Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7233853 | Biosensors and Bioelectronics | 2014 | 6 Pages |
Abstract
A rapid dual channel lateral flow assay for the detection of Mycobacterium Tuberculosis antibodies (MTB 38Â kDa monoclonal antibody) in human blood was developed. The MTB 6-14-38Â kDa fusion antigen and anti-Protein A were used as the capture proteins for test and control lines respectively. Protein A labeled 40Â nm gold nanoparticles were used as the detection conjugate. Whole blood and serum were spiked with MTB 38Â kDa monoclonal antibody to make a positive sample model. The developed lateral flow was used to test MTB 38Â kDa monoclonal antibody, and a detection limit of 5Â ng/ml was used as a cut-off concentration of the analytes. The effect of the analyte concentration on the MTB lateral flow assay was studied using the variation of the intensity obtained from a ESE Quanti reader. There was a direct correlation between the analyte (MTB 38Â kDa monoclonal antibody) concentration and the intensity of the test line. The intensity increased with an increase in the concentration of MTB 38Â kDa monoclonal antibody, while in contrast, an increase in analyte concentration decreased the intensity of the control line.
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Phumlani Mdluli, Phumlani Tetyana, Ndabenhle Sosibo, Hendriëtte van der Walt, Mbuso Mlambo, Amanda Skepu, Robert Tshikhudo,