A61P17/06

Stable Antibody Containing Compositions

The invention relates to stable and low viscous (<50 cP) protein containing compositions, in particular, but not exclusively stable antibody containing compositions and to the use of said stable proteins in therapy, in particular for the subcutaneous delivery of said stable protein.

COMPOSITIONS OF JASMONATE COMPOUNDS AND METHODS OF USE
20180000958 · 2018-01-04 ·

The disclosure describes nanocarried and/or microcarried jasmonate compounds and their pharmaceutical compositions, as well as use thereof for treating or preventing angiogenesis-related or NF-κB-related disorders. Also disclosed are methods of making the nanocarried and/or microcarried compounds and their compositions.

ANTI HUMAN INTERLEUKIN-1 RECEPTOR ACCESSORY PROTEIN (IL1 RAP) ANTIBODIES AND USES THEREOF

The present invention provides an antibody or an antigen-binding fragment thereof with binding specificity for human interleukin-1 receptor accessory protein (IL1RAP) wherein the antibody or antigen-binding fragment is capable of inhibiting the binding of antibody ‘CAN04’ to human IL1RAP. The invention further provides the use of such antibodies or an antigen-binding fragments in the treatment and/or diagnosis of IL-1 associated diseases and conditions, including cancers such as acute myeloid leukemia and melanoma.

ONCOSTATIN M RECEPTOR ANTIGEN BINDING PROTEINS

The invention provides anti-oncostatin M receptor-β (OSMR) antigen binding proteins, e.g., antibodies and functional fragments, derivatives, muteins, and variants thereof. OSMR antigen binding proteins interfere with binding of OSM and/or IL-31 to OSMR. In some embodiments, anti-OSMR antigen binding proteins are useful tools in studying diseases and disorders associated with OSMR and are particularly useful in methods of treating diseases and disorders associated with OSMR and binding of OSM and/or IL-31 to OSMR.

Interferon Alpha and Omega Antibody Antagonists

Broadly neutralizing interferon-α and interferon-ω antibody antagonists, polynucleotides encoding the antibodies or fragments, and methods of making and using the foregoing are useful in the treatment of diseases associated with increased production of IFNα and IFNω.

Phosphorodiamidate Backbone Linkage for Oligonucleotides
20180002367 · 2018-01-04 ·

This invention relates to antisense oligonucleotides comprising at least one N3′.fwdarw.P5′ phosphorodiamidate linkage (NPN) in the backbone as well as methods for using the same. The antisense oligonucleotides can effectively prevent or decrease protein expression.

HETEROARYL COMPOUNDS AS IRAK INHIBITORS AND USES THEREOF

The present invention relates to compounds of Formula I and pharmaceutically acceptable compositions thereof, useful as IRAK inhibitors.

Methyoxy-Substituted Pyrrolopyridine Modulators of RORC2 and Methods of Use Thereof

The present invention provides methoxy-substituted pyrrolopyridines, pharmaceutical compositions thereof, methods of modulating RORγ activity and/or reducing the amount of IL-17 in a subject, and methods of treating various medical disorders using such pyrrolopyridines and pharmaceutical compositions thereof.

TRICYCLIC SULFONES AS ROR GAMMA MODULATORS

There are described RORγ modulators of the formula (I),

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and formula (II)

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or stereoisomers, tautomers, pharmaceutically acceptable salts, solvates, or prodrugs thereof, wherein all substituents are defined herein. Also provided are pharmaceutical compositions comprising the same. Such compounds and compositions are useful in methods for modulating RORγ activity in a cell and methods for treating a subject suffering from a disease or disorder in which the subject would therapeutically benefit from modulation of RORγ activity, for example, autoimmune and/or inflammatory disorders.

SYNTHESIS OF HETEROCYCLIC COMPOUNDS
20180002332 · 2018-01-04 ·

Provided herein are intermediates and processes useful for facile synthesis of compounds of formula (I):

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or a pharmaceutically acceptable salt, a solvate, a tautomer, an isomer or a deuterated analog thereof, wherein Q, P.sup.1 and P.sup.2 are as defined in this disclosure.