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1.
STAR Protoc ; 3(2): 101300, 2022 06 17.
Article in English | MEDLINE | ID: mdl-35479118

ABSTRACT

The gold standard protocol for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection detection remains reverse transcription quantitative polymerase chain reaction (qRT-PCR), which detects viral RNA more sensitively than any other approach. Here, we present Homebrew, a low-cost protocol to extract RNA using widely available reagents. Homebrew is as sensitive as commercially available RNA extraction kits. Homebrew allows for sample pooling and can be adapted for automation in high-throughput settings. For complete details on the use and execution of this protocol, please refer to Page et al. (2022).


Subject(s)
COVID-19 , Nucleic Acids , Automation , COVID-19/diagnosis , Humans , RNA, Viral/genetics , SARS-CoV-2/genetics
2.
Cell Rep Methods ; 2(3): 100186, 2022 03 28.
Article in English | MEDLINE | ID: mdl-35262039

ABSTRACT

Management of COVID-19 and other epidemics requires large-scale diagnostic testing. The gold standard for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection remains reverse transcription quantitative PCR (qRT-PCR) analysis, which detects viral RNA more sensitively than any other method. However, the resource use and supply-chain requirements of RT-PCR have continued to challenge diagnostic laboratories worldwide. Here, we establish and characterize a low-cost method to detect SARS-CoV-2 in clinical combined nose and throat swabs, allowing for automation in high-throughput settings. This method inactivates virus material with sodium dodecylsulfate (SDS) and uses silicon dioxide as the RNA-binding matrix in combination with sodium chloride (NaCl) and isopropanol. With similar sensitivity for SARS-CoV-2 viral targets but a fraction of time and reagent expenditure compared with commercial kits, our method also enables sample pooling without loss of sensitivity. We suggest that this method will facilitate more economical widespread testing, particularly in resource-limited settings.


Subject(s)
COVID-19 , SARS-CoV-2 , Humans , SARS-CoV-2/genetics , COVID-19/diagnosis , COVID-19 Testing , Clinical Laboratory Techniques/methods , Reverse Transcription
3.
J Infect Dis ; 200(3): 379-89, 2009 Aug 01.
Article in English | MEDLINE | ID: mdl-19534597

ABSTRACT

BACKGROUND: Recombinant forms of Neisseria meningitidis human factor H binding protein (fHBP) are undergoing clinical trials in candidate vaccines against invasive meningococcal serogroup B disease. We report an extensive survey and phylogenetic analysis of the diversity of fhbp genes and predicted protein sequences in invasive clinical isolates obtained in the period 2000-2006. METHODS: Nucleotide sequences of fhbp genes were obtained from 1837 invasive N. meningitidis serogroup B (MnB) strains from the United States, Europe, New Zealand, and South Africa. Multilocus sequence typing (MLST) analysis was performed on a subset of the strains. RESULTS: Every strain contained the fhbp gene. All sequences fell into 1 of 2 subfamilies (A or B), with 60%-75% amino acid identity between subfamilies and at least 83% identity within each subfamily. One fHBP sequence may have arisen via inter-subfamily recombination. Subfamily B sequences were found in 70% of the isolates, and subfamily A sequences were found in 30%. Multiple fHBP variants were detected in each of the common MLST clonal complexes. All major MLST complexes include strains in both subfamily A and subfamily B. CONCLUSIONS: The diversity of strains observed underscores the importance of studying the distribution of the vaccine antigen itself rather than relying on common epidemiological surrogates such as MLST.


Subject(s)
Antigens, Bacterial/genetics , Bacterial Proteins/genetics , Genetic Variation , Meningitis, Meningococcal/microbiology , Meningococcal Vaccines/genetics , Neisseria meningitidis, Serogroup B/genetics , Amino Acid Sequence , Antigens, Bacterial/chemistry , Antigens, Bacterial/metabolism , Bacterial Proteins/chemistry , Bacterial Proteins/metabolism , Europe/epidemiology , Gene Expression Regulation, Bacterial/physiology , Humans , Meningitis, Meningococcal/epidemiology , Meningococcal Vaccines/chemistry , Meningococcal Vaccines/metabolism , Molecular Sequence Data , Neisseria meningitidis, Serogroup B/immunology , Neisseria meningitidis, Serogroup B/metabolism , New Zealand/epidemiology , South Africa/epidemiology , United States/epidemiology
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