Background: The monitoring for HCMV mRNA expression in whole blood provides an accurate and informative diagnostic approach.
Methods And Materials: A multiplex real-time NASBA with three molecular beacons (MR-NASBA) was developed for the simultaneous detection and quantification of HCMV-encoded immediate early-1 (IE1) and late pp67 mRNA. The assay was evaluated using RNA from in vitro HCMV-infected cells and sequential whole blood samples (100 microl) of HCMV infected lung transplant recipients.
Results: The MR-NASBA showed equal performance compared with standard NASBA assays (sensitivity of 1-3 x 10(3) RNA molecules in 100 microl blood and a linear range of 10(3)-10(6) RNA molecules). The standard IE1 Q-RNA provides a reliable internal system control. No interference was observed between the individual beacon signals. The simultaneous 'one-tube' quantification of IE1-RNA levels combined with qualitative detection of pp67-RNA is feasible without loss of assay performance in clinical whole blood specimens. CONCLUSION AND COMMENTS: MR-NASBA may be suitable for monitoring HCMV-activity in transplant recipients to aid in fine-tuning of antiviral intervention in high risk populations employing a traffic light diagnostic approach: no HCMV RNA signal (green light: safe) reflects absent or fully latent infection requiring no antiviral intervention; an 'IE1-RNA only' signal (yellow light: alert) indicates an emerging or subclinical active infection, opting for preemptive treatment in high risk populations; simultaneous 'IE1-RNA plus pp67-RNA' detection (red light:danger) indicates disseminating productive infection requiring immediate antiviral treatment.
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http://dx.doi.org/10.1016/s1386-6532(01)00227-x | DOI Listing |
Adv Sci (Weinh)
December 2024
Department of Clinical Laboratory, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Monitoring deep wounds is challenging but necessary for high-quality medical treatment. Current methodologies for deep wound monitoring are typically limited to indirect clinical symptoms or costly non-real-time imaging diagnosis. Herein, a smart system is proposed that enables in situ monitoring of deep wounds' status through a semi-implantable device composed of 2 seamlessly connected functional components: 1) the well-designed, microchannel-structured sampling needles that efficiently and conveniently collect samples from deep wound anatomical locations, and 2) the multiplex biochemical testing compartment that facilitates the immediate and persistent detection of multiple biochemical indicators based on a color image processing software accessible to a conventional smartphone.
View Article and Find Full Text PDFNat Commun
December 2024
Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD, USA.
Non-Hermitian models describe the physics of ubiquitous open systems with gain and loss. One intriguing aspect of non-Hermitian models is their inherent topology that can produce intriguing boundary phenomena like resilient higher-order topological insulators (HOTIs) and non-Hermitian skin effects (NHSE). Recently, time-multiplexed lattices in synthetic dimensions have emerged as a versatile platform for the investigation of these effects free of geometric restrictions.
View Article and Find Full Text PDFJ Gastrointestin Liver Dis
December 2024
Unidad Central del Valle del Cauca-UCEVA, Tuluá, Valle del Cauca, Colombia.
Background And Aims: Diarrhoea has a significant health impact and requires accurate diagnostic approaches, despite the limitations of many existing methods. This review examines various molecular techniques aimed at facilitating the rapid diagnosis of diarrhoeal diseases caused by bacterial, viral and parasitic pathogens.
Methods: A comprehensive systematic literature review was conducted using six prestigious databases, including WOS, Scopus, Science Direct, Embase, PubMed and LILACS Plus.
Vet Sci
December 2024
Biovet Inc., Division of Antech Diagnostics and Mars Petcare Science & Diagnostics Company, Saint-Hyacinthe, QC J2S 8W2, Canada.
The bovine respiratory disease complex (BRD) is a multifactorial disease caused by various bacterial and viral pathogens. Using rapid pathogen detection techniques is helpful for tailoring therapeutic and preventive strategies in affected animals and herds. The objective of this study was to report the frequency of 10 pathogens by multiplex RT-qPCR on samples submitted for BRD diagnosis to a diagnostic laboratory (Biovet Inc.
View Article and Find Full Text PDFFront Vet Sci
December 2024
College of Animal Science and Technology, Guangxi University, Nanning, China.
Porcine hemagglutinating encephalomyelitis virus (PHEV), porcine pseudorabies virus (PRV), and classical swine fever virus (CSFV) are currently prevalent worldwide and cause similar neurological symptoms in infected pigs. It is very important to establish a detection method that can rapidly and accurately detect and differentiate these three viruses. Targeting the PHEV N gene, PRV gB gene, and CSFV 5' untranslated region (5'UTR), three pairs of specific primers and probes were designed, and a triplex crystal digital reverse transcription-PCR (cdRT-PCR) was developed to detect PHEV, PRV, and CSFV.
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