C07D223/06

Quaternary ammonium salt compound, preparation method therefor and use thereof

A compound is shown in formula I and can be in the form of a pharmaceutically acceptable salt, or a stereoisomer, or a solvate, or a prodrug, or a metabolite. The compound takes effect rapidly and has a long-time local anesthetic effect following a single dose, with the sensory nerve blocking time being greater than the motor nerve blocking time, has both a long-acting local anesthetic effect and a selective local anesthetic effect, significantly reduces side effects of the compositions QX314 and QX314 and a quaternary ammonium salt compound with surfactant structural characteristics, and is safer. The compound of formula I of the present invention and a pharmaceutically acceptable salt thereof can be used for preparing drugs that have a long-time local anesthetic effect and a selective local anesthetic effect.

Quaternary ammonium salt compound, preparation method therefor and use thereof

A compound is shown in formula I and can be in the form of a pharmaceutically acceptable salt, or a stereoisomer, or a solvate, or a prodrug, or a metabolite. The compound takes effect rapidly and has a long-time local anesthetic effect following a single dose, with the sensory nerve blocking time being greater than the motor nerve blocking time, has both a long-acting local anesthetic effect and a selective local anesthetic effect, significantly reduces side effects of the compositions QX314 and QX314 and a quaternary ammonium salt compound with surfactant structural characteristics, and is safer. The compound of formula I of the present invention and a pharmaceutically acceptable salt thereof can be used for preparing drugs that have a long-time local anesthetic effect and a selective local anesthetic effect.

MITOCHONDRIAL TARGETING COMPOUNDS FOR THE TREATMENT OF ASSOCIATED DISEASES
20230212122 · 2023-07-06 ·

Mitochondrial targeting compounds for the treatment of cancer and other disorders associated with mitochondrial function, including diabetes, autoimmune diseases, inflammatory diseases, cardiovascular diseases and neurodegenerative diseases and their preparation. The present invention is also directed to the pharmaceutical compositions and treatment methods, prodrugs based on those compounds and the use thereof.

POLYCYCLIC AMINES AS OPIOID RECEPTOR MODULATORS
20220411442 · 2022-12-29 ·

The present invention provides a genus of polycyclic amines that are useful as opioid receptor modulators. The compounds of the invention are useful in both therapeutic and diagnostic methods, including for treating pain, neurological disorders, cardiac disorders, bowel disorders, drug and alcohol addiction, drug overdose, urinary disorders, respiratory disorders, sexual dysfunction, psoriasis, graft rejection or cancer.

POLYCYCLIC AMINES AS OPIOID RECEPTOR MODULATORS
20220411442 · 2022-12-29 ·

The present invention provides a genus of polycyclic amines that are useful as opioid receptor modulators. The compounds of the invention are useful in both therapeutic and diagnostic methods, including for treating pain, neurological disorders, cardiac disorders, bowel disorders, drug and alcohol addiction, drug overdose, urinary disorders, respiratory disorders, sexual dysfunction, psoriasis, graft rejection or cancer.

Photoreactive ligands and uses thereof

Disclosed herein are methods for identifying proteins as targets for interaction with a small molecule ligand. Also disclosed herein are small molecule ligands and compositions for use in profiling druggable proteins.

Polycyclic amines as sigma receptor modulators
11584765 · 2023-02-21 · ·

The present invention provides a genus of polycyclic amines that are useful as opioid receptor modulators. The compounds of the invention are useful in both therapeutic and diagnostic methods, including for treating pain, neurological disorders, cardiac disorders, bowel disorders, drug and alcohol addiction, drug overdose, urinary disorders, respiratory disorders, sexual dysfunction, psoriasis, graft rejection or cancer.

Polycyclic amines as sigma receptor modulators
11584765 · 2023-02-21 · ·

The present invention provides a genus of polycyclic amines that are useful as opioid receptor modulators. The compounds of the invention are useful in both therapeutic and diagnostic methods, including for treating pain, neurological disorders, cardiac disorders, bowel disorders, drug and alcohol addiction, drug overdose, urinary disorders, respiratory disorders, sexual dysfunction, psoriasis, graft rejection or cancer.

NOVEL SULFONAMIDE CARBOXAMIDE COMPOUNDS

The present invention relates to compounds of formula (I) wherein Q is selected from O or S; R.sup.1 is a non-aromatic heterocyclic group comprising at least one ring nitrogen atom, wherein R.sup.1 is attached to the sulfur atom of the sulfonylurea group by a ring carbon atom, and wherein R.sup.1 may optionally be substituted; and R.sup.2 is a cyclic group substituted at the α-position, wherein R.sup.2 may optionally be further substituted. The present invention further relates to salts, solvates and prodrugs of such compounds, to pharmaceutical compositions comprising such compounds, and to the use of such compounds in the treatment and prevention of medical disorders and diseases, most especially by the inhibition of NLRP.sub.3.

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NOVEL SULFONAMIDE CARBOXAMIDE COMPOUNDS

The present invention relates to compounds of formula (I) wherein Q is selected from O or S; R.sup.1 is a non-aromatic heterocyclic group comprising at least one ring nitrogen atom, wherein R.sup.1 is attached to the sulfur atom of the sulfonylurea group by a ring carbon atom, and wherein R.sup.1 may optionally be substituted; and R.sup.2 is a cyclic group substituted at the α-position, wherein R.sup.2 may optionally be further substituted. The present invention further relates to salts, solvates and prodrugs of such compounds, to pharmaceutical compositions comprising such compounds, and to the use of such compounds in the treatment and prevention of medical disorders and diseases, most especially by the inhibition of NLRP.sub.3.

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