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205596-29-8

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205596-29-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 205596-29-8 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,0,5,5,9 and 6 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 205596-29:
(8*2)+(7*0)+(6*5)+(5*5)+(4*9)+(3*6)+(2*2)+(1*9)=138
138 % 10 = 8
So 205596-29-8 is a valid CAS Registry Number.

205596-29-8Relevant articles and documents

Design, synthesis, and evaluation of potent RIPK1 inhibitors with in vivo anti-inflammatory activity

Li, Zhanhui,Hao, Yongjin,Yang, Chengkui,Yang, Qing,Wu, Shuwei,Ma, Haikuo,Tian, Sheng,Lu, Haohao,Wang, Jingrui,Yang, Tao,He, Sudan,Zhang, Xiaohu

, (2021/12/16)

RIPK1 plays a key role in the necroptosis pathway that regulates inflammatory signaling and cell death in various diseases, including inflammatory and neurodegenerative diseases. Herein, we report a series of potent RIPK1 inhibitors, represented by compound 70. Compound 70 efficiently blocks necroptosis induced by TNFα in both human and mouse cells (EC50 = 17–30 nM). Biophysical assay demonstrates that compound 70 potently binds to RIPK1 (Kd = 9.2 nM), but not RIPK3 (Kd > 10,000 nM). Importantly, compound 70 exhibits greatly improved metabolic stability in human and rat liver microsomes compared to compound 6 (PK68), a RIPK1 inhibitor reported in our previous work. In addition, compound 70 displays high permeability in Caco-2 cells and excellent in vitro safety profiles in hERG and CYP assays. Moreover, pre-treatment of 70 significantly ameliorates hypothermia and lethal shock in SIRS mice model. Lastly, compound 70 possesses favorable pharmacokinetic parameters with moderate clearance and good oral bioavailability in SD rat. Taken together, our work supports 70 as a potent RIPK1 inhibitor and highlights its potential as a prototypical lead for further development in necroptosis-associated inflammatory disorders.

Design of small molecule inhibitors of acetyl-CoA carboxylase 1 and 2 showing reduction of hepatic malonyl-CoA levels in vivo in obese Zucker rats

Bengtsson, Christoffer,Blaho, Stefan,Saitton, David Blomberg,Brickmann, Kay,Broddefalk, Johan,Davidsson, ?jvind,Drmota, Tomas,Folmer, Rutger,Hallberg, Kenth,Hallén, Stefan,Hovland, Ragnar,Isin, Emre,Johannesson, Petra,Kull, Bengt,Larsson, Lars-Olof,L?fgren, Lars,Nilsson, Kristina E.,Noeske, Tobias,Oakes, Nick,Plowright, Alleyn T.,Schnecke, Volker,Sthlberg, Pernilla,S?rme, Pernilla,Wan, Hong,Wellner, Eric,?ster, Linda

supporting information; experimental part, p. 3039 - 3053 (2011/06/27)

Inhibition of acetyl-CoA carboxylases has the potential for modulating long chain fatty acid biosynthesis and mitochondrial fatty acid oxidation. Hybridization of weak inhibitors of ACC2 provided a novel, moderately potent but lipophilic series. Optimization led to compounds 33 and 37, which exhibit potent inhibition of human ACC2, 10-fold selectivity over inhibition of human ACC1, good physical and in vitro ADME properties and good bioavailability. X-ray crystallography has shown this series binding in the CT-domain of ACC2 and revealed two key hydrogen bonding interactions. Both 33 and 37 lower levels of hepatic malonyl-CoA in vivo in obese Zucker rats.

Pyrrolopyrimidines as therapeutic agents

-

, (2008/06/13)

Chemical compounds having structural formula I and physiologically acceptable salts and metabolites thereof, are inhibitors of serine/threonine and tyrosine kinase activity. Several of the kinases, whose activity is inhibited by these chemical compounds, are involved in immunologic, hyperproliferative, or angiogenic processes. Thus, these chemical compounds can ameliorate disease states where angiogenesis or endothelial cell hyperproliferation is a factor. These compounds can be used to treat cancer and hyper proliferative disorders, rheumatiod arthritis, disorders of the immune system, trasplant refections and imflammatory disorders.

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