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1.
Changlun Tong  Zhou Hu 《Talanta》2007,71(2):816-821
The fluorescence intensity of the enoxacin (ENX)-Tb3+ complex enhanced by DNA was studied. On the basis of this study, an environmentally friendly fluorescence probe of enoxacin-Tb3+ for the determination of single-stranded and double-stranded DNA was developed. Under the optimal conditions, the enhanced fluorescence intensity was in proportion to the concentration of DNA in the range of 2.0 × 10−8 to 2.0 × 10−6 g mL−1 for hsDNA, 1.0 × 10−8 to 1.0 × 10−6 g mL−1 for ctDNA and 5.0 × 10−9 to 1.0 × 10−6 g mL−1 for thermally denatured ctDNA. The detection limits (S/N = 3) were 5.0, 9.0 and 3.0 ng mL−1, respectively. The interaction modes between ENX-Tb3+ and DNA and the mechanism of the fluorescence enhancement were also discussed in details. The experimental results from UV absorption spectra, fluorescence spectra and the competing combination tests between the ENX-Tb3+ complex and EB probe indicated that the possible interaction modes between enoxacin-Tb3+ complex and DNA had at least two different binding modes: the electrostatic binding and the intercalation binding. Additionally, this fluorescence probe was used to study the interaction between heavy metals and DNA.  相似文献   

2.
A new spectrofluorimetric method is proposed for determination of human serum albumin (HSA) with the limit of detection at ng levels. Using doxycycline (DC)-europium (Eu3+) as a fluorescent probe, in a buffer solution of pH 10.2, HSA can remarkably enhance the fluorescence intensity of the DC-Eu3+ complex at 612 nm and the enhanced fluorescence intensity of Eu3+ is proportional to the concentration of HSA. Optimum conditions for the determination of HSA are also investigated. The linear ranges for HSA are 0-9.2 and 9.2-34.5 μg ml−1 with limits of detection of 64 and 115 ng ml−1, respectively. This method is simple, practical and relatively free of interference from coexisting substances, as well as much more sensitive than most of the existing assays. The determination results for human serum and urine samples are identical to those by the AOAO method, with relative standard deviations of five determinations of 1.1-3.6%. By the Rosenthal graphic method, the binding number and association constant of human serum albumin with the probe are 1.8 and 3.71×105 l mol−1, respectively.  相似文献   

3.
Wu X  Zheng J  Ding H  Ran D  Xu W  Song Y  Yang J 《Analytica chimica acta》2007,596(1):16-22
It was found that oxolinic acid (OA) at high concentration can self-assemble into nano- to micro- meter scale OA aggregates in Tris-HCl (pH 7.48) buffer solution. The nanoparticles of OA were adopted as fluorescence probes in the quantitative analysis of proteins. Under optimum conditions, the fluorescence quenching extent of nanometer scale OA aggregates was in proportion to the concentration of albumins in the range of 3.0 × 10−8 to 3.0 × 10−5 g mL−1 for bovine serum albumin (BSA) and 8.0 × 10−8 to 8.0 × 10−6 g mL−1 for human serum albumin (HSA). The detection limits (S/N = 3) were 3.4 × 10−9 g mL−1 for BSA, and 2.6 × 10−8 g mL−1 for HSA, respectively. Samples were satisfactorily determined. The interaction mechanism of the system was studied using fluorescence, UV-vis, resonance light scattering (RLS) and transmission electron microscope (TEM) technology, etc., indicating that the nonluminescent complex was formed between serum albumin molecular and OA, to disaggregate the self-association of OA, which resulted in the dominated static fluorescence quenching in the system.  相似文献   

4.
Quinolones (Qs) can form the complex with Tb(III) ion, and the intramolecular energy transfer from Qs to Tb(III) takes place when excited. And thus the characteristic fluorescence of Tb(III) ion was enhanced and the maximum fluorescence peak locates at 545 nm. The second-order scattering (SOS) peak at 545 nm also appears for the Tb(III)-Qs complexes with the exciting wavelength of 274 nm. When the silver nanoparticles were added to the Tb(III)-Qs system, the luminescence intensity at 545 nm greatly increased. And the relative intensity is proportional to the amount of Qs. Based on this phenomenon, a novel method for determination of quinolones has been developed by using a common spectrofluorometer to measure the intensity of fluorescence and SOS. The luminescence intensity is greatly enhanced by silver nanoparticles in the pH range 5.5-6.2. The calibration graphs for pipemidic acid (PPA) and lomefloxacin (LMFX) are linear in the range 2.0 × 10−10 to 1.0 × 10−5 and 1.0 × 10−9 to 1.0 × 10−5 mol L−1, respectively. The limits of detection are 4.7 × 10−11 mol L−1 for PPA and 1.1 × 10−10 mol L−1 for LMFX. The method was applied satisfactorily to the determination of the two quinolones (Qs) in tablet, capsule, urine and serum samples. The experimental results showed that it is the certain size and certain concentration of silver nanoparticles that can greatly enhance the fluorescence -SOS intensity.  相似文献   

5.
Yang F  Ma Q  Yu W  Su X 《Talanta》2011,84(2):411-415
A novel direct quantificational method through naked-eye colorimetric analysis of Hg2+ was constructed based on different degree of the fluorescence quenching of bi-color quantum dots (QDs) multilayer films (2-QDMF). The functional multilayer films were assembled by layer-by-layer (LBL) deposition of oppositely charged CdTe QDs and poly(dimethyldiallylemmonium chloride) (PDDA). Then the outermost layer of 2-QDMF was cross-linked to bovine serum albumin (BSA), polyethylene glycol (PEG) or glutathione (GSH). It was found that when BSA modified quartz slides were immersed into solutions containing Hg2+ and Cu2+ respectively, the 2-QDMF can be quenched by Hg2+, but not by Cu2+. Under the optimization conditions, the quenched photoluminescence (PL) intensities of multilayer films were almost linearly proportional to the concentration of Hg2+ in the range of 1.0 × 10−8 to 1.0 × 10−6 mol L−1 and the detection limit was 4.5 × 10−9 mol L−1. The proposed method is intuitional and convenient, which can be applied to the determination of trace Hg2+ in the artificial water sample with satisfactory results.  相似文献   

6.
Wang Z  Song Z  Chen D 《Talanta》2010,83(2):312-319
The luminol-bovine serum albumin chemiluminescence system was proposed for the first time. It was found that the hydrophilic luminol bound to the hydrophilic domain at Trp134 of BSA with accelerating the electrons transferring rate of excited 3-aminophthalate, which led to the enhancement CL intensity of luminol at 425 nm. The increment of chemiluminescence intensity was proportional to the concentrations of bovine serum albumin from 5.0 × 10−11 to 1.0 × 10−8 mol L−1 with the linear equation of ΔI = 7.47CBSA + 4.89 (R2 = 0.9950). Based on the remarkable quenching effect of cephalosporin on the luminol-bovine serum albumin chemiluminescence system, the interaction of bovine serum albumin-cephalosporin was studied by flow injection-chemiluminescence method. A valuable model for studying the interaction of bovine serum albumin-cephalosporin was constructed and the formula lg[(I0 − I)/I] = lg KD + lg[D] was obtained. The binding parameters calculated by the model did agree very well with the results obtained by fluorescence quenching method. The major binding force of bovine serum albumin with cephalosporins was the hydrophobic effect. The binding ability of cephalosporin analogues to bovine serum albumin followed the pattern: cefoperazone, ceftriaxone and cefotaxime > cefuroxime and cefaclor > cefadroxil, cefradine and cefazolin, which was close to the order of their antibacterial ability. Using flow injection chemiluminescence method also obtained the stoichiometric ratio, the average of association constant KP and dissociation degree α of luminol-bovine serum albumin were 1:1, 1.12 × 107 L mol−1 and 0.086, respectively.  相似文献   

7.
Xiaoyu Liu  Jinghe Yang 《Talanta》2010,81(3):760-1691
A new method for detecting protein by synchronous fluorescence enhancement was developed, based on the combination of near infrared (NIR) fluorescence and the dedimerization phenomenon of methylene blue (MB). Under analytical conditions, there are linear relationships between the enhancing extent of synchronous fluorescence of MB-sodium dodecyl benzene sulfonate (SDBS)-protein at 667 nm and the concentration of protein in the range of 8.0 × 10−8-4.0 × 10−5 g mL−1 for bovine serum albumin (BSA), 1.0 × 10−7-3.5 × 10−5 g mL−1 for egg albumin (EA). The detection limits (S/N = 3) of BSA and EA are 8.9 ng mL−1 and 10.0 ng mL−1, respectively. The fluorescence enhancement mechanism is discussed in detail. Results from multiple techniques indicate that the fluorescence enhancement of the system originates from the hydrophobic microenvironment provided by BSA and SDBS, and the formation of an MB-SDBS-BSA complex, as well as the deaggregation of some MB dimer.  相似文献   

8.
Chen HQ  Fu J  Wang L  Ling B  Qian BB  Chen JG  Zhou CL 《Talanta》2010,83(1):139-144
With the biomolecule glutathione (GSH) as a capping ligand, Eu3+-doped cadmium sulfide composite nanoparticles were successfully synthesized through a straightforward one-pot process. An efficient fluorescence energy transfer system with CdS nanoparticles as energy donor and Eu3+ ions as energy accepter was developed. As a result of specific interaction, the fluorescence intensity of Eu3+-doped CdS nanoparticles is obviously reduced in the presence of Hg2+. Moreover, the long fluorescent lifetime and large Stoke's shift of europium complex permit sensitive fluorescence detection. Under the optimal conditions, the fluorescence intensity of Eu3+ at 614 nm decreased linearly with the concentration of Hg2+ ranging from 10 nmol L−1 to 1500 nmol L−1, the limit of detection for Hg2+ was 0.25 nmol L−1. In addition to high stability and reproducibility, the composite nanoparticles show a unique selectivity towards Hg2+ ion with respect to common coexisting cations. Moreover, the developed method was applied to the detection of trace Hg2+ in aqueous solutions. The probable mechanism of reaction between Eu3+-doped CdS composite nanoparticles and Hg2+ was also discussed.  相似文献   

9.
A simple, rapid and sensitive synchronous fluorescence method is put forward for the determination of enrofloxacin (ENRO) in the pharmaceutical formulation and its residue in milk based on the yttrium (III)-perturbed luminescence. When Y3+ is added into the ENRO solution, the fluorescence of ENRO is significantly enhanced. The synchronous fluorescence technology is employed in the method to determine trace amount of ENRO residue in milks. The synchronous fluorescence intensity of the system is measured in a 1-cm quartz cell with excitation wavelength of 328 nm, Δλ = 80 nm. A good linear relationship between the fluorescence intensity and the ENRO concentration is obtained in the range of 1.0 × 10−9 to 2.0 × 10−6 mol L−1 (r2 = 0.9992). The limit of detection (LOD) of this method attains as low as 3.0 × 10−10 mol L−1 (S/N = 3). The selectivity of this method is also very good. Common metal ions, rare-earth ions and some pharmaceuticals, which are usually used together with ENRO, do not interfere with the determination of ENRO under the actual conditions. The proposed method can be applied to determine ENRO residue in milks, and limit of quantification (LOQ) determined in the spiked milk is estimated to be 2.8 × 10−8 mol L−1 (10 μg L−1). Moreover, this method can be used as a rapid screening for judging whether the ENRO residues in milks exceed Minimal Risk Levels (MRLs) or not. In addition, the mechanism of the fluorescence enhancement is also discussed in detail.  相似文献   

10.
Qiu B  Xue L  Wu Y  Lin Z  Guo L  Chen G 《Talanta》2011,85(1):339-344
Inhibited Ru(bpy)32+ electrochemiluminescence by inorganic oxidants is investigated. Results showed that a number of inorganic oxidants can quench the ECL of Ru(bpy)32+/tri-n-propylamine (TPrA) system, and the logarithm of the decrease in ECL intensity (ΔI) was proportional to the logarithm of analyte concentrations. Based on which, a sensitive approach for detection of these inorganic oxidants was established, e.g. the log-log plots of ΔI versus the concentration of MnO4, Cr2O72− and Fe(CN)63− are linear in the range of 1 × 10−7 to 3 × 10−4 M for MnO4 and Cr2O72−, and 1 × 10−7 to 1 × 10−4 M for Fe(CN)63−, with the limit of detection (LOD) of 8.0 × 10−8 M, 2 × 10−8 M, and 1 × 10−8 M, respectively. A series of experiments such as a comparison of the inhibitory effect of different compounds on Ru(bpy)32+/TPrA ECL, ECL emission spectra, UV-Vis absorption spectra etc. were investigated in order to discover how these inorganic analytes quench the ECL of Ru(bpy)32+/TPrA system. A mechanism based on consumption of TPrA intermediate (TPrA·) by inorganic oxidants was proposed.  相似文献   

11.
Honglei Mu 《Tetrahedron letters》2007,48(31):5525-5529
A novel two-channel metal ion sensor has been synthesized from macrocyclic dioxotetraamine and 1,8-naphthalimide derivative. The metal ion-selective signaling behaviors of the sensor were investigated. The sensor presented the selective coloration for Cu2+ and Hg2+ that can be detected by the naked-eye, respectively. Besides, the addition of Cu2+ and Hg2+ quenched the fluorescence of 1 obviously and the detection limit was found to be 3 × 10−7 M for Cu2+ and 7 × 10−7 M for Hg2+. This sensor can be utilized for the visual and spectroscopic detection of Cu2+ or Hg2+ in the presence of the other competing metal ions.  相似文献   

12.
Based on the characteristics of synchronous fluorescence spectroscopy (SFS), a new method with high sensitivity and selectivity was developed for rapid determination of silver ion with functional cadmium sulphide (CdS) nanoparticles as a fluorescence probe. When Δλ (λem − λex) = 215 nm, maximum synchronous fluorescence is produced at 304 nm. Under optimal conditions, functional cadmium sulphide displayed a calibration response for silver ion over a wide concentration range from 0.8 × 10−10 to 1.5 × 10−8 mol L−1. The limit of detection was 0.4 × 10−10 mol L−1 and the relative standard deviation of seven replicate measurements for the lowest concentration (0.8 × 10−10 mol L−1) was 2.8%. Compared with several fluorescence methods, the proposed method had a wider linear range and improved the sensitivity. Furthermore, the concentration dependence of the synchronous fluorescence intensity is effectively described by a Langmuir-type binding isotherm.  相似文献   

13.
Based on a boron dipyrromethene (BODIPY) derivative containing an N, O and S tridentate ligand, a Cu2+ fluorescent probe BTCu was developed. The detection mechanism was verified as Cu2+-promoted oxidative dehydrogenation of an amine moiety, leading to a formation of a fluorescent Cu+-Schiff base complex. Free BTCu exhibited a maximum absorption wavelength at 496 nm, and a very weak maximum emission at 511 nm. Upon addition of various metals ions, it showed large fluorescence enhancement toward Cu2+ (417-fold in MeCN and 103-fold in MeCN/HEPES solution, respectively) with high selectivity. The detection limits are as low as 1.74 × 10−8 M and 4.96 × 10−8 M in the two different solutions, respectively. And BTCu could work in a wide pH range with an extraordinary low pKa of 1.21 ± 0.06. Using fluorescence microscopy, the probe was shown to be capable of penetrating into living cells and imaging intracellular Cu2+ changes.  相似文献   

14.
The supramolecular interaction of a homologous series of cucurbit[n]uril (CB[n], n = 5, 6, 7, 8) hosts and coptisine (COP) was studied by spectrofluorimetry. All of the CB[n]s were found to react with COP to form 1:1 host-guest stable complexes and the fluorescence intensity of the complexes was greatly enhanced. The apparent association constants of the complexes were 1.44 × 104, 1.28 × 104, 1.86 × 104 and 1.26 × 104 L mol−1 for CB[5], CB[6], CB[7] and CB[8], respectively. In addition, CB[5] and CB[7] exhibited a higher fluorescence signal than CB[6] and CB[8]. The fluorescence intensity of the complex with CB[7] was enhanced 70-fold compared to that of the studied drug itself. Based on the significant enhancement of fluorescence intensity of supramolecular complex, a simple, rapid, highly sensitive, and selective spectrofluorimetric method was developed for the determination of COP in aqueous solution in the presence of CB[7]. At the optimum reaction conditions, a linear relationship was obtained in the range from 0.05 to 1700 ng mL−1 with a detection limit of 0.012 ng mL−1. The proposed method was successfully applied for the determination of the drug in urine and serum samples.  相似文献   

15.
Liu S  Yang J  Wu X  Su B  Sun C  Wang F 《Talanta》2004,64(2):387-394
It is found that Tb3+ can react with tryptophan (Trp) and sodium dodecyl benzene sulfonate (SDBS), and emits the intrinsic fluoresence of Tb3+. The fluorescence intensity can be enhanced by La3+, Gd3+, Lu3+, Sc3+ and Y3+, among which Gd3+ has the greatest enhancement. This is a new co-luminescence system. The studies indicate that in the Tb-Gd-Trp-SDBS system, there is both Tb-Trp-SDBS and Gd-Trp-SDBS complexes, and they aggregate together and form a large congeries. The fluorescence enhancement of the Tb-Gd-Trp-SDBS system is considered to originate from intramolecular and intermolecular energy transfers, and the energy-insulating sheath effect of Gd-Trp-SDBS complex.Under the optimum conditions, the enhanced intensity of fluorescence is in proportion to the concentration of Trp in the range from 4×10−8 to 4×10−5 mol l−1. The detection limit is 10−9 mol l−1. The proposed method is one of the most sensitive fluoremetries of Trp.  相似文献   

16.
Xiao-tong Chen 《Talanta》2010,80(5):1952-4801
A novel fluorescence turn-on detection method of human serum albumin (HSA) and bovine serum albumin (BSA) in aqueous solution is investigated using 2,4-dihydroxyl-3-iodo salicylaldehyde azine (DISA). Upon the addition of DISA to HSA/BSA solution, a fluorescence turn-on effect at 529 nm can be observed with a large stokes shift of ∼129 nm based on hydrophobic binding-mode between protein and dye. Under the optimal condition, the linear ranges of fluorescence intensity for HSA and BSA are 0.1-30 μg mL−1 with the relative correlation coefficient of R2 = 0.991 (n = 10) and 0.3-50 μg mL−1 with R2 = 0.997 (n = 10); and the detection limits for HSA and BSA based on IUPAC (CDL = 3Sb/m) are 20 ng mL−1 and 50 ng mL−1, respectively.  相似文献   

17.
A new rhodamine B derivative bearing a hydrazone group has been designed and prepared. The synthesized colorimetric and fluorescent molecular chemosensor can be used as a dual probe, selectively detecting Al3+ and Cu2+ in acetonitrile solution by monitoring changes in the absorption and fluorescence spectral patterns. The results show that Al3+ ions can induce a greater fluorescence enhancement, while the addition of Cu2+ ions induces a strong UV–vis absorption enhancement with weak fluorescence. The limits of detection of Cu2+ and Al3+ were estimated to be 2.9 × 10−7 M and 8.3 × 10−9 M, respectively.  相似文献   

18.
In this paper, 2-(2′-hydroxy-phenyl)-4(3H)-quinazolinone (HPQ), a typical compound that exhibits excited state intramolecular proton transfer (ESIPT) reaction and possesses good photophysical properties, is synthesized and used as fluoroionophore for Fe3+ sensitive optochemical sensor. The decrease of fluorescence intensity of HPQ membrane upon the addition of Fe3+ was attributed to the blocking of ESIPT reactions of HPQ and quenching its fluorescence. The effect of the composition of the sensing membrane was studied, and experimental conditions were optimized. The sensor shows a linear response toward Fe3+ in the concentration range of 7.1 × 10−7 M to 1.4 × 10−4 M with a limit of detection of 8.0 × 10−8 M, and a working pH range from 2.5 to 4.5. It shows excellent selectivity for Fe3+ over a large number of cations such as alkali, alkaline earth and transitional metal ions. The proposed sensor is applied to the determination of the content of iron ions in pharmaceutical preparations samples with satisfactory results.  相似文献   

19.
A new electrogenerated chemiluminescence biosensor was fabricated by immobilizing ECL reagent Ru(bpy)32+ and alcohol dehydrogenase in sol-gel/chitosan/poly(sodium 4-styrene sulfonate) (PSS) organically modified composite material. The component PSS was used to immobilize ECL reagent Ru(bpy)32+ by ion-exchange, while the addition of chitosan was to prevent the cracking of conventional sol-gel-derived glasses and provide biocompatible microenvironment for alcohol dehydrogenase. Such biosensor combined enzymatic selectivity with the sensitivity of ECL detection for quantification of enzyme substrate and it was much simpler than previous double-layer design. The detection limit was 9.3 × 10−6 M for alcohol (S/N = 3) with a linear range from 2.79 × 10−5 to 5.78 × 10−2 M. With ECL detection, the biosensor exhibited wide linear range, high sensitivity and good stability.  相似文献   

20.
Gao Y  Wang G  Huang H  Hu J  Shah SM  Su X 《Talanta》2011,85(2):1075-1080
In this paper, we utilized the instinct peroxidase-like property of Fe3O4 magnetic nanoparticles (MNPs) to establish a new fluorometric method for determination of hydrogen peroxide and glucose. In the presence of Fe3O4 MNPs as peroxidase mimetic catalyst, H2O2 was decomposed into radical that could quench the fluorescence of CdTe QDs more efficiently and rapidly. Then the oxidization of glucose by glucose oxidase was coupled with the fluorescence quenching of CdTe QDs by H2O2 producer with Fe3O4 MNPs catalyst, which can be used to detect glucose. Under the optimal reaction conditions, a linear correlation was established between fluorescence intensity ratio I0/I and concentration of H2O2 from 1.8 × 10−7 to 9 × 10−4 mol/L with a detection limit of 1.8 × 10−8 mol/L. And a linear correlation was established between fluorescence intensity ratio I0/I and concentration of glucose from 1.6 × 10−6 to 1.6 × 10−4 mol/L with a detection limit of 1.0 × 10−6 mol/L. The proposed method was applied to the determination of glucose in human serum samples with satisfactory results.  相似文献   

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