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1.
西酞普兰(citalopram,CIT)适用于抑郁性精神障碍的急性和常规治疗。S-( )-CIT对5-羟色胺有较好的抑制作用,R-(-)-CIT疗效较差[1],故要求以S-( )-CIT单体形式上市。化合物(-)-4-[4-(二甲氨基)-1-(4′-氟苯基)-1-羟丁基]-3-羟甲基-苯氰氢溴盐((-)-CITI)是S-( )-CIT合成中最重要的中间体,手性分离出(-)-CITI后通过环合即可制备S-( )-CIT单体。欲控制S-( )-CIT的光学纯度,必须先控制R-(-)-CITI的纯度。因此,建立(±)-CITI的手性分离方法及异构体的定量方法十分必要。本文在文献[2]的基础上拆分了CITI对映体,定量测定了R-(-)…  相似文献   

2.
利用手性试剂磺化β-环糊精(S-β-CD),建立了对药物西酞普兰的毛细管电泳(CE)拆分方法。实验考察了背景电解液(BGE)组成及浓度、pH值、手性拆分试剂种类及其浓度对拆分结果的影响。优化后的分离条件为:BGE采用20 mmol/L柠檬酸+0.04%S-β-CD(pH=5.50),采用压力进样0.5psi、5s,分离电压为+20kV,紫外检测波长为205nm。结果表明:CE对西酞普兰的两个对映体的检出限均为90μg/L,迁移时间和峰面积的相对标准偏差(RSD)都低于3.0%(n=5),在0.05~100mg/L范围内有良好的线性关系,其线性相关系数(R2)都大于0.998。该方法可成功用于商品药物来士普的质量检测,回收率在103%~108%之间。  相似文献   

3.
糊精介质中西酞普兰的毛细管电泳手性分离与定量测定   总被引:1,自引:0,他引:1  
以糊精作为毛细管电泳手性分离选择剂,对药物西酞普兰对映体的分离进行研究。考察了糊精浓度、缓冲液体系离子强度和pH及分离电压对对映体分离的影响。在糊精7.0%(m/V)、磷酸盐80mmol/L(pH5.4)的运行缓冲液中,分离电压20kV时,西酞普兰对映体分离度达3.9,同时对拆分机理进行了初步探讨。测定S-(+)-西酞普兰原料药中R-(-)异构体的含量,在0.05~4.00g/L浓度范围内线性关系良好,R-(-).西酞普兰与S-(+)-西酞普兰的检出限分别为25.3mg/L和27.3mg/L,线性相关系数均在0.9970以上;RSD低于3.2%。  相似文献   

4.
张蓉  肖尚友  徐红梅  黄锐  夏之宁 《分析化学》2006,34(10):1384-1388
研究了以麦芽糖为选择剂的毛细管电泳手性拆分方法。以抗抑郁药物西酞普兰对映体的分离和定量测定为实例,考察了分离条件,在40%(m/m)麦芽糖、8.0×10-2mol/L磷酸盐运行缓冲液(pH5.0)中,分离电压20kV时,西酞普兰对映体分离度达2.3。测定S-( )-西酞普兰中R-(-)异构体的含量,在0.05~4.00g/L浓度范围内线性关系良好。R-(-)-西酞普兰与S-( )-西酞普兰的检出限分别为0.0453g/L和0·0473g/L,线性相关系数均>0.9978。以荧光光谱法对西酞普兰与麦芽糖的相互作用进行了考察,并较系统地对拆分机理进行了研究。证明麦芽糖的手性识别能力与其浓度有关,当麦芽糖达到一定浓度后将形成聚集体,而麦芽糖的拆分作用就主要体现在其聚集体疏水空腔的立体作用上。  相似文献   

5.
A simple liquid chromatographic method was developed for the separation and quantification of voriconazole and its enantiomer in drug substance. The separation was achieved on Chiral cel-OD (250 mm × 4.6 mm × 10 μm) using mobile phase consisting of n-hexane and ethanol in the ratio 9:1 (v/v) with a flow rate of 1.0 mL min−1, at 27 °C column temperature and detection at 254 nm with an injection volume of 20 μL. Ethanol was used as diluent. The method is capable of detecting the (2S, 3R) enantiomer down to 0.0075% and can quantify down to 0.021% with respect to sample concentration. The method is rapid and the resolution achieved was about 3.0. This method can be employed for the quantification of (2S, 3R) enantiomer in voriconazole drug substance.  相似文献   

6.
采用直链淀粉Chiralpak AD-H与纤维素Chiralcel OZ-H两种手性柱建立了13种黄酮类化合物对映体的正相高效液相色谱拆分方法。考察了流动相比例、三氟乙酸(TFA)的添加及醇的种类对手性识别的影响。以正己烷-异丙醇(乙醇)-三氟乙酸(75∶25∶0.1)为流动相,于流速为0.5 mL.min-1,柱温为35℃,检测波长为290 nm条件下,在直链淀粉Chiralpak AD-H与纤维素Chiralcel OZ-H两种手性柱上成功拆分了13种黄酮类化合物对映体。研究表明,直链淀粉Chiralpak AD-H与纤维素Chiralcel OZ-H两种手性柱在拆分手性黄酮类化合物及结构相似物上具有极大的潜力。  相似文献   

7.
采用纤维素-三(3,5-二甲基苯基氨基甲酸酯)手性固定相(Chiralcel OD)和纤维素-三(4-甲基苯基甲酸酯)手性固定相(Chiralcel OJ),在正相高效液相(N-HPLC)模式下,基线拆分了两个系列共13个结构类似的三唑类手性化合物,结果发现,当手性固定相(Chiral Stationary Phase,CSP)可以与溶质分子之间形成较强氢键时,Chiralcel OD的手性识别能力明显优于Chiraleel OJ,当手性固定相(CSP)与溶质分子之间不能或难于形成氢键时,两种CSP的手性拆分能力相似;提高流动相中极性改性剂的极性有利于手性化合物的拆分。在反相高效液相(R-HPLC)模式下,共基线拆分了8个三唑类手性化合物,实验发现,OJ-CSP的手性拆分能力明显优于OD-CSP.它们对对映体分子的选择性主要受CSP与溶质分子间的π-π相互作用的影响。  相似文献   

8.
通过在流动相中使用酸性添加剂,在由(S)-N-(2-萘基)丙氨酸衍生而成的手性固定相上直接分离氨基酸的3,5-二硝基苯甲酰衍生物,获得非常理想的分离效果。并在此工作的基础上对手性识别机理进行了初步探讨。另外,通过在不同构型的手性固定相上分离相同的溶质,证明在结构相同、构型相反的手性固定相上,对映体的出峰顺序是相反的。  相似文献   

9.
毛细管电泳拆分苯磺酸氨氯地平及机理的探讨   总被引:7,自引:0,他引:7  
采用羟丙基-β-环糊精(HP-β—CD)作为手性选择试剂对外消旋的苯磺酸氨氯地平进行了拆分,研究了环糊精种类,浓度,缓冲液的pH值以及添加剂对分离的影响,结果表明以羟丙基-β-环糊精为手性选择剂,短链的阳离子表面活性剂四乙基氯化铵为电渗流改性剂可以使苯磺酸氨氯地平实现基线分离,对拆分的机理进行了探讨。  相似文献   

10.

The HPLC enantiomeric separation of seven 4-iminoflavans was successfully accomplished in the normal phase mode using six polysaccharide-based chiral stationary phases namely, Chiralcel®OD-H, Chiralcel®OD, Chiralcel®OJ, Chiralpak®AD, Chiralpak®IA and Chiralpak®IB under normal and polar organic phase modes. The resolution depended on nature and concentration of alcoholic modifier. The results demonstrate clearly that the chromatographic system based on the coated and immobilized type Chiralpak®IB and Chiralcel®OD-H CSPs provide a powerful analytical tool for enantiomeric separation of all the 4-iminoflavans used in this study.

  相似文献   

11.
The HPLC enantiomeric separation of seven 4-iminoflavans was successfully accomplished in the normal phase mode using six polysaccharide-based chiral stationary phases namely, Chiralcel®OD-H, Chiralcel®OD, Chiralcel®OJ, Chiralpak®AD, Chiralpak®IA and Chiralpak®IB under normal and polar organic phase modes. The resolution depended on nature and concentration of alcoholic modifier. The results demonstrate clearly that the chromatographic system based on the coated and immobilized type Chiralpak®IB and Chiralcel®OD-H CSPs provide a powerful analytical tool for enantiomeric separation of all the 4-iminoflavans used in this study.  相似文献   

12.
硅氟唑对映体在直链淀粉手性固定相HPLC上的拆分   总被引:2,自引:0,他引:2  
硅氟唑;三[(s)-α-甲基苯基氨基甲酸]直链淀粉酯;手性固定相;HPLC;手性拆分  相似文献   

13.
The direct enantioseparation of duloxetine and its R-enantiomer was achieved by HPLC using hydroxypropyl-β-cyclodextrin (HP-β-CD) as a chiral selector and a vancomycin chiral stationary phase (Chirobiotic V). Operational parameters, such as the concentration of HP-β-CD, buffer pH, organic modifiers, temperature and flow rate, were varied in order to achieve the desired retention time and resolution. These two enantioseparation methods developed gave a baseline resolution of the enantiomers. Finally, the HPLC-CSP method was selected to determine the enantiomeric purity of duloxetine drug substance due to its much shorter analysis time and better resolution. The limit of detection of this method was 0.06 μg mL−1.  相似文献   

14.
本文研究了低温条件下温度对高效液相色谱手性拆分的影响。以消旋安息香为样品,以正己烷-乙醇(70∶30,V/V)为流动相,分别用粒径为3μm、5μm、10μm的Chiralcel OD手性柱,分别在-40℃、-25℃、-10℃、5℃、20℃、35℃柱温条件下,测定了不同流速下安息香手性拆分的保留时间和柱效。根据van Deemter方程对每个温度条件下的H-u关系图进行非线性拟合,得到A、B和C三个系数与温度的关系曲线。根据手性拆分的热力学关系式,在-40℃到35℃柱温范围内,考察各色谱柱对安息香分离的lnk2′-1/T、lnα-1/T的关系均为线性。结果显示,在整个实验温度范围内,安息香在Chiralcel OD手性柱的手性拆分机理不变,降低温度能提高手性分离的选择性,但是会降低通常流速下的柱效,从而影响分离度。随着温度的降低,各色谱柱得到的van Deemter方程中系数A基本不变,系数C随着温度降低逐渐升高。  相似文献   

15.
This review draws attention to the use of chiral monolithic silica HPLC columns for the enantiomeric separation and determination of chiral compounds. Properties and advantages of monolithic silica HPLC columns are also highlighted in comparison to conventional particle-packed, fused-core, and sub-2-µm HPLC columns. Nano-LC capillary monolithic silica columns as well as polymeric-based and hybrid-based monolithic columns are also demonstrated to show good enantioresolution abilities. Methods for introducing the chiral selector into the monolithic silica column in the form of mobile phase additive, by encapsulation and surface coating, or by covalent functionalization are described. The application of molecular modeling methods to elucidate the selector–selectand interaction is discussed. An application for enantiomeric impurity determination is also considered.  相似文献   

16.
A simple and accurate chiral liquid chromatographic method was developed for the enantiomeric purity determination of d-nateglinide and quantitative determination of l-nateglinide in bulk drug samples. Good resolution (R s  > 6.0) between d-enantiomer and l-enantiomer of nateglinide were achieved with Chiralpak AD-H (250 × 4.6 mm, 5 μm particle size) column using hexane and ethanol (90:10 v/v) as mobile phase at 25 °C temperature. Flow rate was kept as 1.0 mL min?1 and elution was monitored at 210 nm. The effects of the mobile phase composition, the flow rate and the temperature on the chromatographic separation were investigated. Developed method is capable to detect (LOD) and quantitate (LOQ) l-nateglinide to the levels of 0.3 and 1.0 μg mL?1 respectively, for 10 μL injection volume. The percentage RSD of the peak area of six replicate injections of l-nateglinide at LOQ concentration was 5.2. The percentage recoveries of l-nateglinide from d-nateglinide ranged from 97.9 to 99.7. The test solution and mobile phase was found to be stable up to 24 h after preparation. The developed method was validated with respect to LOD, LOQ, precision, linearity, accuracy, robustness and ruggedness.  相似文献   

17.
DNA quantification has made its mark in pharmaceutical analysis and the life sciences. In particular, in the quality control of nucleic acid drugs and the detection and quantification of genetically modified organisms, evaluation of the DNA degradation rate has become imperative. In this study, by using high-performance liquid chromatography with an anion-exchange column, we established a method for the separation and quantification of DNA fragments in mixed DNA samples. By using a NaCl concentration gradient, DNA fragments in mixed DNA sample were separated well. A calibration curve from 0.05 to 12.4 ng μL?1 was obtained with high linearity and the correlation coefficient was 0.9999. The limit of detection was 0.02 ng μL?1 and the limit of quantification was 0.06 ng μL?1 for S/N = 3 or S/N = 10, respectively. The relative standard deviation was less than 2 % in the measurement of peak area repeatability. The recovery of approximately 1 ng μL?1 of a specific DNA spiked in a mixed DNA sample was 99.9 ± 3.6 %. The method was able to measure the degradation rate of 600 bp DNA with a variation of approximately 1 %.  相似文献   

18.
《Analytical letters》2012,45(16):2344-2358
Cyclodextrins (CDs) and cyclofructans (CFs) are chiral cyclic oligosaccharides. While β-CD is composed of seven glucopyranose units forming rigid cavity, hydrophobic inside, CF6 and CF7, contain six and seven fructofuranose units, respectively, creating a polar crown ether core. These basic structures can be easily derivatized to form even more potential chiral selectors that enable enantioselective separation of various chiral compounds. Chiral stationary phases (CSPs) based on CFs and CDs that were derivatized with the same derivatization group, either dimethylphenyl or R-naphthylethyl, were compared. A set of analytes with different interaction possibilities was used for characterization of retention and enantioseparation abilities of these CSPs in normal separation mode of HPLC. The results showed that both cyclic oligosaccharide structure and derivatization group influenced the retention/separation behavior of analytes. Complementary enantioseparations were obtained for some analytes.  相似文献   

19.
《Analytical letters》2012,45(17):3221-3231
Abstract

A simple, rapid, and validated method for separation and determination of terbutaline enantiomers was developed. Terbutaline was separated and determined on a Vancomycin Chirobiotic V column (250 × 4.6 mm), using a mixture of methanol, acetic acid, and triethylamine (100:0.1:0.1% v/v/v) as a mobile phase at 20°C and at a flow rate of 1 ml/min. The UV detector was set to 276 nm. Acetyl salicylic acid (aspirin) was used as an internal standard. The applied high-performance liquid chromatography (HPLC) method allowed separation and quantification of terbutaline enantiomers with good linearity (r > 0.999) in the studied range. The relative standard deviations (RSD) were 1.10 and 1.32% for the terbutaline enantiomers with accuracy of 99.80 and 99.55. The limit of detection and limit of quantification of terbutaline enantiomers were found to be 0.05 and 0.10 µg · ml?1, respectively. The method was validated through the parameters of linearity, accuracy, precision, and robustness. The HPLC method was applied for the quantitative determination of terbutaline in pharmaceutical formulations.  相似文献   

20.
He  Xiaomei  Lin  Rui  He  Hua  Sun  Meiling  Xiao  Deli 《Chromatographia》2012,75(23):1355-1363
Purpose

In this study, direct separation of ketoprofen enantiomers was performed on a Chirobiotic T column.

Methods

The effects of the type and amount of the organic modifier, buffer concentration, pH value, temperature and flow rate on retention and selectivity were investigated. Experiments were carried out in the temperature range of 20–40 °C to study the effects of temperature. Thermodynamic parameters were calculated from plots of ln k or ln α versus 1/T. Molecular dynamics simulation was done to investigate interactions between ketoprofen enantiomers and the chiral selector—teicoplanin.

Results

It was observed that pH and flow rate had a large influence on resolution. Baseline separation of ketoprofen enantiomers could be achieved with low amounts of methanol, high temperature and high buffer concentrations.

Conclusions

Results from a thermodynamic study and molecular dynamics simulation show that steric hindrance effect, π–π complexation, hydrogen bonding and electrostatic forces are the main driving forces which cause chiral recognition of ketoprofen enantiomers.

  相似文献   

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