Patent classifications
C07K2319/033
GENETICALLY ENCODED LIPID-POLYPEPTIDE HYBRID BIOMATERIALS THAT EXHIBIT TEMPERATURE TRIGGERED HIERARCHICAL SELF-ASSEMBLY
Disclosed herein are conjugates including a fatty acid, a self-assembly domain, and a polypeptide, where the conjugates have phase transition behavior. Further disclosed are methods of using the conjugates to treat disease, methods of delivering an agent, and methods of preparing the conjugates.
Ciliary Neurotrophic Factor Receptor Ligands and Methods of Using the Same
Provided are ciliary neurotrophic factor receptor (CNTFR) ligands. In certain aspects, a CNTFR ligand of the present disclosure exhibits increased affinity for CNTFR relative to the corresponding wild-type CNTFR ligand. In certain aspects, a CNTFR ligand of the present disclosure results in reduced binding affinity of glycoprotein 130 (gp130), leukemia inhibitory factor receptor (LIFR), or both, for a complex including the CNTFR ligand and CNTFR, relative to the binding affinity for a complex including the corresponding wild-type CNTFR ligand and CNTFR. In certain aspects, a CNTFR ligand of the present disclosure has both of the aforementioned properties. Also provided are pharmaceutical compositions including the CNTFR ligands, as well as methods of using the CNTFR ligands.
HUMANIZED ANTI-MUC1* ANTIBODIES AND USE OF CLEAVAGE ENZYME
The present application discloses humanized antibodies and antibody like proteins and fragments thereof and use of cleavage enzyme.
Induced activation in dendritic cells
The present invention is directed to a composition and method which to treat diseases and to enhance a regulated immune response. More particularly, the present invention is drawn to compositions that are based on dendritic cells modified to express an inducible form of a co-stimulatory polypeptide.
GENE-REGULATING COMPOSITIONS AND METHODS FOR IMPROVED IMMUNOTHERAPY
The present disclosure provides methods and compositions related to the modification of immune effector cells to increase therapeutic efficacy. In some embodiments, immune effector cells modified to reduce expression of one or more endogenous target genes, or to reduce one or more functions of an endogenous protein to enhance effector functions of the immune cells are provided. In some embodiments, immune effector cells further modified by introduction of transgenes conferring antigen specificity, such as exogenous T cell receptors (TCRs) or chimeric antigen receptors (CARs) are provided. Methods of treating a cell proliferative disorder, such as a cancer, using the modified immune effector cells described herein are also provided.
COMPOSITIONS AND METHODS FOR CAR T CELL THERAPY
The present disclosure relates to methods of treating a patient with a cancer by administering to the patient a composition comprising CAR T cells and a small molecule linked to a targeting moiety by a linker. The disclosure also relates to compositions for use in such methods.
Therapeutic SALL4 Peptide
The present invention provides, in certain embodiments, isolated peptides and pharmaceutical compositions comprising isolated peptides that bind to retinoblastoma binding protein 4 RBBp4 such that, the binding blocks the SALL4-RBBp4 interaction. Methods of inhibiting binding of SALL4 with RBBp4 and methods for treating a subject having a disorder mediated by a dysregulation of SALL4 are also provided.
RECOMBINANT POLYNUCLEOTIDE CODING FOR POLYPEPTIDE COMPRISING REPORTER MOIETY, SUBSTRATE MOIETY AND DESTABILIZING MOIETY, HOST CELL COMPRISING SAME AND USE OF SAME
Provided are a recombinant polynucleotide encoding a polypeptide including a reporter moiety, a substrate moiety, and a destabilization moiety, a host cell including the same, and use thereof to measure the level of a protease by using the recombinant polynucleotide.
NON-HUMAN ANIMALS COMPRISING A HUMANIZED TRKB LOCUS
Non-human animal genomes, non-human animal cells, and non-human animals comprising a humanized TRKB locus and methods of making and using such non-human animal genomes, non-human animal cells, and non-human animals are provided. Non-human animal cells or non-human animals comprising a humanized TRKB locus express a human TRKB protein or a chimeric transthyretin protein, fragments of which are from human TRKB. Methods are provided for using such non-human animals comprising a humanized TRKB locus to assess in vivo efficacy of human-TRKB-targeting reagents such as nuclease agents designed to target human TRKB.
Recombinant human parainfluenza virus type 1 expressing a chimeric RSV/HPIV1 f protein and uses thereof
Recombinant paramyxoviruses including a viral genome encoding a heterologous gene are provided. In several embodiments, the recombinant paramyxovirus is a recombinant parainfluenza virus, such as a recombinant PIV3 including a viral genome encoding a heterologous respiratory syncytial virus F ectodomain linked to the transmembrane domain and the cytoplasmic tail of the F protein from the PIV3. Nucleic acid molecules including the genome of a recombinant paramyxoviruses are also provided. The recombinant viruses may advantageously be used in vaccine formulations, such as for vaccines against parainfluenza virus and respiratory syncytial virus.