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1.
替考拉宁属于大环抗生素,具有半篮状结构和多个手性中心,是常见的手性识别材料,广泛应用于对映体的色谱手性分离分析.本文研究了以替考拉宁为手性识别剂,采用键合的方法制备得到9种高效液相色谱手性固定相,用于苯甘氨酸和对羟基苯甘氨酸的拆分研究,并且考察了重现性和稳定性及进样量对拆分结果的影响.实验结果表明,9种手性固定相均具有拆分苯甘氨酸及对羟基苯甘氨酸的能力.  相似文献   

2.
以替考拉宁为手性选择剂制备了大环抗生素类手性固定相替考拉宁键合手性固定相(T-CSP),建立了T-CSP反相液相色谱直接拆分泮托拉唑钠对映体的方法。考察了流动相中有机改性剂的种类和比例、柱温以及流动相流速对拆分泮托拉唑钠对映体的影响。研究发现,用甲醇作有机改性剂比乙腈更有利于对映体的分离;在研究的温度范围内,随着柱温的升高,对映体的保留时间缩短,同时分离因子和分离度降低;在一定范围内降低流速有利于对映体的分离。采用T-CSP色谱柱(150 mm×4.6 mm i.d.,5 μm),以甲醇-水(体积比为35∶65)为流动相,在流速0.6 mL/min、检测波长290 nm、柱温20 ℃的条件下,泮托拉唑钠对映体获得了近于基线的分离,所建立的方法具有简便快速及重复性好等优点。  相似文献   

3.
以国产大环抗生素替考拉宁为手性选择剂制备了替考拉宁键合手性固定相(Tei-CSP),在反相条件下考察了键合相对华发令、西孟旦等手性药物、α-氨基酸(羟基酸)、衍生α-氨基酸的拆分效果。实验结果表明,在反相条件下,疏水(亲水)作用、静电作用对手性化合物在柱上的保留以及对映体的拆分起到了非常重要的作用;氨基酸在衍生前后,其在柱上的保留和手性识别机理发生了改变,衍生前,亲水作用参与保留机理,而衍生后,由于疏水作用增强,疏水作用参与保留,对映体在较低的有机改性剂条件下才能获得较好的分离。  相似文献   

4.
高效液相色谱蛋白质手性固定相   总被引:4,自引:0,他引:4  
本文综述了近年文献中已报道的各种高效液相色谱蛋白质(酶)手性固定相及其在手性拆分中的应用,并阐述了蛋白质作为手性选择剂拆分机理的研究进展。  相似文献   

5.
高效液相色谱手性聚合物固定相的研究与进展   总被引:2,自引:0,他引:2  
对近年来高效液相色谱手性固定相的研究进行了综述。重点介绍了手性聚合物固定相的分类和应用的新进展。讨论了各类手性固定相优缺点,提出了目前存在的问题和今后研究的方向和重点。  相似文献   

6.
高效液相色谱中的纤维素衍生物手性固定相   总被引:7,自引:0,他引:7  
李兵  施介华  杨根生 《化学通报》2003,66(3):169-173
评述了高效液相色谱中纤维素衍生物手性固定相直接拆分对映体的进展,介绍了纤维素衍生物的主要类型,纤维素衍生物作手性固定相三种不同方式的特点以及新的纤维素衍生物手性固定相应用,并结合色谱,NMR和分子模型设计和理论计算等方法讨论了纤维素衍生物手性固定的拆分机理。  相似文献   

7.
将L-丙氨酸、L-缬氨酸、L-色氨酸、L-苯甘氨酸和L-苯丙氨酸5种氨基酸的手性单体与甲基丙烯酸-3-(三甲氧基硅基)丙酯共聚到硅胶表面制备了5种氨基酸聚合物手性固定相,并用作高效液相色谱手性固定相。考察了它们的手性识别能力,L-丙氨酸、L-缬氨酸和L-色氨酸聚合物手性固定相具有较好的手性拆分效果,并且它们之间的手性识别能力还具有一定的互补性。  相似文献   

8.
关瑾  杨晶  毕玉金  石爽  李发美 《色谱》2007,25(5):732-734
利用反相高效液相色谱法在大环抗生素类手性固定相万古霉素键合手性固定相(Chirobiotic V)上直接分离了泰妥拉唑对映体。考察了缓冲溶液的种类、浓度和pH值,有机改性剂的种类和浓度,柱长和柱温等对手性分离的影响。优化后的色谱条件为:Chirobiotic V色谱柱(150 mm×4.6 mm,5 μm),流动相为0.02 mol/L 醋酸铵缓冲液(pH 6.0)-四氢呋喃(体积比为93∶7),流速为0.5 mL/min,柱温为20 ℃,检测波长为306 nm。在此条件下泰妥拉唑对映体达到了基线分离,分离度达1.68;对映体保留时间的相对标准偏差分别为0.48%和0.49%(n=6),峰面积的相对标准偏差分别为0.45%和0.55%(n=6)。所建立的手性分离方法具有简便快速及重复性好等优点。  相似文献   

9.
10.
手性是自然界的一种普遍现象,构成生物体的基本物质如氨基酸、糖类、核酸等全都是手性分子.在生物的手性环境中,手性分子手性的不同往往表现出不同的生理、药理、毒理作用[1,2].因此,对手性化合物的拆分是非常重要的.目前,高效液相色谱(HPLC)手性分离分析方法是完成这项任务的重要手段,其中手性固定相法是最常用的方法[3].  相似文献   

11.
HPLC enantiomeric separations of a wide variety of racemic analytes was evaluated using chiral stationary phases (CSPs) based on the macrocyclic glycopeptides teicoplanin (T), teicoplanin aglycone (TAG), and methylated teicoplanin aglycone (Me-TAG) in two different mobile phase modes, i.e., the RP mode and the polar organic (PO) mode. Comparison of the enantiomeric separations using Chirobiotic T, Chirobiotic TAG, and the methylated form of TAG were conducted in order to gain a better understanding of the roles of the polar functional groups on the CSP. Substantial effects due to the cleavage of saccharides and/or methylation on chiral separations were observed in both separation modes. Improved separation efficiencies for many acidic analytes were obtained by methylating the H-bonding groups of TAG. These groups were believed to be a contributing factor to band broadening on TAG due to their negative effect on mass transfer between the stationary phase and mobile phase. Ionic/dipolar interactions between the carboxylate group of the analytes and the amine groups on T, TAG, or Me-TAG are important for chiral discrimination. Therefore, analytes possessing a carboxyl group are good candidates for successful separations on these CSPs. Hydrophobic interactions are important for enantiomeric separations in the RP mode where the H-bonding interactions between analytes and the chiral selectors are relatively weak. Me-TAG offers higher hydrophobicity, which can accentuate the interactions of analytes with hydrophobic moieties, but these interactions are not necessarily stereoselective. In the PO mobile phase, electrostatic/dipolar interactions between polar functional groups are the dominating interactions in chiral recognition. Another important factor is steric fit, which could be changed with every modification of the T structure. Therefore, substantial changes of enantioseparations were obtained within this studied group of CSPs. The PO mode was shown to be the most powerful mobile phase mode for enantiomeric separations on T-based stationary phases, mainly due to the improved efficiency. Methylation of the TAG proved to be a very useful tool for investigating the chiral recognition mechanism for this group of chiral selectors.  相似文献   

12.
Summary The employment of three chiral stationary phases (CSPs) obtained by derivatizing γ-mercaptopropyl-silanized silica gel with quinine, quinidine and N-methyl-quinium iodide, for the separation of organic racemates, is presented. They are quite useful in the resolution of alkylarylcarbinols, binaphthyl derivatives, amides and other substances of pharmaceutical interest.  相似文献   

13.
Carnosine is present in high concentrations in specific human tissues such as the skeletal muscle, and among its biological functions, the remarkable scavenging activity toward reactive carbonyl species is noteworthy. Although the two enantiomers show almost identical scavenging reactivity toward reactive carbonyl species, only d ‐carnosine is poorly adsorbed at the gastrointestinal level and is stable in human plasma. Direct methods for the enantioselective analysis of carnosine are still missing even though they could find more effective applications in the analysis of complex matrices. In the present study, the use of two different chiral stationary phases is presented. A chiral ligand‐exchange chromatography stationary phase based on N,S‐dioctyl‐d‐ penicillamine resulted in the direct enantioseparation of carnosine. Indeed, running the analysis at 25°C and 1.0 mL/min with a 1.5 mM copper(II) sulfate concentration allowed us to obtain separation and resolution factors of 3.37 and 12.34, respectively. However, the use of a copper(II)‐containing eluent renders it hardly compatible with mass spectrometry detectors. With the teicoplanin‐based stationary phase, a mass spectrometry compatible method was successfully developed. Indeed, a water/methanol 60:40 v/v pH 3.1 eluent flowed at 1.0 mL/min and with a 25°C column temperature produced separation and resolution factors of 2.60 and 4.16, respectively.  相似文献   

14.
The D-, L-tryptophan binding and the chiral recognition properties of the teicoplanin and teicoplanin aglycone (TAG) chiral stationary phase (CSPs) were compared at various column temperatures. The solute adsorption isotherms (bi-Langmuir model) were determined for both the two CSPs using the perturbation method. It was demonstrated that the sugar units were involved in the reduction of the apparent enantioselectivity through two phenomena: (i) the inhibition of some enantioselective contacts with low-affinity binding regions of the aglycone and (ii) a decrease in the stereoselective properties of the aglycone high-affinity binding pocket. The phenomenon (ii) was governed by both a decrease in the ratio of the enantiomer adsorption constant and a strong reduction of the site accessibility for D- and L-tryptophan. In addition, a temperature effect study was performed to investigate the chiral recognition mechanism at the aglycone high-affinity pocket. An enthalpy-entropy compensation analysis derived from the Grunwald model as well as the comparison with the literature data demonstrated that the enantioselective binding mode was dependent on an interface dehydration process. The change in the enantioselective process observed between the TAG and teicoplanin CSP was characterized by a difference of ca. 2-3 ordered water molecules released from the species interface.  相似文献   

15.
Berthod A  Nair UB  Bagwill C  Armstrong DW 《Talanta》1996,43(10):1767-1782
In this work, synthetic and natural chiral selectors were combined to form two different chiral stationary phases (CSPs). These were made by bonding R- or S-(1-naphthylethyl) carbamate (R-NEC or S-NEC)-derivatized vancomycin molecules to a silica gel support. The two CSPs were evaluated using a set of 60 enantiomeric pairs. The results were compared to the ones obtained with the commercial underivatized vancomycin CSP. Three Chromatographic modes were used: (i) the normal-phase mode using a nonpolar mobile phase with different ratios of hexane and ethanol; (ii) the reversed-phase mode with hydro-organic mobile phases; and (iii) the polar aprotic organic mode with nonaqueous acetonitrile plus small amounts of methanol and an acid and/or base to control retention and selectivity. It is shown that the polarity of the underivatized vancomycin phase is higher than that of the two R- and S-NEC-derivatized CSPs. In the pH range 4-7, there is no ionization change of the chiral selector for the three CSPs. 43% of the studied compounds were resolved by the NEC-derivatized phases when they could not be resolved by the vancomycin CSP. However, the enantiorecognition for 12% of the compounds on the native vancomycin CSP was lost upon NEC derivatization. 45% of the studied compounds were resolved by the NEC-derivatized and native CSPs. The NEC derivatization procedure may block some useful active sites on the vancomycin molecule. Also, the R- and S-NEC moieties are chiral themselves and can contribute additional interaction sites not available on the native vancomycin molecule.  相似文献   

16.
For direct HPLC resolution of enantiomers of optically active substances, supports having an optically pure organic layer with a high order of chirality are advantageous. To ensure this, the support itself has to possess a structure of well-defined regularity. For this reason, zeolite A, a material of crystalline character has been used as support, for the preparation of brush type chiral stationary phases instead of the conventional amorphous macroporous silica support. The aim of the present work is to certify the crystalline properties of the zeolite A during the modification. The application of the CSPs for the resolution of DL-serine is presented.  相似文献   

17.
Twenty different tris(phenylcarbamate)s of cellulose were synthesized and evaluated as chiral stationary phases for HPLC. Optical resolving power of the tris(phenylcarbamate)s depends on the substituents introduced on the phenyl groups. Optical resolving abilities of amylose tris(phenylcarbamate)s were also evaluated. In most cases, either cellulose tris(3,5-dimethylphenylcarbamate) or amylose tris(3,5-dimethylphenylcarbamate) exhibited the highest optical resolving ability. Aralkylcarba-mates such as benzyl- and 1-phenylethylcarbamates of cellulose and amylose were also tested as chiral stationary phases. (S)-1-Phenylethylcarbamate of amylose showed a high optical resolving power.  相似文献   

18.
Two stationary phases attached to a silica hydride surface, cholesterol and bidentate C18, are investigated with a number of pharmaceutically related compounds in order to illustrate the various retention mechanisms that are possible for these bonded materials. The test solutes range from hydrophilic to hydrophobic based on log P (octanol/water partition coefficient) and pKa values. The mobile phases consist of acidified (formic and perchloric acid) water/methanol or water/ACN mixtures. Of particular interest are the high organic content mobile phase compositions where the retention would increase if the bonded material was operating in the aqueous normal phase (ANP) mode. Plots of retention factor (k) versus mobile phase composition are used to elucidate the retention mechanism. A number of examples are presented where solutes are retained based on RP, ANP, or dual retention mechanisms. The silica hydride-based stationary phases can also retain compounds in the organic normal phase.  相似文献   

19.
谌学先  张鹏  何义娟  徐文  袁黎明 《色谱》2019,37(12):1275-1281
纤维素三(3,5-二甲基苯基氨基甲酸酯)是液相色谱中使用最广泛的手性柱。该文详细地研究了不同程度衍生的纤维素(3,5-二甲基苯基氨基甲酸酯)以及不同硅胶(粗制硅胶、氨丙基粗制硅胶、精制硅胶、氨丙基精制硅胶、大孔硅胶、氨丙基大孔硅胶)作为支撑体对该柱手性分离能力的影响。自制了13根手性色谱柱,分别考察了其对16种外消旋体的拆分,分离结果显示:三取代纤维素柱 > 二取代纤维素柱 > 纤维素柱;精制硅胶和大孔硅胶优于粗制硅胶,大孔硅胶的柱压更低;硅胶的氨丙基化对手性选择性有一定的影响;这些手性柱之间具有一定的互补性,尤其是纤维素柱。该文有助于人们更深刻地理解和更好地把握高效液相色谱手性柱的制备。  相似文献   

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