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1.
采用微芯片毛细管电泳非接触电导检测法快速测定了盐酸洛美沙星胶囊中盐酸洛美沙星的含量。探讨了缓冲液类型、浓度,添加剂种类、浓度及分离电压、进样时间等因素对分离检测的影响。实验采用5.0mmol/L HAc(pH=2.5)+5%乙醇为缓冲溶液,分离电压3.0 kV,在1 min内实现了盐酸洛美沙星的快速分离测定。优化条件下盐酸洛美沙星的线性范围为20.0~250.0μg/mL,检出限为10.0μg/mL(S/N=3),RSD=2.0%,加标回收率为98.6%~103%。  相似文献   

2.
提出用带有非接触电导检测的微芯片毛细管电泳法快速测定片剂中盐酸二甲双胍的含量。取盐酸二甲双胍片20片,剥除糖衣后混匀研细,称取0.100 0g,用水超声溶解、过滤,滤液定容至100mL供毛细管电泳分析。十字通道芯片使用前按规定进行清洗。试验中采用含5%(体积分数)乙醇和0.1mmol·L-1十二烷基磺酸钠的2.0mmol·L-1柠檬酸缓冲溶液作为分离介质,进时间为10.0s,分离电压为1.3kV,可在1min内实现分离和测定。盐酸二甲双胍的质量浓度在10.0~110.0mg·L-1范围内与相应峰高呈线性关系,检出限(3S/N)为1.0mg·L-1。应用此方法分析了3个片剂样品,并用标准加入法做回收试验,测得回收率在94.5%~103%之间,测定值的相对标准偏差(n=6)在0.63%~1.1%之间。  相似文献   

3.
报道了一种芯片毛细管电泳-非接触电导法,用于快速测定葡萄糖氯化钠注射液中两种药物的含量。实验考察了运行缓冲液pH值和分离电压对组分分离的影响,以及检测器激励频率对组分信号响应和灵敏度的影响。确定以20 mmol/L硼酸缓冲液(pH 9.6)为分离介质,分离电压为1 200 V;最佳激励频率为70kHz。在上述条件下,两种成分(葡萄糖和Na+)可在60 s内实现有效分离。Na+和葡萄糖的线性响应范围分别为20~1 000μmol/L和50~5 000μmol/L(r≥0.992);按信噪比(S/N)为3∶1计算检出限分别为8.2μmol/L和26.7μmol/L。两个组分的回收率分别为95%~99%和97%~104%,相对标准偏差(RSDs)均小于4.0%。该文首次报道了葡萄糖和氯化钠两种常见药物成分的同时测定。方法简便、快速、准确度高、稳定性好,用于注射剂含量的测定,结果满意。  相似文献   

4.
陈昌国  李红  范玉静 《色谱》2011,29(2):137-140
建立了毛细管电泳-非接触电导检测分离测定硫酸沙丁胺醇的分析方法。分别考察了分离介质、背景电解质及其浓度和pH、分离电压、进样时间、激发电压、激发频率等因素对实验结果的影响。在优化的实验条件(以15 mmol/L乳酸水溶液(pH 2.7)为电泳介质,10 kV下电动进样3 s,分离电压为10 kV,激发电压为60 V,激发频率为120 kHz)下,硫酸沙丁胺醇的检出限(信噪比为3)为1.92 mg/L,在9.60~48.0 mg/L质量浓度范围内有良好的线性关系(r=0.995),迁移时间的相对标准偏差(RSD)为2.7%。将该方法用于硫酸沙丁胺醇片和硫酸沙丁胺醇气雾剂中的硫酸沙丁胺醇含量的测定,加标回收率为90%~113%,检测结果与药厂的标示值相符合,为硫酸沙丁胺醇的检测提供了一种简便、快速、高灵敏的方法。关键词: 毛细管电泳;非接触电导检测法;硫酸沙丁胺醇;硫酸沙丁胺醇片;硫酸沙丁胺醇气雾剂  相似文献   

5.
采用微芯片毛细管电泳非接触电导检测法,对黄花鱼中非法添加的工业染料碱性嫩黄O进行了分析。 探讨了缓冲液种类、浓度,分离电压和进样时间等因素对分离检测的影响。 实验选择5.0 mmol/L乳酸缓冲液(pH=3.29)、1.8 kV分离电压,在1.0 min内实现了碱性嫩黄O的快速分离测定。 在优化条件下,碱性嫩黄O浓度的线性范围为5.0~100.0 mg/L,黄花鱼中碱性嫩黄O的检出限为0.2 mg/kg,该法可成功测定黄花鱼中碱性嫩黄O的含量。  相似文献   

6.
综述了毛细管电泳(CE)及芯片毛细管电泳(MCE)的电容耦合非接触电导检测(Capacitively Coupled Contactless Conductivity detection,C4D)的研究状况;并分别对其装置、检测的影响因素及其应用进行了评述。引用文献81篇。  相似文献   

7.
高效液相色谱法测定盐酸倍他洛尔   总被引:4,自引:0,他引:4  
张建业  闫学斌  可钰  刘宏民 《色谱》2004,22(5):558-558
盐酸倍他洛尔(Betaxolol Hydrochloride)是优异的心脏选择性β-受体阻滞剂。其β-受体阻滞作用为普萘洛尔的4倍,基本无内源性拟交感活性,膜稳定作用也很弱,口服后在胃肠道吸收完全,血药浓度达峰时间为2-4h,同时进食不影响吸收。临床主要用于治疗中度高血压和心绞痛;其滴眼剂用于治疗眼内压增高和开角型青光眼。国内一直未  相似文献   

8.
运用毛细管电泳非接触式电导检测方法对4种中枢神经系统用药-盐酸阿扑吗啡、氢溴酸加兰他敏、富马酸喹硫平、氯氮平的分离进行了研究。考察了电泳介质的种类、浓度、分离电压、进样时间对分离效果的影响,在10 mmol/L三羟基氨基甲烷(Tris)-8 mmol/L柠檬酸(Cit)-20%甲醇的运行缓冲液中,激发电压为60V,激发频率为600kHz,4种药物在15 min内得到了分离。4种药物的线性范围分别为0.97~15.6 mg/L;0.97~15.6 mg/L;0.48~15.6 mg/L和0.97~250 mg/L,检测限为0.32,0.32,0.16和0.32 mg/L。  相似文献   

9.
采用毛细管电泳非接触电导检测技术,以碳酸钠-碳酸氢钠为缓冲体系,同时分离测定了纳米二氧化钛和三氧化二铝两种金属氧化物的悬浮粒子.考察了缓冲溶液种类、浓度及pH对分离效果的影响,探讨了激发频率、激发电压对检测信号信噪比的影响.在最佳分离检测条件下,不同粒径的二氧化钛和三氧化二铝悬浮粒子在8 min内可实现完全分离.所选择的最佳条件为:① pH 10.5缓冲溶液为5 mmol·L-1碳酸钠和碳酸氢钠混合溶液;②分离电压20 kV;③进样条件20 kV,6 s;④激发频率460 kHz;⑤交流激发电压4 V(给出最高的S/N比值).  相似文献   

10.
毛细管电泳非接触电导检测技术的新发展   总被引:1,自引:0,他引:1  
毛细管电泳非接触电导检测(CE-CCD)是近年来发展迅速的一种检测技术。本文介绍了非接触式电导检测(CCD)的发展概况,着重阐述了CCD的原理、组成及应用情况。  相似文献   

11.
A simple, rapid method using CE and microchip electrophoresis with C4D has been developed for the separation of four nonsteroidal anti-inflammatory drugs (NSAIDs) in the environmental sample. The investigated compounds were ibuprofen (IB), ketoprofen (KET), acetylsalicylic acid (ASA), and diclofenac sodium (DIC). In the present study, we applied for the first time microchip electrophoresis with C4D detection to the separation and detection of ASA, IB, DIC, and KET in the wastewater matrix. Under optimum conditions, the four NSAIDs compounds could be well separated in less than 1 min in a BGE composed of 20 mM His/15 mM Tris, pH 8.6, 2 mM hydroxypropyl-beta-cyclodextrin, and 10% methanol (v/v) at a separation voltage of 1000–1200 V. The proposed method showed excellent repeatability, good sensitivity (LODs ranging between 0.156 and 0.6 mg/L), low cost, high sample throughputs, portable instrumentation for mobile deployment, and extremely lower reagent and sample consumption. The developed method was applied to the analysis of pharmaceuticals in wastewater samples with satisfactory recoveries ranging from 62.5% to 118%.  相似文献   

12.
A simple microchip CE method integrated with contactless conductivity detection was developed for the direct determination of partition coefficients of selected pharmaceuticals after phase distribution equilibrium. The equilibrium of distribution between two phases for four pharmaceuticals was performed using a 1‐octanol/water system and 1‐octanol/buffer system. During the concentration determination, several major factors affecting detection were investigated in detail for each pharmaceutical to optimize the detection sensitivity. In the optimal conditions, sufficient electrophoretic separation and sensitive detection for each target analyte can be achieved within 40 s. The two systems showed a pH‐dependent partition behavior. Moreover, the measured values showed excellent agreement with those obtained by the traditional shake‐flask method with HPLC–UV detection and literature reports, respectively. The developed method can be successfully applied to measure partition coefficient values of pharmaceuticals and requires much shorter analytical time compared to traditional methods.  相似文献   

13.
An integrated detection circuitry based on a lock-in amplifier was designed for contactless conductivity determination of heavy metals. Combined with a simple-structure electrophoresis microchip, the detection system is successfully utilized for the separation and determination of various heavy metals. The influences of the running buffer and detection conditions on the response of the detector have been investigated. Six millimole 2-morpholinoethanesulfonic acid + histidine were selected as buffer for its stable baseline and high sensitivity. The best signals were recorded with a frequency of 38 kHz and 20 V(pp). The results showed that Mn(2+), Cd(2+), Co(2+), and Cu(2+) can be successfully separated and detected within 100 s by our system. The detection limits for five heavy metals (Mn(2+), Pb(2+), Cd(2+), Co(2+), and Cu(2+)) were determined to range from about 0.7 to 5.4 μM. This microchip system performs a crucial step toward the realization of a simple, inexpensive, and portable analytical device for metal analysis.  相似文献   

14.
Paracetamol (PAC) is one of the most extensively used analgesics and antipyretic drugs to treat mild and moderate pain. P-aminophenol (PAP), the main hydrolytic degradation product of PAC, can be found in environmental water. Recently, CE has been developed for the detection of a wide variety of chemical substances. The purpose of this study is to develop a simple and fast method for the detection and separation of PAC and its main hydrolysis product PAP using CE and microchip electrophoresis with capacitively coupled contactless conductivity detection. The determination of these compounds using microchip electrophoresis with capacitively coupled contactless conductivity detection is being reported for the first time. The separation was run for all analytes using a BGE (20 mM β-alanine, pH 11) containing 14% (v/v) methanol. The RSDs obtained for migration time were less than 4%, and RSDs obtained for peak area were less than 7%. The detection limits (S/N = 3) that were achieved ranged from 0.3 to 0.6 mg/L without sample preconcentration. The presented method showed rapid analysis time (less than 1 min), high efficiency and precision, low cost, and a significant decrease in the consumption of reagents. The microchip system has proved to be an excellent analytical technique for fast and reliable environmental applications.  相似文献   

15.
A microfabricated thin glass chip for contactless conductivity detection in chip capillary electrophoresis is presented in this contribution. Injection and separation channels were photolithographed and chemically etched on the surface of substrate glass, which was bonded with a thin cover glass (100 μm) to construct a new microchip. The chip was placed over an independent contactless electrode plate. Owing to the thinness between channel and electrodes, comparatively low excitation voltage (20–110 V in Vp–p) and frequency (40–65 kHz) were suitable, and favorable signal could be obtained. This microchip capillary electrophoresis device was used in separation and detection of inorganic ions, amino acids and alkaloids in amoorcorn tree bark and golden thread in different buffer solutions. The detection limit of potassium ion was down to 10 μmol/L. The advantages of this microchip system exist in the relative independence between the microchip and the detection electrodes. It is convenient to the replacement of chip and other operations. Detection in different position of the channel would also be available.  相似文献   

16.
Tanyanyiwa J  Hauser PC 《Electrophoresis》2004,25(17):3010-3016
The extension of contactless conductivity detection in electrophoresis to the determination of basic drugs is demonstrated using beta-adrenergic blocking agents (beta-blockers) and other physiologically active amines as examples. The high-voltage approach to conductivity detection was employed for conventional capillaries as well as microchip devices. Acidic buffers were used in all cases. A buffer consisting of 100 mM acetic acid and 1 mM histidine was deemed most optimal for the separation of six beta-blockers and best results for the analysis of the other amines were achieved with a 20 mM lactic acid buffer at low pH-value. The detection limits ranged from 0.06 to 5 microM. To demonstrate potential practical applications, a main component assay was conducted for three pharmaceutical formulations. On-chip, five pharmaceutical amines could be baseline-resolved in a 8 cm long microchannel in 90 s, albeit a reduced sensitivity and peak capacity compared to conventional capillary electrophoresis.  相似文献   

17.
Saccharides form one of the major constituents of biological macromolecules in living organisms. Many biological processes including protein folding, stability, immune response and receptor activation are regulated by glycosylation. In this work, we optimized a capillary electrophoresis method with capacitively coupled contactless conductivity detection for the separation of eight monosaccharides commonly found in glycoproteins, namely D-glucose, D-galactose, D-mannose, N-acetyl-D-glucosamine, N-acetyl-D-galactosamine, D-fucose, N-acetylneuraminic acid, and D-xylose. A highly alkaline solution of 50 mM sodium hydroxide, 22.5 mM disodium phosphate, and 0.2 mM CTAB (pH 12.4) was used as a background electrolyte in a 10 µm id capillary. To achieve baseline separation of all analytes, a counter-directional pressure of –270 kPa was applied during the separation. The limits of detection of our method were below 7 µg/ml (i.e., 1.5 pg or 1 mg/g protein) and the limits of quantification were below 22 µg/ml (i.e., 5 pg or 3 mg/g protein). As a proof of concept of our methodology, we performed an analysis of monosaccharides released from fetuin glycoprotein by acid hydrolysis. The results show that, when combined with an appropriate pre-concentration technique, the developed method can be used as a monosaccharide profiling tool in glycoproteomics and complement the routinely used LC-MS/MS analysis.  相似文献   

18.
Law WS  Kubán P  Zhao JH  Li SF  Hauser PC 《Electrophoresis》2005,26(24):4648-4655
The separation and detection of commonly used preservatives (benzoate, sorbate) and vitamin C by both conventional CE and microchip electrophoresis with capacitively coupled contactless conductivity detection is presented. The separation was optimized by adjusting the pH-value of the buffer and the use of hydroxypropyl-beta-CD (HP-beta-CD) and CTAB as additives. For conventional CE, optimal separation conditions were achieved in a histidine/tartrate buffer at pH 6.5, containing 0.025% HP-beta-CD and 0.1 mM CTAB. LOD ranged from 0.5 to 3 mg/L (S/N = 3) and the RSDs for migration time and peak area were less than 0.1 and 2%, respectively. A considerable reduction of analysis time can be accomplished by using microchip electrophoresis without significant loss in sensitivity under optimal separation conditions. A histidine/tartrate buffer at pH 6.5, incorporating 0.06% HP-beta-CD and 0.25 mM CTAB, gave detection limits ranging between 3 and 10 mg/L and satisfactory reproducibilities of < or =0.4% for the migration time and < or =3.5% for the peak area. The methods developed are useful for the quantitative determination of food additives in real samples such as soft drinks and vitamin C tablets.  相似文献   

19.
Nearly all analyses by capillary electrophoresis (CE) are performed using optical detection, utilizing either absorbance or (laser-induced) fluorescence. Though adequate for many analytical problems, in a large number of cases, e.g., involving non-UV-absorbing compounds, these optical detection methods fall short. Indirect optical detection can then still provide an acceptable means of detection, however, with a strongly reduced sensitivity. During the past few years, contactless conductivity detection (CCD) has been presented as a valuable extension to optical detection techniques. It has been demonstrated that with CCD detection limits comparable, or even superior, to (indirect) optical detection can be obtained. Additionally, construction of the CCD around the CE capillary is straightforward and robust operation is easily obtained. Unfortunately, in the literature a large variety of designs and operating conditions for CCD were described. In this contribution, several important parameters of CCD are identified and their influence on, e.g., detectability and peak shape is described. An optimized setup based on a well-defined detection cell with three detection electrodes is presented. Additionally, simple and commercially available read-out electronics are described. The performance of the CCD-CE system was demonstrated for the analysis of peptides. Detection limits at the microM level were obtained in combination with good peak shapes and an overall good performance and stability.  相似文献   

20.
Zemann AJ 《Electrophoresis》2003,24(12-13):2125-2137
Capacitively coupled contactless conductivity detection (C(4)D) has become an accepted detection method in capillary electrophoresis (CE) for a variety of analytes. Advantages of this technique over optical detection modes and galvanic contact conductivity detection include great flexibility in capillary handling and rather simple mechanical parts and electronics, as it can be performed in an on-capillary mode. Furthermore, the detection principle can be used with capillaries made of other materials than fused silica (PEEK, Teflon), with chip-based separation technologies, or with capillaries having very small inner diameters. This review presents a discussion of the published literature on C(4)D for CE and capillary electrochromatography.  相似文献   

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