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21.
Zhen Long Dongping Yu Yanfang Liu Nana Du Yanduo Tao Lijuan Mei Zhimou Guo Xinmiao Liang 《Analytica chimica acta》2015
This study investigated the influence of organic sample solvents on separation efficiency of basic compounds under strong cation exchange (SCX) mode. The mixtures of acidic aqueous solution and organic solvent such as acetonitrile, ethanol, methanol and dimethyl sulfoxide (DMSO) were tested as sample solvents. For later-eluting analytes, the increase of sample solvent elution strength was responsible for the decrease of separation efficiency. Thus, sample solvents with weak elution strength could provide high separation efficiencies. For earlier-eluting analytes, the retention of organic sample solvents was the main factor affecting separation efficiency. Weakly retained solvents could provide high separation efficiency. In addition, an optimized approach was proposed to reduce the effect of organic sample solvent, in which low ionic solvent was employed as initial mobile phase in the gradient. At last, the analysis of impurities in hydrophobic drug berberine was performed. The results showed that using acidic aqueous methanol as sample solvents could provide high separation efficiency and good resolution (R > 1.5). 相似文献
22.
为提高机器人移动的灵活性和机动性,使机器人到任意位置均沿直线行走并改变姿态,需在传统的两轮驱动底盘上增加驱动轮,本文主要针对四轮驱动全向底盘的控制方法进行研究。本文对四轮驱动全向底盘进行运动学分析并建模,得到了控制系统传递函数,并进仿真验证;对四轮驱动全向底盘进行了动力学建模,分析了如何避免出现“打滑”现象;导航方式采用了经济、精度较高的全向码盘导航方式;控制上采用闭环控制,加入前置探测点和超前校正环节,并且考虑了实际过程中机体的加减速问题。实验结果表明,提出的控制方法可以使四轮驱动全向底盘实现预设功能,并且具有较高的控制精度,研究内容对机器人的灵活移动有着十分重要的意义。 相似文献
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Desalting peptides before mass spectrometry analysis is important because salts lead to adduct formation, increased chemical noise and ion suppression effect. A high concentration of salt can clog nanoelectrospray ionization (ESI) emitters. The reverse phase C18 material is commonly used to desalt peptides because of its high binding capacity. However, peptides with high hydrophilicity, such as glycopeptides, are not retained well on this material, resulting in the loss of peptide information. To improve the efficiency of glycopeptide desalting, we introduced a hydrophilic interaction chromatography (HILIC)-based material named click maltose. Four glycoproteins, horseradish peroxidase (HRP), human serum immunoglobulin G (IgG), bovine ribonuclease B (RNase B), and α-1 acid glycoprotein (AGP) were chosen as models and their glycopeptides were desalted with click maltose, AQ C18, Empore C18 and ZipTip C18. Click maltose as a HILIC material exhibited better performance than the other three C18 materials for both number of targeted glycopeptides and their corresponding intensities. In addition, accurate glycopeptide profiling was achieved with click maltose desalting regardless of peptide lengths and glycan types. 相似文献
26.
高效亲和色谱法测定2种中药成分与人血清白蛋白的结合率 总被引:1,自引:0,他引:1
采用高效亲和色谱技术(HPAC)对中药成分与人血清白蛋白(HSA)的相互作用进行了研究。首先采用点击化学的方法制备了表面键合有HSA蛋白的硅胶固定相并装填成亲和色谱柱,根据药物在该色谱柱上与空白硅胶柱上的保留时间差计算得到药物与蛋白的结合率。利用该方法测得模型化合物华法令与HSA的结合率与文献中采用超滤法测得的结果基本一致,表明该方法可用于测定药物与HSA的结合率。在此基础上用该方法测定了葛根素和告依春两种中药成分与HSA的相对结合率分别为10.26%和10.20%。同时用超滤的方法测定了葛根素与HSA的结合率为14.25%。结果表明,HPAC可以作为研究药物与蛋白相互作用的一种简便可行的方法,其测定结果与超滤方法一致。 相似文献
27.
Selective enrichment of glycopeptides is of great importance for protein glycosylation analysis using mass spectrometry since
the signals of glycopeptides could be severely suppressed by the coexisting non-glycosylated peptides in the protein digest.
In the present work, a strategy for N-linked glycopeptide enrichment through reversed-phase depletion coupled with hydrophilic
affinity enrichment by applying the customized matrix named Click OEG-CD is developed. Compared with single hydrophilic interaction
liquid chromatography (HILIC) mode, the strategy exhibited remarkably higher selectivity for N-linked glycopeptides. As many
as 22, 18, and eight glycopeptides were detected in the glycopeptide fraction enriched with the strategy from the digests
of human immunoglobulin G, horseradish peroxidase and bovine ribonuclease B, respectively. In addition, the strategy also
showed high glycosylation microheterogeneity coverage for the enrichment of human α1-acid glycoprotein glycopeptides. More than 170 glycopeptides covering all the glycosylation sites were detected in the enriched
fraction. The revered-phase liquid chromatography depletion coupled with HILIC enrichment strategy by using Click OEG-CD matrix
is expected to show more potential in further applications in glycosylation analysis. 相似文献
28.
Hydrophilic interaction chromatography (HILIC) was employed to separate the co-eluted flavonoids from licorice extract under RP-HPLC mode. HILIC separations were carried out with the Atalantis HILIC Silica column and the CD-based column. The co-eluted flavonoids were well retained and separated on the two HILIC columns under HILIC mode. Similar results were obtained in the separation of another isoflavones sample, from kudzu extract under HILIC mode. 相似文献
29.
Preparative parallel high performance liquid chromatography combined with solvent partition and other pretreatments were adopted to separate and purify compounds from an extract of Scutellaria barbata D. Don. Mass-triggered fraction collection allowed the rapid and precise isolation of target compounds. Twelve compounds were isolated from the extract of S. barbata D. Don, their purity in area percent was determined by HPLC analysis, and the structures of seven compounds were further identified with HPLC/ESI-MS, (1)H NMR, and( 13)C NMR, among which 4-(3,4-dihydroxy-phenyl)-but-3-en-2-one, acacetin-7-diglucuronide, and luteolin-7-diglucuronide were the first to be identified from this plant. The results demonstrated that multi-channel parallel preparative HPLC/UV/MS is an efficient method for isolation and purification of compounds from natural products. 相似文献
30.
Jin Y Xue X Liu Y Xiao Y Zhang J Shi H Zhang F Liang X 《Journal of chromatography. A》2008,1183(1-2):76-86
The preparation of components from a complex sample is a difficult task. The optimization of the separation and subsequent scale-up is usually carried out by trial and error. In this study, the relationship between retention parameters a and c for analytical and preparative separations was developed when the same solid adsorbent and mobile phase were used. The prediction and optimization of the preparative separation of a complex sample could be achieved by direct and simple conversion of the experimentally determined data from an analytical level. The novel method was successfully applied to optimize the separation of target compounds in traditional Chinese medicine (TCM). 相似文献