C07D273/01

NOVEL COMPOUND HAVING ANTICANCER ACTIVITY, AND METHOD FOR PRODUCING SAME
20220204497 · 2022-06-30 ·

The present invention pertains to a novel compound having anticancer activity, and a method for producing same, and more specifically, to a novel compound that exhibits excellent anticancer activity by inhibiting the expression of AIMP2-DX2, and a method for producing same. The compound represented by chemical formula 1 according to the present invention is highly effective in inhibiting the expression of AIMP2-DX2, and thus can be very advantageously used for the development of agents for treating various diseases, in particular cancer, caused by AIMP2-DX2.

NOVEL COMPOUND HAVING ANTICANCER ACTIVITY, AND METHOD FOR PRODUCING SAME
20220204497 · 2022-06-30 ·

The present invention pertains to a novel compound having anticancer activity, and a method for producing same, and more specifically, to a novel compound that exhibits excellent anticancer activity by inhibiting the expression of AIMP2-DX2, and a method for producing same. The compound represented by chemical formula 1 according to the present invention is highly effective in inhibiting the expression of AIMP2-DX2, and thus can be very advantageously used for the development of agents for treating various diseases, in particular cancer, caused by AIMP2-DX2.

Matrix Metalloproteinase Inhibitors and Imaging Agents, And Methods Using Same

The present invention provides certain compounds, or salts or solvates thereof, which can be used as matrix metalloproteinase-targeted inhibitors or imaging agents.

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Matrix Metalloproteinase Inhibitors and Imaging Agents, And Methods Using Same

The present invention provides certain compounds, or salts or solvates thereof, which can be used as matrix metalloproteinase-targeted inhibitors or imaging agents.

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Redox-based reagents for methionine bioconjugation

Chemoselective conjugation is achieved through redox reactivity by reacting an N-transfer oxidant with a thioether substrate in a redox reaction in an aqueous environment to form a conjugation product. In embodiments, Redox-Activated Chemical Tagging (ReACT) strategies for methionine-based protein functionalization. Oxaziridine (Ox) compounds serve as oxidant-mediated reagents for direct functionalization by converting methionine to the corresponding sulfimide conjugation product.

Redox-based reagents for methionine bioconjugation

Chemoselective conjugation is achieved through redox reactivity by reacting an N-transfer oxidant with a thioether substrate in a redox reaction in an aqueous environment to form a conjugation product. In embodiments, Redox-Activated Chemical Tagging (ReACT) strategies for methionine-based protein functionalization. Oxaziridine (Ox) compounds serve as oxidant-mediated reagents for direct functionalization by converting methionine to the corresponding sulfimide conjugation product.

SSAO INHIBITORS AND USES THEREOF

Described herein are compounds that are semicarbazide-sensitive amine oxidase (SSAO) inhibitors, methods of making such compounds, pharmaceutical compositions and medicaments comprising such compounds, and methods of using such compounds in treating or preventing a liver disease or condition.

SSAO INHIBITORS AND USES THEREOF

Described herein are compounds that are semicarbazide-sensitive amine oxidase (SSAO) inhibitors, methods of making such compounds, pharmaceutical compositions and medicaments comprising such compounds, and methods of using such compounds in treating or preventing a liver disease or condition.

SYNTHESIS OF HETEROCYCLIC COMPOUNDS FROM CARBOXAMIDE AND CARBOXAMIDE DERIVATIVES WITH HALOALKANOLS

The invention provides for methods for the synthesis of various compounds through reaction of carboxamide, or carboxamide derivatives, with various substituted or unsubstituted haloalkanols in a one-step, single vessel, reaction mechanism. Preferably, but not exclusively, the reaction proceeds in the absence of any solvents, catalyst, base, or any further reagents.

SYNTHESIS OF HETEROCYCLIC COMPOUNDS FROM CARBOXAMIDE AND CARBOXAMIDE DERIVATIVES WITH HALOALKANOLS

The invention provides for methods for the synthesis of various compounds through reaction of carboxamide, or carboxamide derivatives, with various substituted or unsubstituted haloalkanols in a one-step, single vessel, reaction mechanism. Preferably, but not exclusively, the reaction proceeds in the absence of any solvents, catalyst, base, or any further reagents.