Patent classifications
A61K47/6869
PHOTOSENSITIZING ANTIBODY-FLUOROPHORE CONJUGATES
The present disclosure relates to compositions and methods of killing cells. In particular examples, the method includes contacting a cell having a cell surface protein with a therapeutically effective amount of an antibody-IR700 molecule, wherein the antibody specifically binds to the cell surface protein, such as a tumor-specific antigen on the surface of a tumor cell. The cell is subsequently irradiated, such as at a wavelength of 660 to 740 nm at a dose of at least 1 J cm.sup.−2. The cell is also contacted with one or more therapeutic agents (such as an anti-cancer agent), for example about 0 to 8 hours after irradiating the cell, thereby killing the cell. Also provided are methods of imaging cell killing in real time, using fluorescence lifetime imaging. Also provided are wearable devices that include an article of clothing, jewelry, or covering; and an NIR LED incorporated into the article, which can be used with the disclosed methods.
Benzoselenophene-based compounds, pharmaceutical compositions and antibody-drug conjugates including the same
The present disclosure relates to benzoselenophene-based compounds, method of preparing the benzoselenophene-based compounds, pharmaceutical compositions and antibody-drug conjugates including the benzoselenophene-based compounds.
ANTIBODIES HAVING SPECIFICITY TO HER4 AND USES THEREOF
The present invention relates to antibodies having specificity to HER4 and uses thereof, which are able to induce biased 4ICD routing/signaling. The inventors have isolated by antibody phage display three fully human anti-HER4 single-chain variable antibody fragment (scFv), selected on human HER4 extracellular domain, referred as C6 mAb, D5 mAb and F4 mAb and one fully human anti-HER4 scFv named H2 mAb, selected on NRG 1β1-stimulated EGFR/HER4 JMaCYT1-transfected NIH3T3 cells. In particular, the present invention relates to an isolated anti-HER4 antibody, wherein said antibody binds to an epitope of the HER4 protein.
AMHRII-BINDING ANTIBODY DRUG CONJUGATES AND THEIR USE THEREOF IN THE TREATMENT OF CANCERS
The present invention relates to an antibody drug conjugate (ADC) of general formula (I) (D-Lk.sub.1-C(O)-Lk.sub.2-C.sub.2H.sub.4—NH-Lk.sub.3).sub.n-Ab. A pharmaceutical composition comprising, in a pharmaceutically acceptable medium, the said ADC is also concerned by the present invention, as well as the use of this ADC or composition as a medicament, and in particular in the prevention and/or the treatment of an anti-Müllerian hormone type II receptor (AMHRII) expressing cancer in an individual.
RADIOHALOGEN PROSTHETIC MOIETIES AND RADIOLABELED BIOMOLECULES
The application is drawn to radiohalogen prosthetic moieties and precursors thereof and to radiolabeled biomolecules comprising such radiohalogen prosthetic moieties. The biomolecules have an affinity for particular types of cells and may specifically bind a certain cell, such as a cancer cell. Relevant biomolecules include antibodies, monoclonal antibodies, antibody fragments, peptides, other proteins, nanoparticles, aptamers, and pharamacological moieties used to target prostate-specific membrane antigen (PSMA).
Antibody-drug-conjugate and its use for the treatment of cancer
The present invention relates to an antibody-drug-conjugate. From one aspect, the invention relates to an anti-body-drug-conjugate comprising an antibody capable of binding to a Target, said antibody being conjugated to at least one drug selected from derivatives of dolastatin 10 and auristatins. The invention also comprises method of treatment and the use of said anti-body-drug-conjugate for the treatment of cancer.
Compositions and Methods for Targeting Cancer Stem Cells
The present invention provides methods of testing anti-STn antibodies for their ability target cancer stem cells by isolating cancer stem cells from cultures, contacting them with anti-STn antibodies being tested, and measuring resulting cell viability.
Compositions and Methods for Targeting Cancer Stem Cells
Compositions and methods for treating ovarian cancer are provided. Methods include combined treatment with chemotherapeutic agents and anti-STn antibodies. Chemotherapy resistant ovarian cancer cells may be reduced. Chemotherapy resistant ovarian cancer cells may include cancer stem cells.
METHODS OF TREATING CANCER WITH A COMBINATION OF AN ANTI-PD-1 ANTIBODY AND AN ANTI-TISSUE FACTOR ANTIBODY-DRUG CONJUGATE
The invention provides an anti-PD-1 antibody comprising the complementary determining regions (CDRs) of pembrolizumab in combination with an antibody-drug conjugate that binds to tissue factor (TF) comprising monomethyl auristatin E and the CDRs of tisotumab (e.g., tisotumab vedotin) and their use in methods of treating cancer, such as breast cancer and cervical cancer. The invention also provides compositions and kits comprising the anti-PD-1 antibody comprising the CDRs of pembrolizumab and the antibody-drug conjugate that binds to TF comprising monomethyl auristatin E and the CDRs of tisotumab (e.g., tisotumab vedotin) for use in treating cancer, such as breast cancer and cervical cancer.
ANTI-CDH6 ANTIBODY AND ANTI-CDH6 ANTIBODY-DRUG CONJUGATE
It is an object of the present invention to provide an antibody binding to CDH6 and having internalization activity, an antibody-drug conjugate of the antibody and a drug having antitumor activity, a pharmaceutical product comprising the antibody-drug conjugate and having therapeutic effects on a tumor, a method for treating a tumor using the antibody, the antibody-drug conjugate or the pharmaceutical product, and the like. The present invention provides an anti-CDH6 antibody having internalization activity, an antibody-drug conjugate of the antibody and a drug having antitumor activity, a pharmaceutical product comprising the antibody or the antibody-drug conjugate, and a method for treating a tumor.