Patent classifications
C07K16/1203
CRA4S1 GENE, ENCODED CRA4S1 PROTEIN, AND APPLICATION
Provided are a cra4S1 gene, an encoded cra4S1 protein, and a vaccine or drug containing the cra4S1 protein or a fragment thereof. A nucleotide sequence of the cra4S1 gene is represented by SEQ ID NO. 1. The vaccine combines the specific target of an outer membrane protein of Porphyromonas gingivalis and the antigen component of the bacterial conserved region, which has an immune prevention and protection effect on the body.
PATHOGEN BINDING METHODS AND COMPOSITIONS
Described herein are engineered microbe-targeting or microbe-binding molecules, kits comprising the same and uses thereof. The microbe-targeting or microbe-binding molecules can comprise a microbe surface-binding domain linked to a portion of an Fc region. Further, the microbe-targeting molecules can be conjugated to substrate (e.g., a magnetic particle) to form a microbe-targeting substrate. Such microbe-targeting molecules and/or substrates and the kits comprising the same can be used in various applications, such as diagnosis and/or treatment of an infection caused by microbes. Moreover, the microbe-targeting molecules and/or substrates can be easily regenerated after use.
METHODS AND COMPOSITIONS FOR TREATING AND DIAGNOSING AUTOIMMUNE DISEASES
The application relates to methods for the diagnosis, treatment, and prevention of autoimmune and/or inflammatory disease such as systemic lupus erythematosus (SLE), lupus nephritis, IgA nephropathy, other types of glomerulonephritis.
Targeted delivery of drugs, therapeutic nucleic acids and functional nucleic acids to mammalian cells via intact killed bacterial cells
A composition comprising intact killed bacterial cells that contain a therapeutic nucleic acid, a drug or a functional nucleic acid is useful for targeted delivery to mammalian cells. The targeted delivery optionally employs bispecific ligands, comprising a first arm that carries specificity for a killed bacterial cell surface structure and a second arm that carries specificity for a mammalian cell surface receptor, to target killed bacterial cells to specific mammalian cells and to cause endocytosis of the killed bacterial cells by the mammalian cells. Alternatively, the delivery method exploits the natural ability of phagocytic mammalian cells to engulf killed bacterial cells without the use of bispecific ligands.
Methods of making multispecific antigen-binding molecules
The present invention provides multispecific antigen-binding molecules and methods of making or selecting same. The multispecific antigen-binding molecules comprise a first antigen-binding domain that specifically binds a target molecule, and a second antigen-binding domain that specifically binds an internalizing effector protein. The multispecific antigen-binding molecules of the present invention can, in some embodiments, be bispecific antibodies that are capable of binding both a target molecule and an internalizing effector protein. In certain embodiments of the invention, the simultaneous binding of the target molecule and the internalizing effector protein by the multispecific antigen-binding molecule of the present invention results in the attenuation of the activity of the target molecule to a greater extent than the binding of the target molecule alone. In other embodiments of the invention, the target molecule is a tumor associated antigen, and the simultaneous binding of the tumor associated antigen and the internalizing effector protein by the multispecific antigen-binding molecule of the present invention causes or facilitates the targeted killing of tumor cells.
ESCHERICHIA COLI COMPOSITIONS AND METHODS THEREOF
- Robert G.K. Donald ,
- Annaliesa Sybil Anderson ,
- Laurent Oliver Chorro ,
- Jianxin Gu ,
- Jin-Hwan Kim ,
- Srinivas Kodali ,
- Jason Arnold Lotvin ,
- Justin Keith Moran ,
- Rosalind Pan ,
- Avvari Krishna Prasad ,
- Mark Edward Ruppen ,
- Suddham Singh ,
- Ling Chu ,
- Scott Ellis Lomberk ,
- Karen Kiyoko Takane ,
- Nishith Merchant ,
- Wei Chen
In one aspect, the invention relates to an immunogenic composition comprising modified O-polysaccharide molecules derived from E. coli lipopolysaccharides and conjugates thereof. Multivalent vaccines may be prepared by combining two or more monovalent immunogenic compositions for different E. coli serotypes. In one embodiment, the modified O-polysaccharide molecules are produced by a recombinant bacterium that includes a wzz gene.
ANTIBODY-PYRROLOBENZODIAZEPINE DEPRIVATIVE CONJUGATE
A novel antibody-pyrrolobenzodiazepine (PBD) derivative conjugate, a medicine having therapeutic effect against tumor with the antibody-drug conjugate, and a method for treating a tumor by using the antibody-drug conjugate or medicine.
Compositions and methods for the treatment of immunodeficiency
The present invention relates to compositions and methods for the treatment of immunodeficiency (e.g., primary immunodeficiency disease). In particular, the invention provides human plasma immunoglobulin compositions containing select antibody titers specific for a plurality of respiratory pathogens, methods of identifying human donors and donor samples for use in the compositions, methods of manufacturing the compositions, and methods of utilizing the compositions (e.g., for prophylactic administration and/or therapeutic treatment (e.g., passive immunization (e.g., immune-prophylaxis))).
VACCINE AGAINST ACINETOBACTER BAUMANNII BASED ON CELLULAR COMPONENTS DEFICIENT IN LIPOPOLYSACCHARIDE
The invention refers to a composition comprising inactivated cells deficient in LPS from the genus Acinetobacter and/or outer membrane vesicles form the same and their use for the manufacture of a medicament, preferably a vaccine, for the prevention of diseases produced by organisms of the genus Acinetobacter.
Animal Models and Therapeutic Molecules
The invention discloses methods for the generation of chimaeric human-non-human antibodies and chimaeric antibody chains, antibodies and antibody chains so produced, and derivatives thereof including fully humanised antibodies; compositions comprising said antibodies, antibody chains and derivatives, as well as cells, non-human mammals and vectors, suitable for use in said methods.