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1.
以GSH(glutataione,谷胱甘肽)为稳定剂,一锅法合成水相Cd Te量子点。通过与配体巯基乙酸(TGA)量子点稳定性的对比发现:GSH@量子点对二价金属螯合剂EDTA有着更广的浓度耐受范围。利用GSH@Cd Te量子点在不同p H环境下荧光淬灭程度的不同,GSH@Cd Te量子点可作为生物传感器应用于检测溶液p H值,GSH@Cd Te量子点生物传感器检测溶液p H值的范围4到10。通过金属Cu2+离子对GSH@Cd Te量子点的作用,我们将其应用与溶液中Cu2+的检测,检测铜离子浓度最低可至0.312 5滋mol/L,上限可达10滋mol/L。  相似文献   

2.
目的:探讨链亲和素修饰的CdSe/ZnS核壳结构量子点(CdSe/ZnS-SA)对稳定转染pcDNA3.1/APP595/596质粒的人胚肾(HEK293)细胞的短期毒性作用.方法:将CdSe/ZnS-SA量子点与稳定转染pcD-NA3.1/APP595/596质粒的HEK293细胞共培育,在倒置荧光显微镜下观察细胞形态学变化;MTT法测定细胞活性;流式细胞术检测细胞凋亡率.结果:终浓度为2.5 nmol/L-20 nmol/L的CdSe/ZnS-SA量子点与HEK293细胞分别共育8h、16h、24 h后,细胞的形态无明显改变;终浓度为2.5 nmol/L-25 nmol/L的CdSe/ZnS-SA量子点与HEK293细胞分别共育8h、16 h、24 h,各处理组与对照组间,各处理组间的吸光度值、细胞凋亡率差异均无统计学意义(P>0.05).结论:一定浓度范围的CdSe/ZnS-SA量子点在短期内对稳定转染pcDNA3.1/APP595/596质粒的HEK293细胞无明显的毒性作用,具有较好的生物相容性.  相似文献   

3.
目的探讨量子点荧光技术对人肾癌细胞株(ACHN)中不同HSP进行标记的可行性应用。方法利用量子点的荧光特性,免疫细胞化学方法检测体外培养的ACHN细胞中量子点特异性标记的HSP70、HSP90、HSPgp96的表达情况。结果共聚焦荧光显微镜下可见ACHN细胞中HSP70、HSP90、HSPgp96均有明显表达,呈现均匀分布的橙红色强荧光,且量子点在持续激发30分钟后无荧光淬灭发生。结论量子点荧光标记技术能够对不同HSP进行标记,且与传统的标记方法相比具有显著优点,可作为一种新型的检测技术应用于科研及临床标记检测中。  相似文献   

4.
本文研究了光敏氧化前后甲素与DNA的结合以及这种结合对DNA-EB复合物荧光强度、DNA融解温度和圆二色谱的影响。利用Sephadex G-150凝胶过滤和同位素技术分离甲素-DNA复合物,测得光照前后甲素与DNA的结合率分别为15.2%和27.8%。荧光测定和琼脂糖凝胶电泳结果显示:甲素可阻碍DNA-EB复合物的形成、使DNA-EB复合物的荧光强度减弱,光照甲素对DNA-EB复合物的荧光淬灭作用较未光照者为强。甲素敏化DNA光氧化后的荧光淬灭、DNA融解温度降低和CD谱变化提示:甲素敏化DNA光氧化涉及碱基破坏及DNA双螺旋结构改变。  相似文献   

5.
用碲粉、水合氯化镉和巯基丙酸在水相中合成了发光量子点碲化镉纳米晶标记物,通过TEM和荧光分光光度计对其进行表征;CdTe量子点与羊抗兔IgG相连接,对其进行电泳表征,此复合物即为荧光显示探针。将人工抗原AFB1-BSA包被于96微孔板上,黄曲霉毒素B1(AFB1)为模式分析物,与黄曲霉毒素单克隆抗体发生竞争反应。之后用荧光显示探针与AFB1单克隆抗体进行特异性免疫,以量子点探针的荧光强度定量测定AFB1。在适宜试验条件下,AFB1浓度在1~1 000 ng/mL范围内,荧光强度与AFB1含量成线性关系,检出限为1ng/mL。  相似文献   

6.
荧光量子点探针及其标记技术   总被引:2,自引:0,他引:2  
量子点作为一种新型荧光标记物,与有机染料和荧光蛋白质相比,它们具有可调谐且宽的吸收光谱,激发可产生多重荧光颜色、强荧光信号、抗光漂白能力强等独特的光学特性,使其广泛应用在生物和医学领域。该文就量子点探针的表面修饰和功能化及其标记技术的研究进展进行了阐述。  相似文献   

7.
复合探针荧光定量PCR方法的建立   总被引:7,自引:0,他引:7  
为了对特定基因进行实时检测,根据荧光能量转移(FRET)原理,设计及合成了一种新的FRET复合探针,该探针由一条长的荧光杂交探针和短的淬灭探针构成,其中荧光探针5′端接一荧光素分子,3′端接一延伸阻断分子磷酸,淬灭探针3′端连接一个淬灭分子对甲基红,淬灭探针与荧光探针5′端互补,无模板时,该探针杂交形成复合探针。无荧光产生,当有模板时,荧光探针与模板杂交,荧光不能被淬灭,产生的荧光与模板量成正比。根据复合探针的反应原理,研究了该探针的FRET性质及影响因素包括淬灭探针及扩增片段长度、荧光探针与淬灭探针的合适比例及镁离子浓度。实验结果显示淬灭探针及扩增片段长度对复合探针的作用有明显的影响,本实验采用淬灭探针长21个核苷酸,扩增片段长127bp,荧光探针与淬灭探针的合适比例为1:1,镁离子浓度为3mmo1/L,可获得最佳的反应体系;该复合探针合成简单,淬灭彻底,具有良好的准确性与特异性,敏感性达10^2拷贝,并具有较宽的动力学定量范围,可对10^2—10^9拷贝范围内的待检样品进行准确的定量。复合探针技术可应用于病毒感染水平、转基因拷贝数及单核苷酸多态性等检测。  相似文献   

8.
光漂白是光动力疗法(Photodynamic therapy,PDT)中的一个伴随过程,其存在会影响光敏剂的光敏性能并消耗光敏剂.初步探讨了基于量子点CdSe的光动力疗法中两次给药的问题、给药最佳时间间隔、二次给药的最佳作用参数及正常的与药物处理过的白血病HL60细胞表面的超微结构变化.实验表明,一次给药在量子点浓度为1.0 μmol/L且18 J/cm2的光剂量作用下,PDT效率达到61.0%;经过48 h后,进行二次给药,在量子点浓度为0.75 μmol/L,18 J/cm2光剂量作用下,PDT效率达到了72.1%,较一次给药有了较大幅度提升;扫描电子显微镜(SEM)观察药物作用前后的白血病HL60细胞表面超微结构,结果显示,细胞表面发生了一些显著的变化,由此推测细胞膜可能是量子点CdSe介导的光动力疗法(CdSe-PDT)灭活白血病HL60细胞的一个重要突破口;最后对量子点CdSe光致毒性的机制进行了初步探讨.  相似文献   

9.
采用紫外光谱法和荧光光谱法研究了茶碱与胃蛋白酶的结合作用。观测到茶碱使胃蛋白酶的紫外吸收峰增强,特征荧光峰淬灭。Stern-Volmer淬灭曲线显示,茶碱对胃蛋白酶的荧光淬灭很可能是一个单一的静态淬灭过程。  相似文献   

10.
采用紫外光谱法和荧光光谱法研究了粪臭素与胃蛋白酶的结合作用。观测到粪臭素使胃蛋白酶的紫外吸收峰增强,特征荧光峰淬灭。Stern-Volmer淬灭曲线显示,粪臭素对胃蛋白酶的荧光淬灭很可能是一个单一的静态淬灭过程。  相似文献   

11.
Water-soluble, biological-compatible, and excellent fluorescent CdSe/CdS quantum dots (QDs) with L-cysteine as capping agent were synthesized in aqueous medium. Fluorescence (FL) spectra, absorption spectra, and transmission electron microscopy (TEM) were employed to investigate the quality of the products. The interactions between QDs and bovine serum albumin (BSA) were studied by absorption and FL titration experiments. With addition of QDs, the FL intensity of BSA was significantly quenched which can be explained by static mechanism in nature. When BSA was added to the solution of QDs, FL intensity of QDs was faintly quenched. Fluorescent imaging suggests that QDs can be designed as a probe to label the Escherchia coli (E. coli) cells. These results indicate CdSe/CdS/L-cysteine QDs can be used as a probe for labeling biological molecule and bacteria cells.  相似文献   

12.
We report the first use of functionalized cadmium selinide quantum dots (CdSe QDs) with 11‐mercaptoundecanoic acid (MUA) as the matrix for the selective ionization of proteins with high resolution and rapid analysis of amino acids and peptides by using quantum dots laser desorption/ionization mass spectrometry (QDLDI‐MS). The mercaptocarboxylic groups of CdSe QDs have been known to be an effective affinity probe to interact with the biomolecules at low abundance level. Using these QDs as the matrix, sensitivity of the method was greatly enhanced and the LOQ of peptides was found to be 100 pM with RSD <10%. The QDLDI‐MS is capable for the selective ionization of insulin, lysozyme and myoglobin with high resolution, which is not observed with sinapic acid (SA) as the matrix. The QDLDI‐MS technique offers many advantages for the analysis of amino acids, peptides and proteins with regard to simplicity, rapidity, sensitivity and the mass spectra were generated in the presence of signal suppressors such as urea and Trition X‐100. In addition, the CdSe QDs have been successfully applied as preconcentrating probes for the analysis of digested peptides in lysozyme from chicken egg white by microwave‐assisted enzymatic digestion. This indicates that the QDs are able to absorb radiation from microwave and their ability to trap peptides from microwave‐digested lysozyme. These results demonstrate that the CdSe QDs are promising candidates for the selective ionization of the analytes with an accurate platform to the rapid screening of biomolecules.  相似文献   

13.
Quantum dots (QDs) have long promised to revolutionize fluorescence detection to include even applications requiring simultaneous multi-species detection at single molecule sensitivity. Despite the early promise, the unique optical properties of QDs have not yet been fully exploited in e. g. multiplex single molecule sensitivity applications such as single particle tracking (SPT). In order to fully optimize single molecule multiplex application with QDs, we have in this work performed a comprehensive quantitative investigation of the fluorescence intensities, fluorescence intensity fluctuations, and hydrodynamic radii of eight types of commercially available water soluble QDs. In this study, we show that the fluorescence intensity of CdSe core QDs increases as the emission of the QDs shifts towards the red but that hybrid CdSe/CdTe core QDs are less bright than the furthest red-shifted CdSe QDs. We further show that there is only a small size advantage in using blue-shifted QDs in biological applications because of the additional size of the water-stabilizing surface coat. Extending previous work, we finally also show that parallel four color multicolor (MC)-SPT with QDs is possible at an image acquisition rate of at least 25 Hz. We demonstrate the technique by measuring the lateral dynamics of a lipid, biotin-cap-DPPE, in the cellular plasma membrane of live cells using four different colors of QDs; QD565, QD605, QD655, and QD705 as labels.  相似文献   

14.
The interactions between 2‐mercaptoethanol, dimercaprol and CdSe quantum dots (QDs) in organic media have been investigated by spectral methods. The results showed that the fluorescence (FL) emission of CdSe QDs gradually decreased, with a slight red‐shift, after adding thiols to CdSe QDs solutions. With the increase of the concentrations of thiols, the resonance light scattering (RLS) signal of CdSe QDs had been strongly enhanced in the wavelength range 300–500 nm, which was confirmed by the formation of larger CdSe QDs particles. The effect of thiols on the FL emission of CdSe QDs could be described by a Stern–Volmer‐type equation with the concentration ranges 1.0 × 10–6–7.5 × 10–4 mol/L for 2‐mercaptoethanol and 1.0 × 10–7–2.5 × 10–5 mol/L for dimercaprol. The possible mechanism of the interaction was proposed according to the results of UV‐vis absorption and micro‐Raman spectroscopy. The results indicated that FL quenching was mainly attributable to the exchange of the QDs surface molecules. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

15.
The determination of hormone‐binding sites in plants is essential in understanding the mechanisms behind hormone function. Salicylic acid (SA) is an important plant hormone that regulates responses to biotic and abiotic stresses. In order to label SA‐binding sites in plant tissues, a quantum dots (QDs) probe functionalized with a SA moiety was successfully synthesized by coupling CdSe QDs capped with 3‐mercaptopropionic acid (MPA) to 4‐amino‐2‐hydroxybenzoic acid (PAS), using 1‐ethyl‐3‐(3‐dimethyllaminopropyl) carbodiimide (EDC) as the coupling agent. The probe was then characterized by dynamic light scattering and transmission electron microscopy, as well as UV/vis and fluorescence spectrophotometry. The results confirmed the successful conjugation of PAS to CdSe QDs and revealed that the conjugates maintained the properties of the original QDs, with small core diameters and adequate dispersal in solution. The PAS–CdSe QDs were used to detect SA‐binding sites in mung bean and Arabidopsis thaliana seedlings in vitro and in vivo. The PAS–CdSe QDs were effectively transported into plant tissues and specifically bound to SA receptors in vivo. In addition, the effects of the PAS–CdSe QDs on cytosolic Ca2+ levels in the tips of A. thaliana seedlings were investigated. Both SA and PAS–CdSe QDs had similar effects on the trend in cytosolic‐free Ca2+ concentrations, suggesting that the PAS–CdSe QDs maintained the bioactivity of SA. To summarize, PAS–CdSe QDs have high potential as a fluorescent probe for the in vitro/in vivo labeling and imaging of SA receptors in plants. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

16.
Water‐soluble CdSe quantum dots (QDs) have been prepared by using L‐cysteine as the stabilizer in an aqueous phase under the optimized conditions. The characteristics and shapes of CdSe QDs have been proposed on the basis of UV‐Vis and fluorescence spectra. A rapid analytical method for electrochemiluminescence (ECL) determination of nitrite has been developed on the basis of the quenching effect on anodic ECL emission of CdSe QDs under the optimum experimental conditions. In a neutral system and at a relatively low potential (+0.960 V), the ECL emission of CdSe QDs could be greatly enhanced by sulfite and could be gradually quenched by nitrite at an indium tin oxide (ITO) electrode. The proposed method may allow the measurement of nitrite ranging from 1 μM to 0.5 mM with a correlation coefficient of 0.9956 (n = 10) and a detection limit of 0.2 μM (3σ), and the relative standard deviation for 10 μM nitrite (n = 9) is 1.72 %. The proposed method could be adopted for the sensitive detection of ECL quenchers by using nitrite as a model molecule. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

17.
A novel strategy for the enhancement of electrochemiluminescence (ECL) was developed by combining CdSe quantum dots (QDs) with graphene oxide-chitosan (GO-CHIT). The ECL sensor fabricated with CdSe QDs/GO-CHIT composite exhibited high ECL intensity, good biocompatibility and long-term stability, and was used to detect of cytochrome C (Cyt C). The results show that the ECL sensor has high sensitivity for Cyt C with the linear range from 4.0 to 324 μM and the detection limit of 1.5 μM. Furthermore, the ECL sensor can selectively sense Cyt C from glucose and bovine serum albumin (BSA).  相似文献   

18.
We describe a non-labeled electrochemiluminescence (ECL) immunosensor based on CdSe quantum dots (QDs) for the detection of human prealbumin (PAB, antigen). The immunosensor was fabricated by layer by layer coupled with nanoparticle-amplification techniques. After two gold nanoparticle layers were self-assembled onto the gold electrode surface through cysteamine, anti-PAB (antibody) were conjugated with -COOH groups of both the CdSe QDs and cysteine, which were linked to the gold nanoparticle-modified electrode. The principle of ECL detection was that the immunocomplex inhibited the ECL reaction between CdSe QDs and K(2)S(2)O(8), which resulted in the decrease of ECL intensity. On the one hand, the immunocomplex increased the steric hindrance. On the other hand, the immunocomplex maybe inhibit the transfer of K(2)S(2)O(8) to the surface of the CdSe QD-electrode. The PAB concentration was determined in the range of 5.0 x 10(-10) to 1.0 x 10(-6) g mL(-1), and the detection limit was 1.0 x 10(-11) g mL(-1). The developed CdSe QD-based ECL immunosensor provides a rapid, simple, and sensitive immunoassay protocol for protein detection, which could be applied in more bioanalytical systems.  相似文献   

19.
Two quantum dots (QDs), a green emitter, CdSe and a red emitter, CdSe with ZnS shell are encapsulated into novel liposomes in two different formulations including cationic liposomes. Quantum dots have proven themselves as powerful inorganic fluorescent probes, especially for long‐term, multiplexed imaging and detection. Upon delivery into a cell, in endocytic vesicles such as endosomes, their fluorescence is quenched. We have investigated the potential toxic effects, photophysical properties and cell internalization of QDs in new formulation of liposomes as an in vitro vesicle model. Entrapment of QDs into liposomes is brought about with a decrease in their intrinsic fluorescence and toxicities and an increase in their photostability and lifetime. The biomimetic lipid bilayer of liposomes provides high biocompatibility, thereby enhancing the effectiveness of fluorescent nanoparticles for biological recognition in vitro and in vivo. The prepared lipodots could effectively prevent QDs from photo‐oxidation during storage and when exposed to ultraviolet (UV) light. Moreover, the flow cytometry of HEK 293 T cells showed that the cell internalization of encapsulated QDs in (DSPC/CHO/DOPE/DOAB) liposome is enhanced 10 times compared with non‐encapsulated QD (bare QDs).  相似文献   

20.
CdSe and CdTe-based semiconductor fluorescent nanocrystals, also called quantum dots (QDs), attract the attention of biologists due to their wide range of emission in a visible light interval, high fluorescence quantum yield and photostability. However, their application is limited because of possible toxicity of cadmium. Indeed, there is a probability of metal leakage from QDs cores as a result of damage of both inorganic and organic layers of shells covering QDs. An alternative to cadmium QDs could be nanostructures having as a core, for example, non-toxical indium phosphide (InP), also emitting in the visible region of the spectrum. At present, there is few works on the use of these particles in biology. In this study, a comparative analysis of the spectral-luminescent properties of two InP/ZnS-QDs samples coated with PEG carrying- COOH or -NH2 functional groups was performed. The obtained data were compared with the characteristics of CdSe/ZnS-QDs coated with PEG. The photophysical properties of all QDs in aqueous solution corresponded to the information claimed by manufacturers, but the fluorescence quantum yield of InP-based nanoparticles was found to be lower than that of CdSe-QDs. We also show that the photoluminescence of all types of QDs at pH 4.0 was lower than at pH 7.4, while the decrease in fluorescence intensity was minimal in the case of QDs-PEG-COOH. Studying the uptake of all three types of QDs by J774 macrophages, we found that the fluorescence spectra of internalized QDs do not change in comparison with those in solution. All three types of QDs after 24 hours of incubation were accumulated in the cells, but while QDs-NH2 and QDs without reactive groups were detected mainly in vesicular-like discrete structures, the QDs-COOH were diffusely distributed throughout the cytoplasm. This fact indicates different mechanisms of interaction with cell membranes. In nonphagocytic HeLa cells all types of QDs behaved similarly, but the overall level of cells fluorescence was much lower. This may be due to both reduced nonspecific uptake and possible quenching of QDs fluorescence in acidic endolysosomes. Cytofluorimetric analysis of propidium iodide accumulation showed that after 24 hours incubation with all studied types of QDs as well as in control (no QDs), the proportion of dead HeLa cells did not exceed 10%. Thus, it has been demonstrated that non-toxic InP-based QDs can be used as an effective tool for biological research.  相似文献   

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