
Nucleic Acid Amplification Techniques , Plant Diseases , Plant Viruses , Nucleic Acid Amplification Techniques/methods , Plant Viruses/genetics , Plant Viruses/isolation & purification , Plant Diseases/virology , Molecular Diagnostic Techniques/methods , Plants/virology , Plants/genetics
13.
Front Cell Infect Microbiol ; 14: 1372166, 2024.
Article in English | MEDLINE | ID: mdl-38686097

ABSTRACT

Background: Classical swine fever virus (CSFV) remains one of the most important pathogens in animal health. Pathogen detection relies on viral RNA extraction followed by RT-qPCR. Novel technologies are required to improve diagnosis at the point of care. Methods: A loop-mediated isothermal amplification (LAMP) PCR technique was developed, with primers designed considering all reported CSFV genotypes. The reaction was tested using both fluorometric and colorimetric detection, in comparison to the gold standard technique. Viral strains from three circulating CSFV genotypes were tested, as well as samples from infected animals. Other pathogens were also tested, to determine the LAMP specificity. Besides laboratory RNA extraction methods, a heating method for RNA release, readily available for adaptation to field conditions was evaluated. Results: Three primer sets were generated, with one of them showing better performance. This primer set proved capable of maintaining optimal performance at a wide range of amplification temperatures (60°C - 68°C). It was also able to detect CSFV RNA from the three genotypes tested. The assay was highly efficient in detection of samples from animals infected with field strains from two different genotypes, with multiple matrices being detected using both colorimetric and fluorometric methods. The LAMP assay was negative for all the unrelated pathogens tested, including Pestiviruses. The only doubtful result in both fluorometric and colorimetric LAMP was against the novel Pestivirus italiaense, ovine Italy Pestivirus (OVPV), which has proven to have cross-reaction with multiple CSFV diagnostic techniques. However, it is only possible to detect the OVPV in a doubtful result if the viral load is higher than 10000 viral particles. Conclusion: The results from the present study show that LAMP could be an important addition to the currently used molecular diagnostic techniques for CSFV. This technique could be used in remote locations, given that it can be adapted for successful use with minimal equipment and minimally invasive samples. The joined use of novel and traditional diagnostic techniques could prove to be a useful alternative to support the CSF control.


Subject(s)
Classical Swine Fever Virus , Classical Swine Fever , Genotype , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , RNA, Viral , Sensitivity and Specificity , Classical Swine Fever Virus/genetics , Classical Swine Fever Virus/isolation & purification , Classical Swine Fever Virus/classification , Animals , Nucleic Acid Amplification Techniques/methods , Nucleic Acid Amplification Techniques/economics , Classical Swine Fever/diagnosis , Classical Swine Fever/virology , Swine , Molecular Diagnostic Techniques/methods , Molecular Diagnostic Techniques/economics , RNA, Viral/genetics , RNA, Viral/isolation & purification , DNA Primers/genetics , Colorimetry/methods , Temperature
15.
Viruses ; 16(4)2024 Mar 30.
Article in English | MEDLINE | ID: mdl-38675882

ABSTRACT

As a mosquito-borne flavivirus, Zika virus (ZIKV) has been identified as a global health threat. The virus has been linked to severe congenital disabilities, including microcephaly and other congenital malformations, resulting in fatal intrauterine death. Therefore, developing sensitive and specific methods for the early detection and accurate diagnosis of the ZIKV is essential for controlling its spread and mitigating its impact on public health. Herein, we set up a novel nucleic acid detection system based on Pyrococcus furiosus Argonaute (PfAgo)-mediated nucleic acid detection, targeting the non-structural protein 5 (NS5) region of the ZIKV genome (abbreviated ZIKV-PAND). Without preamplification with the polymerase chain reaction (PCR), the minimum detection concentration (MDC) of ZIKV-PAND was about 10 nM. When introducing an amplification step, the MDC can be dramatically decreased to the aM level (8.3 aM), which is comparable to qRT-PCR assay (1.6 aM). In addition, the diagnostic findings from the analysis of simulated clinical samples or Zika virus samples using ZIKV-PAND show a complete agreement of 100% with qRT-PCR assays. This correlation can aid in the implementation of molecular testing for clinical diagnoses and the investigation of ZIKV infection on an epidemiological scale.


Subject(s)
Pyrococcus furiosus , Viral Nonstructural Proteins , Zika Virus Infection , Zika Virus , Zika Virus/genetics , Zika Virus/isolation & purification , Zika Virus Infection/diagnosis , Zika Virus Infection/virology , Humans , Viral Nonstructural Proteins/genetics , Pyrococcus furiosus/genetics , Argonaute Proteins/genetics , Sensitivity and Specificity , RNA, Viral/genetics , Molecular Diagnostic Techniques/methods , Nucleic Acid Amplification Techniques/methods , Genome, Viral
16.
Viruses ; 16(4)2024 Apr 13.
Article in English | MEDLINE | ID: mdl-38675941

ABSTRACT

The BIOFIRE SPOTFIRE Respiratory (R) Panel is a novel, in vitro diagnostic PCR assay with 15 pathogen targets. The runtime is about 15 min which is the shortest among similar panels in the market. We evaluated the performance of the SPOTFIRE R Panel with 151 specimens, including 133 collected from the upper respiratory tract (URT), 13 from the lower respiratory tract (LRT) and 5 external quality assessment program (EQAP) samples. The respiratory specimens were enrolled throughout the first two post-COVID-19 influenza seasons in Hong Kong (March to December 2023). For URT specimens, full concordance was observed between the SPOTFIRE R Panel and the standard-of-care FilmArray Respiratory 2.1 plus Panel (RP2.1plus) for 109 specimens (109/133, 81.95%). After discrepant analysis, the SPOTFIRE R Panel identified more pathogens than the RP2.1plus in 15 specimens and vice versa in 3 specimens. The per-target negative and positive percentage agreement (NPA and PPA) were 92.86-100% except the PPA of adenovirus (88.24%). For LRT and EQAP samples, all results were fully concordant. To conclude, the performance of the SPOTFIRE R Panel was comparable to the RP2.1plus.


Subject(s)
COVID-19 , Respiratory Tract Infections , SARS-CoV-2 , Humans , COVID-19/diagnosis , COVID-19/virology , Respiratory Tract Infections/virology , Respiratory Tract Infections/diagnosis , Hong Kong , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , Sensitivity and Specificity , Molecular Diagnostic Techniques/methods , COVID-19 Nucleic Acid Testing/methods
17.
PLoS Negl Trop Dis ; 18(4): e0012113, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38662642

ABSTRACT

BACKGROUND: Accuracy of molecular tools for the identification of parasites that cause human cutaneous leishmaniasis (CL) could largely depend on the sampling method. Non-invasive or less-invasive sampling methods such as filter paper imprints and cotton swabs are preferred over punch biopsies and lancet scrapings for detection methods of Leishmania based on polymerase chain reaction (PCR) because they are painless, simple, and inexpensive, and of benefit to military and civilian patients to ensure timely treatment. However, different types of samples can generate false negatives and there is a clear need to demonstrate which sample is more proper for molecular assays. METHODOLOGY: Here, we compared the sensitivity of molecular identification of different Leishmania (Viannia) species from Peru, using three types of sampling: punch biopsy, filter paper imprint and lancet scraping. Different composite reference standards and latent class models allowed to evaluate the accuracy of the molecular tools. Additionally, a quantitative PCR assessed variations in the results and parasite load in each type of sample. PRINCIPAL FINDINGS: Different composite reference standards and latent class models determined higher sensitivity when lancet scrapings were used for sampling in the identification and determination of Leishmania (Viannia) species through PCR-based assays. This was consistent for genus identification through kinetoplastid DNA-PCR and for the determination of species using FRET probes-based Nested Real-Time PCR. Lack of species identification in some samples correlated with the low intensity of the PCR electrophoretic band, which reflects the low parasite load in samples. CONCLUSIONS: The type of clinical sample can directly influence the detection and identification of Leishmania (Viannia) species. Here, we demonstrated that lancet scraping samples consistently allowed the identification of more leishmaniasis cases compared to filter paper imprints or biopsies. This procedure is inexpensive, painless, and easy to implement at the point of care and avoids the need for anesthesia, surgery, and hospitalization and therefore could be used in resource limited settings for both military and civilian populations.


Subject(s)
Leishmania , Leishmaniasis, Cutaneous , Sensitivity and Specificity , Humans , Leishmania/genetics , Leishmania/isolation & purification , Leishmania/classification , Leishmaniasis, Cutaneous/parasitology , Leishmaniasis, Cutaneous/diagnosis , Peru , Specimen Handling/methods , Polymerase Chain Reaction/methods , Molecular Diagnostic Techniques/methods , DNA, Protozoan/genetics , Biopsy
18.
J Clin Microbiol ; 62(5): e0002824, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38639489

ABSTRACT

The mpox outbreak, caused by monkeypox virus (MPXV), accelerated the development of molecular diagnostics. In this study, we detail the evaluation of the Research Use Only (RUO) NeuMoDx MPXV assay by multiple European and US sites. The assay was designed and developed by Qiagen for the NeuMoDx Molecular Systems. Primers and probes were tested for specificity and inclusivity in silico. The analytical sensitivity of the assay was determined by testing dilutions of synthetic and genomic MPXV DNA. A total of 296 clinical samples were tested by three sites; the Johns Hopkins University (US), UZ Gent (Belgium, Europe), and Hospital Universitario San Cecilio (Spain, Europe). The analytical sensitivity of the assay was 50 copies/mL for both clades I and II. The assay showed 100% in silico identity for 80 clade I and 99.98% in silico identity for 5,162 clade II genomes. Clade II primers and probes showed 100% in silico specificity; however, identity of at least one of the two sets of clade I primers and probes with variola, cowpox, camelpox, and vaccinia viruses was noticed. The clinical validation showed sensitivity of 99.21% [95% confidence interval (CI): 95.66-99.98%] and specificity of 96.64% (95% CI: 91.62-99.08%) for lesion swab samples. The NeuMoDx MPXV Test shows acceptable analytical and clinical performance. The assay improves the laboratory's workflow as it consolidates nucleic acid extraction, PCR, data analysis, and interpretation and can be interfaced. The Test Strip can differentiate clades I and II, which has important laboratory safety implications. IMPORTANCE: In this manuscript, we provide detailed in silico analysis and clinical evaluation of the assay using a large cohort of clinical samples across three academic centers in Europe and the United States. Because the assay differentiates MPXV clades I and II, this manuscript is timely due to the current need to rule out the regulated clade I by diagnostic clinical laboratories. In December 2023, and due to first report of cases of sexually transmitted clade I infections in the Democratic Republic of the Congo, when generic assays that do not differentiate the clades are used, samples are considered regulated. The assay meets the need of full automation and has a marked positive impact on the laboratory workflow.


Subject(s)
Molecular Diagnostic Techniques , Monkeypox virus , Mpox (monkeypox) , Real-Time Polymerase Chain Reaction , Sensitivity and Specificity , Humans , Monkeypox virus/genetics , Monkeypox virus/isolation & purification , Monkeypox virus/classification , Real-Time Polymerase Chain Reaction/methods , Mpox (monkeypox)/diagnosis , Mpox (monkeypox)/virology , Molecular Diagnostic Techniques/methods , Europe , United States , Automation, Laboratory/methods , DNA Primers/genetics , Belgium
19.
J Med Virol ; 96(4): e29624, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38647075

ABSTRACT

Respiratory infections pose a serious threat to global public health, underscoring the urgent need for rapid, accurate, and large-scale diagnostic tools. In recent years, the CRISPR/Cas (clustered regularly interspaced short palindromic repeats/CRISPR-associated) system, combined with isothermal amplification methods, has seen widespread application in nucleic acid testing (NAT). However, achieving a single-tube reaction system containing all necessary components is challenging due to the competitive effects between recombinase polymerase amplification (RPA) and CRISPR/Cas reagents. Furthermore, to enable precision medicine, distinguishing between bacterial and viral infections is essential. Here, we have developed a novel NAT method, termed one-pot-RPA-CRISPR/Cas12a, which combines RPA with CRISPR molecular diagnostic technology, enabling simultaneous detection of 12 common respiratory pathogens, including six bacteria and six viruses. RPA and CRISPR/Cas12a reactions are separated by paraffin, providing an independent platform for RPA reactions to generate sufficient target products before being mixed with the CRISPR/Cas12a system. Results can be visually observed under LED blue light. The sensitivity of the one-pot-RPA-CRISPR/Cas12a method is 2.5 × 100 copies/µL plasmids, with no cross-reaction with other bacteria or viruses. Additionally, the clinical utility was evaluated by testing clinical isolates of bacteria and virus throat swab samples, demonstrating favorable performance. Thus, our one-pot-RPA-CRISPR/Cas12a method shows immense potential for accurate and large-scale detection of 12 common respiratory pathogens in point-of-care testing.


Subject(s)
Bacteria , CRISPR-Cas Systems , Molecular Diagnostic Techniques , Respiratory Tract Infections , Viruses , Bacteria/genetics , Bacteria/isolation & purification , Bacterial Infections/diagnosis , Bacterial Infections/microbiology , Molecular Diagnostic Techniques/methods , Nucleic Acid Amplification Techniques/methods , Recombinases/genetics , Recombinases/metabolism , Respiratory Tract Infections/diagnosis , Respiratory Tract Infections/virology , Respiratory Tract Infections/microbiology , Sensitivity and Specificity , Virus Diseases/diagnosis , Viruses/genetics , Viruses/isolation & purification
20.
Microbiol Spectr ; 12(5): e0409823, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38602399

ABSTRACT

Targeted next-generation sequencing (tNGS) can be used to perform Mycobacterium tuberculosis (MTB) complex-specific amplification or target capture directly from sputum samples, yielding simultaneous coverage of many genes and DNA regions associated with antimicrobial resistance (AMR). Performance comparisons of tNGS and another molecular testing tool, Xpert MTB/rifampicin (RIF), have been empirical. Here, using a dilution series of a RIF-resistant clinical isolate of MTB, we found that tNGS had a slightly lower limit of bacterial detection (102 CFU/mL) compared with Xpert MTB/RIF (103 CFU/mL) in culture medium. However, the minimum detection limit of the rpoB S450L mutation in this isolate was significantly lower with tNGS (102 CFU/mL) than with Xpert MTB/RIF (106 CFU/mL). Sputum samples collected from 129 suspected pulmonary tuberculosis patients were also prospectively studied with the clinical diagnosis as a reference, revealing that the sensitivity of tNGS (48.6%) was higher than those of culture (46.8%), Xpert MTB/RIF (39.4%), and smear microscopy (34.9%) testing. Notably, AMR analysis of 56 MTB-positive samples as determined by tNGS revealed high mutation frequencies of 96.4%, 35.7%, 26.8%, and 19.6% in the following AMR-associated genes: rrs, rpoB, katG, and pncA, respectively. The findings of this study provide theoretical support for the differential clinical application of tNGS and Xpert MTB/RIF and suggest that tNGS has greater application value in tuberculosis drug resistance monitoring and prevention.IMPORTANCETargeted next-generation sequencing (tNGS) can be used to perform Mycobacterium tuberculosis (MTB) complex-specific amplification or target capture directly from sputum samples, yielding simultaneous coverage of genes and DNA regions associated with antimicrobial resistance (AMR). Performance comparisons of tNGS and Xpert MTB/rifampicin (RIF) have been empirical. The Xpert MTB/RIF assay is a commercial system that uses the nucleic acid amplification detection method for rapid (2 hours) diagnosis of tuberculosis (TB). The cost of the tNGS and Xpert MTB/RIF assays in this study was similar, at USD 98 and USD 70-104 per sample, respectively, but the time required for tNGS (3 days) was much longer than that required for the Xpert MTB/RIF assay. However, tNGS yielded more accurate results and a larger number of AMR-associated gene mutations, which compensated for the extra time and highlighted the greater application value of tNGS in TB drug resistance monitoring and prevention.


Subject(s)
High-Throughput Nucleotide Sequencing , Mycobacterium tuberculosis , Rifampin , Sputum , Tuberculosis, Pulmonary , Mycobacterium tuberculosis/genetics , Mycobacterium tuberculosis/drug effects , Mycobacterium tuberculosis/isolation & purification , Humans , Sputum/microbiology , High-Throughput Nucleotide Sequencing/methods , Rifampin/pharmacology , Tuberculosis, Pulmonary/diagnosis , Tuberculosis, Pulmonary/microbiology , Sensitivity and Specificity , Tuberculosis, Multidrug-Resistant/diagnosis , Tuberculosis, Multidrug-Resistant/microbiology , Bacterial Proteins/genetics , Mutation , Drug Resistance, Bacterial/genetics , Molecular Diagnostic Techniques/methods , Microbial Sensitivity Tests , Female , DNA-Directed RNA Polymerases/genetics , Male , Adult , DNA, Bacterial/genetics
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