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VX-222_1026785-59-0_产品详情
1026785-59-0
  • names:

    VX-222

  • CAS号:

    1026785-59-0

    MDL Number: MFCD18089858
  • MF(分子式): C25H35NO4S MW(分子量): 445.615
  • EINECS: Reaxys Number:
  • Pubchem ID:24798764 Brand:BIOFOUNT
VX-222
VX-222(1026785-59-0)是噻吩羧酸。
货品编码 规格 纯度 价格 (¥) 现价(¥) 特价(¥) 库存描述 数量 总计 (¥)
HCC352982-1mg 1mg 97% ¥ 798.00 ¥ 798.00 4-7周
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中文别名 VX-222(1026785-59-0),VX222,VX 222
英文别名 VX-222(1026785-59-0),VX222,VX 222,Lomibuvir
CAS号 1026785-59-0
Inchi InChI=1S/C25H35NO4S/c1-16-5-7-17(8-6-16)23(28)26(18-9-11-19(27)12-10-18)21-15-20(13-14-25(2,3)4)31-22(21)24(29)30/h15-19,27H,5-12H2,1-4H3,(H,29,30)/t16-,17-,18-,19+
InchiKey WPMJNLCLKAKMLA-UGLKCIBTSA-N
分子式 Formula C25H35NO4S
分子量 Molecular Weight 445.615
溶解度Solubility 生物体外In Vitro:DMSO溶解度≥ 32 mg/mL(71.81 mM)*"≥" means soluble可溶, but saturation unknown溶解度未知.
性状 No data available
储藏条件 Storage conditions storage at -4℃ (1-2weeks), longer storage period at -20℃ (1-2years)
实验注意事项:
1.实验前需戴好防护眼镜,穿戴防护服和口罩,佩戴手套,避免与皮肤接触。
2.实验过程中如遇到有毒或者刺激性物质及有害物质产生,必要时实验操作需要手套箱内完成以免对实验人员造成伤害
3.实验后产生的废弃物需分类存储,并交于专业生物废气物处理公司处理,以免造成环境污染Experimental considerations:
1. Wear protective glasses, protective clothing and masks, gloves, and avoid contact with the skin during the experiment.
2. The waste generated after the experiment needs to be stored separately, and handed over to a professional biological waste gas treatment company to avoid environmental pollution.
Tag:VX-222蒸汽压,VX-222合成,VX-222标准,VX-222应用,VX-222合成,VX-222沸点,VX-222闪点,VX-222用途,VX-222溶解度,VX-222价格,VX-222作用,VX-222结构式,VX-222用处
产品说明 VX-222(1026785-59-0)是噻吩羧酸,VX-222溶解度,VX-222MSDS详见主页
IntroductionVX-222(1026785-59-0) can be used as a reference substance for drug impurities and reagents,only for research.
Application1
Application2
Application3
警示图
危险性 warning
危险性警示 Not available
安全声明 H303+H313+H333
安全防护 P264+P280+P305+P351+P338+P337+P313
备注 实验过程中防止吸入、食入,做好安全防护
Evolution of HCV NS5B Non-nucleoside Inhibitors HCV: The Journey from Discovery to a Cure 2019
What Are the Promising New Therapies in the Field of Chronic Hepatitis C After the First-Generation Direct-Acting Antivirals? Current Gastroenterology Reports 2012 23250703
Hepatitis C Virus-Specific Directly Acting Antiviral Drugs Hepatitis C Virus: From Molecular Virology to Antiviral Therapy 2013 23463206
HCV non-structural protein 5B (NS5B) Science-Business eXchange 2008
Development of a sensitive RT-PCR method for amplifying and sequencing near full-length HCV genotype 1 RNA from patient samples Virology Journal 2013 23402332
1.Biochemical study of the comparative inhibition of hepatitis C virus RNA polymerase by VX-222 and filibuvir/PMID 22143520; Antimicrobial agents and chemotherapy 2012 Feb; 56(2):830-7/Name matches: filibuvir vx-222
Abstract:
Filibuvir and VX-222 are nonnucleoside inhibitors (NNIs) that bind to the thumb II allosteric pocket of the hepatitis C virus (HCV) RNA-dependent RNA polymerase. Both compounds have shown significant promise in clinical trials and, therefore, it is relevant to better understand their mechanisms of inhibition. In our study, filibuvir and VX-222 inhibited the 1b/Con1 HCV subgenomic replicon, with 50% effective concentrations (EC(50)s) of 70 nM and 5 nM, respectively. Using several RNA templates in biochemical assays, we found that both compounds preferentially inhibited primer-dependent RNA synthesis but had either no or only modest effects on de novo-initiated RNA synthesis. Filibuvir and VX-222 bind to the HCV polymerase with dissociation constants of 29 and 17 nM, respectively. Three potential resistance mutations in the thumb II pocket were analyzed for effects on inhibition by the two compounds. The M423T substitution in the RNA polymerase was at least 100-fold more resistant to filibuvir in the subgenomic replicon and in the enzymatic assays. This resistance was the result of a 250-fold loss in the binding affinity (K(d)) of the mutated enzyme to filibuvir. In contrast, the inhibitory activity of VX-222 was only modestly affected by the M423T substitution but more significantly affected by an I482L substitution.
2.Biophysical Mode-of-Action and Selectivity Analysis of Allosteric Inhibitors of Hepatitis C Virus (HCV) Polymerase/PMID 28621755; Viruses 2017 06; 9(6):/Name matches: filibuvir lomibuvir
Abstract:
Allosteric inhibitors of hepatitis C virus (HCV) non-structural protein 5B (NS5B) polymerase are effective for treatment of genotype 1, although their mode of action and potential to inhibit other isolates and genotypes are not well established. We have used biophysical techniques and a novel biosensor-based real-time polymerase assay to investigate the mode-of-action and selectivity of four inhibitors against enzyme from genotypes 1b (BK and Con1) and 3a. Two thumb inhibitors (lomibuvir and filibuvir) interacted with all three NS5B variants, although the affinities for the 3a enzyme were low. Of the two tested palm inhibitors (dasabuvir and nesbuvir), only dasabuvir interacted with the 1b variant, and nesbuvir interacted with NS5B 3a. Lomibuvir, filibuvir and dasabuvir stabilized the structure of the two 1b variants, but not the 3a enzyme. The thumb compounds interfered with the interaction between the enzyme and RNA and blocked the transition from initiation to elongation. The two allosteric inhibitor types have different inhibition mechanisms. Sequence and structure analysis revealed differences in the binding sites for 1b and 3a variants, explaining the poor effect against genotype 3a NS5B. The indirect mode-of-action needs to be considered when designing allosteric compounds. The current approach provides an efficient strategy for identifying and optimizing allosteric inhibitors targeting HCV genotype 3a.
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