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SERS技术在疾病诊断和生物分析中的应用 被引量:7

Application of SERS Techniques in Diagnosis and Bioassay
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摘要 表面增强拉曼散射(surface-enhanced Raman scattering,SERS)技术以其独特的谱带窄、灵敏度高、抗光漂白、原位和无损等优势,在疾病诊断和生物分析领域得到了越来越广泛的应用。本文介绍了近几年来应用于生物大分子、病原微生物、细胞和活体检测分析中的最新SERS技术,并分别从标记与非标记的角度对其进行了阐述,总结了SERS标记检测生物大分子的基本识别模式,简述了检测低浓度病原微生物的SERS技术,着重评述了SERS检测技术在细胞和活体研究中的应用,并对基于SERS的疾病诊断和生物分析技术的发展趋势进行了初步展望。 Surface-enhanced Raman scattering (SERS) technique has experienced unprecedented growth in recent years, driven in large part by its numerous merits including sharp bandwidth, high sensitivity, anti- photobleaching as well as the ability of in-situ and noninvasive analysis for diagnosis and bioassay. Recent advances in SERS-based detection and analysis techniques toward the targets of biomacromolecules, pathogenic microorganisms, cells and living organisms, with an emphasis on labeled or label-free techniques are discussed in the review. General methods are summaried in basic recognition modes for different objects in SERS detection. Details are listed to highlight the strategies to increase sensitivity in the detection of pathogenic microorganisms. We also provide insights into the latest applications of SERS techniques in vivo and present the prospects of SERS techniques in the last part of the article.
出处 《化学进展》 SCIE CAS CSCD 北大核心 2012年第12期2391-2402,共12页 Progress in Chemistry
基金 国家自然科学基金项目(No.20975042 21175051) 湖北省创新团队自然科学基金项目(No.2011CDA115)资助
关键词 表面增强拉曼散射(SERS) 生物大分子 病原微生物 细胞 活体 surface-enhanced Raman scattering (SERS) biomacromolecule pathogenic microorganism cell in vivo
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  • 1Jemal A, Bray F, Center M M, Ferlay J, Ward E, Forman D. CA: CancerJ. Clin., 2011, 61(2): 69-90.
  • 2Borkin M, Gajos K, Peters A, Mitsouras D, Melchionna S, Rybicki F, Feldman C, Pfister H. IEEE T. Vis. Comput. Gr. , 2011, 17(12) : 2479-2488.
  • 3Huang W, Eshleman S H, Toma J, Fransen S, Stawiski E, Paxinos E E, Whitcomb J M, Young A M, Donnell D, Mmiro F. J. Virol. , 2007, 81(15): 7885-7893.
  • 4Raman C V, Krishnan K. Nature, 1928, 121(3048):501- 502.
  • 5Jacek L, Philip N R. Adsorption of Molecules at Metal / Electrodes. 1st ed. NY: Wiley-VCH, 1992. 285 [3.
  • 6Fleischmann M, Hendra P, McQuillan A. Chem. Phys. Lett. , 1974, 26(2) : 163-166.
  • 7Jeanmaire D L, van Duyne R P. J. Electroanal. Chem. Interfa. Electrochem. , 1977, 84(1): 1-20.
  • 8Albrecht M G, Creighton J A. J. Am. Chem. Soc. , 1977, 99 (15) : 5215-5217.
  • 9Dieringer J A, Robert B, Lettan I, Scheidt K A, van Duyne R P. J. Am. Chem. Soc. , 2007, 129(51) : 16249-16256.
  • 10Michaels A M, Nirmal M, Brus L. J. Am. Chem. Soc. , 1999, 121 (43) : 9932-9939.

二级参考文献70

  • 1李淑瑾,顾仁敖.巯基苯类为标记分子免疫检测的FT-SERS光谱研究[J].化学学报,2004,62(20):2118-2122. 被引量:9
  • 2蒋芸,崔颜,姚建林,顾仁敖.表面增强拉曼光谱研究以4,4'-联吡啶为标记分子的免疫检测[J].化学学报,2006,64(3):240-244. 被引量:10
  • 3Cao Y W C, Jin R C, Mirkin C A. Science, 2002, 297: 1536--1540.
  • 4Jin R C, Cao Y C, Thaxton C S, Mirkin C A. Small, 2006, 2: 375--380.
  • 5Faulds K, Smith W E, Graham D. Anal. Chem. , 2004, 76: 412--417.
  • 6Faulds K, Stewart L, Smith W E, Graham D. Talanta, 2005, 67 : 667--671.
  • 7Faulds K, McKenzie F, Smith W E, Graham D. Angew. Chem. Int. Ed. , 2007, 46:1829--1831.
  • 8Macaskill A, Chernonosov A A, Koval V V, Lukyanets E A, Fedorova O S, Smith W E, Faulds K, Graham D. Nucleic Acids Res. , 2007, 35: art. no. e42.
  • 9Stokes R J, Macaskill A, Lundahl P J, Smith W E, Faulds K, Graham D. Small, 2007, 3:1593--1601.
  • 10Faulds K, Jarvis R, Smith W E, Graham D, Goodacre R. Analyst, 2008, 133:1505--1512.

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