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1.
Mol Biol Rep ; 51(1): 716, 2024 Jun 01.
Article En | MEDLINE | ID: mdl-38824237

BACKGROUND: Post kala-azar dermal leishmaniasis (PKDL) is a consequential dermal manifestation of visceral leishmaniasis (VL), serving as a parasite reservoir. The traditional diagnostic approach, which requires an invasive skin biopsy is associated with inherent risks and necessitates skilled healthcare practitioners in sterile settings. There is a critical need for a rapid, less invasive method for Leishmania detection. The main objective of this study was to evaluate and compare the diagnostic efficacy of PCR and qPCR in detecting PKDL, utilizing both skin and blood samples and to assess the utility of blood samples for molecular diagnosis. METHODS AND RESULTS: 73 individuals exhibiting clinical symptoms of PKDL and who had tested positive for rK39 rapid diagnostic test (RDT) were enrolled in this study. For the diagnosis of PKDL, both PCR and real-time quantitative PCR (qPCR), employing SYBR Green and TaqMan assays, were performed on blood and skin matched samples. qPCR results using both TaqMan and SYBR Green assay, indicated higher parasite loads in the skin compared to blood, as evident by the Ct values. Importantly, when blood samples were used for PKDL diagnosis by qPCR, an encouraging sensitivity of 69.35% (TaqMan assay) and 79.36% (SYBR Green) were obtained, compared to 8.2% with conventional PCR. CONCLUSION: The findings of the study suggest the potential utility of blood for molecular diagnosis by qPCR, offering a less invasive alternative to skin biopsies in field setting for the early detection of parasitaemia in PKDL patients and effective management and control of the disease.


Leishmaniasis, Cutaneous , Leishmaniasis, Visceral , Real-Time Polymerase Chain Reaction , Humans , Leishmaniasis, Visceral/diagnosis , Leishmaniasis, Visceral/blood , Leishmaniasis, Visceral/parasitology , Leishmaniasis, Cutaneous/diagnosis , Leishmaniasis, Cutaneous/parasitology , Leishmaniasis, Cutaneous/blood , Leishmaniasis, Cutaneous/genetics , Real-Time Polymerase Chain Reaction/methods , Male , Female , Adult , Adolescent , Skin/parasitology , Skin/pathology , Sensitivity and Specificity , Middle Aged , Parasite Load/methods , Molecular Diagnostic Techniques/methods , Young Adult , Child , DNA, Protozoan/genetics , DNA, Protozoan/blood
2.
Biosensors (Basel) ; 14(5)2024 May 04.
Article En | MEDLINE | ID: mdl-38785702

Legionella pneumophila has been pinpointed by the World Health Organization as the highest health burden of all waterborne pathogens in the European Union and is responsible for many disease outbreaks around the globe. Today, standard analysis methods (based on bacteria culturing onto agar plates) need several days (~12) in specialized analytical laboratories to yield results, not allowing for timely actions to prevent outbreaks. Over the last decades, great efforts have been made to develop more efficient waterborne pathogen diagnostics and faster analysis methods, requiring further advancement of microfluidics and sensors for simple, rapid, accurate, inexpensive, real-time, and on-site methods. Herein, a lab-on-a-chip device integrating sample preparation by accommodating bacteria capture, lysis, and DNA isothermal amplification with fast (less than 3 h) and highly sensitive, colorimetric end-point detection of L. pneumophila in water samples is presented, for use at the point of need. The method is based on the selective capture of viable bacteria on on-chip-immobilized and -lyophilized antibodies, lysis, the loop-mediated amplification (LAMP) of DNA, and end-point detection by a color change, observable by the naked eye and semiquantified by computational image analysis. Competitive advantages are demonstrated, such as low reagent consumption, portability and disposability, color change, storage at RT, and compliance with current legislation.


Colorimetry , Lab-On-A-Chip Devices , Legionella pneumophila , Nucleic Acid Amplification Techniques , Legionella pneumophila/isolation & purification , Humans , Water Microbiology , DNA, Bacterial/analysis , Biosensing Techniques , Molecular Diagnostic Techniques
3.
Biosensors (Basel) ; 14(5)2024 May 17.
Article En | MEDLINE | ID: mdl-38785731

Loop-mediated isothermal amplification (LAMP) technology is extensively utilized for the detection of infectious diseases owing to its rapid processing and high sensitivity. Nevertheless, conventional LAMP signaling methods frequently suffer from a lack of sequence specificity. This study integrates a triplex-forming oligonucleotide (TFO) probe into the LAMP process to enhance sequence specificity. This TFO-LAMP technique was applied for the detection of Group B Streptococcus (GBS). The TFO probe is designed to recognize a specific DNA sequence, termed the TFO targeting sequence (TTS), within the amplified product, facilitating detection via fluorescent instrumentation or lateral flow biosensors. A screening method was developed to identify TFO sequences with high affinity to integrate TFO into LAMP, subsequently incorporating a selected TTS into an LAMP primer. In the TFO-LAMP assay, a FAM-labeled TFO is added to target the TTS. This TFO can be captured by an anti-FAM antibody on lateral flow test strips, thus creating a nucleic acid testing biosensor. The efficacy of the TFO-LAMP assay was confirmed through experiments with specimens spiked with varying concentrations of GBS, demonstrating 85% sensitivity at 300 copies and 100% sensitivity at 30,000 copies. In conclusion, this study has successfully developed a TFO-LAMP technology that offers applicability in lateral flow biosensors and potentially other biosensor platforms.


Biosensing Techniques , Nucleic Acid Amplification Techniques , Oligonucleotides , Streptococcus/genetics , Streptococcus/isolation & purification , Humans , DNA, Bacterial/analysis , Molecular Diagnostic Techniques
4.
Cells ; 13(10)2024 May 09.
Article En | MEDLINE | ID: mdl-38786028

Zika (ZIKV) and Chikungunya (CHIKV) viruses are mosquito-transmitted infections, or vector-borne pathogens, that emerged a few years ago. Reliable diagnostic tools for ZIKV and CHIKV-inexpensive, multiplexed, rapid, highly sensitive, and specific point-of-care (POC) systems-are vital for appropriate risk management and therapy. We recently studied a detection system with great success in Mexico (Villahermosa, state of Tabasco), working with human sera from patients infected with those viruses. The research conducted in Mexico validated the efficacy of a novel two-step rapid isothermal amplification technique (RAMP). This approach, which encompasses recombinase polymerase amplification (RPA) followed by loop-mediated isothermal amplification (LAMP), had been previously established in the lab using lab-derived Zika (ZIKV) and Chikungunya (CHIKV) viruses. Crucially, our findings confirmed that this technique is also effective when applied to human sera samples collected from locally infected individuals in Mexico.


Chikungunya virus , Nucleic Acid Amplification Techniques , Zika Virus Infection , Zika Virus , Humans , Zika Virus/genetics , Zika Virus/isolation & purification , Nucleic Acid Amplification Techniques/methods , Chikungunya virus/genetics , Chikungunya virus/isolation & purification , Zika Virus Infection/diagnosis , Zika Virus Infection/virology , Zika Virus Infection/blood , Chikungunya Fever/diagnosis , Chikungunya Fever/virology , Chikungunya Fever/blood , Molecular Diagnostic Techniques/methods , RNA, Viral/genetics , RNA, Viral/blood , Mexico , Sensitivity and Specificity , RNA Viruses/genetics , RNA Viruses/isolation & purification
5.
Int J Mol Sci ; 25(10)2024 May 10.
Article En | MEDLINE | ID: mdl-38791224

Cotton Verticillium wilt is mainly caused by the fungus Verticillium dahliae, which threatens the production of cotton. Its pathogen can survive in the soil for several years in the form of microsclerotia, making it a destructive soil-borne disease. The accurate, sensitive, and rapid detection of V. dahliae from complex soil samples is of great significance for the early warning and management of cotton Verticillium wilt. In this study, we combined the loop-mediated isothermal amplification (LAMP) with CRISPR/Cas12a technology to develop an accurate, sensitive, and rapid detection method for V. dahliae. Initially, LAMP primers and CRISPR RNA (crRNA) were designed based on a specific DNA sequence of V. dahliae, which was validated using several closely related Verticillium spp. The lower detection limit of the LAMP-CRISPR/Cas12a combined with the fluorescent visualization detection system is approximately ~10 fg/µL genomic DNA per reaction. When combined with crude DNA-extraction methods, it is possible to detect as few as two microsclerotia per gram of soil, with the total detection process taking less than 90 min. Furthermore, to improve the method's user and field friendliness, the field detection results were visualized using lateral flow strips (LFS). The LAMP-CRISPR/Cas12a-LFS system has a lower detection limit of ~1 fg/µL genomic DNA of the V. dahliae, and when combined with the field crude DNA-extraction method, it can detect as few as six microsclerotia per gram of soil, with the total detection process taking less than 2 h. In summary, this study expands the application of LAMP-CRISPR/Cas12a nucleic acid detection in V. dahliae and will contribute to the development of field-deployable diagnostic productions.


CRISPR-Cas Systems , Nucleic Acid Amplification Techniques , Plant Diseases , Soil Microbiology , Nucleic Acid Amplification Techniques/methods , Plant Diseases/microbiology , Ascomycota/genetics , Ascomycota/isolation & purification , Molecular Diagnostic Techniques/methods , Gossypium/microbiology , DNA, Fungal/genetics , DNA, Fungal/isolation & purification , Verticillium/genetics
6.
Diagn Microbiol Infect Dis ; 109(3): 116301, 2024 Jul.
Article En | MEDLINE | ID: mdl-38723453

Accurate detection and quantification of cytomegalovirus (CMV) is crucial to preventing adverse outcomes in immunocompromised individuals. Current assays were developed for use with plasma specimens, but CMV may be present in bronchoalveolar lavage (BAL) fluid and cerebrospinal fluid (CSF). We evaluated the performance of the Abbott Alinity m CMV assay compared to the Abbott RealTime CMV assay for quantification of CMV in plasma, BAL, and CSF specimens. To evaluate clinical performance, 190 plasma, 78 BAL, and 20 CSF specimens were tested with the Alinity m assay and compared to the RealTime assay. The Alinity m CMV assay showed high precision (SD <0.01 to 0.13) for all 3 specimen types. Clincal plasma and BAL specimens with quantifiable CMV DNA demonstrated strong correlation to RealTime CMV assay results (r2 = 0.9779 for plasma, r2 = 0.9373 for BAL). The Alinity m CMV assay may be useful for quantification of CMV in plasma, BAL, and CSF specimens.


Bronchoalveolar Lavage Fluid , Cerebrospinal Fluid , Cytomegalovirus Infections , Cytomegalovirus , Humans , Bronchoalveolar Lavage Fluid/virology , Cytomegalovirus Infections/diagnosis , Cytomegalovirus Infections/cerebrospinal fluid , Cytomegalovirus Infections/virology , Cytomegalovirus/isolation & purification , Cytomegalovirus/genetics , Cerebrospinal Fluid/virology , Molecular Diagnostic Techniques/methods , Molecular Diagnostic Techniques/standards , Sensitivity and Specificity , Viral Load , Plasma/virology , DNA, Viral/cerebrospinal fluid
7.
Int J Food Microbiol ; 418: 110732, 2024 Jun 16.
Article En | MEDLINE | ID: mdl-38728973

Trematodes belonging to the family Echinostomatidae are food-borne parasites which cause echinostomiasis in animals and humans. This is a global public health issue, particularly in East and Southeast Asia. A method to detect the infective stage of Echinostomatidae species is required to prevent transmission to humans. In this study, a loop-mediated isothermal amplification coupled with a lateral flow dipstick (LAMP-LFD) assay was developed for visual detection of the metacercarial stage in edible snails of the genus Filopaludina from local markets in Thailand. The LAMP-LFD method can be performed within 70 min at a consistent temperature of 66 °C, and the results can be interpreted with the naked eye. The detection limits of the assay using Echinostoma mekongi, E. macrorchis, E. miyagawai and Hypoderaeum conoideum genomic DNA were equal between the four species at 50 pg/µL. A specificity evaluation demonstrated that the LAMP-LFD assay had no cross-reaction with another parasite (Thapariella species) or with the snail host species (Filopaludina martensi martensi, F. sumatrensis speciosa, and F. s. polygramma). Clinical test assessments were compared to microscopic examination in 110 edible snail samples. The clinical sensitivity and specificity of the tests were 84.62 % and 100 %, respectively, with a strong level of agreement based on the kappa statistic and the results of both methods were not significantly different (p > 0.05) per McNemar's test. The test successfully developed in this study may be useful for the detection of the metacercarial stage in edible snails for epidemiological investigations, control, surveillance, and to prevent future echinostomiasis health issues.


Nucleic Acid Amplification Techniques , Snails , Animals , Nucleic Acid Amplification Techniques/methods , Snails/parasitology , Echinostomatidae/isolation & purification , Echinostomatidae/genetics , Echinostomatidae/classification , Thailand , Sensitivity and Specificity , Molecular Diagnostic Techniques/methods , Food Parasitology
8.
J Virol Methods ; 327: 114947, 2024 Jun.
Article En | MEDLINE | ID: mdl-38703833

Rubella virus infection during early pregnancy sometimes causes severe birth defects termed congenital rubella syndrome. Although there are safe and effective live-attenuated vaccines, rubella has only been certified as eliminated in the Americas within the six World Health Organization regions. Rubella remains an endemic disease in many regions, and outbreaks occur wherever population immunity is insufficient. There are two main methods for diagnosis of rubella: detection of anti-rubella IgM antibodies by enzyme immunoassay and detection of the viral genome by real-time RT-PCR. Both of these methods require substantial time and effort. In the present study, a rapid rubella detection assay using real-time fluorescent reverse transcription loop-mediated isothermal amplification with quenching primers was developed. The time required for the new assay was one-half that required for a real-time RT-PCR assay. The assay had 93.6% positive percent agreement and 100% negative percent agreement for clinical specimens compared with the real-time RT-PCR assay. The new assay is considered useful for diagnosis of rubella in areas where rubella is endemic.


DNA Primers , Nucleic Acid Amplification Techniques , Rubella virus , Rubella , Rubella virus/genetics , Rubella virus/isolation & purification , Rubella/diagnosis , Rubella/virology , Humans , Nucleic Acid Amplification Techniques/methods , DNA Primers/genetics , Sensitivity and Specificity , Molecular Diagnostic Techniques/methods , Time Factors , Female
9.
Sci Rep ; 14(1): 10612, 2024 05 09.
Article En | MEDLINE | ID: mdl-38719936

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.


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
10.
Front Cell Infect Microbiol ; 14: 1391943, 2024.
Article En | MEDLINE | ID: mdl-38808061

Blastocystis spp. is a ubiquitous protozoon in the intestinal tract of human and many animals. Microscopic examination is the main method of clinical diagnosis for Blastocystis spp., which is prone to false negative. A simple and rapid diagnosis of Blastocystis spp. infection is an important step to prevent and control blastocystosis. Here, a recombinase polymerase amplification-lateral flow dipstick (RPA-LFD) assay was developed for rapid visual detection of Blastocystis spp. DNA amplification could be performed within 18 min at 37°C. The minimum DNA detection limit was 1 pg/µL, and there was no cross-reactivity with 12 other non-target pathogens, which was consistent with the sensitivity of conventional PCR (cPCR). Furthermore, 56 fecal samples from the Third Affiliated Hospital of Xinxiang Medical University were tested using RPA and cPCR methods respectively, and the results were completely consistent. The results show that RPA-LFD method has high accuracy and visual results, which provides a new choice for the differential diagnosis and rapid field detection of Blastocystis spp.


Blastocystis Infections , Blastocystis , DNA, Protozoan , Feces , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Sensitivity and Specificity , Blastocystis/genetics , Blastocystis/isolation & purification , Humans , Blastocystis Infections/diagnosis , Blastocystis Infections/parasitology , Nucleic Acid Amplification Techniques/methods , Feces/parasitology , Molecular Diagnostic Techniques/methods , DNA, Protozoan/genetics , Recombinases/metabolism , Recombinases/genetics
11.
Anal Methods ; 16(21): 3430-3437, 2024 May 30.
Article En | MEDLINE | ID: mdl-38766841

Two levels of nucleic acids-based isothermal amplification normally require a long reaction time due to the low concentration of catalyst, which limits its practical application. A sensitive fluorescence assay of chloramphenicol (CAP) was developed coupled with two-level isothermal amplification using a self-powered catalyzed hairpin assembly (CHA) and entropy-driven circuit (EDC). CAP can bind with its aptamer to open its closed structure. The opened hairpin can initiate self-powered CHA and EDC. The product of CHA can circularly catalyze the CHA with increasing concentration. In principle, the product of CHA plays the role of catalyst and increases with the progression of the reaction. Compared with the normal two levels of amplification, the amplification efficiency of our strategy is much higher due to the self-powered reaction by the CHA product. Thus, the reaction time is shortened to 110 min in this strategy. Moreover, the detection limit for CAP can achieve 0.1 pM and shows promising prospects for practical application.


Chloramphenicol , Entropy , Limit of Detection , Nucleic Acid Amplification Techniques , Chloramphenicol/analysis , Chloramphenicol/chemistry , Nucleic Acid Amplification Techniques/methods , Catalysis , Spectrometry, Fluorescence/methods , Fluorescence , Aptamers, Nucleotide/chemistry , Biosensing Techniques/methods , Molecular Diagnostic Techniques
12.
ACS Sens ; 9(5): 2695-2702, 2024 May 24.
Article En | MEDLINE | ID: mdl-38747895

Quantitative nucleic acid amplification tests are of great importance for diagnostics, but current approaches require complex and costly optical setups that limit their nonlaboratory applications. Herein we describe the implementation of a microfluidics platform that can perform binary DNA-amplification-activated droplet sorting. The digital sort-enabled counting (DISCO) platform enables label-free absolute quantification of the nucleic acid. This is achieved by provoking a pH change in droplets through a loop-mediated isothermal amplification (LAMP) reaction, followed by using sorting by interfacial tension (SIFT) to direct positive and negative droplets to different outlets. With the use of on-chip electrodes at both outlets, we demonstrate that the digital electrical counting of target DNA and RNA can be realized. DISCO is a promising approach for realizing sensitive nucleic acid quantification in point-of-care settings.


Nucleic Acid Amplification Techniques , Nucleic Acid Amplification Techniques/methods , DNA/analysis , DNA/chemistry , Lab-On-A-Chip Devices , RNA/analysis , Electrodes , Electrochemical Techniques/methods , Microfluidic Analytical Techniques/instrumentation , Microfluidic Analytical Techniques/methods , Molecular Diagnostic Techniques
13.
Sci Rep ; 14(1): 11542, 2024 05 21.
Article En | MEDLINE | ID: mdl-38773154

Evidence for seed transmission of phytoplasmas has grown in several pathosystems including coconut (Cocos nucifera). Bogia coconut syndrome (BCS) is a disease associated with the lethal yellowing syndrome associated with the presence of 'Candidatus Phytoplasma noviguineense' that affects coconut, betel nut (Areca catechu) and bananas (Musa spp.) in Papua New Guinea. Coconut and betel nut drupes were sampled from BCS-infected areas in Papua New Guinea, dissected, the extracted nucleic acid was used in polymerase chain reaction (PCR), and loop mediated isothermal amplification (LAMP) used to check for presence of phytoplasma DNA. In a second study, drupes of both plant species were collected from multiple field sites and grown in insect-proof cages. Leaf samples taken at 6 months were also tested with PCR and LAMP. The studies of dissected coconut drupes detected phytoplasma DNA in several tissues including the embryo. Drupes from betel nut tested negative. Among the seedlings, evidence of possible seed transmission was found in both plant species. The results demonstrate the presence of 'Ca. P. noviguineense' in coconut drupes and seedlings, and in seedlings of betel nut; factors that need to be considered in ongoing management and containment efforts.


Areca , Cocos , Phytoplasma , Plant Diseases , Seedlings , Seeds , Cocos/microbiology , Phytoplasma/genetics , Phytoplasma/isolation & purification , Seeds/microbiology , Plant Diseases/microbiology , Seedlings/microbiology , Nucleic Acid Amplification Techniques/methods , DNA, Bacterial/genetics , Papua New Guinea , Polymerase Chain Reaction , Molecular Diagnostic Techniques
14.
Anal Methods ; 16(20): 3249-3255, 2024 May 23.
Article En | MEDLINE | ID: mdl-38726641

The past and present scenario of COVID-19 has revealed the necessity of simple point-of-care tests. When combined with the great advantages of amplification, lateral flow assay nucleic acid analysis represents a more sensitive molecular diagnostic technique compared to universal protein analysis. Room temperature operation, an enzyme-free nature, and in situ elongation make hybrid chain reaction amplification (HCR) a good candidate for amplified combined lateral flow assays (LFAs). Since dual modes of detection can not only satisfy different application scenarios, but also reduce the false-negative rate, in this paper, visual and fluorescent detection based on labelling with colloidal gold nanoparticles and fluorescence labelling were incorporated into a HCR integrated with a LFA. The detection assay was finished in 30 minutes. The linear relationship between the signal and the concentration of the characteristic segment in the COVID-19 ORF gene was demonstrated. The obtained detection limits of as low as 10 fM (6.02 × 103 copies per mL) and 1 fM (6.02 × 102 copies per mL), respectively, were comparable with those in the literature. The multi-site HCR amplification integrated with LFA of a 1053 bp nucleic acid chain was also preliminarily studied, and tri-site amplification was found to exhibit higher signal intensity than single-site amplification. This study provides a promising strategy for simple, sensitive, and wide-ranging detection of pathogenic bacteria.


COVID-19 , Nucleic Acid Amplification Techniques , SARS-CoV-2 , SARS-CoV-2/genetics , Humans , COVID-19/diagnosis , Nucleic Acid Amplification Techniques/methods , Limit of Detection , Molecular Diagnostic Techniques/methods , COVID-19 Nucleic Acid Testing/methods , COVID-19 Nucleic Acid Testing/instrumentation , Metal Nanoparticles/chemistry , RNA, Viral/analysis , RNA, Viral/genetics
15.
Acta Trop ; 255: 107249, 2024 Jul.
Article En | MEDLINE | ID: mdl-38740319

BACKGROUND: Natural human infections by Plasmodium cynomolgi and P. inui have been reported recently and gain the substantial attention from Southeast Asian countries. Zoonotic transmission of non-human malaria parasites to humans from macaque monkeys occurred through the bites of the infected mosquitoes. The objective of this study is to establish real-time fluorescence loop-mediated isothermal amplification (LAMP) assays for the detection of zoonotic malaria parasites by combining real-time fluorescent technology with the isothermal amplification technique. METHODS: By using 18S rRNA as the target gene, the primers for P. cynomolgi, P. coatneyi and P. inui were newly designed in the present study. Four novel real-time fluorescence LAMP assays were developed for the detection of P. cynomolgi, P. coatneyi, P. inui and P. knowlesi. The entire amplification process was completed in 60 min, with the assays performed at 65 °C. By using SYTO-9 as the nucleic acid intercalating dye, the reaction was monitored via real-time fluorescence signal. RESULTS: There was no observed cross-reactivity among the primers from different species. All 70 field-collected monkey samples were successfully amplified by real-time fluorescence LAMP assays. The detection limit for P. cynomolgi, P. coatneyi and P. knowlesi was 5 × 109 copies/µL. Meanwhile, the detection limit of P. inui was 5 × 1010 copies/µL. CONCLUSION: This is the first report of the detection of four zoonotic malaria parasites by real-time fluorescence LAMP approaches. It is an effective, rapid and simple-to-use technique. This presented platform exhibits considerable potential as an alternative detection for zoonotic malaria parasites.


Malaria , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Plasmodium , RNA, Ribosomal, 18S , Sensitivity and Specificity , Zoonoses , Animals , Nucleic Acid Amplification Techniques/methods , Malaria/diagnosis , Malaria/parasitology , Malaria/veterinary , RNA, Ribosomal, 18S/genetics , Molecular Diagnostic Techniques/methods , Plasmodium/genetics , Plasmodium/isolation & purification , Plasmodium/classification , Zoonoses/parasitology , Zoonoses/diagnosis , Humans , DNA Primers/genetics , Fluorescence , Macaca/parasitology , Monkey Diseases/parasitology , Monkey Diseases/diagnosis
16.
Anal Methods ; 16(19): 3020-3029, 2024 May 16.
Article En | MEDLINE | ID: mdl-38690766

A concise and rapid detection method for Mycoplasma pneumoniae is urgently required due to its severe impact on human health. To meet such a need, this study proposed and constructed an innovative point-of-care testing (POCT) platform that consists of a hydrogen ion-selective loop-mediated isothermal amplification (H+-LAMP) sensor and an electrochemical detection device. The H+-LAMP sensor successfully integrated the working and reference electrodes and converted the H+ generated during the LAMP process into an electrochemical signal. High sensitivity and stability for pathogen detection were also achieved by treating the working electrode with an electrodeposited polyaniline solid contact layer and by using an ion-selective membrane. As a result, the sensor shows a sensitivity of 68.26 mV per pH, a response time of less than 2 s, and a potential drift of less than 5 mV within one hour, which well meets the urgent need. The results also demonstrated that the detection limit for Mycoplasma pneumoniae was lowered to 1 copy per µL, the nucleic acid extraction and detection process could be completed in 30 minutes, and the impact of interfering ions on the sensor was negligible. Validation with 20 clinical samples yielded satisfactory results. More importantly, the storage lifespan of such an electrochemical sensor is over seven days, which is a great advantage for on-site pathogen detection. Therefore, the hydrogen ion-selective sensor constructed in this investigation is particularly suitable as a core component for instant pathogen detection platforms.


Electrochemical Techniques , Limit of Detection , Mycoplasma pneumoniae , Nucleic Acid Amplification Techniques , Mycoplasma pneumoniae/isolation & purification , Mycoplasma pneumoniae/genetics , Electrochemical Techniques/methods , Electrochemical Techniques/instrumentation , Nucleic Acid Amplification Techniques/methods , Humans , Hydrogen/chemistry , Pneumonia, Mycoplasma/diagnosis , Pneumonia, Mycoplasma/microbiology , Biosensing Techniques/methods , Molecular Diagnostic Techniques/methods , Molecular Diagnostic Techniques/instrumentation , Electrodes
17.
PLoS One ; 19(5): e0302783, 2024.
Article En | MEDLINE | ID: mdl-38753660

BACKGROUND: Periprosthetic joint infection (PJI) is one of the most serious and debilitating complications that can occur after total joint arthroplasty. Therefore, early diagnosis and appropriate treatment are important for a good prognosis. Recently, molecular diagnostic methods have been widely used to detect the causative microorganisms of PJI sensitively and rapidly. The Multiplex Loop-Mediated Isothermal Amplification (LAMP) method eliminates the complex temperature cycling and delays caused by temperature transitions seen in polymerase chain reaction (PCR) methods, making it faster and easier to perform compared to PCR-based assays. Therefore, this study developed a multiplex LAMP assay for diagnosing bacterial PJI using LAMP technology and evaluated its analytical and clinical performance. METHODS: We developed a multiplex LAMP assay for the detection of five bacteria: Staphylococcus aureus, Staphylococcus epidermidis, Streptococcus agalactiae, Pseudomonas aeruginosa, and Escherichia coli, frequently observed to be the causative agents of PJI. The method of analytical sensitivity and cross-reactivity were determined by spiking standard strains into the joint synovial fluid. The analytical sensitivity of the multiplex LAMP assay was compared with that of a quantitative real-time PCR (qPCR) assay. Clinical performance was evaluated using 20 joint synovial fluid samples collected from patients suspected of having bacterial PJI. RESULTS: The analytical sensitivity of the gram-positive bacterial multiplex LAMP assay and qPCR were 105/104 CFU/mL, 103/103 CFU/mL, and 105/104 CFU/mL against S. agalactiae, S. epidermidis, and S. aureus, respectively. For P. aeruginosa and E. coli, the analytical sensitivity of the multiplex LAMP and qPCR assays were 105/104 and 106/104 CFU/mL, respectively. The multiplex LAMP assay detects target bacteria without cross-reacting with other bacteria, and exhibited 100% sensitivity and specificity in clinical performance evaluation. CONCLUSIONS: This multiplex LAMP assay can rapidly detect five high-prevalence bacterial species causing bacterial PJI, with excellent sensitivity and specificity, in less than 1 h, and it may be useful for the early diagnosis of PJI.


Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Prosthesis-Related Infections , Humans , Nucleic Acid Amplification Techniques/methods , Prosthesis-Related Infections/diagnosis , Prosthesis-Related Infections/microbiology , Molecular Diagnostic Techniques/methods , Sensitivity and Specificity , Staphylococcus epidermidis/isolation & purification , Staphylococcus epidermidis/genetics , Synovial Fluid/microbiology , Bacterial Infections/diagnosis , Bacterial Infections/microbiology , Staphylococcus aureus/isolation & purification , Staphylococcus aureus/genetics
18.
Expert Rev Mol Diagn ; 24(5): 423-438, 2024 May.
Article En | MEDLINE | ID: mdl-38747017

INTRODUCTION: Diagnostics are an essential, undervalued part of the health-care system. For many diseases, molecular diagnostics are the gold standard, but are not easy to implement in Low- and Middle-Income Countries (LMIC). Sample-to-result (S2R) platforms combining all procedures in a closed system could offer a solution. In this paper, we investigated their suitability for implementation in LMIC. AREAS COVERED: A scorecard was used to evaluate different platforms on a range of parameters. Most platforms scored fairly on the platform itself, ease-of-use and test consumables; however, shortcomings were identified in cost, distribution and test panels tailored to LMIC needs. The diagnostic coverage for common infectious diseases was found to have a wider coverage in high-income countries (HIC) than LMIC. A literature study showed that in LMIC, these platforms are mainly used as diagnostic tools or evaluation of diagnostic performance, with a minority assessing the operational characteristics or the clinical utility. In this narrative review, we identified various points for adaptation of S2R platforms to LMIC conditions. EXPERT OPINION: For S2R platforms to be suitable for implementation in LMIC some modifications by the manufacturers could be considered. Furthermore, strengthening health systems and digitalization are vital; as are smaller, cheaper, faster, and sustainable technologies.


Communicable Diseases , Developing Countries , Molecular Diagnostic Techniques , Humans , Molecular Diagnostic Techniques/methods , Molecular Diagnostic Techniques/standards , Molecular Diagnostic Techniques/economics , Communicable Diseases/diagnosis
19.
Expert Rev Mol Diagn ; 24(5): 393-408, 2024 May.
Article En | MEDLINE | ID: mdl-38752560

INTRODUCTION: Advances in precision medicine have expanded access to targeted therapies and demand for molecular profiling of cholangiocarcinoma (CCA) patients in routine clinical practice. However, pathologists face challenges in establishing a definitive intrahepatic CCA (iCCA) diagnosis while preserving sufficient tissue for molecular profiling. Additionally, they frequently face challenges in optimal tissue handling to preserve nucleic acid integrity. AREAS COVERED: This article first identifies the challenges in establishing a definitive diagnosis of iCCA in a lesional liver biopsy while preserving sufficient tissue for molecular profiling. Then, the authors explore the clinical value of molecular profiling, the basic principles of single gene and next-generation sequencing (NGS) techniques, and the challenges in tissue sampling for genomic testing. They also propose an algorithm for best practice in tissue management for molecular profiling of CCA. EXPERT OPINION: Several practical challenges face pathologists during tissue sampling and processing for molecular profiling. Optimized tissue processing, careful tissue handling, and selection of appropriate approaches to molecular testing are essential to ensure that the highest possible quality of diagnostic information is provided in the greatest proportion of cases.


Bile Duct Neoplasms , Biomarkers, Tumor , Cholangiocarcinoma , High-Throughput Nucleotide Sequencing , Cholangiocarcinoma/diagnosis , Cholangiocarcinoma/genetics , Cholangiocarcinoma/pathology , Humans , Bile Duct Neoplasms/diagnosis , Bile Duct Neoplasms/genetics , Bile Duct Neoplasms/pathology , High-Throughput Nucleotide Sequencing/methods , Biomarkers, Tumor/genetics , Molecular Diagnostic Techniques/standards , Molecular Diagnostic Techniques/methods , Gene Expression Profiling/methods , Precision Medicine/methods , Biopsy
20.
J Med Virol ; 96(5): e29686, 2024 May.
Article En | MEDLINE | ID: mdl-38767142

Comparison of diagnostic accuracy for commercial hepatitis C virus (HCV) genotyping (Abbott RealTime HCV Genotyping II, Roche Cobas Genotyping) and investigational Abbott HCV Genotype plus RUO assays designed to discriminate genotype (GT)-1a, 1b or 6 in cases of ambiguous GT from the Abbott commercial assay remains limited. 743 HCV-viremic samples were subjected to analysis using Abbott and Roche commercial as well as Abbott HCV Genotype plus RUO assays. Next-generation sequencing (NGS) targeting core region was employed as the reference standard. Diagnostic accuracy was reported as the number of participants (percentages) along with 95% confidence intervals (CIs). Using NGS, 741 samples (99.7%) yielded valid genotyping results. The diagnostic accuracies were 97.6% (95% CI: 96.1%-98.5%) and 95.3% (95% CI: 93.4%-96.6%) using Abbott and Roche commercial assays (p = 0.0174). Abbott commercial assay accurately diagnosed HCV GT-6a and 6w, whereas Roche commercial assay accurately diagnosed HCV GT-6a. Both assays demonstrated low accuracies for HCV GT-6b, 6e, 6g, and 6n. Abbott HCV Genotype plus RUO assay discriminated 13 of the 14 samples (92.9%; 95% CI: 64.2%-99.6%) that yielded ambiguous GT. Both assays were capable of diagnosing mixed HCV infections when the minor genotype comprised >8.4% of the viral load. The diagnostic performance of commercial HCV genotyping assays is commendable. Abbott assay demonstrated superior performance compared to Roche assay in diagnosing HCV GT-6. Abbott HCV Genotype plus RUO assay aids in discriminating ambiguous GT. Both commercial assays are proficient in diagnosing mixed HCV infections at a cut-off viral load of 8.4% in minor genotype.


Genotype , Genotyping Techniques , Hepacivirus , Hepatitis C , High-Throughput Nucleotide Sequencing , Humans , Hepacivirus/genetics , Hepacivirus/classification , Hepacivirus/isolation & purification , Genotyping Techniques/methods , High-Throughput Nucleotide Sequencing/methods , Hepatitis C/diagnosis , Hepatitis C/virology , Molecular Diagnostic Techniques/methods , Sensitivity and Specificity , Reagent Kits, Diagnostic/standards , Female , Male , Middle Aged , Adult
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