A61P7/10

Use of semaphorin-4D binding molecules for modulation of blood brain barrier permeability
11534488 · 2022-12-27 · ·

Provided herein are methods for decreasing blood-brain barrier permeability in a subject with a neuroinflammatory disorder, comprising administering to the subject an effective amount of an isolated binding molecule which specifically binds to semaphorin-4D (SEMA4D) or to its high affinity Plexin-B1 receptor.

ANTI-DLL4/VEGF DUAL VARIABLE DOMAIN IMMMUNOGLOBULIN AND USES THEREOF

Disclosed herein are multivalent and multispecific binding proteins, methods of making the binding proteins, and their uses in the diagnosis, monitoring, inhibition, prevention and/or treatment of cancers, tumors, and/or other angiogenesis-dependent diseases diseases characterized by aberrant DLL4 and/or VEGF expression or activity.

Antibodies to the C3D fragment of complement component 3

The present invention relates to methods and materials for modulating the complement alternative pathway (CAP), the complement classical pathway (CCP), the complement lectin/mannose pathway (CMP), or combinations thereof, as well as methods and materials for targeting diagnostic, prophylactic and therapeutic agents to localized areas of tissue within the body where they may more directly exert their effects upon the intended target cells or tissue, with reduced, associated systemic effects compared with administration of the same or similar agents in an untargeted, systemic manner. The methods and materials of the present invention may therefore allow for increased efficacy, lower threshold effective dosages and/or lower effective maintenance doses, and/or reduced associated undesired or adverse effects in terms of frequency or severity of occurrence, or both. The present invention also relates to methods and materials for modulating a host humoral immune response, especially reducing, inhibiting, or preventing a host humoral immune response.

NITROCATECHOL DERIVATIVES AS COMT INHIBITORS

New compounds of formula I are described:

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The compounds have potentially valuable pharmaceutical properties in the treatment of some central and peripheral nervous system disorders.

Compositions of different densities for fast disintegrating multi-layer tablet

Described herein is a method for forming multi-layer drug dosage forms having at least two layers. In the method, a first formulation comprising a non-gelling matrix forming agent and having a first density is dosed into a preformed mold. A second formulation comprising a non-gelling matrix former and having a second density not equal to the first density is subsequently dosed into the preformed mold. Then, the combination of the formulations dosed into the mold is freeze dried to form the multi-layer dosage form having at least two layers. The use of a density difference between the first and second formulations ensures formation of a product with two distinct layers.

TREATMENT OF MAST CELL DISEASES AND EOSINOPHILIC DISORDERS
20220370465 · 2022-11-24 ·

The present disclosure relates to the use of Compound (I) or a pharmaceutically acceptable salt thereof, for the treatment of mast cell diseases and eosinophilic disorders.

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Methods of detecting plasma kallikrein

Plasma kallikrein binding proteins and methods of using such proteins are described.

HUMAN PLASMA KALLIKREIN INHIBITORS

Disclosed are compounds of formula I

##STR00001## as described herein, and pharmaceutically acceptable salts thereof. The compounds are inhibitors of plasma kallikrein. Also provided are pharmaceutical compositions comprising at least one compound of the invention, and methods involving use of the compounds and compositions of the invention in the treatment and prevention of diseases and conditions characterized by unwanted plasma kallikrein activity.

RNA interference in ocular indications

The present invention relates to ocular administration of sd-rxRNA and rxRNAori molecules.

Compositions and methods for treatment of edema

Provided are pharmaceutical compositions and methods of treating or preventing edema, using an anti-T cell agent, an anti-TGF-β1 agent, or an anti-angiotensin agent, preferably a combination of at least two such agents. The pharmaceutical compositions can be formulated for systemic or local administration, and are preferably administered topically.