Abstract
At present, radiation-attenuated plasmodia sporozoites (γ-spz) is the only vaccine that induces sterile and lasting protection in malaria-naive humans and laboratory rodents. However, γ-spz are not without risks. For example, the heterogeneity of the γ-spz could explain occasional breakthrough infections. To avoid this possibility, we constructed a double-knockout P. berghei parasite by removing 2 genes, UIS3 and UIS4, that are up-regulated in infective spz. We evaluated the double-knockout Pbuis3(-)/4(-) parasites for protective efficacy and the contribution of CD8+ T cells to protection. Pbuis3(-)/4(-) spz induced sterile and protracted protection in C57BL/6 mice. Protection was linked to CD8+ T cells, given that mice deficient in β2 m were not protected. Pbuis3(-)/4(-) spz-immune CD8+ T cells consisted of effector/memory phenotypes and produced interferon-γ. On the basis of these observations, we propose that the development of genetically attenuated P. falciparum parasites is warranted for tests in clinical trials as a pre-erythrocytic stage vaccine candidate. © 2007 by the Infectious Diseases Society of America. All rights reserved.
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CITATION STYLE
Jobe, O., Lumsden, J., Mueller, A. K., Williams, J., Silva-Rivera, H., Kappe, S. H. I., … Krzych, U. (2007). Genetically attenuated Plasmodium berghei liver stages induce sterile protracted protection that is mediated by major histocompatibility complex class I-dependent interferon-γ-producing CD8+ T cells. Journal of Infectious Diseases, 196(4), 599–607. https://doi.org/10.1086/519743
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