共查询到18条相似文献,搜索用时 46 毫秒
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以氯金酸(HAuCl_4)为原料,硼氢化钠(NaBH_4)为还原剂,聚乙烯吡咯烷酮K30(PVP)为稳定剂制备了尺寸5 nm的金纳米球;以阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)为模板剂和油酸钠(NaOL)稳定剂,用种子生长法制备了不同长径比(R=2.5~4)的金纳米棒。在2 W·cm~(-2)的808 nm激光照射10 min条件下,C(0.4 mg·mL~(-1))浓度金纳米球溶液升温10.2℃,该溶液可催化血液中亚硝基硫醇释放NO,最大释放量可达1.42 nmol·L~(-1);相同光热及催化条件下,C(0.4 mg·mL~(-1))浓度金纳米棒(R=3.01)溶液升温41.3℃,该溶液催化血液中亚硝基硫醇释放NO最大释放量可达1.89 nmol·L~(-1)。金纳米球和金纳米棒的光热及催化性能随着浓度增加而增强,金纳米棒的光热及催化性能要优于金纳米球。 相似文献
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郑志勇 《分析测试技术与仪器》2013,19(2):83-87
基于在金纳米棒(AuNRs)-Ag+-多巴胺(DA)体系中,DA快速将Ag+还原为Ag,Ag包裹在AuNRs表面形成核壳状纳米棒(Au@AgNRs),改变了AuNRs周围的电介质环境,导致其纵横比减小、纵向等离子体共振吸收波长带(LPAB)蓝移,同时伴随着溶液的颜色发生显著的变化, 藉此开发了一种快速测定DA的比色法. 方法已成功应用于血清中DA的测定,其结果与荧光法相吻合. 此外,探讨了比色法测定DA的机理. 相似文献
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开发能特异和灵敏检测基质金属蛋白酶-2(MMP-2)的智能型荧光分子探针,对于癌症的早期精准诊断与治疗至关重要。本文基于MMP-2特异性识别的多肽底物,利用一价铜离子催化的"点击"化学反应将荧光素(FITC)和多肽底物GPLGVRGY相偶联,与SH-PEG-COOH修饰的金纳米棒在EDC和Sulfo-NHS的作用下通过酰胺化反应,制备得到一种新的MMP-2特异性响应的荧光共振能量转移(FRET)金纳米棒探针GNR@FITC。体外重组酶检测实验、MTT实验及细胞共聚焦显微成像结果表明,该探针对MMP-2过表达小鼠乳腺癌细胞4T1表现出较好的特异性和检测灵敏度,具有进一步开发应用于乳腺癌早期诊断的极大潜力。 相似文献
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种子生长法合成纵向表面等离子体共振吸收峰为785 nm的金纳米棒,并对其表面进行聚乙二醇(PEG)修饰,研究了表面修饰PEG的金纳米棒(polyethylene glycol modified gold nanorods,PEG-GNR)的光热转化效应,并测试了其细胞毒性。以革兰氏阳性菌金黄色葡萄球菌、蜡状芽孢杆菌,革兰氏阴性菌大肠埃希氏菌及铜绿假单胞菌为细菌模型,详细研究了PEG-GNR在808nm波长近红外激光照射下金纳米棒浓度和照射功率对抑菌效果的影响。结果表明,PEG-GNR对革兰氏阳性菌和革兰氏阴性菌在近红外照射下均有较好的抑菌效果,并且抑菌效果与金纳米棒的浓度和照射功率有着密切的关系;结合荧光显微镜和透射电子显微镜对细菌坏死状况的观察,初步证实细菌对PEG-GNR有效吸收是近红外光热杀菌的关键因素。 相似文献
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种子生长法合成纵向表面等离子体共振吸收峰为785 nm的金纳米棒,并对其表面进行聚乙二醇(PEG)修饰,研究了表面修饰PEG的金纳米棒(polyethylene glycol modified gold nanorods,PEG-GNR)的光热转化效应,并测试了其细胞毒性.以革兰氏阳性菌金黄色葡萄球菌、蜡状芽孢杆菌,革兰氏阴性菌大肠埃希氏菌及铜绿假单胞菌为细菌模型,详细研究了PEG-GNR在808 nm波长近红外激光照射下金纳米棒浓度和照射功率对抑菌效果的影响.结果表明,PEG-GNR对革兰氏阳性菌和革兰氏阴性菌在近红外照射下均有较好的抑菌效果,并且抑菌效果与金纳米棒的浓度和照射功率有着密切的关系;结合荧光显微镜和透射电子显微镜对细菌坏死状况的观察,初步证实细菌对PEG-GNR有效吸收是近红外光热杀菌的关键因素. 相似文献
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通过研究十六烷基三甲基溴化铵、抗坏血酸、NaBH4和AgNO3的用量,以及搅拌时间、反应时间对无种子生长法制备金纳米棒的影响,筛选出了最佳制备条件,以及各成分对金纳米棒生长过程中的作用.采用可见吸收光谱和透射电镜图对不同条件下所制备出的金纳米棒进行了表征.在室温为28℃,CTAB浓度为0.1 mol/L、AgNO3浓度为96μmol/L、AA浓度为0.97 mmol/L、NaBH4浓度为1.5μmol/L,搅拌25 s等最佳条件下,只需反应6h就能够成功制备出长径比为5且形貌均匀、分散性和稳定性良好、轴宽较小的金纳米棒,且有望应用于水环境中Hg2+的检测. 相似文献
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本文制备了氧化石墨烯-金纳米棒复合物(GO-GNRs).利用滴涂法制备了修饰电极(GO-GNRs/GCE),通过循环伏安法,还原了GO-GNRs复合物中的GO,制得电化学还原的石墨烯-金纳米棒修饰电极(ERGO-GNRs/GCE).研究了酒石黄在不同电极上的电流响应,结果表明,ERGO-GNRs/GCE对酒石黄的氧化有很好的电催化作用,其浓度在0.05~6.0μmol/L范围内与氧化峰电流呈良好的线性关系,检出限为15 nmol/L.利用ERGO-GNRs/GCE可完成样品中酒石黄含量的测定. 相似文献
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Amplified Electrochemical Immunosensor for Calmodulin Detection Based on Gold‐Silver‐Graphene Hybrid Nanomaterials and Enhanced Gold Nanorods Labels 下载免费PDF全文
Ping Geng Ying Fu Meicheng Yang Qianqian Sun Kai Liu Xinai Zhang Zhiai Xu Wen Zhang 《Electroanalysis》2014,26(9):2002-2009
Calmodulin (CaM) is an important intracellular calcium‐binding protein. It plays a critical role in a variety of biological and biochemical processes. In this paper, a new electrochemical immunosensing protocol for sensitive detection of CaM was developed by using gold‐silver‐graphene (AuAgGP) hybrid nanomaterials as protein immobilization matrices and gold nanorods (GNRs) as enhanced electrochemical labels. Electrode was first modified with thionine‐chitosan film to provide an immobilization support for gold‐silver‐graphene hybrid nanomaterials. The hybrid materials formed an effective matrix for binding of CaM with high density and improved the electrochemical responses as well. Gold nanorods were prepared for the fabrication of enhanced labels (HRP‐Ab2‐GNRs), which provided a large capacity for HRP‐Ab2 immobilization and a facile pathway for electron transfer. With two‐step immunoassay format, the HRP‐Ab2‐GNRs labels were introduced onto the electrode surface, and produced electrochemical responses by catalytic reaction of HRP toward enzyme substrate of hydrogen peroxide (H2O2) in the presence of thionine. The proposed immunosensor showed an excellent analytical performance for the detection of CaM ranging from 50 pg mL?1 to 200 ng mL?1 with a detection limit of 18 pg mL?1. The immunosensor has also been successfully applied to the CaM analysis in two cancer cells (HepG2 and MCF‐7) with high sensitivity, which has shown great potency for improving clinic diagnosis and treatment for cancer study. 相似文献
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采用三氯化铁选择性刻蚀法获得了预定长径比的金纳米棒.相比于晶种生长法,三氯化铁选择性刻蚀法可以更加简便快捷地调控金纳米棒形貌.以三氯化铁为刻蚀剂的刻蚀反应优先发生在金纳米棒尖端,这是因为金纳米棒尖端反应活性更高且表面活性剂钝化作用更弱.通过控制刻蚀反应时间及刻蚀剂浓度,可以精确调控金纳米棒的长径比.实验结果表明,增加刻蚀剂浓度、卤素离子浓度以及升高反应温度可以加快刻蚀反应速率.进一步讨论了金属离子的刻蚀作用机理. 相似文献
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With the development of nanotechnology, many novel nanomaterials with unique properties such as magnetic, electronics, and photonics are increasingly being exploited. Gold nanorods, which are rod‐shaped nanomaterials, show powerful potential in biological/biomedical fields, especially photothermal therapy, biosensing, imaging, and gene delivery for the treatment of cancer. Many scientific groups have shown strong interests in gold nanorods and have attempted to push them towards possible clinical applications. However, owing to the quantum‐size effects of nanomaterials, people have also raised some concerns about the potential toxicity hazards. Therefore, it is becoming urgent to study and exploit the biological effects of gold nanorods for benefit in the near future. 相似文献
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通过在包覆了金纳米棒的介孔硅表面修饰生物相容性的透明质酸, 得到了具有肿瘤靶向性的多功能药物载体. 实验结果表明, 透明质酸可以通过酰胺键修饰在介孔硅表面, 所得药物载体可在透明质酸酶作用下实现选择性释放. 该体系在近红外区域具有较高的吸收, 可以在近红外光照射下实现光热转换. 细胞实验结果表明, 该多功能药物载体可以有效靶向CD44过量表达的乳腺癌细胞, 通过CD44介导的内吞富集在肿瘤内部, 结合化学药物治疗和光热治疗, 显示出更高的肿瘤细胞凋亡效率. 相似文献
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Precisely Tailor the Longitudinal Localized Surface Plasmon Resonance of Gold Nanorods by Mild Oxidation with NaNO2 下载免费PDF全文
In this work, we introduce a new method to precisely tailor the longitudinal localized surface plasmon resonance (LLSPR) wavelengths of gold nanorods (GNRs) through the use of NaNO2 as the oxidant. The effects of the concentrations of NaNO2, NH4Br and HCl on the reaction kinetics were investigated separately. To prepare GNRs with desired LLSPR wavelengths, equations were derived and were proved to be able to guide the tailoring of the LLSPR wavelengths through carefully tuning either the amount of NaNO2 or the reaction time. TEM characterizations performed on two representative sets of GNRs show that the GNRs obtained exhibited shortened lengths but unchanged diameter with good monodispersity. In particular, GNRs with targeted LLSPR at 800 nm, 750 nm, 700 nm and 650 nm were successfully synthesized with relative errors of only 1 %~5 %. This method shall promote more applications of GNRs and may advance the synthesis of other metal nanoparticles. 相似文献
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基于金纳米棒的生物检测、细胞成像和癌症的光热治疗 总被引:5,自引:0,他引:5
马占芳|田乐|邸静|丁腾 《化学进展》2009,21(1):134-142
由于金纳米棒颗粒独特的可调的表面等离子共振特性,使得金纳米棒颗粒在纳米复合材料和功能化纳米器件的构建、纳米生物技术、生物医学等领域具有广泛而重要的应用前景。本文综述了金纳米棒颗粒的生物检测、细胞成像和癌症的光热治疗方面的最新研究进展,并介绍了金纳米棒颗粒的光学性质和金纳米棒颗粒和几种主要的表面修饰方法,对金纳米棒颗粒在生物应用过程中存在的主要问题进行了讨论。 相似文献