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1.
考察了功能单体与模板蛋白的反应摩尔比、溶液pH值及离子强度对功能单体与模板蛋白之间相互作用的影响, 得出制备分子印迹聚合物的最佳条件. 在最佳条件下, 以溶菌酶(Lyz)为模板分子, 丙烯酰胺(AA)和N,N’-亚甲基双丙烯酰胺(BisAA)为聚合基质, 二氧化硅为固体制孔剂, 制备了复合分子印迹聚丙烯酰胺凝胶, 并用平衡吸附实验研究了其吸附性能和识别选择性. 研究结果表明, 该聚合物对模板蛋白有较高的亲和性、选择性和吸附容量,可以从蛋白质混合溶液中分离富集模板分子.  相似文献   

2.
以溶菌酶为模板蛋白质,结合分子印迹技术在硅烷化的基质玻片上制备了溶菌酶分子印迹聚合物膜。实验优化了溶菌酶聚合物膜的印迹体系,考察了溶菌酶分子印迹聚合物膜的吸附平衡时间、最大吸附量、特异识别能力、重复使用性以及对实际样品中溶菌酶的分离情况。结果表明,在最优条件下,制备的分子印迹聚合物膜对溶菌酶具有特异吸附能力,印迹因子为3.0,吸附平衡时间为5 min,吸附行为符合Langmuir吸附模型,理论最大吸附量为42.5 mg/g,实际样品中的吸附量为30 mg/g。且此印迹聚合物膜在重复使用5次后,最大吸附量仅下降了5%,具有良好的重复使用性。该方法为复杂生物样品中目标蛋白质的分离富集提供了一种快速、高效的手段。  相似文献   

3.
分子印迹聚合物由于可特异性地从样品溶液中富集目标物,已被广泛应用于粮食、果蔬等食品以及水、土壤等环境中农药的提取和检测.将分子印迹技术和量子点修饰技术相结合形成的分子印迹荧光探针,可以实现对目标物的高灵敏快速检测.据此,对分子印迹技术的原理、制备方法及应用进行了概述,并进一步阐述了量子点修饰的分子印迹荧光探针在农药检测中的应用和展望.  相似文献   

4.
以电沉积多孔金膜为基底,L-丝氨酸为模板分子,L-半胱氨酸为功能单体构建了信号放大的自组装分子印迹单层膜修饰电极.电极对L-丝氨酸浓度响应的线性范围为5.0×10-6~2.0×10-4 mol/L,检出限为4.8×10-7 mol/L,灵敏度为215 mA·L·mol-1.由于多孔金膜有效增加了模板分子的固定量,印迹电极响应性能较无多孔金膜修饰的印迹电极有明显提高.  相似文献   

5.
张茂升  黄佳蓉  唐丽萍 《化学学报》2009,67(24):2840-2844
以0.45 μm混合纤维素酯膜为支载膜,丙烯酰胺为功能单体,N,N’-亚甲基双丙烯酰胺为交联剂,通过表面印迹法制备得到牛血清白蛋白分子印迹膜。实验对制备分子印迹膜所用模板分子、功能单体和交联剂用量进行探讨,并对目标分子识别渗透的条件进行了优化。结果表明,较非印迹膜而言,该分子印迹膜表现出良好的识别渗透能力。  相似文献   

6.
光接枝表面修饰法制备牛血红蛋白的分子印迹微球   总被引:3,自引:0,他引:3  
聚苯乙烯球载体表面经引发转移终止剂修饰后, 采用光接枝表面印迹方法制备了以牛血红蛋白(BHb)为模板分子、丙烯酰胺为功能单体和N,N′-亚甲基双丙烯酰胺为交联剂的分子印迹聚合物微球(MIP). 进一步采用红外光谱(IR)、扫描电子显微镜(SEM)和元素分析对聚合物微球进行了表征, 证实了载体表面成功地接枝了分子印迹层, 并研究了其吸附性能和分子识别选择性能. 结果表明, 采用光接枝表面修饰法制备的分子印迹微球对模板分子有着很好的吸附容量和识别选择性.  相似文献   

7.
采用一锅法,通过控制镉硫比合成了表面富镉离子的硫化镉量子点,利用L-半胱氨酸可与量子点表面Cd2+结合,使量子点表面钝化,从而增强其电化学发光信号的性质,实现了对L-半胱氨酸的选择性检测.对合成的量子点进行了表征,优化了检测条件.在优化的条件下,L-半胱氨酸在5.0×10-9~1.0×10-5 mol/L浓度范围内与ECL信号呈良好的线性关系,检出限为1.2×10-9 mol/L(S/N=3).本方法对L-半胱氨酸具有良好的选择性,用于实际样品中L-半胱氨酸的测定,结果令人满意.  相似文献   

8.
以1-乙烯基-3-乙酸乙酯咪唑氯离子液体为功能单体,以再生纤维素膜为基膜,采用温和的表面ATRP接枝聚合技术在水溶液中制备了溶菌酶分子印迹膜.通过紫外-可见光谱分析了离子液体与模板分子的作用力,讨论了功能单体1-乙烯基-3-乙酸乙酯咪唑氯用量对印迹复合膜性能的影响,研究了分子印迹复合膜对溶菌酶模板分子及其结构类似物的吸附行为和选择性识别特性.结果表明,以1-乙烯基-3-乙酸乙酯咪唑氯离子液体作为功能单体的溶菌酶分子印迹膜能够从结构类似物混合体系中选择性分离富集溶菌酶,且具有很好的稳定性和可再生性能.  相似文献   

9.
采用凝胶法,以丙烯酰胺为单体.N,N'-甲叉双丙烯酰胺为交联剂,制备了牛血红蛋白的分子印迹聚合物.通过考察不同单体用量对所制备的分子印迹聚合物的吸附性能的影响,得到优化制备条件.用吸附溶液的光吸收性质及电镜等对印迹聚合物的选择性吸附特性和形态特征进行表征.结果表明,制备的分子印迹聚合物对模板分子牛血红蛋白可以选择性吸附,具有很好的发展潜力.  相似文献   

10.
采用电化学聚合物法制备了一种用于识别牛血红蛋白(BHb)的分子印迹电化学传感器。玻碳电极表面经电化学法沉积一层纳米金,接着自组装一层L-半胱氨酸,对修饰电极表面功能化,引入氨基和羧基,增加蛋白质印迹识别位点,以BHb为模板,采用电化学诱导的丙烯酰胺氧化还原聚合反应形成分子印迹聚合物层,模板蛋白分子经洗脱形成分子印迹电化学传感器。其产生的电化学信号的变化与BHb的质量浓度在1.0~1.0×103 mg·L~(-1)范围有直接的关系,检出限(3σ)达0.5mg·L~(-1)。这种新型传感器具有较高灵敏度,可用于目标蛋白的识别。  相似文献   

11.
In this study, poly(amino acid)-based thermoresponsive molecularly imprinted magnetic nanoparticles for recognition and release of lysozyme was prepared via surface imprinting method. For constructing the molecularly imprinted polymer (MIP) layer, amino acid-based thermoresponsive monomer (N-methacryloyl-l-alanine methyl ester, MA-L-Ala-OMe) was mainly selected for the functional monomer along with N,N′-methylenebis(acrylamide) as the crosslinker. The resultant magnetic MIP nanoparticles were characterized in detail. Meanwhile, the dynamic light scattering studies and swelling ratios measurements were carried out for demonstrating the thermoresponsive property of the imprinted nanoparticles. The prepared magnetic MIP nanoparticles showed good adsorption capacity and selective recognition properties to lysozyme. Moreover, the fast adsorption process could reach equilibrium within 15 min. Importantly, the capture and release of lysozyme could be easily realized simply by altering the temperature of aqueous solution. Furthermore, the prepared imprinted nanoparticles were applied to separate lysozyme from the real egg white samples. The results proved that the thermoresponsive MIPs based on MA-L-Ala-OMe have great potential for selectively enriching target proteins in real samples.  相似文献   

12.
Molecular imprinting as a promising and facile separation technique has received much attention because of their high selectivity for target molecules. In this study, the superparamagnetic lysozyme surface-imprinted polymer was prepared by a novel fabricating protocol, the grafting of the imprinted polymer on magnetic particles in aqueous media was done by atom transfer radical polymerization (ATRP), and the properties of the imprinted polymer were characterized in detail. Its high selective adsorption and recognition to lysozyme demonstrated the separation ability of the magnetic imprinted material to template molecule, and it has been used for quick and direct separation of lysozyme from the mixture of standard proteins and real egg white samples under an external magnetic field. Furthermore, the elution of lysozyme from the imprinted material was achieved by PEG/sulphate aqueous two-phase system, which caused lysozyme not only desorption from the imprinted materials but also redistribution in the top and bottom phase of aqueous two-phase system. The aqueous two-phase system exhibited some of the extraction and enrichment effect to desorbed lysozyme. Our results showed that ATRP is a promising method for the protein molecularly imprinted polymer preparation.  相似文献   

13.
A novel bovine serum albumin(BSA) imprinted Mn-doped ZnS quantum dots(Mn:ZnS QDs) is firstly reported.The molecular imprinted polymer(MIP) functionalized Mn:ZnS QDs(Mn:ZnS@SiO2@MIP) include the preparation of Mn:ZnS QDs,the coating of silica on the surface of Mn:ZnS QDs,and the functional polymerization by sol-gel reaction using 3-aminophenylboronic acid as the functional and cross-linking monomer in the presence of BSA(Mn:ZnS@SiO2@MIP-BSA),and then the elution of the imprinted BSA on the surface of Mn:ZnS@SiO2 QDs.The results showed that the phosphorescence of Mn:ZnS@SiO2@MIP is stronger quenched by BSA than that of non-imprinted one(Mn:ZnS@SiO2@NIP),indicating that the selectivity of the imprinted Mn:ZnS quantum dots toward BSA is superior to that of non-imprinted one.  相似文献   

14.
Ren  Xiaohui  Liu  Haochi  Chen  Ligang 《Mikrochimica acta》2015,182(1-2):193-200
Microchimica Acta - We show that Mn(II)-doped ZnS quantum dots coated with an acrylamide-based molecularly imprinted polymer (MIP-coated QDs) can act as a fluorescent probe for the selective and...  相似文献   

15.
Proteins typically have nanoscale dimensions and multiple binding sites with inorganic ions, which facilitates the templated synthesis of nanoparticles to yield nanoparticle–protein hybrids with tailored functionality, water solubility, and tunable frameworks with well‐defined structure. In this work, we report a protein‐templated synthesis of Mn‐doped ZnS quantum dots (QDs) by exploring bovine serum albumin (BSA) as the template. The obtained Mn‐doped ZnS QDs give phosphorescence emission centered at 590 nm, with a decay time of about 1.9 ms. A dual‐channel sensing system for two different proteins was developed through integration of the optical responses (phosphorescence emission and resonant light scattering (RLS)) of Mn‐doped ZnS QDs and recognition of them by surface BSA phosphorescent sensing of trypsin and RLS sensing of lysozyme. Trypsin can digest BSA and remove BSA from the surface of Mn‐doped ZnS QDs, thus quenching the phosphorescence of QDs, whereas lysozyme can assemble with BSA to lead to aggregation of QDs and enhanced RLS intensity. The detection limits for trypsin and lysozyme were 40 and 3 nM , respectively. The selectivity of the respective channel for trypsin and lysozyme was evaluated with a series of other proteins. Unlike other protein sensors based on nanobioconjugates, the proposed dual‐channel sensor employs only one type of QDs but can detect two different proteins. Further, we found the RLS of QDs can also be useful for studying the BSA–lysozyme binding stoichiometry, which has not been reported in the literature. These successful biosensor applications clearly demonstrate that BSA not only serves as a template for growth of Mn‐doped ZnS QDs, but also impacts the QDs for selective recognition of analyte proteins.  相似文献   

16.
This paper reports a facile and general method for preparing an imprinted polymer thin shell with Mn-doped ZnS quantum dots (QDs) at the surface of silica nanoparticles by stepwise precipitation polymerization to form the highly-controllable core–shell nanoparticles (MIPs@SiO2–ZnS:Mn QDs) and sensitively recognize the target 2,4-dichlorophenol (2,4-DCP). Acrylamide (AM) and ethyl glycol dimethacrylate (EGDMA) were used as the functional monomer and the cross-linker, respectively. The MIPs@SiO2–ZnS:Mn QDs had a controllable shell thickness and a high density of effective recognition sites, and the thickness of uniform core–shell 2,4-DCP-imprinted nanoparticles was controlled by the total amounts of monomers. The MIPs@SiO2–ZnS:Mn QDs with a shell thickness of 45 nm exhibited the largest quenching efficiency to 2,4-DCP by using the spectrofluorometer. After the experimental conditions were optimized, a linear relationship was obtained covering the linear range of 1.0–84 μmol L−1 with a correlation coefficient of 0.9981 and the detection limit (3σ/k) was 0.15 μmol L−1. The feasibility of the developed method was successfully evaluated through the determination of 2,4-DCP in real samples. This study provides a general strategy to fabricate highly-controllable core–shell imprinted polymer-contained QDs with highly selective recognition ability.  相似文献   

17.
利用原位聚合分子印迹技术,以3-氨基苯硼酸(3-ABBA)为功能单体,利巴韦林(RIB)为目标分子,以硼酸和顺式二醇在不同酸碱度条件下可逆形成环内酯键为原理,在玻碳电极表面原位聚合形成利巴韦林分子印迹膜,研制了测定利巴韦林的分子印迹电化学传感器。采用循环伏安法(CV)和差分脉冲法(DPV)对印迹膜性能进行研究。DPV测试表明:在最优实验条件下,利巴韦林的浓度在5.0×10~(-8)~1.0×10~(-5)mol/L范围内与峰电流呈良好的线性关系,相关系数(r~2)为0.995 3,检出限(S/N=3)为1.5×10~(-8)mol/L。特异性实验表明制备的传感器对利巴韦林的选择性良好。该分子印迹电化学传感器可用于食品中利巴韦林的检测。  相似文献   

18.
Uniform-sized fluorescent molecularly imprinted polymers were prepared by one-step swelling and suspension polymerization, while chlorpyrifos, methacrylic acid, ethylene glycol dimethacrylate, and oil-soluble CdSe/ZnS quantum dots were used as the carrier, template molecule, functional monomer, cross-linker, and fluorophor, respectively. The morphology, adsorption dynamics, binding ability, and selectivity of quantum dot-labeled molecularly imprinted polymers were evaluated. The dosage of quantum dots for labeling the molecularly imprinted polymers was optimized. The results showed that the optimized dose of quantum dots was 200?µL using a concentration of 8.0?µM. The microsphere size was approximately 10?µm with a honeycombed surface. The quantum dot-labeled molecularly imprinted polymers had an even brightness and a high selectivity. In the presence of different concentrations of chlorpyrifos, a decrease in the fluorescence intensity of the quantum dot-labeled molecularly imprinted polymer was clearly identified by flow cytometry. The whole detection process was accomplished within 2?h including pretreatment. This method was used for the determination of chlorpyrifos in tap water samples.  相似文献   

19.
马嘉欣  连子如  何橙  王江涛  于仁成 《色谱》2021,39(8):775-780
作为一种新型荧光纳米材料,量子点具有十分优异的光学特性,是分析化学、生物科学、医学等领域研究的热点标记材料。分子印迹聚合物是能够进行特异性识别和选择性吸附的“仿生”材料,它易于制备且具有较好的重现性和稳定性,因而分子印迹技术已成为具有广阔应用前景的识别技术。量子点基分子印迹荧光传感器结合了量子点和分子印迹技术的优势,由于其高选择性和高灵敏度,在环境监测、食品检测、生物分析等领域得到快速发展。但该传感器在应用中也还存在亲水性不足、识别单一、便携性不足等问题。该文引用了近5年来发表在American Chemical Society、Elsevier等数据库约20篇相关文献,对量子点基分子印迹荧光传感器的构建及该传感器在快速检测分析痕量物质中的应用进展进行了综述。首先根据荧光光谱图中发射峰个数的不同分别介绍了3种量子点基分子印迹荧光传感器的类型及相关识别机理,其次根据待测物的不同归纳介绍了近五年来该传感器在离子、有机小分子、生物大分子等检测分析中的最新研究进展,最后对当前该传感器在制备及应用中仍存在的问题进行了总结并对其发展趋势进行了展望。  相似文献   

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