[EN] N-ACYL-{4-[(4-ARYL-PHENYL)SULFONYLMETHYL]PIPERIDINE} COMPOUNDS AND THEIR THERAPEUTIC USE [FR] COMPOSÉS N-ACYL-{4-[(4-ARYL-PHÉNYL)SULFONYLMÉTHYL]PIPÉRIDINE} ET LEUR UTILISATION THÉRAPEUTIQUE
The present invention relates to quinazolinones and related compounds which are inhibitors of PARP14 and are useful, for example, in the treatment of cancer and inflammatory diseases.
The present disclosure relates to a compound derivative containing a 6-7 bicyclic ring and use thereof. The compound according to the present invention can be effectively used in the prevention or treatment of diseases caused by PRMT5 by acting as a PRMT5 inhibitor.
Design, synthesis and biological evaluation of pyrazolo[3,4-d]pyrimidine-based protein kinase D inhibitors
作者:Philippe Gilles、Rudra S. Kashyap、Maria João Freitas、Sam Ceusters、Koen Van Asch、Anke Janssens、Steven De Jonghe、Leentje Persoons、Mathias Cobbaut、Dirk Daelemans、Johan Van Lint、Arnout R.D. Voet、Wim M. De Borggraeve
DOI:10.1016/j.ejmech.2020.112638
日期:2020.11
multiple roles of protein kinase D (PKD) in various cancer hallmarks have been repeatedly reported. Therefore, the search for novel PKD inhibitors and their evaluation as antitumor agents has gained considerable attention. In this work, novel pyrazolo[3,4-d]pyrimidine based pan-PKD inhibitors with structural variety at position 1 were synthesized and evaluated for biological activity. Starting from 3-IN-PP1
蛋白激酶D(PKD)在各种癌症特征中的多重作用已被反复报道。因此,寻找新型PKD抑制剂及其作为抗肿瘤药的评价已引起了广泛的关注。在这项工作中,合成了新颖的基于吡唑并[3,4- d ]嘧啶的泛PKD抑制剂,其在位置1具有结构多样性,并对其生物学活性进行了评估。从3-IN-PP1(一种已知的PKD抑制剂,IC 50值在94-108 nM范围内)出发,发现化合物17m对PKD具有改善的生化抑制活性(IC 50 = 17-35 nM)。随后的细胞分析表明3-IN-PP1和17m抑制PKD依赖的cortactin磷酸化。此外,3-IN-PP1对PANC-1细胞显示出有效的抗增殖活性。最后,针对不同癌细胞系的筛选表明3-IN-PP1是一种有效且用途广泛的抗肿瘤药。
NOVEL BENZAMIDE DERIVATIVES AND PROCESS FOR THE PREPARTION THEREOF
申请人:Yoo Moo-Hi
公开号:US20100105727A1
公开(公告)日:2010-04-29
The present invention provides a novel benzamide derivative represented by formula 1 and an isomer, a pharmaceutically acceptable salt or hydrate thereof, and a composition for activating a 5-HT4 receptor comprising the same, as an active ingredient. Benzamide derivatives of the present invention has superior affinity for 5-HT4 receptors, capability to reduce the gastric evacuation time, capability to alleviate ventricular tachycardia, ventricular fibrillation, torsades de pointes and QT prolongation, and low toxicity. Therefore, benzamide derivatives of the present invention are therapeutically effective for digestive system diseases.
The present invention relates to quinazolinones and related compounds which are inhibitors of PARP14 and are useful, for example, in the treatment of cancer and inflammatory diseases.