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1.
液固色谱法分离番茄红素异构体   总被引:10,自引:0,他引:10  
李伟  孙新虎  肖刚  丁霄霖 《色谱》2003,21(1):13-16
采用Nucleosil 300-5正相色谱柱,将3根色谱柱串联后对番茄红素异构体进行了色谱分离。全反式番茄红素通过与标准样保留时间的比较进行定性判断,顺式异构体的定性判断以特征紫外吸收和DB/DⅡ值(在362 nm处的吸收强度与最大吸收峰吸收强度的比值)作为依据。番茄红素的顺反异构体均以全反式番茄红素的标准样作为外标进行定量计算。对5个样品的分析结果显示,新鲜番茄中反式番茄红素的比例最高,为96.38%;番茄酱中反式结构的番茄红素占10.83%。3种番茄红素产品中顺反异构体的比例各不相同,以1%番茄红素油树脂中反式结构含量最低,只有茄红素异构体的物化性质和生理活性打下了基础。  相似文献   

2.
卢素格  沈金灿  庄峙厦  王小如 《色谱》2005,23(2):164-167
建立了金属硫蛋白(MT)异构体及亚型异构体的色谱分离与质谱鉴别方法。将金属硫蛋白混合物通过弱阴离子DEAE Sephadex A-25离子交换柱,结合离线电感耦合等离子体质谱(ICP-MS)对锌诱导金属硫蛋白的两个异构体MT-1和MT-2进行分离和检测;利用Sephadex G-25凝胶排阻色谱柱对得到的两个金属硫蛋白异构体进行脱盐;探索脱盐后的金属硫蛋白异构体在不同色谱条件下的C18反相色谱柱上的保留行为,进而实现各个亚型异构体的分离;通过在线电喷雾质谱检测实现了对金属硫蛋白各个亚型异构体的鉴别。结果表明,通过优化色谱条件,由离子交换色谱及凝胶排阻色谱得到的金属硫蛋白各亚型异构体在酸性条件下均得到了良好的分离,质谱检测结果与前人的文献报道结果一致。该方法可使金属硫蛋白各异构体均达到最佳的分离效果。  相似文献   

3.
以正己烷-12-二氯乙烷为流动相,添加乙腈为改性剂,在酰胺类手性液相色谱柱上实现了对烯唑醇光学异构体的直接拆分.探讨了色谱柱、温度和乙腈的含量对拆分效果的影响,优化了色谱条件.实验结果显示:单独使用KR100-5CHI-DMB色谱柱时,烯唑醇中的光学异构体仅稍微分离;而单独使用Chirex 3001时,烯唑醇中的光学异构体则不分离;当KR100-5CHI-DMB与Chirex 3001串联使用时,烯唑醇中光学异构体能够得到很好的分离;在流动相中加入少量的乙腈作为极性添加剂,有助于改善异构体的分离度.当流动相为正己烷-12-二氯乙烷-乙腈(体积比8 ∶ 1 ∶ 1),流速1.0 mL/min,检测波长254 nm,柱温10 ℃时,烯唑醇中光学异构体得到很好的分离,分离度(R)为3.26.结果表明,酰胺类手性液相色谱柱能有效分离烯唑醇的光学异构体,方法简便、快速.  相似文献   

4.
体外合成了苯并芘DNA加合物-邻二醇环氧苯并芘-脱氧鸟苷加合物(anti-BPDE-N2-dG)四种立体异构体(两对手性异构体)。通过优化体外反应条件,anti-BPDE-N2-dG四种异构体的合成产量较现有合成方法提高了2倍多,为定量检测生物体中anti-BPDE-N2-dG提供了标准品。并首次将五氟苯基色谱柱应用于该立体异构体的色谱分离提纯,通过优化色谱条件,采用常规的五氟苯基色谱柱(250 mm×4.6 mm,5μm),以乙腈-0.1%甲酸水(22.5∶77.5)为流动相,流速1.2 mL/min条件下,45 min内即可分离提纯四种立体异构体。该方法与常规C18柱(250 mm×4.6 mm,5μm)需要160 min,苯基柱(250 mm×4.6 mm,5μm)需要85~100 min才能将四种立体异构体实现色谱分离相比,缩短了分离时间,提高了提纯效率。通过紫外吸收光谱、质谱、圆二色谱对四种立体异构体进行表征,确定出峰顺序为trans(-)、trans(+)、cis(+)、cis(-)-anti-BPDE-N2-dG。此外,利用高效液相色谱-串联质谱(HPLC-MS/MS)检测anti-BPDE-N2-dG四种立体异构体标准品时,使用常规的五氟苯基色谱柱可在30 min内完成分离检测,与相同规格的苯基柱需要60 min相比提高了检测效率。  相似文献   

5.
高丽萍  吴平东  Liu Meizheng 《分析化学》2006,34(11):1603-1606
利用高效液相色谱方法在普通Polar-RP柱上成功分离pentostatin的4个异构体。通过考察色谱柱、流动相、温度等对分离度的影响,得到最佳分离条件为:室温下以Phenom enex Synergi Polar-RP色谱柱,采用磷酸氢二钠水溶液(50 mmol,pH 8.8)-甲醇(97∶3,V/V)为流动相;282 nm检测;流速为1.0 mL/m in。结果表明,4个异构体之间均达到基线分离,且保留时间和峰面积的RSD均控制在0.6%以内。pentostatin在0.1~1.0g/L、其异构体在0.5~1.5 mg/L范围内的线性相关系数(R)均大于0.99。在此实验基础上,建立分离纯化Pentostatin的制备色谱条件,以制备色谱法得到的产品纯度达到99.8%,收率达到理论产率的80.2%。  相似文献   

6.
硝基甲苯与硝基苯甲酸异构体的高效液相色谱法分析   总被引:1,自引:0,他引:1  
梁奕昌  义志忠  蔡志虹  朱广一 《色谱》1999,17(4):397-398
采用KromasilC18柱同时分离了硝基甲苯与硝基苯甲酸异构体。在选定的色谱条件下,硝基甲苯与硝基苯甲酸异构体得到了良好分离。  相似文献   

7.
该文以Nafion膜为固定相,采用动态涂覆法将其涂覆在毛细管内壁,并研究了其在气相色谱分离烷烃、醇及取代芳香烃等方面的性能。结果表明,通过改变色谱分析条件,不同碳数的直链烷烃、直链醇、蒎烯类异构体、C8芳烃异构体取代芳香位置异构体均在Nafion膜固定相上得到了有效的分离,大部分异构体在该固定相上基本按照沸点从低到高的顺序依次洗脱。此外,还对基于Nafion膜的色谱柱分离蒎烯异构体和芳香位置异构体进行了热力学研究,并发现该柱分离异构体过程为放热过程,蒎烯分离受焓变和熵变共同控制,而芳香异构体分离过程主要受焓变的控制。  相似文献   

8.
祁彦  储晓刚  黄骏雄 《色谱》2004,22(2):106-110
采用置换色谱法在Kromasil KR100-10C18色谱柱(250 mm×4.6 mm i.d.,10 μm)上成功地分离了二元异构体表阿霉素和阿霉素的混合物,并研究和探讨了置换剂类型、浓度、流动相的组成及流速对分离的影响。结果表明:选用30 g/L的海胺1622为置换剂,流速0.2 mL/min,以及在有机相比例较低的流动相中加样,而将置换剂溶解在有机相比例稍高的流动相中进行置换展开,可以达到较好的分离。在最佳分离条件下,采用置换展开方式可以在分析色谱柱上一次分离30 mg异构体的混合物。该结果充分  相似文献   

9.
建立了RP-HPLC法同时检测酒花中α-酸、β-酸和异α-酸的主要异构体的方法。色谱柱为:EC 250/4 Nucleosil 100-5 C18,保护柱:CC 8/4 Nucleosil 100-5 C18,流动相A:水溶液(H3PO4 0.1%,0.2 mmol/L EDTANa2);流动相B:乙腈。流速为1.0 mL/min,双波长检测UV270 nm和UV315 nm,柱温30℃,进样体积10μL。方法加标回收率在90.0%~105.0%之间。方法可将酒花中α-酸、β-酸6种主要异构体和异α-酸3种主要异构体共9种物质一次性分离。  相似文献   

10.
CycloSil-B手性柱分离2-氯丙酸酯光学异构体   总被引:1,自引:1,他引:0  
采用气相色谱法在七(2,3-二-O-甲基-6-叔-丁基二甲基硅烷)-β-环糊精(CycloSil-B)手性色谱柱上分离2-氯丙酸酯光学异构体.考察了2-氯丙酸酯结构和柱温对分离效果影响;在光学异构体分离过程中对热力学参数的计算,探讨光学异构体分离过程的驱动力和手性识别机理.结果表明,随着2-氯丙酸酯的酯基团的链长增加、体积增大,2-氯丙酸酯光学异构体的分离因子(α)和分离度(RS)随之减小;2-氯丙酸正构醇酯光学异构体的分离因子对数(lnα)与酯基团的立体效应Taft Es常数之间具有较好的相关性.当柱温为86 ℃时其回归方程为: lnα=0.03044-4.754(Es)6(r=0.9991).随着柱温升高,2-氯丙酸酯光学异构体的容量因子(k′)、分离因子(α)和分离度(RS)也随之减小;当柱温小于82 ℃时,2-氯丙酸甲酯和乙酯光学异构体的分离度(RS)大于1.5.2-氯丙酸正构醇酯光学异构体在CycloSil-B色谱柱上的分离过程是一个焓驱动过程并存在着焓熵补偿关系.β-环糊精衍生物表面与2-氯丙酸酯之间的相互作用在其分离过程中起了重要作用,特别是酯基团的大小对2-氯丙酸酯光学异构体的分离起着决定性作用.  相似文献   

11.
A method has been developed for separation of linolenic acid and its seven isomers by HPLC on a silver-ion-loaded column. The standard 18:3 isomers, isolated from a heated linseed oil or prepared by isomerization of linolenic acid, were converted into phenacyl esters and detected by UV at 238 nm. The use of low temperature (10 °C) combined with a gradient of dichloromethane and methanol enabled separation of all the cis/trans isomers. The peaks were identified by comparison of ECL values with those of a standard mixture, by chromatographing collected HPLC fractions on a polar GC column. HPLC quantification was compared with GC analysis. There was satisfactory agreement between the tow methods. This method could be used for seperation, collection and quantification of 18:3 fatty acids with trans double bonds in different oils and foods.  相似文献   

12.
This paper describes a quantitative analytical procedure to determine the fatty acid composition in drying oils like linseed, walnut and poppy seed. The procedure required the enzymatic hydrolysis of the oil triacylglycerol families by the action of Candida rugosa lipase. The fatty acids (FFAs) produced (linolenic, myristic, linoleic, palmitic, oleic and stearic) were extracted with n-heptane and derivatized with α-bromoacetophenone. Their separation and quantitative determination were performed by high-performance liquid chromatography employing a C18 column and an isocratic elution method coupled to ultraviolet detection. The analytical enzymatic procedure is sensitive for < 0.5 μg/mL of FFAs in a reduced sample of 0.1 mg of drying oil.  相似文献   

13.
一、二、三硝基甲苯(简称MNT、DNT和TNT)共有15个异构体.分离这些异构体文献中虽有一些报道[1-9],但均不太完善.我们曾用液晶填充柱分离和测定MNT的三个异构体[10];用OV-225填充柱分离DNT的六个异构体[11];用OV-25和OV-210混合固定液填充柱分离TNT六个异构体[12].  相似文献   

14.
Structural and thermal properties of all-trans lycopene are described in the present paper. Different crystalline lycopene samples obtained from fermentation process and recrystallized lycopene were analyzed. Structural properties (NMR, mass spectrometry and powder X-ray diffraction) of lycopene were clarified with recent techniques. High purity sample analysis by differential scanning calorimetry was used to study thermal behavior of pure lycopene and with traces of isomers. But also this was correlated with HPLC method for determine lycopene purity and isomers in low proportion.  相似文献   

15.
16.
This study examines the effect of the column operating temperature of 100 m SP-2560 and CP-Sil 88 capillary gas chromatographic (GC) columns on the separation of cis- and trans-octadecenoic (18:1) isomers in partially hydrogenated vegetable oils. The overlapping GC peaks were measured at column isothermal temperatures of 170, 175, 180, 185, and 190 degrees C. With both columns, isothermal operation at 180 degrees C produced the fewest overlapping peaks of the cis and trans isomers. At this temperature, all trans-18:1 isomers, except 13t-18:1 (t = trans), 14t-18:1, and 15t-18:1 isomers were resolved from the cis-18:1 isomers. The peaks of the 13t-18:1 and 14t-18:1 isomer pair, which always elute together, overlapped peaks of the 6c-18:1 (c = cis), 7c-18:1, and 8c-18:1 isomers; the peak of the 15t-18:1 isomer overlapped the major cis-18:1 peak, which was mainly due to 9c-18:1. Isothermal operations above or below 180 degrees C produced some additional overlapping problems. At 185 and 190 degrees C, the peaks of the 16t-18:1 and 13c-18:1 isomers overlapped. At 175 and 170 degrees C, the 16t-18:1 peak overlapped the 14c-18:1 peak, and the peaks of the 13t + 14t-18:1 isomer pair partially overlapped the major cis-18:1 peak. The separation of 11c-20:1 and alpha-linolenic acid and its geometric isomers was also affected by the column operating temperature. Isothermal operation of the SP-2560 column at 180 degrees C produced a baseline separation of 11c-20:1 and alpha-linolenic acid and its geometric isomers, whereas with the CP-Sil 88 column the best resolution was obtained at 170 degrees C. The results of this study show that the SP-2560 capillary column has a slight advantage over the CP-Sil 88 column for the simultaneous resolution of all the fatty acids generally found in partially hydrogenated vegetable oils.  相似文献   

17.
A chiral stationary phase based on tert-butylcarbamoyl quinine has shown remarkable enantiomer separation capability for the thyroid hormone thyroxine (T(4)) and its structural analogue triiodothyronine (T(3)) employing hydroorganic buffered mobile phases (typical RP conditions). To overcome the problem of a somehow limited chemoselectivity for the critical peak pair between adjacent L-thyroxine (L-T(4)) and D-thyroxine (D-T(4)) peaks on the chiral anion-exchanger CSP when all four compounds need to be analysed simultaneously like in impurity profiling of L-T(4 )drug products, an RP column (Gemini C18) was serially coupled with the chiral anion-exchanger column to add a hydrophobic selectivity increment and to improve thereby the critical resolution between L-T(3) and D-T(4). Various parameters such as organic modifier content, pH, buffer concentration and type, type of achiral column as well as sequence of achiral and chiral column have been investigated with individual and tandem columns. With the optimized conditions and use of the tandem column a significantly improved separation, as compared to the chiral anion-exchanger column alone, with a critical resolution as high as 3.7 and an almost equal band spacing of the four components of the test mixture could be obtained. The sequence of the columns (achiral-chiral or chiral-achiral) had no significant effect on the separation performance.  相似文献   

18.
李华军  陈茜 《色谱》2018,36(10):1061-1066
基于制备液相色谱法,开发与优化了碘帕醇的分离纯化工艺,制备得到高纯度碘帕醇样品。实验首先在分析水平发展碘帕醇的反相分离方法,考察了两种不同键合量的反相C18固定相、柱温和上样量对碘帕醇的保留、分离度和峰形等的影响。结果表明,碘帕醇在键合量为13.7%的反相C18-1分析柱(250 mm×4.6 mm,10 μm)上保留较好,且可与杂质有效分离;柱温升高,碘帕醇保留变弱,和杂质之间的分离度降低,最终选用20~25℃作为分离纯化的温度;上样量增加,碘帕醇出峰时间提前,不利于前杂的去除。在制备水平上,以水和甲醇为洗脱剂,在20℃条件下使用装填C18-1固定相的制备柱(270 mm×50 mm,10 μm)对碘帕醇进行分离纯化,制备的碘帕醇样品的色谱纯度可达98.97%,回收率为93.44%,各项有关物质均符合限量规定。该方法可以在保证高回收率的条件下有效降低杂质水平,为碘帕醇分离纯化生产工艺的开发提供新方法。  相似文献   

19.
姜月顺  小山泰 《化学学报》1997,55(2):172-177
从Rhodobacter sphaeroides 2.4.1提取了全反式球形烯, 用高压液相色谱(HPLC)分离了它的I2增感异构化产物: 9,13'-cis(峰A), 5,13-cis+13,9'-cis(峰B), 13-cis(峰C), 5,13'-cis(峰E1), 9-cis(峰E2), 13'-cis(峰F),5,9'-cis(峰G), 9'-cis(峰H), all-trans(峰I), 研究了异构体的结构对其电子吸收光谱及HPLC保留时间的影响, 从而确认峰E1为5,13'-cis。对全反式球形烯的光敏异构化机理也作了初步探讨。  相似文献   

20.
Fatty acid methyl ester (FAME) profiling in complex fish oil and milk fat samples was studied using integrated comprehensive 2D GC (GC × GC) and multidimensional GC (MDGC). Using GC × GC, FAME compounds – cis‐ and trans‐isomers, and essential fatty acid isomers – ranging from C18 to C22 in fish oil and C18 in milk fat were clearly displayed in contour plot format according to structural properties and patterns, further identified based on authentic standards. Incompletely resolved regions were subjected to MDGC, with Cn (n = 18, 20) zones transferred to a 2D column. Elution behavior of C18 FAME on various 2D column phases (ionic liquids IL111, IL100, IL76, and modified PEG) was evaluated. Individual isolated Cn zones demonstrated about four‐fold increased peak capacities. The IL100 provided superior separation, good peak shape, and utilization of elution space. For milk fat‐derived FAME, the 2D chromatogram revealed at least three peaks corresponding to C18:1, more than six peaks for cis/trans‐C18:2 isomers, and two peaks for C18:3. More than 17 peaks were obtained for the C20 region of fish oil‐derived FAMEs using MDGC, compared with ten peaks using GC × GC. The MDGC strategy is useful for improved FAME isomer separation and confirmation.  相似文献   

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