Sandwich antibody-based biosensor system for identification of Mycobacterium tuberculosis complex and nontuberculous

Kantinan Chuensirikulchai1, Witida Laopajon1,2, Ponrut Phunpae3

  • 1Division of Clinical Immunology, Department of Medical Technology, Faculty of Associated Medical Sciences, Chiang Mai University, Chiang Mai, Thailand.

Related Concept Videos

Identification of Mycobacterium Species by DNA Microarray Chip Method06:27

Identification of Mycobacterium Species by DNA Microarray Chip Method

Here, we present a DNA microarray chip method for identifying Mycobacterium species, which will improve diagnostic accuracy and efficiency of related diseases for clinical...
536
Use of the Invertebrate Galleria mellonella as an Infection Model to Study the Mycobacterium tuberculosis Complex09:23

Use of the Invertebrate Galleria mellonella as an Infection Model to Study the Mycobacterium tuberculosis Complex

Galleria mellonella was recently established as a reproducible, cheap, and ethically acceptable infection model for the Mycobacterium tuberculosis complex. Here we describe and demonstrate the steps taken to establish successful infection of G. mellonella with bioluminescent Mycobacterium bovis BCG...
12.5K
Separation and Fractionation of Culture Filtrate Proteins (CFPs) from Mycobacterium tuberculosis08:48

Separation and Fractionation of Culture Filtrate Proteins (CFPs) from Mycobacterium tuberculosis

This protocol describes the culturing, harvesting, and concentration of secreted proteins of Mycobacterium tuberculosis. Culture filtrate proteins (CFPs) are quantified, separated into 20 fractions by isoelectric focusing, and further resolved into 30 fractions using a preparative SDS-PAGE and an electroelution system.
558
An Experimental Model to Study Tuberculosis-Malaria Coinfection upon Natural Transmission of Mycobacterium tuberculosis and Plasmodium berghei09:02

An Experimental Model to Study Tuberculosis-Malaria Coinfection upon Natural Transmission of Mycobacterium tuberculosis and Plasmodium berghei

Tuberculosis and malaria are two of the most prevalent infections in humans and major causes of morbidity and mortality in impoverished populations in the tropics. We established an experimental model system to study outcome of malaria-tuberculosis coinfection in mice after challenge with both pathogens via their natural route of...
20.2K
Flow Cytometry Staining of Mycobacterium tuberculosis Infected Macrophage Subpopulations03:18

Flow Cytometry Staining of Mycobacterium tuberculosis Infected Macrophage Subpopulations

This video showcases a flow cytometric gating strategy utilizing a multi-color panel to analyze cell viability and specific fluorescent-conjugated anti-human antibody markers. This approach makes it possible to determine the percentage of Mycobacterium tuberculosis-infected cell populations...
746
Imaging Mycobacterium tuberculosis in Mice with Reporter Enzyme Fluorescence10:06

Imaging Mycobacterium tuberculosis in Mice with Reporter Enzyme Fluorescence

We describe the optical imaging of mice infected with Mycobacterium tuberculosis (M. tuberculosis) using reporter enzyme fluorescence (REF). This protocol facilitates the sensitive and specific detection of M. tuberculosis in pre-clinical animal models for pathogenesis, therapeutics and vaccine...
7.8K