Journal of Virology · 2015 · 36 citations · 41 references
Previous attempts to develop successful immunization against cytomegalovirus have largely centered on subunit vaccination against virion proteins but have yielded disappointing results. The advent of bacterial artificial chromosome technologies has enabled engineering of recombinant cytomegaloviruses (CMVs) from which virus genome-encoded immune modulation genes have been deleted, toward the goal of developing a safe and potentially more efficacious live attenuated vaccine. Here we report the findings of studies of such a vaccine against congenital CMV infection based on a virus with a targeted deletion in gp145, a virus genome-encoded inhibitor of protein kinase R, using the guinea pig model of vertical CMV transmission. The deletion virus was attenuated for dissemination in immunocompromised guinea pigs but elicited ELISA and neutralizing responses. The vaccine conferred protection against maternal DNAemia and congenital transmission and resulted in reduced viral loads in newborn guinea pigs. These results provide support for future studies of attenuated CMV vaccines.
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Vaccine Prevention of Maternal Cytomegalovirus Infection
Robert F. Pass, Changpin Zhang, Ashley Evans et al. · New England Journal of Medicine · 2009 · 719 citations · Full text
Genetic content of wild-type human cytomegalovirus
Aidan Dolan, Charles Cunningham, Ralph D. Hector et al. · Journal of General Virology · 2004 · 565 citations
J Chou, Bernard Roizman · Proceedings of the National Academy of Sciences · 1992 · 395 citations · Full text
Viral Replication, Molecular Neuroscience, Molecular Virology +14