
(Uploaded by Plazi for the Bat Literature Project) The potential protection of poly-ICLC (Hiltonol®) a double stranded RNA (dsRNA) against EBOV infection was assessed with prophylactic and therapeutic administration to wild type and TLR3-negative mice, and in non-human primates (NHPs) by measuring EBOL serum titers, survival extension, and serum liver and kidney function markers. Various doses of aqueous and liposomal poly-ICLC monotherapy provided robust protection in otherwise lethal murine EBOV challenge models, when treatment is started on the day 0 or one day after virus challenge. There was no advantage of liposomal vs. the aqueous poly-ICLC form. Protection appeared to be independent of TLR-3. NHPs treated with poly-ICLC and challenged with EBOV survived longer but eventually succumbed to Ebola infection. Nevertheless, the liver and kidney serum markers were markedly reduced in the infected and treated NHPs. In the two longest surviving poly-ICLC- treated NHPs, the day 10 serum EBOV titer was reduced 2.1 and 30 fold respectively.
Interferon Inducers, bats, bat, Mice, Efficacy in mice, Chiroptera, Animals, Animalia, Polylysine, Chordata, Mice, Inbred BALB C, NHP survival time, TLR+/TLR-3 mice, NHP liver/kidney enzymes, Biodiversity, Hemorrhagic Fever, Ebola, NHP EBOV titers, Macaca fascicularis, Poly I-C, Carboxymethylcellulose Sodium, Mammalia, Democratic Republic of the Congo, Aqueous/liposomal poly-ICLC, Female
Interferon Inducers, bats, bat, Mice, Efficacy in mice, Chiroptera, Animals, Animalia, Polylysine, Chordata, Mice, Inbred BALB C, NHP survival time, TLR+/TLR-3 mice, NHP liver/kidney enzymes, Biodiversity, Hemorrhagic Fever, Ebola, NHP EBOV titers, Macaca fascicularis, Poly I-C, Carboxymethylcellulose Sodium, Mammalia, Democratic Republic of the Congo, Aqueous/liposomal poly-ICLC, Female
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