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1.
吕春华  黄超群  陈梅  谢文  陈笑梅 《色谱》2012,30(12):1287-1291
建立了柱前衍生化-萃取阻断反应-高效液相色谱(HPLC)测定化妆品中甲醛的方法。化妆品中甲醛检测的难点是: 甲醛缓释剂类防腐剂在衍生过程中释放甲醛,影响游离甲醛的准确测定。以2,4-二硝基苯肼(DNPH)乙腈溶液-磷酸盐缓冲液(pH 2)(1:1, v/v)为提取溶液,于室温下快速衍生2 min后,立即加入二氯甲烷萃取,阻断衍生反应,经乙腈稀释后进行HPLC测定。以Agilent C18柱(250 mm×4.6 mm, 5 μm)为分离柱,乙腈-水(60:40, v/v)为流动相,流速为1.0 mL/min,于355 nm波长下检测。在洗发水、乳液、膏霜、洗手液、牙膏、指甲油、粉饼中分别添加50、100、500、1000 μg/g 4个浓度水平的甲醛,其回收率为81%~106%,相对标准偏差(n=6)<5.0%。方法的定量限(以信噪比(S/N)>10计)为50 μg/g。该方法快速、简便、重现性好,且可以有效避免甲醛缓释剂类防腐剂分解释放甲醛,适用于化妆品中游离甲醛的测定。  相似文献   

2.
Piperine, a major alkaloid of black and long peppers has been reported to act as bioavailability enhancer of several drugs by inhibiting drug metabolising enzymes and/or by increasing oral absorption. Ketoconazole is a well established potent inhibitor of CYP 3A4 and P-glycoprotein. A simple and rapid HPLC method has been developed for the simultaneous analysis of ketoconazole and piperine in rat plasma and hepatocyte culture. Analysis was performed using a Symmetry C18 column (150x4.6 mm, 5 microm) and isocratic elution with 25 mM KH2PO4 (pH 4.5)-acetonitrile (50:50) with a flow-rate of 1 ml/min. Photodiode array detection was used to simultaneously monitor piperine at 340 nm and ketoconazole at 231 nm in a single sample. Calibration plots in spiked plasma, hepatocytes and William's medium E were linear over the range studied (10-2000 ng for both drugs). The detection limits for piperine and ketoconazole are 2 and 4 ng, respectively, and the limits of quantitation are 10 and 12 ng, respectively. Intra- and inter-assay variations were less than 8%.  相似文献   

3.
高效液相色谱法测定水性酚醛树脂中残留的甲醛和苯酚   总被引:4,自引:0,他引:4  
刘秀玲  张武畏  隋国红  宁强 《色谱》2007,25(4):562-564
采用高效液相色谱法同时测定了水性酚醛树脂粘稠液体中残留的甲醛和苯酚,用2,4-二硝基苯肼对甲醛进行衍生化,然后进行色谱分离。色谱柱:Waters Symmetry C18 (5 μm,4.6 mm × 250 mm);柱温:30 ℃;流动相:甲醇-水(体积比为43∶57);检测波长:苯酚270 nm,甲醛360 nm;运行时间:45 min;流速:0.8 mL/min。方法的相对标准偏差小于5%,检测限小于1 μg/L,加标回收率为96%~105%。使用该分析方法可对该类树脂的质量性能进行有效监控。  相似文献   

4.
The capacity of solubilization of the five physiological bile salts: cholate, deoxicholate, hiocholate, quenodeoxicholate and taurocholate were assayed on two low aqueous soluble antimicotic agents: griseofulvin and ketoconazole. The fluorescence emission of these antimicotic agents was used as tool to study their solubilization in bile salts micelle. Griseofulvin enhanced its fluorescence and shifted to the blue in the presence of bile salts micelles. The shift was dependent of the polarizability of the micelle zone where the antimicotic is located. Cholate and deoxicholate showed a good solubilization capacity for griseofulvin: 321 mol and 394 mol surfactant per mol of antimicotic, respectively. These values decreased in the presence of NaCl in agreement with a compactness of the micelle due to an electrostatic repulsion decreasing between the bile salts monomer negatively charged. The imidazole and piperazine rings present in the ketoconazole molecule give to this the capacity of fluorescence emission with two vibronic bands at 364 nm and 382 nm, respectively. The solubilization in cholate micelle induced an increase in the band at 382 nm, while deoxicholate induced the opposite effect, suggesting a strong intercation between the polar groups of ketoconazole molecule (imidazole and piperazine rings) and the OH of these bile salts. The solubilization capacities were 47 mol and 117 mol surfactant per ketoconazole mol for cholate and deoxicholate, respectively. The other bile salts assayed did not show any appreciable solubilization capacity. Ketoconazole and griseofulvin solubilized in micelles of cholate and deoxicholate were stable during the thermal recycling treatment for over 100 days.  相似文献   

5.
Two chromatographic methods were developed for the determination of some anti-fungal drugs in the presence of either their degradation products or cortisone derivatives. The densitometric method determined mixtures of each of ketoconazole (KT), clotrimazole (CL), miconazole nitrate (MN) and econazole nitrate (EN) with the degradation products of each one. Mixtures of MN with hydrocortisone (HC) and of EN with triamcinolone acetonide (TA) were also successfully separated and determined by this technique. For KT and CL, a mixture of methanol:water:triethylamine (70:28:2 v/v) was used as a developing system and the spots were scanned at 243 nm and 220 nm for KT and CL, respectively. For MN and EN, a mixture of hexane:isopropyl alcohol:triethylamine (80:17:3 v/v) was used as a developing system and the spots were scanned at 225 nm for both drugs. The HPLC method determined mixtures of CL or EN with their degradation products which were separated and quantified on a Zorbax C8 column. Elution was carried out using methanol:phosphate buffer pH 2.5 (65:35 v/v) as a mobile phase at a flow rate of 1.5 ml/min and UV detection at 220 nm for CL. For EN, a mixture of methanol:water containing 0.06 ml triethylamine pH 10 (75:25 v/v) was used as a mobile phase at a flow rate of 1.5 ml/min and UV detection at 225 nm. The methods were also used to separate mixtures of CL with betamethasone dipropionate (BD) and EN with TA in a laboratory prepared mixture and in pharmaceutical preparations. The methods were sensitive, precise and applicable for determination of the drugs in pharmaceutical dosage forms.  相似文献   

6.
A kinetic method for the accurate and sensitive determination of Ketoconazole (KC) has been described. The method is based on the alkaline oxidation of KC with KMnO4 in micellar SDS medium. At a fixed time of 8 min, the formed manganate ion is spectrophotometrically measured at 610 nm. The determination of KC by the fixed‐concentration and rate constant methods is feasible with the calibration equation obtained, but the fixed time method proves to be more applicable. The proposed method was successfully used for the quantitative determination of KC in formulations after the complete separation of KC using SDS‐coated Al2O3 as a suitable solid‐phase extraction system in comparison to liquid‐liquid extraction using poisonous organic solvents. Beer's law was obeyed from 0.4 to 28 μg mL?1 and the RSD% values for tablet, cream and shampoo samples were 1.8, 1.4 and 2.3, respectively. The results obtained agreed with those obtained by the USP method.  相似文献   

7.
Docetaxel has significant single agent activity in prostate cancer and ketoconazole also has activity as a second line hormonal agent. In vitro, ketoconazole is synergistic with some chemotherapy agents by enhancing the intracellular retention of the cytotoxic agent. A potential drug-drug interaction exists though between docetaxel and ketoconazole because both agents are metabolized hepatically by the cytochrome P-450 system. Hence, a nanoparticulate system was formulated by loading both drugs for tumor targeting. Assay and in vitro release of the formulation were conducted by developing simple, precise, accurate, and validated analytical method for simultaneous determination docetaxel and ketoconazole using reversed-phase high-performance liquid chromatography (RP-HPLC). The RP-HPLC method was developed using Waters Symmetry C(18) column (25 cm × 4.5 mm, 5 μm) with a mobile phase consisting of acetonitrile and 0.2% triethylamine pH adjusted to 6.4 (48:52, v/v) at flow rate of 1 mL/min. Intra-day and inter-day variations were less than 2% over the linearity range, 0.5-20 μg/mL. The proposed two methods were successfully applied for the determination of docetaxel and ketoconazole in solid lipid nanoparticles.  相似文献   

8.

A new and fast high-performance liquid chromatography (HPLC) method using technology of fused-core columns for separation of fenoxycarb and cis-, trans-permethrin has been developed and used for their determination in antiparasitic veterinary shampoo. Separation of insecticides and internal standard sudan II was achieved on the fused-core column Ascentis Express RP-Amide (100 × 3.0 mm), particle size 2.7 μm, with mobile phase acetonitrile/water (55:45, v/v) at a flow rate of 1.0 mL min−1 and at temperature 60 °C. The detection wavelength of detector was set at 225 nm for both compounds and internal standard sudan II. Under the optimum chromatographic conditions standard calibration curves were measured with good linearity [r 2 = 0.99991 for fenoxycarb, r 2 = 0.99987 for trans-permethrin, and r 2 = 0.99984 for cis-permethrin (n = 8)]. Commercial samples of antiparasitic veterinary shampoo were extracted with ethanol in ultrasound bath for 5 min. A 2-μL sample volume of the filtered solution was directly injected into the HPLC system. Accuracy of the method defined as a mean recovery of insecticides from shampoo matrix was in the range 100.43–103.85 % for both insecticides.

  相似文献   

9.
A new and fast high-performance liquid chromatography (HPLC) method using technology of fused-core columns for separation of fenoxycarb and cis-, trans-permethrin has been developed and used for their determination in antiparasitic veterinary shampoo. Separation of insecticides and internal standard sudan II was achieved on the fused-core column Ascentis Express RP-Amide (100 × 3.0 mm), particle size 2.7 μm, with mobile phase acetonitrile/water (55:45, v/v) at a flow rate of 1.0 mL min?1 and at temperature 60 °C. The detection wavelength of detector was set at 225 nm for both compounds and internal standard sudan II. Under the optimum chromatographic conditions standard calibration curves were measured with good linearity [r 2 = 0.99991 for fenoxycarb, r 2 = 0.99987 for trans-permethrin, and r 2 = 0.99984 for cis-permethrin (n = 8)]. Commercial samples of antiparasitic veterinary shampoo were extracted with ethanol in ultrasound bath for 5 min. A 2-μL sample volume of the filtered solution was directly injected into the HPLC system. Accuracy of the method defined as a mean recovery of insecticides from shampoo matrix was in the range 100.43–103.85 % for both insecticides.  相似文献   

10.
A simple and sensitive flow injection method with spectrophotometric detection was developed for the determination of formaldehyde. The method is based on the catalytic effect of formaldehyde on the oxidation of sulfonazo III with bromate in acidic media. The decrease in absorbance of the reaction mixture was measured at 566 nm. The calibration graph was linear in the range of 0.005 to 2.80 microg ml(-1) formaldehyde at a rate of 38 +/- 4 samples h(-1). The limit of detection was 4 ng ml(-1). The relative standard deviations for ten replicate measurements of 0.20, 0.50 and 1.00 microg ml(-1) formaldehyde were 1.3, 0.8 and 0.7%, respectively. The method was applied to the determination of formaldehyde in river water, shampoo and melamine-formaldehyde resin.  相似文献   

11.
The optimization of a HPLC method for caffeine, 8-chlorotheophylline and diphenhydramine separation with UV detection at 229 nm is described. The conditions studied included: stationary phase, compositions of mobile phases with pH modulators. Optimal conditions were: SymmetryShield RP8 column and acetonitrile–(0.01 M H3PO4–triethylamine, pH 2.8) (22:78, v/v). Validation was performed using standards and a pharmaceutical preparation containing the compounds described above. Results from both standards and samples show suitable validation parameters. The pharmaceutical grade substances were tested by factors that could influence the chemical stability. These reaction mixtures were analyzed to evaluate the capability of the method to separate degradation products. Degradation products did not interfere with the determination of the substances tested by the assay.  相似文献   

12.
手性流动相添加法拆分酮康唑外消旋体   总被引:1,自引:0,他引:1  
刘爱  葛文娜  吴淑燕  许茜  王敏  殷雪琰 《色谱》2009,27(2):240-243
采用C18反相色谱柱,利用在流动相中加入手性选择剂的方法实现酮康唑对映体的拆分。研究了手性选择剂的种类及浓度、流动相pH值、甲醇比例和柱温等因素对酮康唑手性分离的影响,结果表明磺丁基-β-环糊精可以使酮康唑对映体完全分离,最后选择的流动相组成为甲醇-0.02 mol/L磷酸二氢钠(体积比为60∶40,含0.02%三乙胺和1.0 mmol/L磺丁基-β-环糊精,用稀磷酸调节pH值到3.00)。酮康唑对映体在6 min内得到基线分离,分离度为2.05。方法简便,分离效果好,对酮康唑对映体的拆分具有应用价值。  相似文献   

13.
Low AS  Wangboonskul J 《The Analyst》1999,124(11):1589-1593
An HPLC method is described using octadecylsilica (3 microns) with an acetonitrile phosphate buffer mobile phase containing diethylamine which is capable of separating ketoconazole [(+/-)-cis-1-acetyl-4-(4[2-(dichlorophenyl)-2- (1H-imidazol-1-ylmethyl)-1,3-dioxolan-4-yl]methoxy]phenyl)pi perazine] from four related compounds, (R049223, R063600, R053165 and R039519) and from excipients in tablets, cream and shampoo. The method was validated using an external calibration method for tablets, shampoo and creams and a standard addition method for cream. The limits of detection for the related compounds in the presence of ketoconazole are also reported.  相似文献   

14.
为建立催化动力学荧光法测定痕量甲醛的新方法,基于在酸性介质中,甲醛催化KBrO3氧化藏红T的褪色反应,使其荧光猝灭的原理,将反应体系在沸水浴中加热8 min,流水冷却3min,采用动力学荧光法测定痕量甲醛。结果表明,甲醛在0.02~0.14μg/mL范围内与△F值呈良好的线性关系,线性方程为△F=-1.642 8+274.12C(μg/mL),r=0.996 9,检出限为0.011μg/mL。该法简便,快速,常见共存物质干扰小,可用于水发食品及其它食品中甲醛含量的测定,加标回收率为84.63%~94.93%。  相似文献   

15.
AQC柱前衍生化RP-HPLC法测定蒜氨酸及其有关物质的含量   总被引:1,自引:0,他引:1  
袁耀佐  杭太俊  纪宇  张正行 《色谱》2008,26(2):242-245
采用6-氨基喹啉-N-(羟基琥珀酰亚胺基)氨基甲酸酯(6-aminoquinolyl -N- Hydroxysuccinimide Carbamate ,AQC)为柱前衍生化试剂,建立了AQC柱前衍生化RP-HPLC法测定蒜氨酸及其有关物质的含量。该衍生化方法反应瞬间完成,衍生化产物稳定。色谱条件为:Kromasil C18柱(250mm×4.6mm,5mm),流动相A为0.1%乙酸铵(含0.03%乙酸),流动相B为水-乙腈(40∶60),线性梯度洗脱,流速1.0ml/min,检测波长248nm。蒜氨酸在1.1719~1500μg /ml浓度范围内线性关系良好(r=0.9998), 日内、日间精密度良好(RSD <1.8%,n=5), 加样回收率为99.1%(RSD1.9%,n=5),检测限为3ng,该方法准确、方便、快速。  相似文献   

16.
Summary The determination of free formaldehyde in the presence of its donators in cosmetic samples by a combination of reversed phase chromatography and post column reaction detection is described. The free formaldehyde is separated on a RP column with water as eluent from interfering formaldehyde-containing compounds and consecutively determined by the lutidine method in a reaction detector with knitted open tubes. With detection in the visible (420nm) the minimum detectable quantity is 40 ppb, with fluorimetric detection 15 ppb. The sample clean-up procedure for cosmetic products ranging from mascara to shampoo is by extracting the formaldehyde with water of pH 3, where the decomposition rate of the donators is minimal. Smaller amounts of free formaldehyde are always found compared to the standard lutidine method.  相似文献   

17.
This paper reports a simple and sensitive flow-injection method for the spectrophotometric determination of formaldehyde based on the catalytic effect of formaldehyde on the oxidation of pyrogallol red with bromate in acidic media. The decrease in absorbance of the reaction mixture was measured at 470 nm. The calibration graph was linear in the range of 0.47 to 40.0 μ/mL formaldehyde for a sample rate of 30±5 samples per hour. The limit of detection is 0.36 μ/mL. The relative standard deviations for ten replicate measurements of 2.5, 5.0, and 20.0 μ/mL formaldehyde were 3.9, 2.1, and 0.7%, respectively. The method was applied to the determination of formaldehyde in river water, shampoo, and melamine-formaldehyde resin. The text was submitted by the authors in English.  相似文献   

18.
A simple HPLC method for the determination of imidazole antimycotics in cosmetic antidandruff formulations has been developed. HPLC was carried out on a Discovery RP-Amide C16 column and spectrophotometric detection was performed at 220 nm. The initial mobile phase was a mixture of acetonitrile and aqueous 10(-3) M NaClO4 (pH 3.0) in the ratio of 15:85 (v/v); then a linear gradient up to 46% acetonitrile in 70 min, and up to 50% in 80 min. The extraction procedure has been validated by analyzing samples of shampoo and lotion spiked with 1% of the active principles. The recoveries were greater than 95% and the reproducibility was within 3%.  相似文献   

19.
Dehydrodiisoeugenol (DDIE) is a bioactive neolignan from the seeds of Myristica fragrans Houtt., which exhibits good anti-inflammatory activity. A rapid and simple high-performance liquid chromatographic (HPLC) method has been developed for the determination of DDIE in rat tissues after intravenous administration. The tissue samples were processed by liquid-liquid extraction. The analyses were successfully carried out on a Diamonsiltrade mark ODS C18 column (250 x 4.6 mm i.d., 5 microm) equipped with a C18 guard column (8 x 4.6 mm i.d., 5 microm). The mobile phase was the system of methanol-water (4:1, v/v). The UV detection was set at 270 nm. The calibration curves were linear from 0.4 to 200.0 microg/g with the correlation coefficients (r(2)) greater than 0.998. The intra- and inter-day precisions in quality control samples were less than 10% and the accuracies were in the range 85.4-110.3%. The average recoveries from all the tissues were between 84.4 and 106.0%. This assay method has been successfully used to study the tissues distribution of DDIE in rats after intravenous administration. The result suggests that DDIE is distributed to rat tissues rapidly with possibly greater initial concentrations in liver and brain than in other tissues.  相似文献   

20.
Ziprasidone is known as a novel "atypical" or "second-generation" antipsychotic drug. A sensitive and reproducible method was developed and validated for determination of ziprasidone and its major impurities, which are significantly different in polarity. The separation is performed on a Waters Spherisorb octadecylsilyl 1 column (5.0 microm particle size, 250 x 4.6 mm id) using a gradient with mobile phase A [buffer-acetonitrile (80+20, v/v)] and mobile phase B [buffer-acetonitrile (10+90, v/v)] at a working temperature of 25 degrees C. The buffer was 0.05 M KH2PO4 solution with an addition of 10 mL triethylamine/L solution, adjusted to pH 2.5 with orthophosphoric acid. The flow rate was 1.5 mL/min, and the eluate was monitored at 250 nm using a diode array detector. Optimization of the experimental conditions was performed using partial least squares regression, for which four factors were selected for optimization: buffer concentration, buffer pH, triethylamine concentration, and temperature. The proposed validated method is convenient and reliable for the assay and purity control in both raw materials and dosage forms.  相似文献   

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