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1.
《Electroanalysis》2003,15(10):892-897
A new chemically modified electrode (CME) was fabricated, which was based on the immobilization of multi‐wall carbon nanotubes fuctionalized with carboxylic group (MWNT‐COOH). The results indicated that the CME exhibited efficiently electrocatalytic oxidation for L ‐cysteine and glutathione with relatively high sensitivity, stability and long‐life. Coupled with HPLC, the MWNT‐COOH CME was utilized for amperometric detection of the thiols. The peak currents of L ‐cysteine and glutathione were linear to their concentrations ranging from 3.0×10?7 to 1.0×10?3 mol/L with the calculated detection limit (S/N=3) of 1.2×10?7, 2.2×10?7 mol/L, respectively. The method had been successfully applied to assess the contents of L ‐cysteine and glutathione in rat striatal microdialysates.  相似文献   

2.
A simple and sensitive method for the determination of cysteine is reported based on fluorescence quenching and recovery of L-tyrosine. At pH 10, copper(II) reacted with L-tyrosine to form a 1:1 complex that resulted in the quenching of L-tyrosine. However, the quenched fluorescence of L-tyrosine was recovered upon adding cysteine due to the strong affinity between these components. Under the optimized conditions, the recovered fluorescence was linearly proportional to the concentration of cysteine from 6.5?×?10?7 to 4?×?10?5?mol?L?1 with a detection limit of 7.32?×?10?8?mol?L?1, demonstrating high sensitivity for the determination of cysteine. The mechanisms of fluorescence quenching and recovery were characterized and the method was used to determine cysteine in a pharmaceutical product with satisfactory results.  相似文献   

3.
《Analytical letters》2012,45(13):2131-2140
Abstract

A simple and sensitive flow-injection chemiluminescence method was proposed for the determination of three thiol compounds, namely cysteine, acetylcysteine, and glutathione. Weak chemiluminescence was produced directly by the reaction of these mentioned compounds with luminol in an alkaline solution without adding any special oxidants. The chemiluminescence signal could be significantly enhanced by Cu(II). The proposed method allows the determination of 4.0 × 10?9 to 1.0 × 10?7 g/mL cysteine, 7.0 × 10?10 to 1.0 × 10?7 g/mL acetylcysteine, and 4.0 × 10?9 to 1.0 × 10?6 g/mL glutathione with the detection limits of 8 × 10?10 g/mL, 2 × 10?11 g/mL, and 7 × 10?10 g/mL, respectively. The proposed method was applied to the analysis of some commercial formulations containing acetylcysteine.  相似文献   

4.
Summary A sensitive LC method for the detection of amino acids and oligopeptides with pre-column fluorescence derivatization has been developed. Glycine, glycylglycine, triglycine, glutathione, glutamic acid, and cysteine were separated on a reversed-phase C18 column with methanol-water-triethylamine eluent, derivatization and chromatographic conditions were optimized. The six derivatives were eluted in 20 min with good reproducibility. The relative standard derviations (n=6) at an analytical concentration of 2×10−6 M are <5%. Detection limits (signal-to-noise ratio=3) for the six derivatives are 23–68 fmol.  相似文献   

5.
A rapid, sensitive and reproducible method is described for the analysis of levodopa and its metabolite dopamine (DA) in human blood. The influence of carbidopa as the inhibitor againist the decarboxylase activity on the metabolism has been also studied. After derivatization in a dark pulsator for 12 h at room temperature, the fluorescein isothiocyanate (FITC) derivative of levodopa and other components were separated by capillary zone electrophoresis (CZE) within 13 min and detected with laser-induced fluorescence (LIF). Under the optimum analysis conditions, the linear range is 3.0×10-8—4.0×10-6 mol/L and 1.0×10-8—2.0×10-6 mol/L for levodopa and DA, respectively. The detection limits of levodopa and DA were 7.8×10-9 mol/L (39.0 amol) and 3.1×10-9 mol/L (15.5 amol), respectively. The method was successfully applied to monitoring the levodopa and DA in human blood after one took tablets orally.  相似文献   

6.

The redox-active, sulfur-containing amino acids cysteine and methionine, the tripeptide glutathione and their oxidized counterparts cystine, methionine sulfoxide, and glutathione disulfide were separated as anions by capillary zone electrophoresis (CZE) in a 72 cm long fused silica capillary filled with 100 mM phosphate buffer, pH 8.0, at a voltage of +30 kV in 20 min. The optimized CZE method was suited for the implementation of quantitative metal interaction studies of the biomolecules in a biologically relevant concentration range (μM–mM). Decreasing peak areas of the reduced forms of cysteine and glutathione and simultaneously increasing peak areas of the oxidized forms after incubation of the reduced biomolecules with divalent heavy metal cations indicated redox reactions which could be responsible for toxic metal actions in biological systems. CZE measurements revealed that a 50 % oxidation grade of cysteine was achieved at a molar metal:cysteine ratio of 0.85 in case of Zn(II) addition and of 0.11 in case of Cu(II) addition, respectively. Cu(II) oxidized 50 % of the initial glutathione at a molar Cu:peptide ratio of 0.036, whereas the 50 % oxidation grade was not reached after incubation with Co(II) up to a molar ratio of Co:peptide of 0.25.

  相似文献   

7.
A new method for the determination of formaldehyde by using formaldehyde dehydrogenase is described. The method is based on the quantitative oxidation of formaldehyde with oxidized nicotinamide adenine dinucleotide (NAD+), in the presence of formaldehyde dehydrogenase, to form the reduced dinucleotide (NADH). This enzyme does not require glutathione as a co-factor and the NADH produced, which is directly proportional to the concentration of formaldehyde in the assay solution, is then measured spectrophotometrically at 340 nm. Formaldehyde can be determined in the range 0.3–8.0 μg ml?1 (1.0×10?5–2.7× 10?4 M) with a sensitivity of 0.216 absorbance/ μg ml?1 (0.0065 absorbance/μM). Optimal conditions and the selectivity of this enzyme toward formaldehyde are described.  相似文献   

8.
《Analytical letters》2012,45(15):2851-2859
Abstract

This paper describes a kinetic potentiometric method for the determination of thiols (RSH): l‐cysteine (cys), N‐acetyl‐l‐cysteine (NAC), l‐glutathione (glu), and d‐penicillamine (pen). The proposed method is based on the reaction of formation the sparingly soluble salts, RSAg, between RSH and Ag+ ions. During this reaction potential‐time curves were recorded by using an electrochemical cell with commercial iodide selective electrode. The rectilinear calibration graphs are obtained in the RSH concentration range from 1.0×10?5 to 1.0×10?3 M. The applicability of the proposed method was demonstrated by determination of chosen compounds in pharmaceutical dosage forms.  相似文献   

9.
The objective of this work is to develop and validate spectrophotometric method for the determination of piroxicam in commercial dosage forms. The method is based on the chelation of the drug with Fe(III) to form pink coloured metal chelate at room temperature which absorbs maximally at 504 nm. Beer's law is obeyed over the concentration range of 8–160 μg mL?1 (A = 1.07 × 10?3 + 7.75 × 10?3 C). Under the optimized experimental conditions, proposed method is validated as per the International Conference on Harmonisation guidelines. The limits of detection and quantitation for the proposed method are 0.775 and 2.348 μg mL?1, respectively. The proposed method has been successfully applied to the determination of piroxicam in commercial dosage forms. The results are compared with the reference El‐Ries et al. spectrophotometric method.  相似文献   

10.
A microchip electrophoresis method with laser induced fluorescence detection was developed for the detection of agmatine (Agm) and octopamine (Oct). The fluorescent derivatization reagent, fluorescein isothiocyanate was used for precolumn derivatization of Agm and Oct. The sodium dodecyl sulfate (SDS) micelles was employed as pseudostationary phase for the separation of Agm and Oct with other endogenous compounds exist in biological samples. Some parameters including buffer concentration, buffer pH, SDS concentration and separation voltage were investigated in detail. Under the optimum conditions, the separation and determination of Agm and Oct was performed within 40 s. The calibration curves were linear for both Agm and Oct over the concentration range of 1.0 × 10?7 to 4.0 × 10?5 M and 1.5 × 10?7 to 4.5 × 10?5 M, respectively. The detection limits of Agm and Oct (S/N = 3) are 5.0 × 10?8 and 8.0 × 10?8 M, respectively. These values make the method very suitable for the determination of Agm and Oct in rat brain tissue and human plasma as demonstrated in this paper.  相似文献   

11.
《Electroanalysis》2005,17(22):2043-2051
The electrochemical behavior of L ‐cysteine studied at the surface of ferrocenecarboxylic acid modified carbon paste electrode (FCMCPE) in aqueous media using cyclic voltammetry and double step potential chronoamperometry. It has been found that under optimum condition (pH 7.00) in cyclic voltammetry, the oxidation of L ‐cysteine is occurs at a potential about 580 mV less positive than that an unmodified carbon paste electrode. The kinetic parameters such as electron transfer coefficient, α and catalytic reaction rate constant, Kh were also determined using electrochemical approaches. The electrocatalytic oxidation peak current of L ‐cysteine showed a linear dependent on the L ‐cysteine concentration and linear calibration curves were obtained in the ranges of 10?5 M–10?3 M and 4.1×10?8 M–3.7×10?5 M of L ‐cysteine concentration with cyclic voltammetry (CV) and differential pulse voltammetry (DPV) methods respectively. The detection limits (2δ) were determined as 2.4×10?6 M and 2.5×10?8 M by CV and DPV methods. This method was also examined for determination of L ‐cysteine in some samples, such as Soya protein powder, serum of human blood by using recovery and standard addition methods.  相似文献   

12.
Summary The aim of this investigation was the study and development of analytical procedures suitable for the assay of glutathione (GSH) in pharmaceutical formulations. Two are based on isocratic HPLC with a 250 mm×4.6 mm i.d., 5 μm C18 column and UV detection. In the first procedure sample solutions were injected without pretreatment whereas in the second the samples were injected after derivatization with Ellman’s reagent which forms an easily detectable adduct with GSH. Good linearity was obtained over the range 0.12–6.00×10−4M for the direct procedure and 0.25–3.00×10−4M for the derivatization procedure. The precision and rapidity of analysis were also good for both methods. The third method is based on capillary zone electrophoresis (CZE) in a 27 cm×75 μm i.d untreated fused silica capillary containing pH 7 phosphate buffer. All results are in good agreement with a spectrophotometric procedure used as reference method.  相似文献   

13.
Adsorptive stripping differential pulse voltammetry (AdSDPV) was applied to the assay of sorafenib in human serum sample. Cyclic voltammetry at a carbon based screen printed electrode (SPE) permitted to detect the irreversible oxidation of SOR with formation of a new compound reversibly oxidized at a lower potential. Quantitative assays were realized using a chitosan/carboxylic acid functionalized multiwalled carbon nanotube modified glassy carbon electrode in 0.1 M phosphate buffer pH 7.0 in the presence of 50 % methanol. The AdSDPV method provided two linear responses within the concentration ranges 1×10?8–8×10?8 M and 1×10?7–8×10?7 M in serum with LOQ and LOD of 3.2×10?9 and 9.6×10?10 of lower linear range, respectively. The recovery of sorafenib in spiked serum was 97.5 %.  相似文献   

14.
A sensitive method for simultaneous determination of azithromycin (AZI), acetylspiramycin (ACE), erythromycin (ERY), and josamycin (JOS) was developed by CE coupled with electrochemiluminescence detection with Ru(bpy)32+. The parameters related to separation and detection were investigated in detail. The four macrolides were well separated and detected within 6 min under the optimized conditions. The LOD (S/N=3) of AZI, ACE, ERY, and JOS were 1.2×10?9, 7.1×10?9, 3.9×10?8 and 9.5×10?8 mol/L, respectively. The LOQ (S/N=10) of AZI, ACE, ERY, and JOS in human urine were 8.2×10?8, 2.5×10?7, 8.9×10?7 and 1.2×10?6 mol/L, respectively. The recoveries of the four macrolides in human urine and pharmaceutical tablet samples were 85.0–104.0% at different concentration levels.  相似文献   

15.
Altered levels of thiols in biological fluids are considered to be an important indicator for several diseases. In this article, 1,3,5,7‐tetramethyl‐8‐bromomethyl‐difluoroboradiaza‐s‐indacene is proposed as a fluorescent derivatization reagent for the determination of thiols including glutathione, cysteine, N‐acetylcysteine, and homocysteine by HPLC. Under the optimized derivatization and separation conditions, a baseline separation of all the four derivatives has been achieved using isocratic elution on an RP C8 column within 26 min. With fluorescence detection at 505 and 525 nm for the excitation and emission, respectively, the LODs (S/N = 3) are from 0.2 nM (glutathione) to 0.8 nM (cysteine). The feasibility of this method in real samples has been evaluated by the determination of thiols in human plasma from the healthy persons and hypertensive patients with recoveries of 92–105.3%.  相似文献   

16.
A new method for the determination of baicalin in Scutellariae Radix extract and its preparations by high performance liquid chromatography (HPLC) coupling with flow injection chemiluminescence detection (FIA‐CL) has been developed. The method was based on the chemiluminescence reaction of potassium permanganate with baicalin in nitric acid medium; the CL intensity can be enhanced by formaldehyde. In this study, the conditions of chemiluminescence and chromatography were examined, and the schematic diagram of the HPLC‐FIA‐CL analyzer was optimized. The analytes were separated on Hypersil RP‐C18 columns (100 × 4.6 mm, I.D., 5 μm) by equality elution with 47:53 (v/v) methanol‐0.3% phosphoric acid as a mobile phase at a flow rate of 0.8 mL·min?1 and a column temperature of 40 °C. Under the optimum condition, the CL intensity was proportional to the concentration of baicalin over the range of 4.10 × 10?7 ? 6.15 × 10?5mol·L?1. The limit of detection (S/N = 3) was 2.79 × 10?7mol·L?1 with the relative standard deviation 2.5% (Cs = 6.15 × 10?6 mol·L?1, n = 5). The method has been applied to the determination of baicalin in Scutellariae Radix extract and its preparations, and satisfactory results were obtained.  相似文献   

17.
《Electroanalysis》2006,18(15):1457-1462
This work describes an electroanalytical method for determining gold(I) thiomalate, aurothiomalate, widely used for treatment of reumatoid arthiritis, using a screen‐printed carbon electrode (SPCE). Aurothiomalate (AuTM) was determined indirectly at the same electrode by accumulating it first at ?1.5 V vs. printed carbon. At this potential in the adsorbed state, the AuTM is reduced to Au(0), which is then oxidized at two steps at ?0.22 V and +0.54 V on SPCE. Using optimized conditions of 60 s deposition time, ?1.5 V (vs. printed carbon) accumulation potential, 100 mV s?1 scan rate, linear calibration graphs can be obtained by monitoring the peak at +0.54 V for AuTM in HCl 0.1 mol L?1 from 1.43×10?6 to 1.55×10?4 mol L?1. A limit of detection obtained was 6.50×10?7 mol L?1, and the relative standard deviation from five measurements of 3.0×10?5 mol L?1 AuTM is 4.5%. The method was successfully applied for AuTM determination in human urine sample.  相似文献   

18.
A simple, rapid and accurate high performance liquid chromatographic (HPLC) technique coupled with chemiluminescence (CL) detection was developed for the simultaneous determination of epinephrine (E), noradrenaline (NA) and dopamine (DA). It was based on the analyte enhancement effect on the CL reaction between luminol and potassium ferricyanide. The effects of various parameters, such as potassium ferricyanide concentration, luminol concentration, pH value and component of the mobile phase on chromatographic behaviors of the analytes (E, NA and DA) were investigated. The separation was carded out on C18 column using the mobile phase of 0.01 mol/L potassium hydrogen phthalate solution and methanol (92 : 8, V/V). Under the optimum condi- tions, E, NA and DA showed good linear relationships in the range of 1 × 10^-8 -5 × 10^-6, 5.0× 10^-9 -1.0× 10^-6 and 5.0×10^-9-1.0× 10^-6 g]mL respectively. The detection limits for E, NA and DA were 4.0×10^-9, 1.0× 10^-9 and 8.0 × 10^-10 g/mL. The proposed method has been applied successfully to the analysis of E, NA and DA in human serum samples.  相似文献   

19.
A rapid, sensitive and precise flow-injection method for the determination of nitrate in natural waters is presented. Nitrate is first reduced in a copperized cadmium column to nitrite, which reacts with 3-amino-1,5-naphthalenedisulphonic acid to form the azoic acid. This acid forms a fluorescent salt in alkaline medium. The injecton rate is about 30 h?1, the relative standard deviation for 10 injections of 2 × 10?5 M nitrate is 0.8%, and the detection limit (S/N = 3)_is 1 × 10?8 M nitrate.  相似文献   

20.
The electrochemical behavior of L ‐cysteine studied at the surface of ferrocenedicarboxylic acid modified carbon paste electrode (FDCMCPE) in aqueous media using cyclic voltammetry, differential pulse voltammetry and double potential step chronoamperometry. It has been found that under optimum condition (pH 8.00) in cyclic voltammetry, the oxidation of L ‐cysteine occurs at a potential about 200 mV less positive than that of an unmodified carbon paste electrode. The kinetic parameters such as electron transfer coefficient, α, and catalytic reaction rate constant, kh were also determined using electrochemical approaches. The electrocatalytic oxidation peak current of L ‐cysteine showed a linear dependent on the L ‐cysteine concentration and linear analytical curves were obtained in the ranges of 3.0×10?5 M–2.2×10?3 M and 1.5×10?5 M–3.2×10?3 M of L ‐cysteine concentration with cyclic voltammetry (CV) and differential pulse voltammetry (DPV) methods respectively. The detection limits (3σ) were determined as 2.6×10?5 M and 1.4×10?6 M by CV and DPV methods.  相似文献   

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