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1.
本文利用环糊精修饰毛细管胶束电动色谱法(CD-MEKC)同时分离检测橙皮苷和柚皮苷对映体。实验优化的条件为:以60mmol/L胆酸钠(SC)+30mmol/L羟丙基-β-环糊精(HP-β-CD)+20 mmol/L NaH2PO4-100 mmol/L NaOH(pH=9.0,97%(V/V))+3%(V/V)甲醇为运行缓冲液,分离电压25kV,紫外检测波长214nm。在上述最佳条件下,橙皮苷和柚皮苷对映体在9min内得到完全分离,橙皮苷对映体的检测限(S/N=3)分别为0.13μg/mL和0.25μg/mL;柚皮苷对映体的检测限(S/N=3)分别为0.14μg/mL和0.07μg/mL。将所建立的方法用于胃苏颗粒制剂中橙皮苷和柚皮苷的对映体测定,回收率在86.0%~113.2%之间。  相似文献   

2.
手性荧光衍生化反相高效液相法分离肾上腺素对映体   总被引:3,自引:1,他引:3  
 以R (- ) /S (+) 4 (N ,N dimethylaminosulfonyl) 7 (3 iso thiocyanatopyrrolidino) 2 ,1,3 benzoxadiazole(DBD PyNCS)为手性荧光衍生化试剂 ,用反相高效液相法 (RP HPLC)对 DL 肾上腺素对映体进行分离。衍生化反应是在含有 7%吡啶的溶剂中 ,6 5℃温度条件下反应 35min ,生成具有荧光特性的肾上腺素非对映体衍生物(λex=4 6 0nm ,λem=5 5 0nm)。生成的非对映体衍生物在流动相为乙腈 水 (体积比为 2 8∶72 ) ,流速为 1 0mL/min时 ,在DiamonsilTMC18柱 (15 0mm× 4 6mmi d ,5 μm)上分离度可达 2 6。  相似文献   

3.
运用毛细管电泳-电导检测方法对4种四环素衍生物——土霉素(OTC)、金霉素(CTC)、强力霉素(DOC)和四环素(TC)的分离进行了研究。在3.5mmol/L三羟基氨基甲烷(Tris)-7.5mmol/L柠檬酸(Cit)pH4.0的运行缓冲液中,4种四环素衍生物在15min内获得完全分离。四环素衍生物的线性范围分别为5.0-500μg/mL OTC,3.6-420μg/mL CTC,4.5-470μg/mL DOC和2.5-400μg/mL TC。检测限(S/N=3)分别为OTC2.0μg/mL,CTC 1.8μg/mL,DOC2.5μg/mL和TC1.0μg/mL。采用本法对实际样品强力霉素片中强力霉素和土霉素片中土霉素进行测定,回收率分别为97.2%和96.4%。  相似文献   

4.
 运用正相高效液相色谱 手性配位基交换流动相法 ,通过流动相中添加L 脯氨酸、醋酸铜及三乙胺 ,对人血清中甲状腺素对映体 (D ,L T4)进行了测定。在所建立的色谱条件下 ,D ,L T4异构体得到基线分离。该法用于测定甲状腺机能亢进 (甲亢 )、甲状腺机能减退 (甲低 )患者血清中的D ,L T4的浓度 ,可为临床用药提供理论依据 ,对疾病的治疗起到了积极的作用。  相似文献   

5.
毛细管电泳手性分离-激光诱导荧光检测普萘洛尔对映体   总被引:7,自引:0,他引:7  
王伟  陈宇云  杨维平  章竹君 《分析化学》2005,33(8):1113-1115
用异硫氰酸荧光素衍生普萘洛尔,衍生产物用毛细管电泳分离,激光诱导荧光方法检测。在含有10mmol/L-βCD,50mmol/L硼砂(pH=9.0)的溶液中,普萘洛尔对映体得到了基线分离。本方法线性范围宽(R型:2.0×10-3~1mg/L),灵敏度高(检出限均为1.24μg/L),可用于活体中普萘洛尔对映体的药代动力学研究。  相似文献   

6.
混合萃取剂拆分氧氟沙星外消旋体   总被引:1,自引:0,他引:1  
将混合萃取剂技术应用于氧氟沙星外消旋体的萃取分离,主要研究了氧氟沙星对映体在水和有机溶剂两相中的萃取分配行为。研究结果表明:在L-(-)-对甲基二苯甲酰酒石酸(L-DTTA)的浓度为0.18mol/L,L-(-)-二苯甲酰酒石酸(L-DBTA)的浓度为0.12mol/L,氧氟沙星浓度为0.2mg/mL,萃取温度为25℃,pH为7.00时,L型对映体和D型对映体的分配系数分别达到10.2和4.20,手性选择性达到2.43。  相似文献   

7.
建立一种可用于定量的毛细管电泳法分离山莨菪碱对映体.系统研究了三种手性选择剂:羟丙基-β-环糊精(HP-β-CD),甲基-β-环糊精(Me-β-CD),羧甲基-β-环糊精(CM-β-CD)及其浓度、缓冲溶液浓度和pH对山莨菪碱拆分的影响.在110 mmol/L Tris-H3PO4缓冲液中加入20.0 mg/mL HP-β-CD和5.0 mg/mL CM-β-CD(pH 4.0)条件下,山莨菪碱的4个对映体达到基线分离.血清样品通过崮相萃取预处理和浓缩,对映体的固相萃取回收率在82.9%~90.7%,相对标准偏差RSD%均小于7%.山莨菪碱的4个对映体血标准溶液浓度与电泳峰面积在77.86~0.39μg/mL范围内呈良好的线,r≥0.999,检出限(S/N=3)为0.08 μg/mL.平均日内和日间精密度(RSD%)分别小于4.2%和6.5%,方法回收率为95.1%和105%.建立的方法准确、可靠,应用于监测兔连续3 d口服75 mg山莨菪碱后血清中山莨菪碱的血药浓度,结果满意.  相似文献   

8.
用羟丙基-β-环糊精(HP-β-CD)作为手性流动相添加剂,在UFCN(220×4.6 mm×5μm)氰基柱上通过反相高效液相色谱实现了4-氯扁桃酸(4-Cl MA)对映体的拆分。考察了水相HP-β-CD浓度,NaH_2PO_4浓度,p H,流动相中甲醇的比例及柱温等因素对分离度的影响。确定的最优色谱条件为:水相(5 mmol/L HP-β-CD,8 mmol/L NaH_2PO_4,p H 2.8),V水相/V甲醇=95:5,柱温25℃,流速1 m L/min。此条件下4-Cl M A对映体的分离度可达1.80。同时在此色谱条件下考察了3-氯扁桃酸(3-Cl MA),2-氯扁桃酸(2-Cl MA)与扁桃酸(MA)对映体的色谱拆分结果。结果发现在此条件下,3-Cl M A对映体分离度为1.51,而2-Cl M A与M A完全没有分开。对方法进行了验证,(S),(R)-4-Cl MA两对映体低、中、高浓度日内和日间精密度的RSD均小于1.1%;(S),(R)-4-Cl M A两对映体回收率分别为101.0%和100.6%;(S),(R)-4-Cl M A两对映体检出限与定量限分别为0.028,0.030 mg/L与0.093,0.098 mg/L。  相似文献   

9.
固相萃取-毛细管电泳法测定兔血清中的山莨菪碱对映体   总被引:2,自引:0,他引:2  
建立一种可用于定量的毛细管电泳法分离山莨菪碱对映体. 系统研究了三种手性选择剂: 羟丙基-β-环糊精 (HP-β-CD), 甲基-β-环糊精 (Me-β-CD), 羧甲基-β-环糊精(CM-β-CD) 及其浓度、缓冲溶液浓度和 pH 对山莨菪碱拆分的影响. 在110 mmol/L Tris-H3PO4缓冲液中加入20.0 mg/mL HP-β-CD和5.0 mg/mL CM-β-CD (pH 4.0)条件下, 山莨菪碱的4个对映体达到基线分离. 血清样品通过固相萃取预处理和浓缩, 对映体的固相萃取回收率在82.9%~90.7%, 相对标准偏差RSD%均小于7 %. 山莨菪碱的4个对映体血标准溶液浓度与电泳峰面积在77.86~0.39 μg/mL范围内呈良好的线性, r≥0.999, 检出限(S/N=3)为0.08 μg/mL. 平均日间和日内精密度(RSD% )分别小于6.1% 和4.8%, 方法回收率为97.4% 和105.4%. 建立的方法准确、可靠, 应用于监测兔连续3 d口服75 mg 山莨菪碱后血清中山莨菪碱的血药浓度, 结果满意.  相似文献   

10.
手性衍生-高效液相色谱法拆分和定量测定茶氨酸对映体   总被引:1,自引:0,他引:1  
李银花  刘仲华  黄建安 《色谱》2007,25(5):719-722
建立了以1-氟-2,4-二硝基苯基-5-L-丙氨酰胺(FDAA)为手性衍生试剂、高效液相色谱拆分茶氨酸对映体的方法。采用的色谱条件为:Kromasil C18色谱柱;三乙胺-磷酸缓冲液和乙腈为流动相,梯度洗脱,流速1.0 mL/min;检测波长为340 nm;柱温为35 ℃。L-茶氨酸的进样量在1.732×10-3~2.077 μg范围内峰面积与进样量之间的线性关系良好,加标回收率为97.3%~102.0%,检测限为4.973×10-4 μg,定量限为1.223×10-3 μg。D-茶氨酸的进样量在1.696×10-3~2.044 μg范围内峰面积与进样量之间的线性关系良好,加标回收率为97.2%~103.2%,检测限为5.871×10-4 μg,定量限为1.236×10-3 μg。该方法灵敏度高,分析过程中不发生消旋化。  相似文献   

11.
The usefulness of R(-)-4-(3-isothiocyanatopyrrolidin-1-yl)-7-(N,N-dimethylaminosulfonyl)-2,1,3-benzoxadiazole [R(-)-DBD-PyNCS], a fluorescent chiral tagging reagent, for the determination of racemic amines and amino acids, was studied. The reagent reacted with beta-blockers selected as representative secondary amines to produce corresponding fluorescent diastereomers (excitation at 460 nm and emission at 550 nm). The yields of the derivatization reaction were dependent on the stereostructure arround the NH group in beta-blockers. The resulting diastereomers were completely separated with single chromatographic run using linear gradient elutions by reversed-phase chromatography. R(-)-DBD-PyNCS was also applied to the determination of DL-amino acid, considered to be one of the primary amines, in human urine and foodstuffs. DL-amino acids tested equally reacted with the reagent, and the thiocarbamoyl derivatives were separated with an ODS column. The epimerization during the derivatization reaction was negligible judging from the resolution of opposite diastereomers on the chromatogram. The occurence of D-amino acids (D-Ala, D-Ser, D-Asp and/or D-Glu) was identified in the samples tested. The structures and the purities were elucidated with on-line HPLC-MS. The chiral reagent possessing an isothiocyanate group (-NCS) in the structure seems to be applicable to continuous sequential analysis of peptides containing D-amino acids. The thiocarbamoyl derivatives obtained from the reaction with DL-amino acids were converted to thiohydantoins via thiazolinones in acidic medium. The thiohydantoins produced from acidic, basic, neutral, hydroxyl and aromatic amino acids were completely separated with isocratic elutions using acidic mobile phase containing 0.1% TFA. The separations were sufficient for the identification of DL-amino acid in peptide sequences. Although the epimerization during the conversion reaction to thiohydantoins was not avoidable, the descrimination of D- and L-configuration was demonstrated with some commercially available peptides such as beta-lipotropin and [D-Ala2]-deltorphin II. The Edman degaradation method using R(-)-DBD-PyNCS was also adopted to autoanlaysis by gas-phase sequencer. The separation and the detection (UV 254 nm) conditions of the derivatives were used without any change from those for the Edman degradation method using PITC as the tagging reagent. The three DL-amino acid residues (Tyr, Ala and Gly) in [L-Ala2]-leucine-enkephalin and [D-Ala2]-leucine-enkephalin were perfectly identidied with the autoanalysis.  相似文献   

12.
A sensitive and specific liquid chromatography-electrospray ionization-mass spectrometry (LC-ESI-MS) method for the separation and analysis of d- and l-thyroxine was developed using R(−)/S(+)-4-(3-isothiocyanatopyrrolidin-1-yl)-7-(N,N-dimethylaminosulfonyl-2,1,3-benzoxadiazole, [R(−)/S(+)-DBD-PyNCS] as a chiral derivatization reagents. The T4 derivatives with R(−)-DBD-PyNCS were efficiently separated on a reversed-phase column with water-acetonitrile containing 0.1% formic acid (41:59, v/v) as the eluent and analyzed using ESI-MS with negative selected ion monitoring (SIM) mode. The calibration curves of both the d-T4 and l-T4 were linear over the concentration range of 0.13-13 μg/ml. The detection limits (S/N = 3) were 28 ng/ml for d-T4 and 40 ng/ml for l-T4, respectively. The relative standard deviations (RSD, n = 5) were less than 3.6% at 1.3 μg/ml for both T4 enantiomers. The proposed method was applied to the determination of l-T4 enantiomer in a pharmaceutical formulation.  相似文献   

13.
A sensitive method for determination of higenamine enantiomers based on a derivatization reaction with a fluorescent chiral tagging reagent, R-(−)/S-(+)-4-(3-isothiocyanatopyrrolidin-1-yl)-7-(N,N-Dimethylaminosulfonyl)-2,1,3-benzoxadiazole[R-(−)/S-(+)-DBD-PyNCS] has been developed. The tagging reagent preferably reacts with higenamine enantiomers under mild reaction conditions (at 60 °C for 60 min) in the presence of 3% pyridine to produce the corresponding fluorescent diastereomers with an excitation maximum at 450 nm and an emission maximum at 550 nm. The derivatives of higenamine enantiomers were efficiently resolved on a ODS column by an isocratic elution with water–acetonitrile–methanol mobile phase containing 0.2% formic acid. The resolution (Rs) values of the corresponding higenamine diastereomers was 1.52. The calibration curves of both R-(+)/S-(−)-higenamine enantiomers were linear over the concentration range of 0.2–400 μg/mL. The limits of detection (S/N = 3) per injection were 20 ng/mL. The developed method was applied successfully to the determination of higenamine in embryo of Nelumbo nucifera, a Chinese herbal medicine.  相似文献   

14.
草甘膦的邻硝基苯磺酰氯柱前衍生高效液相色谱分析   总被引:2,自引:0,他引:2  
以邻硝基苯磺酰氯(NBSC)为衍生化试剂,建立了柱前衍生草甘膦的反相高效液相色谱紫外检测法,并对衍生化条件进行了优化.最佳衍生化条件为:衍生温度25℃,反应时间10 min,硼砂缓冲溶液浓度0.25 mol/L(pH 9.0),草甘膦与NBSC的摩尔比为1:5.HPLC分析条件为:采用Lichrospher C18柱,...  相似文献   

15.
采用自制电解池作为电化学衍生装置,建立了离子色谱一电化学衍生一荧光法测定饮料中的酪氨酸。在碱性淋洗液作用下,酪氨酸在阴离子交换柱上被分离,到达自制电解池的阳极室,在阳极上被氧化,氧化后的产物因具有较强的荧光而被荧光检测器检测。离子化试剂既可以做色谱分离所需的淋洗液,又可以作为电化学反应优良的支持电解液,因此,离子色谱和电化学衍生具有较好的兼容性。最佳的实验条件为:淋洗液NaOH(10mmol/L)+乙腈(ACN,1+9),流动相流速1.0mL/min,电解池电压1.0V,激发/发射波长320/420NM。在优化的实验条件下,酪氨酸的线性范围为0.01~10mg/L,检出限为1.2μg/L(信噪比S/N=3)。50μg/L的酪氨酸标准溶液进样7次,得到的色谱峰面积相对标准偏差为2.5%。方法具有快速,灵敏和选择性好的特点,并成功用于饮料中酪氨酸的测定。  相似文献   

16.
以2,6-二氟苯腈与吗啉反应制得2-氟-6-吗啉-苯腈(1);1与水合肼在N-甲基吡咯烷酮中通过环合反应制得3-氨基-4-吗啉-1H-吲唑(2);2与不同羧酸经缩合反应合成了8个新型吲唑类化合物(4a~4h),其结构经1H NMR,IR和HR-ESI-MS表征。抗肿瘤活性测试结果表明:3,4,5-三甲氧基-氮-(4-吗啉-1H吲唑-3-基)苯甲酰胺(4a)的抗肿瘤活性最好,对K-562,SMMC7721和T-47D肿瘤细胞有明显抑制作用,IC50分别为0.056μmol·L-1,0.062μmol·L-1和0.078μmol·L-1。  相似文献   

17.
用异丙醇-硫酸铵双水相体系,利用维生素B12的疏水性和硫酸铵的盐析作用,在高浓度无机Co2+共存的情况下可有效地实现维生素B12的选择性分离富集.对双水相体系的组成、萃取时间和pH等实验参数进行了优化,在2.0mL样品、1.1g硫酸铵和200μL异丙醇组成的双水相体系中,对50μgL-1的维生素B12溶液经过萃取分离后富集倍数为11.8.取20μL双水相体系上相进行电热原子吸收检测,线性范围为2~100μgL-1,检出限为0.6μgL-1(3σ,n=11),相对标准偏差为2.8%(50μgL-1,n=9).将所建立的方法应用于功能饮料、保健药片、牛肝等实际样品中维生素B12的含量测定,加标回收率在97%~104%之间.  相似文献   

18.
以邻苯二甲醛(OPA)和3-巯基丙酸为衍生试剂,建立了柱前衍生高效液相色谱(HPLC)测定曲格列汀中(R)-3-氨基哌啶含量的分析方法。(R)-3-氨基哌啶与衍生剂在碱性(p H 10.5)条件下于室温反应30s,进行柱前衍生,并利用高效液相色谱-质谱对衍生产物进行定性分析。采用YMC-Triart C18色谱柱(150 mm×4.6 mm,5μm)分离,流动相采用0.05 mol/L乙酸钠(p H 6.0)-甲醇溶液,梯度洗脱,流速1.0 mL/min,检测波长331 nm,柱温30℃。(R)-3-氨基哌啶质量浓度在0.08~2.0μg/mL范围内线性关系良好(r=0.9993),定量限为1.6 ng,加标回收率在98.0%~106.9%之间,相对标准偏差(RSD)为2.8%。该方法可用于曲格列汀中(R)-3-氨基哌啶含量测定。  相似文献   

19.
With PMP chiral derivatization, the D/L-2HB and D/L-3HB enantiomers can be distinctly determined by reversed-phase chromatographic separation. In addition, the detection sensitivities were greatly enhanced by LC-ESI-MS analysis due to the introduction of easily ionizable tertiary amino group from PMP.  相似文献   

20.
以合成的1,3,5,7-四甲基-8-丙酰肼-二氟化硼-二吡咯甲烷(BODIPY-丙酰肼)作为柱前荧光衍生试剂,用于高效液相色谱分离荧光法检测甲醛、乙醛、丙醛、丁醛、戊醛、己醛、庚醛、辛醛、壬醛、癸醛、十一醛、十二醛等12种脂肪醛.通过对衍生条件和分离条件进行优化,建立了测定脂肪醛的HPLC/FD新方法.衍生反应以H3P...  相似文献   

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