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77140-73-9

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77140-73-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 77140-73-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,7,1,4 and 0 respectively; the second part has 2 digits, 7 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 77140-73:
(7*7)+(6*7)+(5*1)+(4*4)+(3*0)+(2*7)+(1*3)=129
129 % 10 = 9
So 77140-73-9 is a valid CAS Registry Number.

77140-73-9Downstream Products

77140-73-9Relevant academic research and scientific papers

Design, synthesis and pharmacological evaluation of 6,7-disubstituted-4-phenoxyquinoline derivatives as potential antitumor agents

Zhou, Shunguang,Ren, Jianguo,Liu, Mingmei,Ren, Lixiang,Liu, Yajing,Gong, Ping

, p. 30 - 42 (2014)

Two series of 6,7-disubstituted-4-phenoxyquinoline derivatives bearing 2,4-imidazolinedione/pyrazolone scaffold were designed, synthesized and evaluated for their c-Met kinase inhibition and cytotoxicity against HT-29, H460, A549, MKN-45, and U87MG cancer cell lines in vitro. The pharmacological data indicated that most of the tested compounds showed moderate to significant cytotoxicity and high selectivity against HT-29, H460 and A549 cancer cell lines as compared with foretinib. The SAR analyses indicated that compounds with halogen groups, especially trifluoromethyl groups at 2-position on the phenyl ring (moiety B) were more effective. In this study, a promising compound 17 (c-Met IC50= 2.20 nM, a multi-target tyrosine kinase inhibitor) showed the most potent antitumor activities with IC50values of 0.14 μM, 0.18 μM, 0.09 μM, 0.03 μM, and 1.06 μM against HT-29, H460, A549, MKN-45, and U87MG cell lines, respectively.

4-Oxooctahydroquinoline-1(2H)-carboxamides as hepatitis B virus (HBV) capsid core protein assembly modulators

Ban, Haiqun,Blass, Benjamin,Chang, Jinhong,Chen, Junjun,Clement, Jason,Du, Yanming,Guo, Ju-Tao,Hernandez, Ellen,Hwang, Nicky,Kulp, John,McGuire, Kelly,Menne, Stephan,Suresh, Manasa,Viswanathan, Usha,Wu, Shuo,Zhao, Qiong

supporting information, (2022/01/11)

Hepatitis B virus (HBV) core protein, the building block of the HBV capsid, plays multiple roles in viral replication, and is an attractive target for development of antiviral agents with a new mechanism of action. In addition to the heteroaryldihydropyri

3-(dimethylaminomethyl) piperidine-4-alcohol derivative as well as preparation method and pharmaceutical application thereof

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Paragraph 0158-0162, (2021/05/08)

The present invention provides compounds of formula (FWBF) or pharmaceutically acceptable salts thereof, in which the substituents are as defined in the specification, as well as a preparation method and pharmaceutical use thereof.

Bicyclic Carboxamide with Exocyclic Urea Derivatives as Antivirals for the Treatment of HBV Infection

-

Paragraph 0691-0692, (2021/12/03)

Pharmaceutical compositions of the invention comprise functionalized bicyclic carboxamide useful as pregenomic RNA encapsidation inhibitors, useful for the treatment of Hepatitis B virus (HBV) infection.

Synthesis of 4-oxotetrahydropyrimidine-1(2H)-carboxamides derivatives as capsid assembly modulators of hepatitis B virus

Hwang, Nicky,Ban, Haiqun,Chen, Junjun,Ma, Julia,Liu, Hui,Lam, Patrick,Kulp, John,Menne, Stephan,Chang, Jinhong,Guo, Ju-Tao,Du, Yanming

, p. 459 - 472 (2021/01/18)

We report herein the synthesis and evaluation of phenyl ureas derived from 4-oxotetrahydropyrimidine as novel capsid assembly modulators of hepatitis B virus (HBV). Among the derivatives, compound 27 (58031) and several analogs showed an activity of submi

ANTI-HBVTETRAHYDROISOXAZOLO[4,3-C]PYRIDINE COMPOUNDS

-

Paragraph 0117-0119; 0122-0123, (2020/12/13)

Disclosed are a class of anti-HBV tetrahydroisoxazolo[4,3-c]pyridine compounds and pharmaceutically acceptable salts thereof or isomers thereof, the compounds being represented by the formula (I).

Discovery of 3-((dimethylamino)methyl)-4-hydroxy-4-(3-methoxyphenyl)-N-phenylpiperidine-1-carboxamide as novel potent analgesic

Fu, Wei,Huang, Huoming,Li, Wei,Liu, Jinggen,Wang, Wenli,Wang, Yujun,Xu, Xuejun,Zhu, Chen

, (2020/01/28)

Management of moderate to severe pain by clinically used opioid analgesics is associated with a plethora of side effects. Despite many efforts have been dedicated to reduce undesirable side effects, moderate progress has been made. In this work, starting from Tramadol, a series of 3-((dimethylamino)methyl)-4-hydroxy-4-(3-methoxyphenyl)piperidine-1-carboxamide derivatives were designed and synthesized, and their in vitro and in vivo activities were evaluated. Our campaign afforded selective μ opioid receptor (MOR) ligand 2a (KiMOR: 7.3 ± 0.5 nM; KiDOR: 849.4 ± 96.6 nM; KiKOR: 49.1 ± 6.9 nM) as potent analgesic with ED50 of 3.1 mg/kg in 55 °C hot plate model. Its antinociception effect was blocked by opioid antagonist naloxone. High binding affinity toward MOR of compound 2a was associated with water bridge, salt bridge, hydrogen bond and hydrophobic interaction with MOR. The high selectivity of compound 2a for MOR over δ opioid receptor (DOR) and κ opioid receptor (KOR) was due to steric hindrance of compound 2a with DOR and KOR. 2a, a compound with novel scaffold, could serve as a lead for the development of novel opioid ligands.

BICYCLIC AND TRICYCLIC COMPOUNDS

-

Paragraph 0161, (2020/10/28)

Provided herein are compounds of Formula (I), or pharmaceutically acceptable salts thereof, pharmaceutical compositions that include a compound described herein (including pharmaceutically acceptable salts of a compound described herein) and methods of synthesizing the same. Also provided herein are methods of treating diseases and/or conditions with a compound of Formula (I), or a pharmaceutically acceptable salt thereof.

Discovery of AdipoRon analogues as novel AMPK activators without inhibiting mitochondrial complex I

Chen, Caiping,Cheng, Keguang,Cheng, Yalong,Dai, Liang,Li, Haobin,Qian, Ming,Sun, Geng,Wang, Pengfei,Wen, Xiaoan,Xu, Qing-Long,You, Yanping,Yuan, Haoliang,Zhou, Xinyu

supporting information, (2020/06/08)

Activation of AMPK emerges as a potential therapeutic approach to metabolic diseases. AdipoRon is claimed to be an adiponectin receptor agonist that activates AMPK through adiponectin receptor 1 (AdipoR1). However, AdipoRon also exhibits moderate inhibition of mitochondrial complex I, leading to increased risk of lactic acidosis. In order to find novel AdipoRon analogues that activate AMPK without inhibition of complex I, 27 analogues of AdipoRon were designed, synthesized and biologically evaluated. As results, benzyloxy arylamide B10 was identified as a potent AMPK activator without inhibition of complex I. B10 dose-dependently improved glucose tolerance in normal mice, and significantly lowered fasting blood glucose level and ameliorated insulin resistance in db/db diabetic mice. More importantly, unlike the pan-AMPK activator MK-8722, B10 did not cause cardiac hypertrophy, probably owing to its selective activation of AMPK in the muscle tissue but not in the heart tissue. Together, B10 represents a novel class of AMPK activators with promising therapeutic potential against metabolic disease.

Design, synthesis and pharmacological evaluation of 6,7-disubstituted-4- phenoxyquinoline derivatives as potential antitumor agents

Zhou, Shunguang,Ren, Jianguo,Liu, Mingmei,Ren, Lixiang,Liu, Yajing,Gong, Ping

, p. 30 - 42 (2014/10/16)

Two series of 6,7-disubstituted-4-phenoxyquinoline derivatives bearing 2,4-imidazolinedione/pyrazolone scaffold were designed, synthesized and evaluated for their c-Met kinase inhibition and cytotoxicity against HT-29, H460, A549, MKN-45, and U87MG cancer cell lines in vitro. The pharmacological data indicated that most of the tested compounds showed moderate to significant cytotoxicity and high selectivity against HT-29, H460 and A549 cancer cell lines as compared with foretinib. The SAR analyses indicated that compounds with halogen groups, especially trifluoromethyl groups at 2-position on the phenyl ring (moiety B) were more effective. In this study, a promising compound 17 (c-Met IC50 = 2.20 nM, a multi-target tyrosine kinase inhibitor) showed the most potent antitumor activities with IC50 values of 0.14 μM, 0.18 μM, 0.09 μM, 0.03 μM, and 1.06 μM against HT-29, H460, A549, MKN-45, and U87MG cell lines, respectively.

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