C07C311/51

DISUBSTITUTED ALKYNE DERIVATIVES

The present invention relates to disubstituted alkyne derivatives. These compounds are useful for the prevention and/or treatment of several medical conditions including hyperproliferative disorders and diseases.

Alkylamine derivative

A composition containing a compound represented by General Formula (I) below (see the definition in the specification for the symbols in the formula) or a salt thereof has an excellent CaSR agonistic effect and provides a pharmaceutical agent, a CaSR agonistic agent, a prophylactic or therapeutic agent for a disease that can be ameliorated through CaSR activation as well as seasonings and an agent for imparting kokumi. ##STR00001##

Alkylamine derivative

A composition containing a compound represented by General Formula (I) below (see the definition in the specification for the symbols in the formula) or a salt thereof has an excellent CaSR agonistic effect and provides a pharmaceutical agent, a CaSR agonistic agent, a prophylactic or therapeutic agent for a disease that can be ameliorated through CaSR activation as well as seasonings and an agent for imparting kokumi. ##STR00001##

20-HETE receptor (GPR75) antagonists and methods of use

The present invention concerns compounds and their use to treat cardiovascular disease, renal disease, thrombic disease, stroke, metabolic syndrome, cell proliferation, and ischemic cardiovascular disorders. Compounds of the present invention display significant potency as antagonists of 20-hydroxyeicosatetraenoic acid (20-HETE), and function as anti-hypertensive, anti-inflammatory, or anti-growth agents.

COMPOUNDS AND COMPOSITIONS FOR INTRACELLULAR DELIVERY OF THERAPEUTIC AGENTS
20220409536 · 2022-12-29 ·

The disclosure features novel lipids and compositions involving the same. Nanoparticle compositions include a novel lipid as well as additional lipids such as phospholipids, structural lipids, and PEG lipids. Nanoparticle compositions further including therapeutic and/or prophylactics such as RNA are useful in the delivery of therapeutic and/or prophylactics to mammalian cells or organs to, for example, regulate polypeptide, protein, or gene expression.

PROSTAGLANDIN EP4 RECEPTOR ANTAGONIST COMPOUNDS

The disclosures herein relate to novel compounds of formula (1): (1) and salts thereof, wherein A, X, R.sup.1, R.sup.2, R.sup.3, R.sup.4, R.sup.10 and R.sup.11 are defined herein, and their use in treating, preventing, ameliorating, controlling or reducing the risk of disorders associated with EP.sub.4 receptors.

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PROSTAGLANDIN EP4 RECEPTOR ANTAGONIST COMPOUNDS

The disclosures herein relate to novel compounds of formula (1): (1) and salts thereof, wherein A, X, R.sup.1, R.sup.2, R.sup.3, R.sup.4, R.sup.10 and R.sup.11 are defined herein, and their use in treating, preventing, ameliorating, controlling or reducing the risk of disorders associated with EP.sub.4 receptors.

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SMALL MOLECULE INHIBITORS OF THE MCL-1 ONCOPROTEIN AND USES THEROF
20220396549 · 2022-12-15 ·

Compounds that inhibit Myeloid Cell Leukemia-1 (Mcl-1) oncoprotein, and methods of using the same, are provided for treating disease.

SMALL MOLECULE INHIBITORS OF THE MCL-1 ONCOPROTEIN AND USES THEROF
20220396549 · 2022-12-15 ·

Compounds that inhibit Myeloid Cell Leukemia-1 (Mcl-1) oncoprotein, and methods of using the same, are provided for treating disease.

COMPOUNDS AND COMPOSITIONS FOR TREATING CONDITIONS ASSOCIATED WITH NLRP ACTIVITY

In one aspect, compounds of Formula A, or a pharmaceutically acceptable salt thereof, are featured (Formula A) or a pharmaceutically acceptable salt thereof, wherein the variables shown in Formula A can be as defined anywhere herein.

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