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Full-Text Articles in Medicine and Health Sciences

The Development Of A Rabies Virus-Vectored Vaccine Against Borrelia Burgdorferi, Targeting Bbi39, Shantel Rios, Bibek Bhattachan, Kruthi Vavilikolanu, Chrysoula Kitsou, Utpal Pal, Matthias J. Schnell Jan 2024

The Development Of A Rabies Virus-Vectored Vaccine Against Borrelia Burgdorferi, Targeting Bbi39, Shantel Rios, Bibek Bhattachan, Kruthi Vavilikolanu, Chrysoula Kitsou, Utpal Pal, Matthias J. Schnell

Department of Microbiology and Immunology Faculty Papers

Lyme disease (LD) is the most common tick-borne illness in the United States (U.S.), Europe, and Asia. Borrelia burgdorferi, a spirochete bacterium transmitted by the tick vector Ixodes scapularis, causes LD in the U.S. If untreated, Lyme arthritis, heart block, and meningitis can occur. Given the absence of a human Lyme disease vaccine, we developed a vaccine using the rabies virus (RABV) vaccine vector BNSP333 and an outer surface borrelial protein, BBI39. BBI39 was previously utilized as a recombinant protein vaccine and was protective in challenge experiments; therefore, we decided to utilize this protective antigen in a rabies virus-vectored vaccine …


Serotonin Reduction In Post-Acute Sequelae Of Viral Infection, Andrea Wong, Ashwarya Devason, Iboro Umana, Timothy Cox, Lenka Dohnalová, Lev Litichevskiy, Jonathan Perla, Patrick Lundgren, Zienab Etwebi, Luke Izzo, Jihee Kim, Monika Tetlak, Hélène Descamps, Simone Park, Stephen Wisser, Aaron Mcknight, Ryan Pardy, Junwon Kim, Niklas Blank, Shaan Patel, Katharina Thum, Sydney Mason, Jean-Christophe Beltra, Michaël Michieletto, Shin Foong Ngiow, Brittany Miller, Megan Liou, Bhoomi Madhu, Oxana Dmitrieva-Posocco, Alex Huber, Peter Hewins, Christopher Petucci, Candice Chu, Gwen Baraniecki-Zwil, Leila Giron, Amy Baxter, Allison Greenplate, Charlotte Kearns, Kathleen Montone, Leslie Litzky, Michael Feldman, Jorge Henao-Mejia, Boris Striepen, Holly Ramage, Kellie Jurado, Kathryn Wellen, Una O'Doherty, Mohamed Abdel-Mohsen, Alan L Landay, Ali Keshavarzian, Timothy Henrich, Steven Deeks, Michael Peluso, Nuala Meyer, E. John Wherry, Benjamin Abramoff, Sara Cherry, Christoph Thaiss, Maayan Levy Oct 2023

Serotonin Reduction In Post-Acute Sequelae Of Viral Infection, Andrea Wong, Ashwarya Devason, Iboro Umana, Timothy Cox, Lenka Dohnalová, Lev Litichevskiy, Jonathan Perla, Patrick Lundgren, Zienab Etwebi, Luke Izzo, Jihee Kim, Monika Tetlak, Hélène Descamps, Simone Park, Stephen Wisser, Aaron Mcknight, Ryan Pardy, Junwon Kim, Niklas Blank, Shaan Patel, Katharina Thum, Sydney Mason, Jean-Christophe Beltra, Michaël Michieletto, Shin Foong Ngiow, Brittany Miller, Megan Liou, Bhoomi Madhu, Oxana Dmitrieva-Posocco, Alex Huber, Peter Hewins, Christopher Petucci, Candice Chu, Gwen Baraniecki-Zwil, Leila Giron, Amy Baxter, Allison Greenplate, Charlotte Kearns, Kathleen Montone, Leslie Litzky, Michael Feldman, Jorge Henao-Mejia, Boris Striepen, Holly Ramage, Kellie Jurado, Kathryn Wellen, Una O'Doherty, Mohamed Abdel-Mohsen, Alan L Landay, Ali Keshavarzian, Timothy Henrich, Steven Deeks, Michael Peluso, Nuala Meyer, E. John Wherry, Benjamin Abramoff, Sara Cherry, Christoph Thaiss, Maayan Levy

Department of Microbiology and Immunology Faculty Papers

Post-acute sequelae of COVID-19 (PASC, "Long COVID") pose a significant global health challenge. The pathophysiology is unknown, and no effective treatments have been found to date. Several hypotheses have been formulated to explain the etiology of PASC, including viral persistence, chronic inflammation, hypercoagulability, and autonomic dysfunction. Here, we propose a mechanism that links all four hypotheses in a single pathway and provides actionable insights for therapeutic interventions. We find that PASC are associated with serotonin reduction. Viral infection and type I interferon-driven inflammation reduce serotonin through three mechanisms: diminished intestinal absorption of the serotonin precursor tryptophan; platelet hyperactivation and thrombocytopenia, …


Gp38 As A Vaccine Target For Crimean-Congo Hemorrhagic Fever Virus, Gabrielle Scher, Dennis A. Bente, Megan C. Mears, Maria N.B. Cajimat, Matthias J. Schnell May 2023

Gp38 As A Vaccine Target For Crimean-Congo Hemorrhagic Fever Virus, Gabrielle Scher, Dennis A. Bente, Megan C. Mears, Maria N.B. Cajimat, Matthias J. Schnell

Department of Microbiology and Immunology Faculty Papers

Crimean-Congo Hemorrhagic Fever Virus (CCHFV) is a tick-borne virus that causes severe hemorrhagic disease in humans. There is a great need for effective vaccines and therapeutics against CCHFV for humans, as none are currently internationally approved. Recently, a monoclonal antibody against the GP38 glycoprotein protected mice against lethal CCHFV challenge. To show that GP38 is required and sufficient for protection against CCHFV, we used three inactivated rhabdoviral-based CCHFV-M vaccines, with or without GP38 in the presence or absence of the other CCHFV glycoproteins. All three vaccines elicited strong antibody responses against the respective CCHFV glycoproteins. However, only vaccines containing GP38 …


Chlamydia Trachomatis Subverts Alpha-Actinins To Stabilize Its Inclusion, A. Haines, J. Wesolowski, F. Paumet Jan 2023

Chlamydia Trachomatis Subverts Alpha-Actinins To Stabilize Its Inclusion, A. Haines, J. Wesolowski, F. Paumet

Department of Microbiology and Immunology Faculty Papers

Chlamydia trachomatis is the leading cause of sexually transmitted bacterial disease and a global health burden. As an obligate intracellular pathogen, Chlamydia has evolved many strategies to manipulate its host and establish its intracellular niche called the inclusion. C. trachomatis reorganizes the host actin cytoskeleton to form scaffolds around the inclusion and reinforce the growing inclusion membrane. To control the kinetics and formation of actin scaffolds, Chlamydia expresses the effector InaC/CT813, which activates the host GTPase RhoA. Here, we have discovered that InaC stabilizes actin scaffolds through the host actin cross-linking proteins α-actinins 1 and 4. We demonstrate that α-actinins …


A Rodent Model For Dirofilaria Immitis, Canine Heartworm: Parasite Growth, Development, And Drug Sensitivity In Nsg Mice, Jessica A. Hess, Mark L. Eberhard, Marcelo Segura-Lepe, Kathrin Grundner-Culemann, Barbara Kracher, Jeffrey Shryock, John Harrington, David Abraham Jan 2023

A Rodent Model For Dirofilaria Immitis, Canine Heartworm: Parasite Growth, Development, And Drug Sensitivity In Nsg Mice, Jessica A. Hess, Mark L. Eberhard, Marcelo Segura-Lepe, Kathrin Grundner-Culemann, Barbara Kracher, Jeffrey Shryock, John Harrington, David Abraham

Department of Microbiology and Immunology Faculty Papers

Heartworm disease, caused by Dirofilaria immitis, remains a significant threat to canines and felines. The development of parasites resistant to macrocyclic lactones (ML) has created a significant challenge to the control of the infection. The goal of this study was to determine if mice lacking a functional immune response would be susceptible to D. immitis. Immunodeficient NSG mice were susceptible to the infection, sustaining parasites for at least 15 weeks, with infective third-stage larvae molting and developing into the late fourth-stage larvae. Proteomic analysis of host responses to the infection revealed a complex pattern of changes after infection, with at …


The Immunomodulatory Role Of Adjuvants In Vaccines Formulated With The Recombinant Antigens Ov-103 And Ov-Ral-2 Against Onchocerca Volvulus In Mice., Jessica A. Hess Ligas, Bin Zhan, April R. Torigian, John B. Patton, Nikolai Petrovsky, Tingting Zhan, Maria Elena Bottazzi, Peter J. Hotez, Thomas R. Klei, Sara Lustigman, David Abraham Jul 2016

The Immunomodulatory Role Of Adjuvants In Vaccines Formulated With The Recombinant Antigens Ov-103 And Ov-Ral-2 Against Onchocerca Volvulus In Mice., Jessica A. Hess Ligas, Bin Zhan, April R. Torigian, John B. Patton, Nikolai Petrovsky, Tingting Zhan, Maria Elena Bottazzi, Peter J. Hotez, Thomas R. Klei, Sara Lustigman, David Abraham

Department of Microbiology and Immunology Faculty Papers

BACKGROUND: In some regions in Africa, elimination of onchocerciasis may be possible with mass drug administration, although there is concern based on several factors that onchocerciasis cannot be eliminated solely through this approach. A vaccine against Onchocerca volvulus would provide a critical tool for the ultimate elimination of this infection. Previous studies have demonstrated that immunization of mice with Ov-103 and Ov-RAL-2, when formulated with alum, induced protective immunity. It was hypothesized that the levels of protective immunity induced with the two recombinant antigens formulated with alum would be improved by formulation with other adjuvants known to enhance different types …


Small-Molecule Probes Targeting The Viral Ppxy-Host Nedd4 Interface Block Egress Of A Broad Range Of Rna Viruses., Ziying Han, Jianhong Lu, Yuliang Liu, Benjamin Davis, Michael S Lee, Mark A Olson, Gordon Ruthel, Bruce D Freedman, Matthias J. Schnell, Jay E Wrobel, Allen B Reitz, Ronald N Harty Jul 2014

Small-Molecule Probes Targeting The Viral Ppxy-Host Nedd4 Interface Block Egress Of A Broad Range Of Rna Viruses., Ziying Han, Jianhong Lu, Yuliang Liu, Benjamin Davis, Michael S Lee, Mark A Olson, Gordon Ruthel, Bruce D Freedman, Matthias J. Schnell, Jay E Wrobel, Allen B Reitz, Ronald N Harty

Department of Microbiology and Immunology Faculty Papers

Budding of filoviruses, arenaviruses, and rhabdoviruses is facilitated by subversion of host proteins, such as Nedd4 E3 ubiquitin ligase, by viral PPxY late (L) budding domains expressed within the matrix proteins of these RNA viruses. As L domains are important for budding and are highly conserved in a wide array of RNA viruses, they represent potential broad-spectrum targets for the development of antiviral drugs. To identify potential competitive blockers, we used the known Nedd4 WW domain-PPxY interaction interface as the basis of an in silico screen. Using PPxY-dependent budding of Marburg (MARV) VP40 virus-like particles (VLPs) as our model system, …


A Comprehensive Analysis Of The Naturally Occurring Polymorphisms In Hiv-1 Vpr: Potential Impact On Ctl Epitopes., Alagarsamy Srinivasan, Velpandi Ayyavoo, Sundarasamy Mahalingam, Aarthi Kannan, Anne Boyd, Debduti Datta, Vaniambadi S Kalyanaraman, Anthony Cristillo, Ronald G Collman, Nelly Morellet, Bassel E Sawaya, Ramachandran Murali Jan 2008

A Comprehensive Analysis Of The Naturally Occurring Polymorphisms In Hiv-1 Vpr: Potential Impact On Ctl Epitopes., Alagarsamy Srinivasan, Velpandi Ayyavoo, Sundarasamy Mahalingam, Aarthi Kannan, Anne Boyd, Debduti Datta, Vaniambadi S Kalyanaraman, Anthony Cristillo, Ronald G Collman, Nelly Morellet, Bassel E Sawaya, Ramachandran Murali

Department of Microbiology and Immunology Faculty Papers

The enormous genetic variability reported in HIV-1 has posed problems in the treatment of infected individuals. This is evident in the form of HIV-1 resistant to antiviral agents, neutralizing antibodies and cytotoxic T lymphocytes (CTLs) involving multiple viral gene products. Based on this, it has been suggested that a comprehensive analysis of the polymorphisms in HIV proteins is of value for understanding the virus transmission and pathogenesis as well as for the efforts towards developing anti-viral therapeutics and vaccines. This study, for the first time, describes an in-depth analysis of genetic variation in Vpr using information from global HIV-1 isolates …