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1.
采用高效液相色谱/电喷雾飞行时间质谱联用技术(HPLC/ESI-TOF/MS),研究4种七叶皂苷的分子结构与裂解规律间的关系,并对娑罗子中的七叶皂苷类化合物进行鉴定。实验采用反相C18色谱柱,以乙腈-0.2%乙酸溶液为流动相,二元线性梯度洗脱,通过与电喷雾飞行时间质谱联用获得娑罗子中各皂苷成分的精确分子量和分子式;采用质谱碰撞诱导解离技术获得各化合物碎片裂解信息,结合文献对娑罗子中的14种皂苷类化合物进行了初步鉴定。研究表明,高效液相色谱-电喷雾飞行时间质谱联用技术是娑罗子中皂苷类化合物鉴别的有效工具。  相似文献   

2.
李丽  刘春明  吴巍  越皓  刘志强  刘淑莹  田成 《分析化学》2005,33(8):1087-1090
利用高效液相色谱(LC—ELSD)与电喷雾质谱(ESI—MS)联用技术对人参和西洋参中的人参皂苷类成分进行了比较研究。通过液相色谱与质谱联用技术获得了相应化合物的分子量信息;利用质谱的源内CID技术获得了相应化合物的结构信息。根据人参皂苷Rf和拟人参皂苷F11两种同分异构体在质谱中的源内CID裂解规律的不同,建立了人参和西洋参药材的LC-ESI-MS简便、准确的鉴别方法。  相似文献   

3.
反相高效液相色谱法测定中药中薯蓣皂苷元   总被引:18,自引:0,他引:18  
用反相高效液相色谱法分离并测定了穿山龙、粉草解、胡芦巴、七叶一枝花、山药等5种中草药中的薯蓣皂苷元,建立了中药中薯蓣苷元的液相色谱分离测定方法,色谱条件:ODS柱,甲醇-水(95+5)为流动相,紫外检测波长209nm.  相似文献   

4.
人参中皂苷类化合物的HPLC-ESI MS研究   总被引:9,自引:0,他引:9  
利用高效液相色谱与电喷雾质谱联用技术分析鉴定了人参粗提物中人参皂苷类化合物。实验采用反相C18色谱柱,二元线性梯度洗脱(0.2%的醋酸水溶液和乙腈),分离并检测了人参中的皂苷类化合物:通过与电喷雾质谱的联用和质谱的源内CID技术获得了其中主要色谱峰相对应化合物的相对分子质量和结构信息。  相似文献   

5.
利用高效液相色谱与电喷雾质谱联用技术研究了朝鲜淫羊藿中的黄酮类化合物。实验采用反相C18色谱柱,二元线性梯度洗脱,分离并检测了朝鲜淫羊藿中的6种黄酮类化合物;通过与电喷雾质谱联用获得了这几种化合物的分子量信息,利用质谱的源内碰撞诱导解离技术对这几种化合物进行了结构鉴定。  相似文献   

6.
韩超  陈军辉  刘劼  王小如  黎先春 《分析化学》2006,34(12):1719-1722
采用高效液相色谱/电喷雾飞行时间质谱联用方法(HPLC/ESI-TOFMS)分析太子参中的环肽类化合物。实验采用反相C18色谱柱,二元线性梯度洗脱,分离并检测了太子参中6种环肽类化合物;通过与电喷雾飞行时间质谱联用获得了这几种化合物的准确分子量信息,由于ESI-TOFMS具有高分辨率,能够测定化合物精确的分子质量而不降低灵敏度,对6种环肽类化合物成分进行了定性鉴定。该方法简便、快速、准确。  相似文献   

7.
采用高效液相色谱-串联质谱技术(HPLC-MS/MS)对龙加通络胶囊多种成分进行定性分析,并建立了其中6种主要药效成分的高效液相色谱-二极管阵列检测/蒸发光散射检测联用(HPLC-DAD/ELSD)定量分析方法。定性分析方法采用Kromasil C18(250 mm×4.6 mm,5μm)色谱柱进行分离,以乙腈-0.1%甲酸溶液为流动相进行梯度洗脱。定性分析结果根据质谱信息对其中18种化合物进行了成分归属,其中7种为文献未报道的化合物。定量分析方法采用相同的色谱柱和流动相在不同的梯度程序下进行梯度洗脱。DAD采用双波长同时检测:紫丁香苷(254 nm)、异嗪皮啶(350 nm)和绿原酸(350 nm);ELSD检测薯蓣皂苷、原薯蓣皂苷和伪原薯蓣皂苷3种甾体皂苷成分,检测条件为漂移管温度:100℃,气体流速:1.8 L/min,雾化器温度:40℃。定量分析结果显示,6种成分在各自的检测范围内线性关系良好,相关系数(r)为0.999 6~0.999 9;6种成分的平均加标回收率为99.9%~100.6%,相对标准偏差(RSD)为0.90%~1.4%。精密度、重复性以及24 h稳定性考察中,6种成分的RSD均小于2%。该方法准确可靠、重复性好,可用于龙加通络胶囊多成分的质量控制。  相似文献   

8.
本文采用高效液相色谱与电喷雾质谱联用技术在线分析鉴定了车前草提取物中的三种苯乙醇苷化合物。实验采用反相C18色谱柱,0.2%的醋酸水溶液和乙腈梯度洗脱,车前草中的苯乙醇苷化合物得到很好的分离。在电喷雾质谱负离子条件下,获得了三种苯乙醇苷化合物的分子离子峰,分子量信息,进一步通过质谱的源内CID技术得到相应化合物的结构信息。通过得到的这些信息与文献中的已知化合物或标准品对照从而推断出化合物的结构。  相似文献   

9.
采用超高效液相色谱-四极杆静电场轨道阱高分辨质谱联用法(UPLC Orbitrap HRMS)对西洋参不同加工品中的皂苷类成分差异进行分析。高分辨质谱条件为电喷雾电离源,轨道阱质量分析器,负离子模式采集。结果显示,根据一级质谱精确质荷比信息,获得化合物的精确分子量;根据二级串联质谱信息,获得化合物的碎片信息。总结了不同类型皂苷的特征质谱碎裂规律,并对碎裂规律进行比对,初步归属和鉴定西洋参中55种皂苷类成分,其中原人参二醇型皂苷成分28种、原人参三醇型皂苷成分17种、奥克梯隆型皂苷成分5种和齐墩果烷型皂苷成分5种。通过比较不同西洋参加工品中皂苷类组成的差异,为揭示不同加工方法对西洋参皂苷成分的影响规律提供了依据,并为西洋参的开发利用以及阐明药效物质基础提供了参考。  相似文献   

10.
采用快速分离液相色谱-四极杆-飞行时间质谱联用(RRLC-Q-TOF MS/MS)技术对葛花中的异黄酮类成分进行了研究, 得到了相应化合物的保留时间、 分子量及结构信息. 研究结果表明, 葛花水提取液的主要成分为异黄酮类及其苷类化合物, 并含有皂苷类和酚类化合物. 在葛花中首次发现同属植物狐尾葛特有化合物Alopecuroides A和葛根中的化合物3'-甲氧基大豆苷元-7-O-甲醚. 讨论了异黄酮类化合物的质谱碎裂途径及规律.  相似文献   

11.
皂苷的电喷雾负离子多级串联质谱研究   总被引:6,自引:1,他引:5  
皂苷作为一类结构比较复杂的糖苷类化合物 ,广泛地存在于植物和海洋生物中 .现代医学研究表明 ,皂苷类化合物具有十分广泛的药理作用 .目前 ,在我国许多以皂苷类化合物为主要有效成分的药物都具有很好的疗效 .因此研究人员对于皂苷类化合物的结构研究有着愈来愈浓厚的兴趣 .然而皂苷类化合物具有极性大、难挥发、分子量大等特点 ,给分离纯化及结构鉴定带来很大的困难 .对于这类化合物结构的研究远远落后于生物碱和黄酮 .目前采用质谱技术测定皂苷类化合物的结构已有文献报道 ,但多局限于正离子质谱[1~ 6] ,对于负离子质谱仅限于 MS/ MS质…  相似文献   

12.
A method coupling high‐performance liquid chromatography with hybrid ion trap time‐of‐flight mass spectrometry (TOFMS) using an electrospray ionization source was firstly used to characterize ten major pregnane glycosides including one novel compound auriculoside IV from the roots of Cynanchum auriculatum Royle ex Wight. In the MS/MS spectra, fragmentation reactions of the [M+Na]+ were recorded to provide abundant structural information on the aglycone and glycosyl moieties. Experiments using TOFMS allowed us to obtain precise elemental compositions of molecular ions and subsequent product ions with errors less than 6 ppm. The pregnane glycosides in C. auriculatum were classified into two major core groups: one is caudatin characterized by the neutral loss of one ikemamic acid molecule (128 Da) from the precursor ion, and the other is kidjoranin characterized by the neutral loss of cinnamic acid (148 Da) from the precursor ion. Meanwhile, a series of sugar‐chain fragment ions provided valuable information about the compositions of the sugar residues and the sequences of the sugar chain. Logical fragmentation pathways for pregnane glycosides have been proposed and are useful for the identification of these compounds in natural products especially when there are no reference compounds available. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

13.
Four isomers of steroidal saponins were differentiated using multiple-stage tandem mass spectrometry combined with electrospray ionization (ESI-MS(n)). With the addition of lithium salt, the [M+Li](+) ions of saponins were observed in the ESI spectra. MS(n) spectra of these [M+Li](+) ions provided detailed structural information and allowed differentiation of the four isomeric saponins. The cross-ring cleavage ions from the saccharide chains of the saponins could be used as diagnostic ions for information concerning the linkage of the sugar moieties of the saponins. The masses of the X, A, Y and C type fragment ions formed from [M+Li](+) ions of the isomeric saponins provided information defining the methyl group locations.  相似文献   

14.
Electrospray ion-trap tandem mass spectrometry (ESI-MS/MS) and high-performance liquid chromatography coupled with electrospray ionization time-of-flight mass spectrometry (LC/ESI-TOFMS) were used to identify and characterize eight C-21 steroidal glycosides in Hoodia gordonii. A generalized fragmentation pathway was proposed by comparing the spectra acquired for eight C-21 steroidal glycosides. The steroidal glycosides in Hoodia gordonii have been classified into two major core groups: hoodigenin A and calogenin. Using the ESI-TOF method, the major core peak ions generated by hoodigenin A glycosides are m/z 313 and 295 and by calogenin glycosides are m/z 479, 461, 299 and 281, respectively. In the MS/MS spectra, fragmentation reactions of the [M+Na](+) ion were recorded to provide structural information about the glycosyl and aglycone moieties. The data illustrates the ability of positive mode ESI for the identification of hoodigenin A and calogenin glycosides, including the nature of the hoodigenin A and calogenin core, the number of sugar residues and the type of saccharide moiety.  相似文献   

15.
Platycosides extracted from Platycodi Radix were analyzed by HPLC coupled with electrospray ionization multistage tandem mass spectrometry (HPLC/ESI-MS(n)). Predominant [M+Na](+) ions in positive mode and [M-H](-) ions in negative mode in the direct ESI-MS spectra of extract provided information on molecular weights, but minor components and isomers could not be discriminated. However, combining HPLC and ESI-MS(n), allowed eleven platycosides, including four acetylated platycodin isomers and two prosapogenines to be analyzed. During MS(2) analysis conducted to elucidate the structures of platycosides, fragment ions provided information on sugar moieties attached at C-28 of triterpene structure of the platycosides. Glycosidic bond cleavages at C-3 were revealed by fragment ions in MS(3) spectra. Some characteristic fragment ions not related to sugar bond cleavage revealed that an esterified triterpene is linked to sugars at C-28. The only sugar ring-cross cleavage corresponding to 90 Da in the negative MS(2) spectrum took place at an arabinosyl sugar moiety. By using HPLC/ESI-MS(n), three acetylated platycosides in Platycodi Radix extract were newly identified.  相似文献   

16.
Fast atom bombardment mass spectra of a series of naturally occurring and synthetically modified iridoid glycosides were studied using lithium cationization and collision-induced dissociation of the resulting [M+Li]+ ions. Lithium cationization leads to the unambiguous determination of the molecular masses of these compounds. Collision-induced dissociation of the lithiated molecular ions give valuable structural information regarding the nature of the substituent on both the aglycone and the sugar moieties. The characteristic fragmentation pathways identified are (1) elimination of neutral molecules comprising the substituents on either the aglycone or sugar moieties, (2) formation of lithiated aglycone and their fragment ions, (3) formation of lithiated sugar and their fragment ions, (4) fragmentation corresponding to the cleavage of the aglycone or sugar ring and (5) fragmentation characteristic of the substituents present in either the aglycone or sugar parts of the molecule. Elimination of two acyloxy radicals from the lithiated molecular ion is a characteristic fragmentation in the case of acyloxy derivatives.  相似文献   

17.
Mass spectrometric methodology based on the combined use of positive and negative electrospray ionization, collision-induced dissociation (CID) and tandem mass spectrometry (MS/MS) has been applied to the mass spectral study of a series of six naturally occurring iridoids through in-source fragmentation of the protonated [M+H]+, deprotonated [M--H]- and sodiated [M+Na]+ ions. This led to the unambiguous determination of the molecular masses of the studied compounds and allowed CID spectra of the molecular ions to be obtained. Valuable structural information regarding the nature of both the glycoside and the aglycone moiety was thus obtained. Glycosidic cleavage and ring cleavages of both aglycone and sugar moieties were the major fragmentation pathways observed during CID, where the losses of small molecules, the cinnamoyl and the cinnamate parts were also observed. The formation of the ionized aglycones, sugars and their product ions was thus obtained giving information on their basic skeleton. The protonated, i.e. [M+H]+ and deprotonated [M--H]-, ions were found to fragment mainly by glycosidic cleavages. MS/MS spectra of the [M+Na]+ ions gave complementary information for the structural characterization of the studied compounds. Unlike the dissociation of protonated molecular ions, that of sodiated molecules also provided sodiated sugar fragments where the C0+ fragment corresponding to the glucose ion was obtained as base peak for all the studied compounds.  相似文献   

18.
Mass spectrometric methodology based on the combined use of positive and negative electrospray ionization, collision-induced dissociation (CID) and tandem mass spectrometry (MS/MS) has been applied to the structural characterization of 6-hydroxyluteolin 7-O-glucoside and 7-O-glucosyl-(1 --> 3)-glucoside. In-source fragmentation of both glycosides at an increased potential yielded the protonated and deprotonated aglycone, allowing CID spectra to be obtained. The differentiation between quercetin and 6-hydroxyluteolin aglycones was achieved by product ion analysis of the protonated and deprotonated aglycone (m/z 303 and 301), that showed the characteristic product ions (1,3)A at m/z 151 and 153 for quercetin, and m/z 167 and 169 for 6-hydroxyluteolin, consistent with the trihydroxylated A-ring skeleton. In the negative ion mode both glycosides were shown to undergo collision-induced homolytic and heterolytic cleavages of the O-glycosidic bond producing the aglycone radical-anion [Y0-H]-* and Y0(-) product ions. At lower collision energy, various fragmentations involving the glucose moieties were observed with a relatively higher abundance for the monoglucoside compared to the diglucoside. In the latter case both the inner and the terminal glucose residues were involved in the fragmentations, giving useful information on the 1 --> 3 interglycosidic linkage. CID MS/MS analysis of the sodiated molecules gave complementary information for the structural characterization of the studied compounds. Fragmentation mechanisms are proposed for the observed product ions.  相似文献   

19.
Linear as well as branched oligosaccharides were labeled with p-aminobenzoic ethyl ester (ABEE) using the glycosylamine closed-ring labeling approach and analyzed by negative-ion electrospray ionization mass spectrometry (ESI-MS). Linkage specific fragment ions of ABEE labeled linear oligosaccharides were proposed based on the MS2 and MS3 data for several ABEE labeled linear oligosaccharides with known linkage configurations. Fragmentation at the reducing end was similar to that observed for ABEE disaccharides whereas the fragmentation pattern not involving the reducing end was similar to underivatized disaccharides. Based on these ions, all the linkages of linear oligosaccharides could be unambiguously determined. The fragmentation pattern at the branched sugar was in general not quite the same as the linear one. However, many linkage specific fragment ions were also observed for linkages at the branched sugar. These ions along with the ions proposed for linear oligosaccharides were found to be quite useful for the determination of all the linkages of branched oligosaccharides.  相似文献   

20.
N-linked oligosaccharides were released from hen ovalbumin by PNGase F and derivatized with phenylhydrazine. They were then examined by matrix-assisted laser desorption/ionization (MALDI) mass spectrometry. Phenylhydrazones of N-glycans under MALDI-tandem mass spectrometry (MS/MS) and post-source decay (PSD) conditions produced relatively similar fragmentation patterns; however, more cross-ring cleavages and fragment ions corresponding to low abundance isomeric structures were detected by MS/MS and not in PSD. Most fragment ions corresponded to glycosidic cleavages with preferential loss of residues from the chitobiose core and the 3-antenna. Sialylated phenylhydrazone-N-glycans, characterized here for the first time in ovalbumin by tandem mass spectrometry, underwent losses of sialic acid residues followed the same fragmentation pathways observed with neutral derivatized glycans. The relative abundances of some fragment ions indicated the linkage position of sialic acid and provided information on the number of residues attached to the 6-antenna. Also, new structures of ovalbumin glycans were observed as part of this study and are reported here.  相似文献   

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