C12N2760/18234

PARAMYXOVIRUS VIRUS-LIKE PARTICLES AS PROTEIN DELIVERY VEHICLES

Provided are modified virus-like particles (VLPs) of paramyxoviruses, compositions containing them, methods of using the VLPs for delivery of any particular protein of interest to any of a variety of cells, kits that contain expression vectors for making, using and detecting VLPs, and methods for screening for anti-viral compounds using the VLPs. The modified VLPs contain a contiguous recombinant polypeptide that contains i) all or a segment of a C-terminal domain of a paramyxovirus nucleocapsid protein and ii) a polypeptide sequence of a distinct protein. Non-covalent complexes of paramyxovirus M protein and fusion proteins that contain a C-terminal domain of a paramyxovirus nucleocapsid protein and a polypeptide sequence of a distinct protein are provided, as are non-covalent complexes of cells, and cell receptors, with modified VLPs.

NIPAH HENIPAVIRUS VIRUS REPLICON PARTICLES AND THEIR USE

Nipah henipavirus (NiV) virus replicon particles (VRPs) are disclosed herein. These VRPs can be used to induce an immune response to NiV or Hendra virus (HeV). In some embodiments, the NiV VRP include a recombinant NiV genome, wherein the recombinant NiV genome comprises a deletion in a nucleic acid sequence encoding the F protein such that functional mature F protein cannot be produced from the recombinant NiV genome; and a NiV envelope comprising F, G and M proteins of NiV. These VRP can infect human cells but cannot produce NiV particles from the infected human cells. Immunogenic compositions including the NiV VRP are also disclosed. In some embodiments, methods are disclosed for producing NiV VRP. The use of the disclosed NiV VRP to induce an immune response is also disclosed.

HENDRA VIRUS RECOMBINANT COMPOSITIONS AND USES THEREOF

The present invention provides vectors that contain and express in vivo or in vitro one or more Hendra virus polypeptides or antigens that elicit an immune response in animal or human against Hendra virus and Nipah virus, compositions comprising said vectors and/or Hendra virus polypeptides, methods of vaccination against Hendra virus and Nipah virus, and kits for use with such methods and compositions.

Paramyxovirus virus-like particles as protein delivery vehicles

Provided are modified virus-like particles (VLPs) of paramyxoviruses, compositions containing them, methods of using the VLPs for delivery of any particular protein of interest to any of a variety of cells, kits that contain expression vectors for making, using and detecting VLPs, and methods for screening for anti-viral compounds using the VLPs. The modified VLPs contain a contiguous recombinant polypeptide that contains i) all or a segment of a C-terminal domain of a paramyxovirus nucleocapsid protein and ii) a polypeptide sequence of a distinct protein. Non-covalent complexes of paramyxovirus M protein and fusion proteins that contain a C-terminal domain of a paramyxovirus nucleocapsid protein and a polypeptide sequence of a distinct protein are provided, as are non-covalent complexes of cells, and cell receptors, with modified VLPs.

HENIPAVIRUS VACCINE
20250090652 · 2025-03-20 · ·

The present invention is directed to an artificial nucleic acid and to polypeptides suitable for use in treatment or prophylaxis of an infection with Henipavirus, particularly Hendra virus and/or Nipah virus or a disorder related to such an infection. In particular, the present invention concerns a Hendra virus and/or Nipah virus vaccine. The present invention is directed to an artificial nucleic acid, polypeptides, compositions and vaccines comprising the artificial nucleic acid or the polypeptides. The invention further concerns a method of treating or preventing a disorder or a disease, first and second medical uses of the artificial nucleic acid, polypeptides, compositions and vaccines. Further, the invention is directed to a kit, particularly to a kit of parts, comprising the artificial nucleic acid, polypeptides, compositions and vaccines.

Methods of screening for high-affinity, isoform-selective TGFβ1 inhibitors

Disclosed herein are monoclonal antibodies and antigen-binding fragments thereof capable of selectively inhibiting TGF1 with high potency. Related compositions, methods and therapeutic use are also disclosed.

Immunogenic compositions and methods therefor

The present invention provides compositions relating to viral capsomeres which comprise foreign immunogenic sequences for use in pharmaceutical compositions and methods of producing such compositions, and related isolated or purified protein and nucleic acid molecules, vectors, host cells, compositions, and methods of use to augment an immune response, immunize an animal and prophylactically or therapeutically treat a disease, disorder or condition. The viral capsomere may be derived from a polyomavirus and comprise an immunogen of interest at the N-terminus and further at the C-terminus and/or at one or more exposed loops of the capsomere.

Rapid Acting Vaccine Against Nipah Virus

The present invention includes methods of making, compositions, or vaccinations comprising a recombinant vesicular stomatitis vims (rVSV) viral vector that expresses a Nipah Virus protein antigen, wherein the rVSV vector comprises one or more heterologous polynucleotides coding for and expressing a Nipah Virus NiV.sub.B G-protein antigen; wherein the NiV.sub.B G-protein comprises an amino acid sequence as set forth in SEQ ID NO: 6, or wherein the heterologous polynucleotide encodes a. polypeptide coding for the NiV.sub.B G-protein antigen comprising at least 90% sequence identity to an amino acid sequence as set forth in SEQ ID NO: 6, or 90% sequence identity to a nucleic acid sequence as set forth in SEQ ID NO: 2, wherein the composition or vaccine is effective to reduce or prevent a Nipah Virus infection at 3 days.

Affinity selection of Nipah and Hendra virus-related vaccine candidates from a complex random peptide library displayed on bacteriophage virus-like particles

The invention relates to virus-like particles of bacteriophage MS2 (MS2 VLPs) displaying peptide epitopes or peptide mimics of epitopes of Nipah Virus envelope glycoprotein that elicit an immune response against Nipah Virus upon vaccination of humans or animals. Affinity selection on Nipah Virus-neutralizing monoclonal antibodies using random sequence peptide libraries on MS2 VLPs selected peptides with sequence similarity to peptide sequences found within the envelope glycoprotein of Nipah itself, thus identifying the epitopes the antibodies recognize. The selected peptide sequences themselves are not necessarily identical in all respects to a sequence within Nipah Virus glycoprotein, and therefore may be referred to as epitope mimics VLPs displaying these epitope mimics can serve as vaccine. On the other hand, display of the corresponding wild-type sequence derived from Nipah Virus and corresponding to the epitope mapped by affinity selection, may also be used as a vaccine.

Soluble forms of hendra and nipah virus G glycoprotein

This invention relates to soluble forms of G glycoprotein from Hendra and Nipah virus. In particular, this invention relates to compositions comprising soluble forms of G glycoprotein from Hendra and Nipah virus and also to diagnostic and therapeutic methods using the soluble forms of G glycoprotein from Hendra and Nipah virus. Further, the invention relates to therapeutic antibodies including neutralizing antibodies, and vaccines for the prevention and treatment of infection by Hendra and Nipah viruses.