US 4603112A
· Paoletti et al.
· 1986
[cited by applicant]
US 4722848A
· Paoletti et al.
· 1988
[cited by applicant]
US 4769330A
· Paoletti et al.
· 1988
[cited by applicant]
US 5445953A
· Dorner et al.
· 1995
[cited by applicant]
US 6103244A
· Dorner et al.
· 2000
[cited by applicant]
US 6440422B1
· Sutter et al.
· 2002
[cited by applicant]
US 6696281B1
· Chambers et al.
· 2004
[cited by applicant]
US 6998252B1
· Moss et al.
· 2006
[cited by applicant]
US 7015024B1
· Moss et al.
· 2006
[cited by applicant]
US 7045136B1
· Moss et al.
· 2006
[cited by applicant]
US 7045313B1
· Moss et al.
· 2006
[cited by applicant]
US 7550147B2
· Howley et al.
· 2009
[cited by applicant]
US 7795017B2
· Robinson et al.
· 2010
[cited by applicant]
US 8288125B2
· Howley et al.
· 2012
[cited by applicant]
US 8309326B2
· Howley et al.
· 2012
[cited by applicant]
US 8414900B2
· Howley et al.
· 2013
[cited by applicant]
US 8435543B2
· Howley et al.
· 2013
[cited by applicant]
US 8623379B2
· Robinson et al.
· 2014
[cited by applicant]
US 8900595B2
· Kawaoka et al.
· 2014
[cited by applicant]
US 8916172B2
· Moss et al.
· 2014
[cited by applicant]
US 9133478B2
· Moss et al.
· 2015
[cited by applicant]
US 9133480B2
· Moss et al.
· 2015
[cited by applicant]
US 9453239B2
· Moss et al.
· 2016
[cited by applicant]
US 9683020B2
· Compans et al.
· 2017
[cited by applicant]
US 9879231B2
· Moss et al.
· 2018
[cited by applicant]
US 20040109876A1
· Yamamoto et al.
· 2004
[cited by applicant]
US 20060088909A1
· Compans et al.
· 2006
[cited by applicant]
US 20060099225A1
· Bavari et al.
· 2006
[cited by applicant]
US 20060127413A1
· Sutter et al.
· 2006
[cited by applicant]
US 20080199493A1
· Picker et al.
· 2008
[cited by applicant]
US 20090092628A1
· Mullins et al.
· 2009
[cited by applicant]
US 20100047277A1
· Compans et al.
· 2010
[cited by applicant]
US 20100330190A1
· Compans et al.
· 2010
[cited by applicant]
US 20120052082A1
· Compans et al.
· 2012
[cited by applicant]
US 20120219576A1
· Branco et al.
· 2012
[cited by applicant]
US 20130280215A1
· Robinson
· 2013
[cited by applicant]
US 20150299290A1
· Boons et al.
· 2015
[cited by applicant]
US 20190030157A1
· Guirakhoo et al.
· 2019
[cited by applicant]
EP 0538496A1
· 1993
[cited by applicant]
EP 2402451A2
· 2012
[cited by applicant]
WO WO1994012617A1
· 1994
[cited by applicant]
WO WO1998008539A1
· 1998
[cited by applicant]
WO WO1999063062A1
· 1999
[cited by applicant]
WO WO2000003030A1
· 2000
[cited by applicant]
WO WO2002072754A2
· 2002
[cited by applicant]
WO WO2003078640A2
· 2003
[cited by applicant]
WO WO2003097845A1
· 2003
[cited by applicant]
WO WO2004048582A2
· 2004
[cited by applicant]
WO WO2005048957A2
· 2005
[cited by applicant]
WO WO2006026667A2
· 2006
[cited by applicant]
WO WO2007012691A1
· 2007
[cited by applicant]
WO WO2008142479A2
· 2008
[cited by applicant]
WO WO2010062757A1
· 2010
[cited by applicant]
WO WO2011047031A2
· 2011
[cited by applicant]
WO WO2011103417A2
· 2011
[cited by applicant]
WO WO2013059498A1
· 2013
[cited by applicant]
WO WO2014005958A1
· 2014
[cited by applicant]
WO WO2015009946A1
· 2015
[cited by applicant]
WO WO2015066715A1
· 2015
[cited by applicant]
WO WO2015175340A1
· 2015
[cited by applicant]
WO WO2016034678A2
· 2016
[cited by applicant]
WO WO2016068919A1
· 2016
[cited by applicant]
WO WO2016115116A1
· 2016
[cited by applicant]
WO WO2017120577A1
· 2017
[cited by applicant]
WO WO2017136419A1
· 2017
[cited by applicant]
WO WO2017143016A1
· 2017
[cited by applicant]
WO WO2017210181A1
· 2017
[cited by applicant]
WO WO2018195447A1
· 2018
[cited by applicant]
WO WO2019018501A1
· 2019
[cited by applicant]
WO WO2019040846A1
· 2019
[cited by applicant]
WO WO2019060356A1
· 2019
[cited by applicant]
WO WO2020247547A1
· 2020
[cited by applicant]
Coler et al. 2009 (Adjuvants for Malaria vaccines; Parasite Immunology 31:520-528). (Year: 2009).
[cited by examiner]
U.S. Pat. No. 11,052,148, B2, U.S. Appl. No. 16/305,305, Guirakhoo et al., Jul. 6, 2021.
[cited by applicant]
U.S. Pat. No. 11,278,607, B2, U.S. Appl. No. 16/068,527, Robinson et al., Mar. 22, 2022.
[cited by applicant]
U.S. Pat. No. 11,311,612, B2, U.S. Appl. No. 16/648,693, Guirakhoo et al., filed Apr. 6, 2022.
[cited by applicant]
U.S. Pat. No. 11,701,418, B2, U.S. Appl. No. 15/543,139, Robinson et al., filed Jul. 18, 2023.
[cited by applicant]
U.S. Pat. No. 11,413,341, B2, U.S. Appl. No. 16/796,350, Robinson et al., filed Aug. 16, 2022.
[cited by applicant]
U.S. Pat. No. 11,638,750, B2, U.S. Appl. No. 17/000,768, Guirakhoo et al., filed May 5, 2023.
[cited by applicant]
U.S. Pat. No. 11,801,299, B2, U.S. Appl. No. 17/368,761, Guirakhoo et al., filed Oct. 31, 2023.
[cited by applicant]
U.S. Pat. No. 11,857,611, B2, U.S. Appl. No. 17/726,254, Guirakhoo et al., filed Jan. 2, 2024.
[cited by applicant]
U.S. Pat. No. 11,896,657, B2, U.S. Appl. No. 17/584,231, Robinson et al., filed Feb. 13, 2024.
[cited by applicant]
U.S. Pat. No. 11,897,919, B2, U.S. Appl. No. 17/409,574, Robinson et al., filed Feb. 13, 2024.
[cited by applicant]
Adu-Gyamfi et al., “The Ebola Virus Matrix Protein Penetrates into the Plasma Membrane,” J. Infect. Dis., vol. 210, No. 1, pp. 99-110, Jan. 7, 2014.
[cited by applicant]
Alharbi et al., “Enhancing cellular immunogenicity of MVA-vectored vaccines by utilizing the F11 lendogenous promoter”, Vaccine, 34(1), 49-55, 2015.
[cited by applicant]
Antoine et al., “The complete genomic sequence of the modified vaccinia ankara strain: Comparison with other orthpoxviruses”, Virology, 244, 365-396, 1998.
[cited by applicant]
Brault, A.C., Domi, A., McDonald, E. et al., “A Zika Vaccine Targeting NS1 Protein Protects Immunocompetent Adult Mice in a Lethal Challenge Model,” Sci Rep 7, 14769, https://doi.org/10.1038/s41598-017-15039-8, 2017.
[cited by applicant]
Cavenaugh, J.S. et al., Partially Randomized, Non-Blinded Trial of DNA and MVA Therapeutic 4, 17,22,23 Vaccines Based on Hepatitis B Vims Surface Protein for Chronic HBV Infection. Plos ONE., vol. 6, Issue 2, Feb. 15, 2…
[cited by applicant]
Coler et al., “Adjuvants for Malaria vaccines,” Parasite Immunology, 31:520-528, 2009.
[cited by applicant]
Domi, A., Feldmann, F., Basu, R. et al., “A Single Dose of Modified Vaccinia Ankara expressing Ebola Virus Like Particles Protects Nonhuman Primates from Lethal Ebola Virus Challenge,” Sci Rep 8, 864, https://doi.org/10…
[cited by applicant]
Earl et al., “Recombinant modified vaccinia virus ankara provides durable protection against disease caused by immunodeficiency virus as well as long term immunity to an orthopoxvirus in a non-human primate,” Virology, …
[cited by applicant]
GenBank Accession AFV31202, Glycoprotein [Marburg marburgvirus], 2013.
[cited by applicant]
Goepfert PA et al., National Institutes of Allergy and Infectious Diseases HIV Vaccines Trials Network., “Specificity and 6-month durability of immune responses induced by DNA and recombinant modified vaccinia Ankara va…
[cited by applicant]
Goepfert PA, et al., “National Institute of Allergy and Infectious Diseases HIV Vaccine Trials Network. Phase 1 safety and immunogenicity testing of DNA and recombinant modified vaccinia Ankara vaccines expressing HIV-1…
[cited by applicant]
International Search Report and Written Opinion for PCT/US2018/051652, dated Feb. 11, 2019.
[cited by applicant]
Iyer, S.S et al., “Codelivery of Envelope Protein in Alum with MVA Vaccine Induces CXCR3-Biased CXCR5 + and CXCR5 − CD4 T Cell Responses in Rhesus Macaques”, The Journal of Immunology, US, vol. 195, No. 3, doi: 10.4049/…
[cited by applicant]
Mackett et al., “Vaccinia virus expression vectors”, J. Gen. Virology, 67, 2067-2082, 1986.
[cited by applicant]
Malherbe, Delphine C. et al., “Modified vaccinia Ankara vaccine expressing Marburg virus-like particles protects guinea pigs from lethal Marburg virus infection”, Vaccines, 5(1), 78, 2020.
[cited by applicant]
Manuel, E.R. et al., “Intergenic region 3 of modified vaccinia ankara is a functional site for insert gene expression and allows for potent antigenA-specific immune responses”, Virology, Elsevier, Amsterdam, NL, 2010, 4…
[cited by applicant]
Mittler et al., “The Cytoplasmic Domain of Marburg Virus GP Modulates Early Steps of Viral Infection,” Journal of Virology, vol. 85, No. 6, pp. 8188-8196, Jun. 15, 2011.
[cited by applicant]
Moss et al., “Reflections on the early development of poxvirus vectors”, Vaccine, 31(39), 4220-4222, 2013.
[cited by applicant]
Orubu et al., “Expression and cellular immunogenicity of a transgenic antigen driven by endogenous poxviral early promoters at their authentic loci in MVA”, PLOS One, 7(6), e40167 doi: 10.1371/journal.pone.0040167, 2012.
[cited by applicant]
Salvato et al., “A Single Dose of Modified Vaccinia Ankara Expressing Lassa Virus-like Particles Protects Mice from Lethal Intra-cerebral Virus Challenge”, Pathogens, 8:133, 2019.
[cited by applicant]
Staib et al., “Transient host range selection for genetic engineering of modified vaccinia virus ankara”, Biotechniques, 28, 1137-1148, 2000.
[cited by applicant]
Swenson et al., “Generation of Marburg virus-like particles by co-expression of glycoprotein and matrix protein”, FEMS Immunology and Medical Microbiology, 40(1), pp. 27-31, 2004.
[cited by applicant]
Thompson, M. et al., “DNA/MVA Vaccination of HIV-1 Infected Participants with Viral Suppression on Antiretroviral Therapy, followed by Treatment Interruption: Elicitation of Immune Responses without Control of Re-Emerge…
[cited by applicant]
Timm et al., “Genetic stability of recombinant MVA-BN”, Vaccine, 24, 4618-4621, 2006.
[cited by applicant]
Urata, S. and Yasuda, J., “Cis- and cell-type-dependent trans-requirements for Lassa virus-like particle production”, J. Gen. Virol., 96 Pt 7, 1626-1635, 2015.
[cited by applicant]
Vietheer et al., “Immunizations with chimeric hepatitis B virus-like particles to induce potential anti-hepatitis C virus neutralizing antibodies”, Antiviral Therapy, 12, 477-487, 2007.
[cited by applicant]
Wang et al., “Modified H5 promoter improves stability of insert genes while maintaining immunogenicity during extended passage of genetically engineered MVA vaccines”, Vaccine, 28(6): 1547, Feb. 10, 2010.
[cited by applicant]
Wyatt et al., “Development of a replication-deficient recombinant vaccinia virus vaccine effective against parainfluenza virus 3 infection in an animal model”, Vaccine, 14(15), 1451-1458, 1996.
[cited by applicant]
Xiaoying, Shen et al., “HIV gp120 and Modified Vaccinia Virus Ankara (MVA) gp140 Boost Immunogens Increase Immunogenicity of a DNA/MVA HIV-1 Vaccine”, Journal of Virology., US, vol. 91, No. 24, doi: 10.1128/JVI.01077-17…
[cited by applicant]
Ye, L. et al., “Ebola virus like particles produced in insect cells exhibit dendritic cell stimulating activity and induce neutralizing antibodies”, Virol., 351, 260-270, 2006.
[cited by applicant]