Patent classifications
A61K47/6857
Compositions for the treatment of drug-resistant tumors and methods of use thereof
Provided herein are methods and compositions for sensitizing a cancer cell to a cancer treatment, for example to an anticancer drug by the inhibition of at least two cancer biomarkers. Further provided are methods of treating and/or preventing a cancer including reducing the size of a tumor. Also provided are compositions comprising nanopartides associated with inhibitory molecules, such as siRNA, and/or anti-cancer drugs.
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.
ANTIBODY-UREASE CONJUGATES FOR THERAPEUTIC PURPOSES
Pharmaceutical compositions comprising antibody-urease conjugates and substantially free of unconjugated urease are disclosed. These compositions are prepared by a method that does not require chromatographic purification. These pharmaceutical compositions have utility in the treatment of cancer by antibody-directed enzyme prodrug therapy wherein the urease converts endogenous urea into ammonia in situ to induce cytotoxicity.
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.
Antibody drug conjugates (ADC) that bind to 191P4D12 proteins
Antibody drug conjugates (ADC's) that bind to 191P4D12 protein and variants thereof are described herein. 191P4D12 exhibits tissue specific expression in normal adult tissue, and is aberrantly expressed in the cancers listed in Table I. Consequently, the ADC's of the invention provide a therapeutic composition for the treatment of cancer.
Anti-FOLR1 Immunoconjugate Dosing Regimens
Methods of administering immunoconjugates that bind to FOLR1 are provided. The methods comprise administering an anti-FOLR1 immunoconjugate to a person in need thereof, for example, a cancer patient, at a therapeutically effective dosing regimen that results in minimal adverse effects.
BENZOSELENOPHENE-BASED COMPOUND, PHARMACEUTICAL COMPOSITION CONTAINING SAME, AND ANTIBODY-DRUG CONJUGATE
The present disclosure relates to a benzoselenophene-based compound, a method of preparing the benzoselenophene-based compound, and a pharmaceutical composition and antibody-drug conjugate including the benzoselenophene-based compound.
TRANSGLUTAMINASE-MEDIATED CONJUGATION
The present disclosure provides for antibody-oligonucleotide conjugates, methods of preparation thereof, and methods of use thereof. Also provided are related compounds, compositions and kits.
ANTI-C-MET ANTIBODY DRUG CONJUGATES
The present disclosure provides c-Met antibody drug conjugates (ADCs), including compositions and methods of using such ADCs.
Method of treating cancer comprising administration of anti-HER2 antibody-drug conjugate
As an antitumor drug which is excellent in terms of antitumor effect and safety and has an excellent therapeutic effect, there is provided an antibody-drug conjugate in which an antitumor compound represented by the following formula is conjugated to an anti-HER2 antibody via a linker having a structure represented by the following formula: -L.sup.1-L.sup.2-L.sup.P-NH—(CH.sub.2)n.sup.1-L.sup.a-(CH.sub.2)n.sup.2-C(═O)— wherein the anti-HER2 antibody is connected to the terminal L.sup.1, and the antitumor compound is connected to the carbonyl group of the —(CH.sub.2)n.sup.2-C(═O)— moiety with the nitrogen atom of the amino group at position 1 as the connecting position. ##STR00001##