929617-35-6Relevant academic research and scientific papers
Discovery of (1 H-Pyrazolo[3,4- c]pyridin-5-yl)sulfonamide Analogues as Hepatitis B Virus Capsid Assembly Modulators by Conformation Constraint
Wang, Chunting,Pei, Yameng,Pei, Yameng,Wang, Lin,Li, Shuo,Jiang, Chao,Tan, Xu,Dong, Yi,Xiang, Ye,Ma, Yao,Liu, Gang
, p. 6066 - 6089 (2020/07/10)
Hepatitis B virus (HBV) capsid assembly modulators (CAMs) have been suggested to be effective anti-HBV agents in both preclinical and clinical studies. In addition to blocking HBV replication, CAMs could reduce the formation of covalently closed circular DNA (cccDNA), which accounts for the persistence of HBV infection. Here, we describe the discovery of (1H-indazole-5-yl)sulfonamides and (1H-pyrazolo[3,4-c]pyridin-5-yl)sulfonamides as new CAM chemotypes by constraining the conformation of the sulfamoylbenzamide derivatives. Lead optimization resulted in compound 56 with an EC50 value of 0.034 μM and good metabolic stability in mouse liver microsomes. To increase the solubility, the amino acid prodrug (65) and its citric acid salt (67) were prepared. Compound 67 dose dependently inhibited HBV replication in a hydrodynamic injection-based mouse model of HBV infection, while 56 did not show in vivo anti-HBV activity, likely owing to its suboptimal solubility. This class of compounds may serve as a starting point to develop novel anti-HBV drugs.
Compounds and their use in treatment on hepatitis B
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, (2020/07/15)
The invention provides compounds, a pharmaceutical composition containing the compounds and an application of the compounds. The compound is a compound shown in a formula (I) or a stereoisomer, a tautomer, nitric oxide, hydrate, solvate, metabolite, pharmaceutically acceptable salt or prodrug of the compound shown in the formula (I). The compound provided by the invention can interfere with the shell assembly process of hepatitis B virus, thereby inhibiting hepatitis B virus replication. Moreover, the compound has good absorption, relatively high biological activity and availability and low toxicity, particularly has relatively strong stability in vivo, is not easy to decompose and has long drug effect time, so that an effect of treating hepatitis B is achieved and the compound has a goodapplication prospect.
3-(1H-PYRROLO[3,2-C]PYRIDIN-2-YL)-1H-PYRAZOLO[3,4-C]PYRIDINES AND THERAPEUTIC USES THEREOF
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Paragraph 0611, (2017/02/28)
6-Azaindazole compounds for treating various diseases and pathologies are disclosed. More particularly, the present disclosure concerns the use of a 6-azaindazole compound or analogs thereof, in the treatment of disorders characterized by the activation of Wnt pathway signaling (e.g., cancer, abnormal cellular proliferation, angiogenesis, fibrotic disorders, bone or cartilage diseases, and osteoarthritis), the modulation of cellular events mediated by Wnt pathway signaling, as well as genetic diseases and neurological conditions/disorders/diseases due to mutations or dysregulation of the Wnt pathway and/or of one or more of Wnt signaling components. Also provided are methods for treating Wnt-related disease states.
3-(1H-PYRROLO[2,3-B]PYRIDIN-2-YL)-1H-PYRAZOLO[3,4-C]PYRIDINES AND THERAPEUTIC USES THEREOF
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Paragraph 0612, (2017/02/28)
6-Azaindazole compounds for treating various diseases and pathologies are disclosed. More particularly, the present disclosure concerns the use of a 6-azaindazole compound or analogs thereof, in the treatment of disorders characterized by the activation of Wnt pathway signaling (e.g., cancer, abnormal cellular proliferation, angiogenesis, fibrotic disorders, bone or cartilage diseases, and osteoarthritis), the modulation of cellular events mediated by Wnt pathway signaling, as well as genetic diseases and neurological conditions/disorders/diseases due to mutations or dysregulation of the Wnt pathway and/or of one or more of Wnt signaling components. Also provided are methods for treating Wnt-related disease states.
3-(1H-INDOL-2-YL)-1H-PYRAZOLO[3,4-C]PYRIDINES AND THERAPEUTIC USES THEREOF
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Paragraph 0614; 0616, (2017/02/28)
6-Azaindazole compounds for treating various diseases and pathologies are disclosed. More particularly, the present disclosure concerns the use of a 6-azaindazole compound or analogs thereof, in the treatment of disorders characterized by the activation of Wnt pathway signaling (e.g., cancer, abnormal cellular proliferation, angiogenesis, fibrotic disorders, bone or cartilage diseases, and osteoarthritis), the modulation of cellular events mediated by Wnt pathway signaling, as well as genetic diseases and neurological conditions/disorders/diseases due to mutations or dysregulation of the Wnt pathway and/or of one or more of Wnt signaling components. Also provided are methods for treating Wnt-related disease states.
3-(1H-PYRROLO[2,3-C]PYRIDIN-2-YL)-1H-PYRAZOLO[3,4-C]PYRIDINES AND THERAPEUTIC USES THEREOF
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Paragraph 0610; 0612, (2017/02/28)
6-Azaindazole compounds for treating various diseases and pathologies are disclosed. More particularly, the present disclosure concerns the use of a 6-azaindazole compound or analogs thereof, in the treatment of disorders characterized by the activation of Wnt pathway signaling (e.g., cancer, abnormal cellular proliferation, angiogenesis, fibrotic disorders, bone or cartilage diseases, and osteoarthritis), the modulation of cellular events mediated by Wnt pathway signaling, as well as genetic diseases and neurological conditions/disorders/diseases due to mutations or dysregulation of the Wnt pathway and/or of one or more of Wnt signaling components. Also provided are methods for treating Wnt-related disease states.
Design and synthesis of 1H-pyrazolo[3,4-c]pyridine derivatives as a novel structural class of potent GPR119 agonists
Matsuda, Daisuke,Kobashi, Yohei,Mikami, Ayako,Kawamura, Madoka,Shiozawa, Fumiyasu,Kawabe, Kenichi,Hamada, Makoto,Oda, Koji,Nishimoto, Shinichi,Kimura, Kayo,Miyoshi, Masako,Takayama, Noriko,Kakinuma, Hiroyuki,Ohtake, Norikazu
supporting information, p. 3441 - 3446 (2016/07/21)
Design and synthesis of a novel class of 1H-pyrazolo[3,4-c]pyridine GPR119 receptor agonists are described. Lead compound 4 was identified through the ligand-based drug design approach. Modification of the left-hand aryl group (R1) and right-ha
Discovery of 3,5-substituted 6-azaindazoles as potent pan-Pim inhibitors
Hu, Huiyong,Wang, Xiaojing,Chan, Grace Ka Yan,Chang, Jae H.,Do, Steven,Drummond, Jake,Ebens, Allen,Lee, Wendy,Ly, Justin,Lyssikatos, Joseph P.,Murray, Jeremy,Moffat, John G.,Chao, Qi,Tsui, Vickie,Wallweber, Heidi,Kolesnikov, Aleksandr
, p. 5258 - 5264 (2015/11/09)
Pim kinase inhibitors are promising cancer therapeutics. Pim-2, among the three Pim isoforms, plays a critical role in multiple myeloma yet inhibition of Pim-2 is challenging due to its high affinity for ATP. A co-crystal structure of a screening hit 1 bound to Pim-1 kinase revealed the key binding interactions of its indazole core within the ATP binding site. Screening of analogous core fragments afforded 1H-pyrazolo[3,4-c]pyridine (6-azaindazole) as a core for the development of pan-Pim inhibitors. Fragment and structure based drug design led to identification of the series with picomolar biochemical potency against all three Pim isoforms. Desirable cellular potency was also achieved.
Design and synthesis of pyridine-pyrazolopyridine-based inhibitors of protein kinase B/Akt
Zhu, Gui-Dong,Gong, Jianchun,Gandhi, Viraj B.,Woods, Keith,Luo, Yan,Liu, Xuesong,Guan, Ran,Klinghofer, Vered,Johnson, Eric F.,Stoll, Vincent S.,Mamo, Mulugeta,Li, Qun,Rosenberg, Saul H.,Giranda, Vincent L.
, p. 2441 - 2452 (2007/10/03)
Thr-211 is one of three different amino acid residues in the kinase domain of protein kinase B/Akt as compared to protein kinase A (PKA), a closely related analog in the same AGC family. In an attempt to improve the potency and selectivity of our indazole-pyridine series of Akt inhibitors over PKA, efforts have focused on the incorporation of a chemical functionality to interact with the hydroxy group of Thr-211. Several substituents including an oxygen anion, amino, and nitro groups have been introduced at the C-6 position of the indazole scaffold, leading to a significant drop in Akt potency. Incorporation of a nitrogen atom into the phenyl ring at the same position (i.e., 9f) maintained the Akt activity and, in some cases, improved the selectivity over PKA. The structure-activity relationships of the new pyridine-pyrazolopyridine series of Akt inhibitors and their structural features when bound to PKA are also discussed.
THIADIAZOLE COMPOUNDS AND METHODS OF USE
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Page/Page column 41, (2010/11/08)
The invention relates to thiadiazole compounds useful for treating diseases mediated by protein kinase B (PKB). The invention also relates to the therapeutic use of such thiadiazole compounds and compositions thereof in treating disease states associated
