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18106-49-5

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18106-49-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 18106-49-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,8,1,0 and 6 respectively; the second part has 2 digits, 4 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 18106-49:
(7*1)+(6*8)+(5*1)+(4*0)+(3*6)+(2*4)+(1*9)=95
95 % 10 = 5
So 18106-49-5 is a valid CAS Registry Number.

18106-49-5Downstream Products

18106-49-5Relevant academic research and scientific papers

Design, synthesis and identification of silicon-containing HCV NS5A inhibitors with pan-genotype activity

Liu, Baomin,Gai, Kuo,Qin, Hui,Liu, Xushi,Cao, Yuan,Lu, Qin,Lu, Dandan,Chen, Deyang,Shen, Hengqiao,Song, Wei,Zhang, Yang,Wang, Xiaojin,Xu, Hongjiang,Zhang, Yinsheng

, p. 95 - 105 (2018)

Modification of a HCV NS5A inhibitor, ombitasvir, led to the identification of 10d with improved pan-genotype NS5A inhibition and better pharmacokinetic properties. The key structural changes to ombitasvir include bioisosteric replacement of carbon with silicon atom. Compared with ombitasvir, the activity of anti-HCV genotypes (GT 1 to 6) of 10d is increased to some extent, especially the inhibitory activity against genotype 3a and 6a is increased by more than seven times, and the dog's in vivo pharmacokinetics properties were also superior to ombitasvir. Further drug evaluation showed that 10d was similar to ombitasvir on plasma protein binding and liver distribution profiles, with no cytotoxicity and no inhibitory effect on both CYP 450 and hERG ligand binding. However, permeability assay results indicated that 10d was not the substrate of P-gp or BCRP transporter, which is different from that of ombitasvir. The results of a 14-day repeat-dose toxicity study identified no toxicity with 10d. Our findings in preclinical tests suggest that the silicon-containing compound 10d could be worthy of continued study as a potential drug candidate.

Direct and selective arylation of tertiary silanes with rhodium catalyst

Yamanoi, Yoshinori,Nishihara, Hiroshi

, p. 6671 - 6678 (2008/12/22)

(Chemical Equation Presented) We have developed a convenient and efficient approach to the arylation of tertiary silanes under mild conditions. A variety of arylsilanes were synthesized in a one-step process with good to excellent yields in the presence of a rhodium catalyst with a base. The reaction was highly solvent dependent, and amides were the most effective of the various solvents used. This common catalyst system is highly tolerant of the various sensitive functional groups on the substrates, which might be difficult to extract by other methods. The rhodium-promoted silylation of aryl halides with electron-donating groups occurred more efficiently than the silylation of aryl halides substituted with electron-withdrawing groups. Heteroaromatic halides were also found to be readily silylated with tertiary silanes. The successful application of this reaction to the synthesis of a TAC-101 analogue, which is a trialkylsilyl-containing synthetic retinoid benzoic acid derivative with selective binding affinity for retinoic acid receptor-α, is also described.

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