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111 results found for "44XXX wastewater"
- Capture and Concentrate Measles morbillivirus from Wastewater Samples
This study aimed to determine whether the measles virus could be captured and detected in wastewater
- A Scalable Method to Concentrate and Culture Candida auris from Wastewater using Nanotrap Microbiome Particles
The adoption of wastewater-based epidemiology (WBE) for monitoring SARS-CoV-2 has rapidly expanded worldwide and are difficult to lyse using common nucleic acid extraction workflows, and their concentration in wastewater Culture-based methods have proven effective for detecting and characterizing C. auris in wastewater, POSTER SKU 44XXX
- Capture and Concentrate Microbes that Cause Sexually Transmitted Infections from Wastewater
show how the Nanotrap® Microbiome A and B Particles: Capture and concentrate STI-causing bacteria from wastewater multiplex digital PCR (dPCR) assays on the QIAcuity One 5plex Device APPLICATION NOTE SKU 10XXX SKU 44XXX
- Norovirus RNA in wastewater solids at 145 United States wastewater treatment plants - Comparison
medRxiv, May 2023 "Human norovirus (HuNoV) GII RNA in wastewater solids at 145 United States wastewater Wastewater monitoring for HuNoV has been done previously and results indicate it is present in wastewater However, work has mostly been limited to monthly samples of liquid wastewater at one or a few wastewater Methods: We measured HuNoV GII RNA in matched wastewater solids and liquid influent in 7 samples from We also applied the HuNoV GII assay to measure viral RNA in over 6000 wastewater solids samples from
- Detecting Mpox Cases Through Wastewater Surveillance
Surveillance System began routine testing of U.S. wastewater for Monkeypox virus. Wastewater surveillance sensitivity, positive predictive value (PPV), and negative predictive value ( NPV) for Monkeypox virus were evaluated by comparing wastewater detections (Monkeypox virus detected Wastewater surveillance in a single week, from samples representing thousands to millions of persons, Results can help to guide the public health response to Monkeypox virus wastewater detections.
- Whole-Genome Sequencing of Influenza A from Wastewater Using Nanotrap Microbiome A Particles and NEBNext iiMS Influenza A DNA Library Preparation
Wastewater-based epidemiology (WBE) has emerged as a crucial tool for monitoring infectious diseases Influenza A viruses, known for their seasonal epidemics and pandemic potential, pose unique challenges for wastewater Traditional sequencing approaches for influenza A in wastewater often yield incomplete genomes due to improved genome coverage, offering a scalable and high-throughput solution for monitoring influenza A in wastewater POSTER SKU 44XXX
- Evaluating Nanotrap Microbiome Particles as a Wastewater Viral Concentration Method
Environmental Engineering and Earth Sciences, University of Notre Dame, Notre Dame, IN 46556, USA Article Wastewater-based Typically, wastewater samples are concentrated before viral analyses to improve sensitivity. efficiency and bias of a novel viral concentration approach, Nanotrap Microbiome Particles (NMP), in wastewater
- Metagenomics of Wastewater Influent from Wastewater Treatment Facilities across Ontario
"Metagenomics of Wastewater Influent from Wastewater Treatment Facilities across Ontario in the Era of sequencing analyses of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) RNA in composite wastewater
- Capture and Concentrate Pathogenic Parasites and Yeast from Wastewater
Wastewater-based epidemiology (WBE) to monitor SARS-CoV-2 has rapidly expanded across the globe as data detection of eukaryotic pathogens such as Candida auris, Cryptosporidium parvum, and Giardia lamblia in wastewater
- Tracking SARS-CoV-2 Variants in Georgia Wastewater Using dPCR: A One-Year Study and Comparison with Clinical Sample Genotyping and GISAID Sequencing
Wastewater surveillance has become a vital tool for monitoring infectious diseases like COVID-19 at the virulence, tracking the emergence and prevalence of these variants has become a critical component of wastewater-based sequencing—while comprehensive—is often too complex, time-consuming, and resource-intensive for many wastewater developed a customizable digital PCR (dPCR)-based genotyping approach to detect SARS-CoV-2 variants in wastewater POSTER SKU 44XXX
- Improved method for detection of antibiotic resistance from wastewater for population surveillance
Improved methodology for detection of antibiotic resistance mechanisms from wastewater for population surveillance APPLICATION NOTE SKU 10XXX SKU 44XXX Download full application note here Introduction Recently, wastewater surveillance has been recognized as a complement to population testing that can identify a broad range of targets associated with AMR, and the methods must be sensitive given the larger wastewater comparison of the ability of commercially available real-time PCR-based assays to determine AMR burden in wastewater
- Novel Digital PCR-based Workflow for SARS-CoV-2 Variant Detection in Wastewater: Performance Comparison with Whole-Genome Sequencing
Wastewater surveillance is a critical tool for monitoring infectious diseases like COVID-19 at the community sequencing (WGS) provides comprehensive data but is often too complex and resource-intensive for routine wastewater developed a customizable digital PCR (dPCR)-based genotyping method for detecting SARS-CoV-2 variants in wastewater We compared dPCR genotyping to WGS using the same elution from each sample and applied the method to wastewater POSTER: SKU 44XXX SKU 10XXX Literature # WW-PO31458










