Patent classifications
C07K2317/33
Anti-TIGIT antibodies, anti-PVRIG antibodies and combinations thereof
- Mark White ,
- Sandeep Kumar ,
- Christopher Chan ,
- Spencer Liang ,
- Lance Stapleton ,
- Andrew W. Drake ,
- Yosi Gozlan ,
- Ilan Vaknin ,
- Shirley Sameah-Greenwald ,
- Liat Dassa ,
- Zohar Tiran ,
- Gad S. Cojocaru ,
- Maya Kotturi ,
- Hsin-Yuan Cheng ,
- Kyle Hansen ,
- David Nisim Giladi ,
- Einav Safyon ,
- Eran Ophir ,
- Leonard Presta ,
- Richard Theolis ,
- Radhika Desai ,
- Patrick Wall
Anti-PVRIG and anti-TIGIT antibodies are provided.
Anti-cub domain-containing protein 1 (CDCP1) antibodies, antibody drug conjugates, and methods of use thereof
This disclosure relates to anti-cancer antibodies and methods of treatment, detection, and diagnosis using the same.
Methods and composition for neutralization of influenza
Provided herein are anti-neuraminidase agents useful for neutralization of influenza virus infection, and methods of use and manufacture thereof. In particular, compositions comprising anti-neuraminidase agents (e.g., antibodies) that are cross-reactive with multiple influenza strains are provided, as well as methods of treatment and prevention of influenza infection therewith.
INFECTIOUS DISEASE VACCINES
Aspects of the disclosure relate to nucleic acid vaccines. The vaccines include one or more RNA polynucleotides having an open reading frame encoding one or more Chikungunya antigen(s), one or more Zika virus antigens, and one or more Dengue antigens. Methods for preparing and using such vaccines are also described.
IMMUNOGENIC TRIMERS
The invention relates to PGT121-germline-targeting designs, trimer stabilization designs, combinations of those two, trimers designed with modified surfaces helpful for immunization regimens, other trimer modifications and on development of trimer nanoparticles and methods of making and using the same.
Antibodies specific for CD47, PD-L1, and uses thereof
Antibodies that specifically bind to CD47 and antibodies that specifically bind to PD-L1 are provided, as well as CD47/PD-L1 bispecific antibodies. Also provided are uses of these antibodies, and related compositions and methods.
Methods and Antibody Compositions for Tumor Treatment
The present invention provides bispecific antibodies that bind to CD3 and tumor antigens and methods of using the same. According to certain embodiments, the bispecific antibodies of the invention exhibit reduced effector functions and have a unique binding profile with regard to Fcγ receptors. The bispecific antibodies are engineered to efficiently induce T cell-mediated killing of tumor cells. According to certain embodiments, the present invention provides bispecific antigen-binding molecules comprising a first antigen-binding domain that specifically binds human CD3, a second antigen-binding molecule that specifically binds human CD20, and an Fc domain that binds Fcγ receptors with a specific binding pattern. In certain embodiments, the bispecific antigen-binding molecules of the present invention are capable of inhibiting the growth of B-cell or melanoma tumors expressing CD20. The bispecific antibodies of the invention are useful for the treatment of various cancers as well as other CD20-related diseases and disorders.
ANTI-NTB-A ANTIBODIES AND RELATED COMPOSITIONS AND METHODS
Disclosed are antibodies, including antibody drug conjugates, that specifically bind to NTB-A. Also disclosed are methods for using the anti-NTB-A antibodies to detect or modulate activity of (e.g., inhibit proliferation of) an NTB-A-expressing cell, as well as for diagnoses or treatment of diseases or disorders (e.g., cancer) associated with NTB-A-expressing cells, such as multiple myeloma, non-Hodgkin lymphoma and acute myeloid leukemia.
ROR1 ANTIBODIES
There is described Receptor Tyrosine Kinase Like Orphan Receptor 1 (ROR1) antibodies that specifically bind a ROR1 polypeptide, and their use. In particular, isolated monoclonal antibodies are described and their use in a number of applications, including in the detection, prevention and treatment of cancer.
CD25 ANTIBODIES
Provided herein are antibodies that specifically bind to CD25. Also provided herein are methods of making the antibodies described, and methods of use thereof. For example, the CD25 antibodies may be used therapeutically to treat cancer or autoimmune diseases.