CAS: 17270-12-1; 4'-Hydroxy-N-Desmethyldiazepam

该化合物是属于苯并二氮二氮基类的化学化合物.该物质具有苯并二氮基核心结构,其特点是一个诱导苯和二氮苯基环,其特征有助于其潜在的药用特性.但7位置的氯原子和4-氢氧基苯组在5位置的存在表明它可能表现出独特的生物活动,可能影响其与...

结构式图片

MSDS等安全信息

    上下游产品

    去甲西泮 Desmethyldiazepam 1088-11-5
    2-Bromo-4'-Chloro-2'-(4-Hydroxybenzoyl)Acetanilide 67445-86-7

    合成工艺路线路线简述

    • 合成目标产物 2H-1,4-Benzodiazepin-2-One, 7-Chloro-1,3-Dihydro-5-(4-Hydroxyphenyl)- 主要起始原料 2-Bromo-N-[4-Chloro-2-(4-Hydroxybenzoyl)Phenyl]Acetamide
    • (文献来源)合成步骤主要原料 2-Bromo-N-[4-Chloro-2-(4-Hydroxybenzoyl)Phenyl]Acetamide
    📜去甲西泮置于mouse Liver Microsomes,还原型辅酶ii(Nadph)四钠盐,Magnesium Chloride体系中,用 水 用作溶剂,化学反应 0.07H,反应生成7-氯-1,3-二氢-5-(4-羟基苯基)-2H-1,4-苯并二氮杂卓-2-酮
    参考文献:Concentration-Dependent Metabolism Of Diazepam In Mouse Liver
    标题:Concentration-Dependent Metabolism Of Diazepam In Mouse Liver
    摘要:Previous Mouse Liver Studies With Diazepam (Dz),N-Desmethyldiazepam (Nz),And Temazepam (Tz) Confirmed That Under First-Order Conditions,Dz Formed Nz And Tz In Parallel. Oxazepam (Oz) Was Generated Via Nz And Not Tz Despite That Performed Nz And Tz Were Both Capable Of Forming Oz. In The Present Studies,The Concentration-Dependent Sequential Metabolism Of Dz Was Studied In Perfused Mouse Livers And Microsomes,With The Aim Of Distinguishing The Relative Importance Of Nz And Tz As Precursors Of Oz. In Microsomal Studies,The K(M)S And V(Max)S,Corrected For Binding To Microsomal Proteins,Were 34 Mu M And 3.6 Nmole/min Per Mg And 239 Mu M And 18 Nmole/min Per Mg,Respectively,For N-Demethylation And C-3-Hydroxylation Of Dz. The K(M)S And V(Max)S For N-Demethylation And C-3-Hydroxylation Of Tz And Nz,Respectively,To Form Oz,Were 58 Mu M And 2.5 Nmole/min Per Mg And 311 Mu M And 2 Nmole/min Per Mg,Respectively. The Constants Suggest That At Low Dz Concentrations,Nz Formation Predominates And Is A Major Source Of Oz,Whereas At Higher,Dz Concentrations,Tz Is The Important Source Of Oz. In Livers Perfused Will Dz At Input Concentrations Of 13 To 35 Mu M,The Extraction Ratio Of Dz (E{dz}) Decreased From 0.83 To 0.60. Nz Was The Major Metabolite Formed Although Its Appearance Was Less Than Proportionate With Increasing Dz Input Concentration. By Contrast,The Formation Of Tz Increased Disproportionately With Increasing Dz Concentration,Whereas That For Oz Decreased And Paralleled The Behavior Of Nz. Computer Simulations Based On A Tubular Flow Model And The In Vitro Enzymatic Parameters Provided A Poor In Vitro-Organ Correlation. The E{dz},Appearance Rates Of The Metabolites,And Tire Extraction Ratio Of Formed Nz (E{nz,Dz}) Were Poorly Predicted; Tz Was Incorrectly Identified As The Major Precursor Of Oz. Simulations With Optimized Parameters Improved The Correlations And Identified Nz As The Major Contributor Of Oz. Saturation Of Dz N-Demethylation At Higher Dz Concentrations Increased The Role Of Tz In The Formation Of Oz. The Poor Aqueous Solubility (Limiting The Concentration Range Of Substrates Used In Vitro),Avid Tissue Binding Mid The Coupling Of Enzymatic Reactions In Liver Favoring Sequential Metabolism,Are Possible Explanations For The Poor In Vitro-Organ Correlation. This Work Emphasizes Tire Complexity Of Tire Hepatic Intracellular Milieu For Drug Metabolism And The Need For Additional Modeling Efforts To Adequately Describe Metabolite Kinetics.
    Doi:10.1007/bf02354284

    海关参考信息

    供应商参考报价(招募中)

    品牌试剂参考报价(招募中)

    📌 第三方产品分析报告

    ✅ COA系统入驻 | 共享模式
    📝 需求与反馈
    尽可能描述清楚需求与问题信息
    ×

    通知