Lokugamage, N.; Choudhuri, S.; Davies, C.; Chowdhury, I.H.; Garg, N.J.
Antigen-Based Nano-Immunotherapy Controls Parasite Persistence, Inflammatory and Oxidative Stress, and Cardiac Fibrosis, the Hallmarks of Chronic Chagas Cardiomyopathy, in A Mouse Model of Trypanosoma cruzi Infection. Vaccines 2020, 8, 96.
https://doi.org/10.3390/vaccines8010096
AMA Style
Lokugamage N, Choudhuri S, Davies C, Chowdhury IH, Garg NJ.
Antigen-Based Nano-Immunotherapy Controls Parasite Persistence, Inflammatory and Oxidative Stress, and Cardiac Fibrosis, the Hallmarks of Chronic Chagas Cardiomyopathy, in A Mouse Model of Trypanosoma cruzi Infection. Vaccines. 2020; 8(1):96.
https://doi.org/10.3390/vaccines8010096
Chicago/Turabian Style
Lokugamage, Nandadeva, Subhadip Choudhuri, Carolina Davies, Imran Hussain Chowdhury, and Nisha Jain Garg.
2020. "Antigen-Based Nano-Immunotherapy Controls Parasite Persistence, Inflammatory and Oxidative Stress, and Cardiac Fibrosis, the Hallmarks of Chronic Chagas Cardiomyopathy, in A Mouse Model of Trypanosoma cruzi Infection" Vaccines 8, no. 1: 96.
https://doi.org/10.3390/vaccines8010096
APA Style
Lokugamage, N., Choudhuri, S., Davies, C., Chowdhury, I. H., & Garg, N. J.
(2020). Antigen-Based Nano-Immunotherapy Controls Parasite Persistence, Inflammatory and Oxidative Stress, and Cardiac Fibrosis, the Hallmarks of Chronic Chagas Cardiomyopathy, in A Mouse Model of Trypanosoma cruzi Infection. Vaccines, 8(1), 96.
https://doi.org/10.3390/vaccines8010096