Title of article :
A novel medium-throughput biological assay system for HTLV-1 infectivity and drug discovery
Author/Authors :
Fattahi Abdizadeh, Mojtaba Department of Microbiology - Faculty of Medicine - Sabzevar University of Medical Sciences - Virology Department - Pasteur Institute of Iran - 69 Pasteur Ave 1316943551. Tehran , Makvandi, Manoochehr Infectious and Tropical Diseases Research Center - Ahvaz Jundishapur University of Medical Sciences , Samarbafzadeh, Alireza Department of Virology - Ahvaz Jundishapur University of Medical Sciences, Ahvaz , Azadmanesh, Kayhan Virology Department - Pasteur Institute of Iran - 69 Pasteur Ave 1316943551. Tehran
Abstract :
Objective(s): Here, a reporter cell line containing two reporter vectors were developed, in order to monitor the Human T-Lymphotropic Virus type1(HTLV-1) infectivity and the cell viability simultaneously. Materials and Methods: The reporter cell line was constructed by stably transfected baby hamster's kidney cell line (BHK-21), with the genomes expressing two different reporters in separate plasmids. The first reporter gene is transactivated by the HTLV-1 tax protein, while the second reporter is continuously expressed when introduced into a mammalian cell. In order to show its functionality, the effect of the drug mix on HTLV-1 was assayed by this system and was compared to the results obtained by other methods. Results: HTLV-1 reporter cell line was found to produce high level of luciferase when co-cultured with MT-2 and Hut-102 cells but not with Jurkat cell. Moreover, the combination therapy against HTLV-1 can reduce luciferase expression of the cell when co-cultured with MT-2 and Hut-102 comparable to the ELISA (R=0.932, P-value =0.002). In addition, the results revealed the superiority of the present system over the molecular methods.
Conclusion: The results demonstrated that the biological assay system is a beneficial tool for the medium-throughput anti-HTLV-1 drug screening and inhibitory effect.
Keywords :
Biological assay , Drug screening , HTLV-1 , Hut102 , Luciferase , Reporter gene
Journal title :
Astroparticle Physics