222 resultados para LC-APCI-MS


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卤虫(Artemia)是一种广温、耐高盐的小型甲壳动物,广泛分布于内陆盐湖和沿海盐田中。卤虫的无节幼体作为重要的蛋白优质饵料,被广泛的应用于水产养殖生产。卤虫具有特殊的生物学特性,是研究甲壳动物胚胎发育的良好的实验材料,同时也是一种研究动物抗逆机制的模式动物。卤虫有卵生和卵胎生两种繁殖后代的方式,当环境条件适宜时,卤虫倾向于采取卵胎生方式,即直接产生无节幼体;而在恶劣的环境条件下,卵生方式占主要地位,产生处于滞育状态的、具有复杂外壳的休眠卵。卤虫的滞育卵具有独特的生物学特性和特殊的生理生化特点。其发育停滞,细胞分裂停止,酶活力下降,代谢活动受到抑制并可耐受各种极端恶劣环境,如缺氧、低温、紫外线、干燥等。即使在最适的环境中滞育卵的孵化率也很低,只有受到某些特定的非生物信号的刺激才自能终止这种滞育状态,恢复生理代谢;当环境条件适宜时,能够继续发育孵化成无节幼体。因此,卤虫的滞育卵在卤虫的整个生活史中占有重要的地位。另一方面,卤虫是极端环境生物,能够抵抗各种恶劣环境胁迫刺激,因此是研究抗逆机理的良好的实验动物。 本论文利用蛋白质组学技术,研究了卤虫滞育卵及滞育卵发育过程中的蛋白质组表达情况,并研究了卤虫幼体在重金属刺激后蛋白表达的变化情况。得到如下结果: 建立了中华卤虫滞育卵可溶性总蛋白的双向凝胶电泳对照图谱。在pH 4–7、分子量10-100 kDa范围内,检测到约 233个蛋白点,并利用高效液相色谱-质谱联用(LC-ESI-MS/MS)技术鉴定了其中的48个丰度较大及感兴趣的蛋白点,根据这些蛋白的生物学功能进行分类,功能类别包括细胞防御蛋白、抗氧化蛋白、细胞骨架蛋白、代谢相关蛋白等。在卤虫滞育卵中共分离鉴定到6个分子量和等电点存在差异的小热休克蛋白p26的异构体,生物信息学分析表明该蛋白有三种不同的功能位点,分别是蛋白激酶C磷酸化位点,Casein 激酶II磷酸化位点及 N-myristoylation 位点。 采用低温脱水的方法对滞育卵进行激活刺激,并对活化卵和滞育卵蛋白表达图谱进行了对比分析。结果表明对卤虫滞育卵的激活刺激引起了其蛋白表达的明显变化。活化卵图谱中蛋白点总数比滞育卵中明显增多,特别是在pI<5.5范围内。约70个蛋白点在激活刺激后上调表达,包括部分只在激活卵中表达的蛋白;25个下调表达,包括部分只在滞育卵中表达的蛋白;其余约60%(占滞育卵蛋白点数目百分比)的蛋白点表达量基本恒定。热休克蛋白家族、抗氧化蛋白家族成员等蛋白变化明显,小热休克蛋白p26、小热休克蛋白ArHsp21蛋白以及过氧化物还原酶异构体在激活卵中特异表达。 活化卵孵化过程中不同发育时期的蛋白表达又呈现出不同的特点,分别在孵化后6h、12h、18h和24h的蛋白质组学图谱上检测到267、285、195和210个蛋白点。孵化后6h和12h休眠卵蛋白表达个数相对较多,与胚胎发育过程中的器官发生和剧烈的形态变化相适应;孵化后18h和24h休眠卵蛋白表达明显下降,部分蛋白的表达关闭,部分蛋白开始富集表达。 利用双向凝胶电泳技术分析了中华卤虫幼体受到急性硫酸铜刺激后的蛋白表达变化情况。通过图谱对比分析,检测到了5mM硫酸铜刺激24h后,卤虫幼体中14个差异表达的蛋白点。利用LC-ESI-MS/MS技术鉴定了其中的7个蛋白,其中3个蛋白上调表达,分别是热休克蛋白70(7.5倍), 肌动蛋白(2.3倍)和伴侣分子亚基1(3.0倍)。3个蛋白下调表达,分别是:精氨酸激酶(2.8倍), 延伸因子2 (2.0倍) 和富含甘氨酸蛋白(2.0倍)。硫酸铜刺激后特异表达的一个蛋白被鉴定为过氧化物还原酶(Peroxiredoxin,Prx)。根据质谱检测提供的蛋白肽段信息和其他生物过氧化物还原酶保守氨基酸序列设计简并引物,结合RACE技术,从中华卤虫幼体中克隆到了过氧化物还原酶基因,该基因的cDNA全长为756个碱基,其中开放阅读框为594个碱基,编码198个氨基酸,其蛋白理论分子量为22.0 kDa,理论等电点为6.98。多序列比对结果显示中华卤虫Prx基因的推导氨基酸序列与美国卤虫和中国对虾的同源性高达98%和94%。实时荧光定量PCR结果显示,硫酸铜刺激后,该基因在卤虫无节幼体中的转录水平明显升高,在24h达到正常水平的3.0倍。

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Two methods for tetrodotoxin analysis using liquid chromatography coupled with electrospray iontrap mass spectrometry (LC-ESI-MS) have been established with C,, reversed phase column and hydrophilic interaction liquid chromatography (HILIC) column, respectively. Sensitivity and reproducibility of the methods were compared. The method using C-18 column in selected ion monitoring (SIM) mode had a detection limit (S/N = 3) of 120 pg, and a good linearity of the calibration curve was obtained for tetrodotoxin (r = 0. 9992). High reproducibility of the method was observed, with a relative standard deviation (RSD) below 10%. The method using HILIC column in SIM mode and selected reaction monitoring (SRM) mode had detection limits (S/N = 3) of 15 and 3.75 pg, respectively. Good linearity of the calibration curves was obtained for tetrodotoxin (r = 0. 9996 and 0. 9998 in SIM and SRM mode, respectively). T he reproducibility was high in SIM mode but relatively poor in SRM mode. Based on the results, the method using HILIC column in SIM mode was suggested for the analysis of tetrodotoxin with LC-MS system.

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The seed oil from Nitraria tangutorum samples was obtained by supercritical carbon dioxide extraction methods. The extraction parameters for this methodology, including pressure, temperature, particle size and extraction time, were optimized. The free fatty acids in the seed oil were separated with a pre-column derivation method and 1,2-benzo-3,4-dihydrocarbazole-9-ethyl-p-toluenesulfonate (BDETS) as a labeling regent, followed by high-performance liquid chromatography (HPLC) with fluorescence detection. The target compounds were identified by mass spectrometry with atmospheric pressure chemical ionization (APCI in positive-ion mode). HPLC analysis shows that the main compositions of the seed oil samples were free fatty acids (FFAs) in high to low concentrations as follows: linoleic acid, oleic acid, hexadecanoic acid and octadecanoic acid. The assay detection limits (at signal-to-noise of 3:1) were 3.378-6.572 nmol/L. Excellent linear responses were observed, with correlation coefficients greater than 0.999. The facile BDETS derivatization coupled with mass spectrometry detection allowed the development of a highly sensitive method for analyzing free fatty acids in seed oil by supercritical CO2 extraction. The established method is highly efficient for seed oil extraction and extremely sensitive for fatty acid profile determination. (C) 2007 Elsevier B.V. All rights reserved.

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A simple and sensitive high-performance liquid chromatographic (HPLC) method with fluorescence detection and mass spectrometric identification has been developed for analysis of 30 long-chain and short-chain free Fatty acids (FFAs). The fatty acids were derivatized to their esters with 1-[2-(p-toluenesulfonate)ethyl]-2-phenylimidazole-[4,5-f]-9,10-phenanthrene (TSPP) in N,N-dimethylformamide (DMF) at 90 degrees C with anhydrous K2CO3 as catalyst. A mixture Of C-1-C-30 fatty acids was completely separated within 60 min by gradient elution on a reversed-phase C-8 column. Qualitative identification of the acids was performed by atmospheric-pressure chemical ionization mass spectrometry (APCI-MS) in positive-ion mode. The fluorescence excitation and emission wavelengths were 260 and 380 nm, respectively. Quantitative determination of the 30 acids in two Tibetan medicines Gentiana straminea and G. dahurica was performed. The results indicated that the medicines contained many FFAs. Linear correlation coefficients for the FFA derivatives were > 0.9991. Relative standard deviations (RSDs, n = 6) for the fatty acid derivatives were < 3%. Detection limits (at a signal-to-noise ratio of 3:1) were 3.1-38 fmol. When the fatty acid derivatives were determined in the two real samples results were satisfactory and the sensitivity and reproducibility of the method were good.

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A sensitive method for the determination of free fatty acids using 2-(2-(anthracen-10-yl)-1H-naphtho[2,3-dimidazol-1-yl) ethyl-p-toluenesuIfonate (ANITS) as tagging reagent with fluorescence detection has been developed. ANITS could easily and quickly label fatty acids in the presence of the K2CO3 catalyst at 90 degrees C for 40 min in N,N-dimethylformamide solvent. From the extracts of rape bee pollen samples, 20 free fatty acids were sensitively determined. Fatty acid derivatives were separated on a reversed-phase Eclipse XDB-C8 column by HPLC in conjunction with gradient elution. The corresponding derivatives were identified by post-column APCI/MS in positive-ion detection mode. ANITS-fatty acid derivatives gave an intense molecular ion peak at mlz [M+H](+); with MS/MS analysis, the collision-induced dissociation spectra of m/z [M+H](+) produced the specific fragment ions at mlz [M-345](+) and mlz 345.0 (here, m/z 345 is the core structural moiety of the ANITS molecule). The fluorescence excitation and emission wavelengths of the derivatives were lambda(ex) = 250 nm and lambda(em) = 512 nm, respectively. Linear correlation coefficients for all fatty acid derivatives are > 0.9999. Detection limits, at a signal-to-noise ratio of 3 : 1, are 24.76-98.79 fmol for the labeled fatty acids.

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A pre-column derivatization method for the sensitive determination of amino acids and peptides using the tagging reagent 1,2-benzo-3,4dihydrocarbazole-9-ethyl chloroformate (BCEOC) followed by high-performance liquid chromatography with fluorescence detection has been developed. Identification of derivatives was carried out by liquid chromatography/electrospray ionization mass spectrometry (LC/ESI-MS/MS). The chromophore of 2-(9-carbazole)-ethyl chloroformate (CEOC) reagent was replaced by 1,2-benzo-3,4-dihydrocarbazole functional group, which resulted in a sensitive fluorescence derivatizing reagent BCEOC. BCEOC can easily and quickly label peptides and amino acids. Derivatives are stable enough to be efficiently analyzed by high-performance liquid chromatography. The derivatives showed an intense protonated molecular ion corresponding m/z (M + H)(+) under electrospray ionization (ESI) positive-ion mode with an exception being Tyr detected at negative mode. The collision-induced dissociation of protonated molecular ion formed a product at m/z 246.2 corresponding to the cleavage of C-O bond of BCEOC molecule. Studies on derivatization demonstrate excellent derivative yields over the pH 9.0-10.0. Maximal yields close to 100% are observed with a 3-4-fold molar reagent excess. Derivatives exhibit strong fluorescence and extracted detzvatization solution with n-hexane/ethyl acetate (10:1, v/v) allows for the direct injection with no significant interference from the major fluorescent reagent degradation by-products, such as 1,2-benzo-3,4-dihydrocarbazole-9-ethanol (BDC-OH) (a major by-product), mono- 1,2-benzo-3,4-dihydrocarbazole-9-ethyl carbonate (BCEOC-OH) and bis-(1,2-benzo-3,4-dihydrocarbazole-9-ethyl) carbonate (BCEOC)(2). In addition, the detection responses for BCEOC derivatives are compared to those obtained with previously synthesized 2-(9-carbazole)-ethyl chloroformate (CEOC) in our laboratory. The ratios AC(BCEOC)/AC(CEOC) = 2.05-6.51 for fluorescence responses are observed (here, AC is relative fluorescence response). Separation of the derivatized peptides and amino acids had been optimized on Hypersil BDS C-18 column. Detection limits were calculated from 1.0 pmol injection at a signal-to-noise ratio of 3, and were 6.3 (Lys)-177.6 (His) fmol. The mean interday accuracy ranged from 92 to 106% for fluorescence detection with mean %CV < 7.5. The mean interday precision for all standards was < 10% of the expected concentration. Excellent linear responses were observed with coefficients of > 0.9999. Good compositional data could be obtained from the analysis of derivatized protein hydrolysates containing as little as 50.5 ng of sample. Therefore, the facile BCEOC derivatization coupled with mass spectrometry allowed the development of a highly sensitive and specific method for the quantitative analysis of trace levels of amino acids and peptides from biological and natural environmental samples. (c) 2005 Elsevier B.V. All rights reserved.

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A rapid and sensitive method was developed and validated for the determination of MCYST (microcystin)-RR, -LR, and [Dha(7)] MCYST-LR in rat plasma by liquid chromatography-tandem mass spectrometry. The analytes were extracted from rat plasma by protein precipitation, followed by solid-phase extraction. Liquid chromatography with electrospray ionization mass spectrometry, operating in selected reaction monitoring (SRM) mode, was used to quantify MCYST-RR, -LR, and [Dha(7)] MCYST-LR in rat plasma. The recoveries for each analyte in rat plasma ranged from 70.8 to 88.7%. The calibration curve was linear within the range from 0.005 to 1.25 mu g mL(-1). The limit of detection were 1.4, 1.0, 0.6 ng mL(-1) for MCYST-RR, -LR, and [Dha(7)] MCYST-LR. The overall precision was determined on three different days. The values for within- and between-day precision in rat plasma were within 15%. This method was applied to the identification and quantification of microcystins in rat plasma with acute exposure of microcystins via intravenous injection.

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In vitro a-glucosidase inhibition assays and ultrafiltration liquid chromatography with photodiode array detection coupled to electrospray ionization tandem mass spectrometry (ultrafiltration LC-DAD-ESI-MSn) were combined to screen a-glucosidase inhibitors from hawthorn leaf flavonoids extract (HLFE). As a result, four compounds were identified as alpha-glucosidase inhibitors in the HLFE, and their structures were confirmed to be quercetin-3-O-rha-(1-4)-glc-rha and C-glycosylflavones (vitexin-2 ''-O-glucoside, vitexin-2 ''-O-rhamnoside and vitexin) by high-resolution sustained off resonance irradiation collision-induced dissociation (SORI-CID) data obtained by Fourier transform ion cyclotron resonance mass spectrometry (FTICR MS).

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A novel labeling reagent 1-(2-naphthyl)-3-methyl-5-pyrazolone (NMP) coupling to liquid chromatography with electrospray ionization mass spectrometry for the detection of carbohydrates from the derivatized rape bee pollen samples is reported. Carbohydrates are derivatized to their bis-NMP-labeled derivatives. Derivatives showed an intense protonated molecular ion at m/z [M+H](+) in positive-ion detection mode. The mass-to-charge ratios of characteristic fragment ions at m/z 473.0 could be used for the accurately qualitative analysis of carbohydrates. This characteristic fragment ion is from the cleavage of C2-C3 bond in carbohydrate chain giving the specific fragment ions at m/z [MH-CmH2m+1Om-H2O](+) for pentose, hexose and glyceraldehydes and at m/z [MH-CmH2m-1Om+1-H2O](+) for alduronic acids such as galacturonic acid and glucuronic acid (m = n - 2, n is carbon number of carbohydrate). No interferences for all aliphatic and aromatic aldehydes presented in natural environmental samples were observed due to the highly specific parent mass-to-charge ratio and the characteristic fragment ions. The method, in conjunction with a gradient elution, offered a baseline resolution of carbohydrate derivatives on a reversed-phase Hypersil ODS-2 column. The carbohydrates such as mannose, galacturonic acid, glucuronic acid, rhamnose, glucose, galactose, xylose, arabinose and fucose can successfully be detected.

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The divergent synthesis of a new carbosilane liquid-crystalline (LC) dendrimer of the first generation (D1) is described. Twelve 4-butoxyazobenzene groups are used as mesogenic fragments and attached in the periphery of the molecule. Structure and properties of D1 were characterized by element analysis, H-1 NMR, MALDI-TOF-MS, IR, UV-Vis, polarizing optical micrograph, DSC and WAXD. It is argued that mesophase of nematic type is realized. It is shown that the mesophase type of the dendrimer essentially depends on the chemical nature of the mesogenic groups. Phase behavior of D1 is K82N1331132N67K. The melting point of D1 is 30similar to43 degreesC lower than that of M5, its clearing temperature is 9 similar to 11 degreesC higher than that of M5 and its mesophase region is enlarged by 39 similar to 54 degreesC compared to that of M5. Eight extinguished brushes emanating from a stationary point are observed, corresponding to the high-strength disclination of S = + 2 of dendrimer. The clearing enthalpy of D1 is smaller than the value that is commonly found for phase transition n-i in LC and LC polymers. This may be due to the presence of branched dendrimer cores which cannot be easily deformed to fit into the anisotropic LC phase structure.

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采用高效液相色谱/质谱法(HPLC/MS)分析抱茎獐牙菜提取物中5种苷性成分。在C18柱上,以甲醇(A:含20%水)和水(B:含10%甲醇)为流动相,流速1mL/min,线性梯度洗脱B从100%到0%,35min,液相色谱-质谱质联用(LC/MS),大气压化学电离源(APCI),对其中5种苷性成分进行定性鉴定。经HPLC/APCIMS分析确证,抱茎獐牙菜提取物中含有獐牙菜苦苷(swertiamarin)、龙胆苦苷(gentiopicroside)、獐牙菜苷(sweroside)、异红草苷(isoorientin)和獐牙菜山酮苷(swertianolin)。采用外标法定量,回收率分别为98.3%、106.7%、92.3%、88.2%和107.3%,该方法简便、快速、准确。

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A new labeling reagent, 1-(2-naphthyl)-3-methyl-5-pyrazolone (NMP), coupling with liquid chromatography (LC) with electrospray ionization mass spectrometry (ESI-MS) for the detection of carbohydrates from a famous Tibetan medicine is reported. Carbohydrates were derivatized to their bis-NMP-labeled derivatives. The method, in conjunction with a gradient elution, offered a baseline resolution of carbohydrate derivatives on a reversed phase Hypersil ODS-2 column. The carbohydrates such as mannose, galacturonic acid, glucuronic acid, rhamnose, glucose, galactose, xylose, arabinose, and fucose could be successfully detected by UV and ESI-MS. Derivatives showed intense protonated molecular ion at m/z [M+H]+ in positive ion mode. The mass to charge ratios of characteristic fragment ions at m/z 473.0 could be used for the accurately qualitative identification of carbohydrates; this characteristic fragment ion was from the cleavage of C2-C3 bond in the carbohydrate chain giving the specific fragment ions at m/z [MH-CmH2m+1Om-H2O](+) for pentose, hexose, and glyceraldehydes, and at m/z [MH-CmH2m-1Om+1-H2O](+) for alduronic acids, such as galacturonic acid and glucuronic acid (m=n-2, n is carbon atom number of carbohydrate). Compared with the traditional 1-phenyl-3-methyl-5-pyrazolone (PMP) reagent, currently synthesized NMP show the advantage of higher sensitivity to carbohydrate compounds with UV and ESI-MS detection.