[EN] QUINAZOLIN-4 (3H) -ONE DERIVATIVES USED AS PI3 KINASE INHIBITORS [FR] DÉRIVÉS DE QUINAZOLIN-4-(3H)-ONE UTILISÉS À TITRE D'INHIBITEURS DE KINASES PI3
Design and synthesis of novel, potent and selective hypoxanthine analogs as adenosine A 1 receptor antagonists and their biological evaluation
作者:Summon Koul、Vidya Ramdas、Dinesh A. Barawkar、Yogesh B. Waman、Neela Prasad、Santosh Kumar Madadi、Yogesh D. Shejul、Rajesh Bonagiri、Sujay Basu、Suraj Menon、Srinivasa B. Reddy、Sandhya Chaturvedi、Srinivas Rao Chennamaneni、Gaurav Bedse、Rhishikesh Thakare、Jayasagar Gundu、Sumit Chaudhary、Siddhartha De、Ashwinkumar V. Meru、Venkata Palle、Anita Chugh、Kasim A. Mookhtiar
DOI:10.1016/j.bmc.2017.02.029
日期:2017.3
Multipronged approach was used to synthesize a library of diverse C-8 cyclopentyl hypoxanthine analogs from a common intermediate III. Several potent and selective compounds were identified and evaluated for pharmacokinetic (PK) properties in Wistar rats. One of the compounds 14 with acceptable PK parameters was selected for testing in in vivo primary acute diuresis model. The compound demonstrated
SUBSTITUTED BRIDGED UREA ANALOGS AS SIRTUIN MODULATORS
申请人:GLAXOSMITHKLINE LLC
公开号:US20150152108A1
公开(公告)日:2015-06-04
The present invention relates to novel substituted bridged urea compounds, corresponding related analogs, pharmaceutical compositions and methods of use thereof. Sirtuin-modulating compounds of the present invention may be used for increasing the lifespan of a cell, and treating and/or preventing a wide variety of diseases and disorders, which include, but are not limited to, for example, diseases or disorders related to aging or stress, diabetes, obesity, neurodegenerative diseases, cardiovascular disease, blood clotting disorders, inflammation, cancer, and/or flushing as well as diseases or disorders that would benefit from increased mitochondrial activity. The present invention also related to compositions comprising a sirtuin-modulating compound in combination with another therapeutic agent.
[EN] COMPOUNDS AND METHODS FOR THE TARGETED DEGRADATION OF INTERLEUKIN-1 RECEPTOR-ASSOCIATED KINASE 1 PROTEINS<br/>[FR] COMPOSÉS ET PROCÉDÉS POUR LA DÉGRADATION CIBLÉE DE PROTÉINES DE KINASE 1 ASSOCIÉS AU RÉCEPTEUR DE L'INTERLEUKINE 1
申请人:JANSSEN PHARMACEUTICA NV
公开号:WO2021018118A1
公开(公告)日:2021-02-04
The present invention relates to compounds comprising an interleukin-1 receptor-associated kinase 1 (IRAK1) protein binding moiety and a Von Hippel-Lindau (VHL) E3 ubiquitin ligase binding moiety, and associated methods of use. The compounds are useful as modulators of targeted ubiquitination, especially with respect to IRAK1, which is degraded by the compounds according to the invention.
Synthesis of 3,5-Disubstituted Isoxazoles Containing Privileged Substructures with a Diverse Display of Polar Surface Area
作者:Mingi Kim、Yoon Soo Hwang、Wansang Cho、Seung Bum Park
DOI:10.1021/acscombsci.7b00032
日期:2017.6.12
substituents which uniquely display polar surface area in a diverse manner. A library of 3,5-disubstituted isoxazoles were systematically prepared via 1,3-dipolar cycloaddition of alkynes with nitrile oxides prepared by two complementary synthetic routes; method A utilized a halogenating agent with a base and method B utilized a hypervalent iodine reagent. Through the biological evaluation of corresponding
METHODS AND COMPOUNDS FOR TREATING PROLIFERATIVE DISORDERS AND VIRAL INFECTIONS
申请人:University College Dublin, National University of Ireland, Dublin
公开号:US20160102051A1
公开(公告)日:2016-04-14
The invention generally relates to methods and compounds for treating proliferative disorders, viral infections, or both. In some embodiments, the invention provides an anticancer or antiviral compound including a substituted nitro phenoxy phenyl, a sulfonylurea, and an alkyl group. In some embodiments, the invention provides a method of treating a proliferative disorder or a viral infection including administering an anticancer or antiviral compound that binds to a thromboxane receptor, has preferential binding for either TPalpha (TPα) or TPbeta (TPβ) receptor subtype.