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荧光纳米生物传感器研究进展

Advance in Fluorescent Nanobiosensors
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摘要 荧光纳米生物传感器检测物质具有灵敏度高、响应迅速、抗干扰性强、无需参比电极等特点而被广泛地运用于生物传感技术领域。本文综述了荧光纳米生物传感器种类和特点,介绍了国内外近期在荧光纳米生物传感器及在生物检测方面的一些研究成果及进展,并作了分析比较。着重讨论了纳米粒子荧光生物传感器和光纤纳米荧光生物传感器的特性及其在生物分析中的应用。 Fluorescent nanobiosensors has a high sensitivity, rapid response, strong anti-interference, without reference electrode and other characteristics. It is widely used in biological sensing technology. The status and development of fluorescent nanobiosensors are introduced. This review especially focuses on fluorescence nanobiosensors and optical fiber nanobiosensors and their characteristics and applications on bioanalysis.
出处 《现代生物医学进展》 CAS 2014年第29期5790-5792,5767,共4页 Progress in Modern Biomedicine
基金 陕西学前师范学院科研基金项目(2012KJ024)
关键词 生物传感器 纳米粒子 荧光分析 Biosensors Nanoparticles Fluorescent analysis
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参考文献27

  • 1Gooding J J, Praig V G, Hall E A H. Platinum - catalyzed enzyme electrodes immobilized on gold using self- assembled layers [J]. Anal Chem, 1998, 70 (11): 2396-2402.
  • 2Gao Z Q, Agarwal A, Trigg A D, et al. Silicon nanowire arrays for label- free detection of DNA[J]. Anal Chem, 2007, 79 (9): 3291-3297.
  • 3Maxwell D J, Taylor J R, Nie S. Self- assembled nanoparticle probes for recognition and detection of biomolecules [J]. J Am Chem Soc, 2002, 124(32): 9606-9612.
  • 4Singh R, Pamarotto D, McCarthy D, et al. Binding and condensation of plasmid DNA on to functionalized carbon nanotubes [J]. J Am Chem Soc, 2005, 127(12): 4388-4396.
  • 5M K Balaconis, K Billingsley, M J Dubacb, et al. The design and development of fluorescent nano-optodes for in vivo glucose monitoring[J]. J Diabetes Sci Technol, 2011, 5(1): 68-75.
  • 6Chu MQ, Wu Q, Yang H, et al. Transfer of quantum dots from pregnant mice to pups across the placental barrier [J]. Small, 2010, 6 (5):670-678.
  • 7Dahan M. Time-gated biological imaging by use of colloidal quantum dots[J]. Optics Lett, 2001, 26:825-827.
  • 8Meng X, Wei J, Ren X, et al. A simple and sensitive fluorescence biosensor for detection of organophosphorus pesticides using HO-sensitive quantum dots/bi-enzyme[J]. Biosens Bioeleetron, 2013, 47C:402 -407.
  • 9Noipa T, Tuntulani T, Ngeontae W. Cu^2+-modulated cysteamine- capped CdS quantum dots as a turn-on fluorescence sensor for cyanide recognition[J]. Talanta, 2013, 105:320-326.
  • 10Shen J, Chela T, Zhang H X, et al. Chitosan-based luminescent/magnetic hybrid nanogels for insulin delivery, cell imaging, and antidiabetic research of dietary supplements [J]. International Journal of Pharmaceutics, 2012, 427(2): 400-409.

二级参考文献8

  • 1Johnson,R.R,Rego,B.J,Johnson,A.T,et al . Computational study of a nanobiosensor : a single--walled carbon nanotube functionalized with the coxsackie--adenovirus receptor. J Phys Chem B, 2009,113(34): 89-93.
  • 2Chouhan, Raghuraj, Vinayaka, Aaydha, and Thakur, Munna.Aqueous syntheMs of CdTe quantum dot as biological fluorescent probe for moniloring methyl parathion by fluoro-immunosensor.Available from Nature Precedings <http://hdl.handle.net/10101/npre. 2009. 3451.1> (2009).
  • 3Ishikawa,F.N,Curreli.M,Chang.H.K,et al.A Calibration Method for Nanotvlre Biosensors to Suppress Device--to--Device Variation. A CS Nano , 2009 , 3(12 ) : 3969-3976 .
  • 4Zheng,X.T,Li.C.M.Single living cell detection of telomerase over--expression for cancer detection by an optical fiber nanoblosensor. Biosens Bioelectron, 2010,25( 6 ) : 1548-1552.
  • 5Tang.X.H,Jonas.A.M,Nysten B et al.Direct protein detection with a nano--interdigitated array gate MOSFET. BIOSENSORS & BIOELECTRONICS , 2009,24 ( 12 ) : 3531 - 3537.
  • 6樊春海.纳米生物传感器[J].世界科学,2008(11):21-22. 被引量:6
  • 7邢茹,赵建军,浩斯巴雅尔,鲁毅.纳米生物传感器的研究进展[J].阴山学刊(自然科学版),2007,21(2):49-51. 被引量:2
  • 8周李承,蒋易,周宜开,任恕,聂棱.光纤纳米生物传感器的现状及发展[J].传感器技术,2002,21(12):56-59. 被引量:7

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