186595-68-6Relevant academic research and scientific papers
Optimization and SAR research at the piperazine and phenyl rings of JNJ4796 as new anti-influenza A virus agents, part 1
Wang, Aoyu,Li, Yuhuan,Lv, Kai,Gao, Rongmei,Wang, Apeng,Yan, Haiyan,Qin, Xiaoyu,Xu, Shijie,Ma, Chao,Jiang, Jiandong,Wei, Zengquan,Zhang, Kai,Liu, Mingliang
supporting information, (2021/06/15)
JNJ4796, a small molecule fuse inhibitor targeting the conserved stem region of hemagglutinin, effectively neutralized a broad spectrum of group 1 influenza A virus (IAV), and protected mice against lethal and sublethal influenza challenge after oral admi
Looking toward the Rim of the Active Site Cavity of Druggable Human Carbonic Anhydrase Isoforms
Mancuso, Francesca,Di Fiore, Anna,De Luca, Laura,Angeli, Andrea,Monti, Simona M.,De Simone, Giuseppina,Supuran, Claudiu T.,Gitto, Rosaria
supporting information, p. 1000 - 1005 (2020/03/23)
We report the synthesis and biochemical evaluation of a series of substituted 4-(4-aroylpiperazine-1-carbonyl)benzenesulfonamides (5a-s) developed as inhibitors of druggable carbonic anhydrase (CA) isoforms, as tools for the identification of new therapeu
N?-Acryloyllysine Piperazides as Irreversible Inhibitors of Transglutaminase 2: Synthesis, Structure-Activity Relationships, and Pharmacokinetic Profiling
Wodtke, Robert,Hauser, Christoph,Ruiz-Gómez, Gloria,J?ckel, Elisabeth,Bauer, David,Lohse, Martin,Wong, Alan,Pufe, Johanna,Ludwig, Friedrich-Alexander,Fischer, Steffen,Hauser, Sandra,Greif, Dieter,Pisabarro, M. Teresa,Pietzsch, Jens,Pietsch, Markus,L?ser, Reik
supporting information, p. 4528 - 4560 (2018/05/07)
Transglutaminase 2 (TGase 2)-catalyzed transamidation represents an important post-translational mechanism for protein modification with implications in physiological and pathophysiological conditions, including fibrotic and neoplastic processes. Consequently, this enzyme is considered a promising target for the diagnosis of and therapy for these diseases. In this study, we report on the synthesis and kinetic characterization of N?-acryloyllysine piperazides as irreversible inhibitors of TGase 2. Systematic structural modifications on 54 new compounds were performed with a major focus on fluorine-bearing substituents due to the potential of such compounds to serve as radiotracer candidates for positron emission tomography. The determined inhibitory activities ranged from 100 to 10?000 M-1 s-1, which resulted in comprehensive structure-activity relationships. Structure-activity correlations using various substituent parameters accompanied by covalent docking studies provide an advanced understanding of the molecular recognition for this inhibitor class within the active site of TGase 2. Selectivity profiling of selected compounds for other transglutaminases demonstrated an excellent selectivity toward transglutaminase 2. Furthermore, an initial pharmacokinetic profiling of selected inhibitors was performed, including the assessment of potential membrane permeability and liver microsomal stability.
Exploration of novel piperazine or piperidine constructed non-covalent peptidyl derivatives as proteasome inhibitors
Zhuang, Rangxiao,Gao, Lixin,Lv, Xiaoqing,Xi, Jianjun,Sheng, Li,Zhao, Yanmei,He, Ruoyu,Hu, Xiaobei,Shao, Yidan,Pan, Xuwang,Liu, Shourong,Huang, Weiwei,Zhou, Yubo,Li, Jia,Zhang, Jiankang
, p. 1056 - 1070 (2017/01/22)
A series of novel piperazine or piperidine-containing non-covalent peptidyl derivatives possessing a neopentyl-asparagine residue were designed, synthesized and evaluated as proteasome inhibitors. All target compounds were screened for their 20S proteasom
HETEROAROMATIC DERIVATIVES AND PHARMACEUTICAL APPLICATIONS THEREOF
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Paragraph 00406, (2016/05/02)
Disclosed are heteroaryl derivatives, pharmaceutical composition and uses in the manufacture of a medicine for treating respiratory diseases, especially for chronic obstructive pulmonary disease (COPD).
Aromatic heterocyclic derivatives and applications of aromatic heterocyclic derivatives in medicines
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Paragraph 1068-1070, (2016/10/09)
The present invention discloses aromatic heterocyclic derivatives and applications of the aromatic heterocyclic derivatives in medicines, and specifically provides a class of aromatic heterocyclic compounds or stereoisomers, geometric isomers, tautomers, racemic bodies, nitrogen oxides, hydrates, solvates, metabolites, pharmaceutically acceptable salts or prodrugs thereof, and pharmaceutical compositions containing the compounds. The present invention further discloses uses of the compounds or pharmaceutical compositions in drug preparation, wherein the drug is used for treatment of respiratory diseases, particularly chronic obstructive pulmonary disease (COPD).
POLY (ADP-RIBOSE) POLYMERASE INHIBITOR
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Paragraph 0113; 0114, (2015/02/25)
Disclosed are a phthalic hydrazide (phthalazine ketone) compound, and a pharmaceutical composition comprising the same. As a DNA repair enzyme poly (ADP-ribozyme) polymerase inhibitor, the compound and the pharmaceutical composition can effectively treat diseases involving PARP enzymatic activity, including cancer, neural degenerative diseases, inflammation and the like.
POLY (ADP-RIBOSE) POLYMERASE INHIBITOR
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Paragraph 0087; 0088, (2014/11/13)
Disclosed are a phthalic hydrazide (phthalazine ketone) compound, and a pharmaceutical composition comprising the same. As a DNA repair enzyme poly (ADP-ribozyme) polymerase inhibitor, the compound and the pharmaceutical composition can effectively treat diseases involving PARP enzymatic activity, including cancer, neural degenerative diseases, inflammation and the like.
Novel PARP-1 inhibitors based on a 2-propanoyl-3H-quinazolin-4-one scaffold
Giannini, Giuseppe,Battistuzzi, Gianfranco,Vesci, Loredana,Milazzo, Ferdinando M.,De Paolis, Francesca,Barbarino, Marcella,Guglielmi, Mario Berardino,Carollo, Valeria,Gallo, Grazia,Artali, Roberto,Dallavalle, Sabrina
supporting information, p. 462 - 466 (2014/01/23)
Poly(ADP-ribose)polymerase-I (PARP-1) enzyme is involved in maintaining DNA integrity and programmed cell death. A virtual screening of commercial libraries led to the identification of five novel scaffolds with inhibitory profile in the low nanomolar range. A hit-to-lead optimization led to the identification of a group of new potent PARP-1 inhibitors, acyl- piperazinylamides of 3-(4-oxo-3,4-dihydro-quinazolin-2-yl)-propionic acid. Molecular modeling studies highlighted the preponderant role of the propanoyl side chain.
Synthesis and biological evaluation of substituted 4-(thiophen-2-ylmethyl)- 2H-phthalazin-1-ones as potent PARP-1 inhibitors
Wang, Ling-Xiao,Zhou, Xin-Bo,Xiao, Meng-Liang,Jiang, Ning,Liu, Feng,Zhou, Wen-Xia,Wang, Xiao-Kui,Zheng, Zhi-Bing,Li, Song
, p. 3739 - 3743 (2014/09/17)
We have developed a series of substituted 4-(thiophen-2-ylmethyl)-2H- phthalazin-1-ones as potent PARP-1 inhibitors. Preliminary biological evaluation indicated that most compounds possessed inhibitory potencies comparable to, or higher than AZD-2281. Among these compounds, 18q appeared to be the most notable one, which displayed an 8-fold improvement in enzymatic activity compared to AZD-2281. These efforts lay the foundation for our further investigation.
