Patent classifications
C12N2710/24034
SYNTHETIC CHIMERIC POXVIRUSES
The invention relates, in general, to synthetic chimeric poxviruses, compositions comprising such viruses, and the development and use of systems and methods for producing such synthetic chimeric poxviruses. The synthetic chimeric poxviruses are well suited for live virus vaccines and pharmaceutical formulations.
Triple vaccine against <i>avibacterium paragallinarum </i>and avian encephalomyelitis virus and fowl pox virus
The present invention relates i. a. to an immunogenic composition comprising: a) one or more antigens of avibacterium paragallinarum and one or more antigens of avian encephalomyelitis virus and one or more antigens of fowl pox virus; and b) a pharmaceutically acceptable carrier. Furthermore, the present invention relates to methods for immunizing a subject comprising administering to such subject the immunogenic composition of the present invention. Moreover, the present invention relates to methods of treating or preventing clinical signs caused by avibacterium paragallinarum, avian encephalomyelitis virus and fowl pox virus in a subject of need, the method comprising administering to the subject a therapeutically effective amount of an immunogenic composition according to the present invention.
Prostate Neoantigens And Their Uses
Disclosed herein are self-replicating RNA molecules encoding prostate neoantigens, vaccines, and methods of treating and preventing prostate cancer.
VACCINE DELIVERY METHOD
A vaccine delivery method is presented that includes a composition including as one component a slurry matrix that is a liquid at room temperature and a gel at physiological pH, physiological salt concentrations and/or physiological temperatures and as a second component one or more antigens. Also included are methods of inducing an immune response in a subject and vaccinating a subject by administering such compositions.
Conditions Improving Poxvirus Stability
The present invention relates to aqueous compositions conferring improved stability to poxvirus during storage as well as to the use of such compositions and methods for preparing the same. The compositions comprise recombinant human serum albumin (rHSA), gelatin or arginine, or combinations thereof.
COVID-19 VACCINE BASED ON THE MYXOMA VIRUS PLATFORM
The present invention provides myxoma viral vectors that encode severe acute respiratory syndrome coronavirus 2 antigens and that can facilitate expression and secretion of virus-like particles (VLPs). Also provided are methods of making said VLPs in mammalian cells and using said VLPs and myxoma viral vectors to induce an immune response in a subject.
Prime/boost immunization regimen against HIV-1 utilizing a multiepitope T cell immunogen comprising Gag, Pol, Vif, and Nef epitopes
The present invention relates to immunogenic therapies for the treatment or prevention of a human immunodeficiency virus (HIV) infection or a disease associated with an HIV infection.
STABLE LIQUID VACCINIA VIRUS FORMULATIONS
The present invention relates to liquid formulations of poxvirus, in particular vaccinia virus, stable during storage. Such stable liquid formulations comprise a) a poxvirus, preferably a vaccinia virus, b) a pharmaceutically acceptable buffer, c) a monovalent salt, d) a pharmaceutically acceptable disaccharide or sugar alcohol, and e) a pharmaceutically acceptable chelating agent, wherein the pH of the formulation is comprised between 6.5 and 8.5.
POXVIRAL VACCINES
The present application relates to novel administration regimens for poxviral vectors comprising nucleic acid constructs encoding antigenic proteins and invariant chains. In particular the use of said poxviral vectors for priming or for boosting an immune response is disclosed.
Recombinant Modified Vaccinia Virus Ankara (MVA) Foot and Mouth Disease Virus (FMDV) Vaccine
The present invention relates to modified poxviral vectors and to methods of making and using the same. In particular, the invention relates to recombinant modified vaccinia virus Ankara-based (MVA-based) vaccine against FMDV infection and to related products, methods and uses. Specifically, the present invention relates to genetically engineered (recombinant) MVA vectors comprising at least one heterologous nucleotide sequence encoding an antigenic determinant of a FMDV protein. The invention also relates to products, methods and uses thereof, e.g., suitable to induce a protective immune response in a subject.