Low biomass in the bacterial lung tissue microbiome utilizes quantitative PCR (qPCR) 16S bacterial assays at their limit of detection. New technology like droplet digital PCR (ddPCR) could allow for higher sensitivity and accuracy of quantification. These attributes are needed if specific bacteria within the bacterial lung tissue microbiome are to be evaluated as potential contributors to diseases such as chronic obstructive pulmonary disease (COPD). We hypothesize that ddPCR is better at quantifying the total bacterial load in lung tissue versus qPCR.Control (n = 16) and COPD GOLD 2 (n = 16) tissue samples were obtained from patients who underwent lung resection surgery, were cut on a cryotome, and sections were assigned for use in quantit...
AbstractTwo different quantitative PCR platforms, droplet digital PCR (dd-PCR) and quantitative real...
Background: Studies on the airway microbiome have been performed using a wide range of laboratory pr...
Quantitative real-time PCR (qPCR) is increasingly used to detect Pneumocystis jirovecii for the diag...
Low biomass in the bacterial lung tissue microbiome utilizes quantitative PCR (qPCR) 16S bacterial a...
<p>A) qPCR results in controls, moderate COPD, and negative non-template controls (water negative). ...
Background: Prior studies illustrate the presence and clinical importance of detecting Aspergillus s...
Background: Culture-independent methods such as quantitative polymerase chain reaction (qPCR) are mo...
IntroductionWe compared the performance of real-time PCR with culture-based methods for identifying ...
Quantitative PCR (qPCR) is more sensitive than microscopy for detecting Pneumocystis jirovecii in br...
Background. Selected microRNAs (miRNAs) that are abnormally expressed in the serum of patients with ...
Background: Drawing from previous studies, the traditional routine diagnostic microbiology evaluatio...
Repeated quantitative measurement of bacterial DNA on whole blood has been shown to be a promising m...
Abstract Background Low-biomass microbiome studies (s...
Respiratory tract infections are caused by different types of virus and bacteria and have become a g...
In all, 16S rRNA gene copy numbers from culture-negative, culture-positive, and RTF BAL samples were...
AbstractTwo different quantitative PCR platforms, droplet digital PCR (dd-PCR) and quantitative real...
Background: Studies on the airway microbiome have been performed using a wide range of laboratory pr...
Quantitative real-time PCR (qPCR) is increasingly used to detect Pneumocystis jirovecii for the diag...
Low biomass in the bacterial lung tissue microbiome utilizes quantitative PCR (qPCR) 16S bacterial a...
<p>A) qPCR results in controls, moderate COPD, and negative non-template controls (water negative). ...
Background: Prior studies illustrate the presence and clinical importance of detecting Aspergillus s...
Background: Culture-independent methods such as quantitative polymerase chain reaction (qPCR) are mo...
IntroductionWe compared the performance of real-time PCR with culture-based methods for identifying ...
Quantitative PCR (qPCR) is more sensitive than microscopy for detecting Pneumocystis jirovecii in br...
Background. Selected microRNAs (miRNAs) that are abnormally expressed in the serum of patients with ...
Background: Drawing from previous studies, the traditional routine diagnostic microbiology evaluatio...
Repeated quantitative measurement of bacterial DNA on whole blood has been shown to be a promising m...
Abstract Background Low-biomass microbiome studies (s...
Respiratory tract infections are caused by different types of virus and bacteria and have become a g...
In all, 16S rRNA gene copy numbers from culture-negative, culture-positive, and RTF BAL samples were...
AbstractTwo different quantitative PCR platforms, droplet digital PCR (dd-PCR) and quantitative real...
Background: Studies on the airway microbiome have been performed using a wide range of laboratory pr...
Quantitative real-time PCR (qPCR) is increasingly used to detect Pneumocystis jirovecii for the diag...