全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
分析化学  2014 

金纳米颗粒可视化传感器在生物分子分析中的研究进展

DOI: 10.3724/SP.J.1096.2014.30806, PP. 307-314

Keywords: 金纳米颗粒,可视化传感器,生物分子,评述

Full-Text   Cite this paper   Add to My Lib

Abstract:

基于金纳米颗粒的可视化传感器具有灵敏度高、选择性好、肉眼可见、无需大型仪器等优点,是一种具有应用潜力的分析检测方法。生物分子分析检测与人体健康息息相关。本文综述了近几年基于金纳米颗粒的可视化传感器在生物分子分析中的应用研究。

References

[1]  1 Ghosh S K, Pal T. Chem. Rev., 2007, 107(11): 4797-4862
[2]  2 Daniel M C, Astruc D. Chem. Rev., 2004, 104(1): 293-346
[3]  3 Rosi N L, Mirkin C A. Chem. Rev., 2005, 105(4): 1547-1562
[4]  4 Cook D L, Hales C N. Nature, 1984, 311(5983): 271-273
[5]  5 Wang J, Wang L H, Liu X F, Liang Z Q, Song S P, Li W X, Li G X, Fan C H. Adv. Mater., 2007, 19(22): 3943-3946
[6]  6 Li F, Zhang J, Cao X N, Wang L H, Li D, Song S P, Ye B C, Fan C H. Analyst, 2009, 134(7): 1355-1360
[7]  7 Liu J W, Lu Y. Angew. Chem. Int. Edit., 2006, 45(1): 90-94
[8]  8 Li M, Zhang J M, Suri S, Sooter L J, Ma D L, Wu N Q. Anal. Chem., 2012, 84(6): 2837-2842
[9]  9 Robinson D L, Hermans A, Seipel A T, Wightman R M. Chem. Rev., 2008, 108(7): 2554-2584
[10]  10 Kong B A, Zhu A W, Luo Y P, Tian Y, Yu Y Y, Shi G Y. Angew. Chem. Int. Edit., 2011, 50(8): 1837-1840
[11]  11 Liu L, Li S J, Liu L L, Deng D H, Xia N. Analyst, 2012, 137(16): 3794-3799
[12]  12 Li L L, Liu H Y, Shen Y Y, Zhang J R, Zhu J J. Anal. Chem., 2011, 83(3): 661-665
[13]  13 Lin Y H, Chen C E, Wang C Y, Pu F, Ren J S, Qu X G. Chem. Commun., 2011, 47(4): 1181-1183
[14]  14 Xue C, Han Q, Wang Y, Wu J, Wen T, Wang R, Hong J, Zhou X, Jiang H. Biosens. Bioelectron., 2013, 49: 199-203
[15]  15 Feng L H, Wang Y, Liang F, Wang X J, Zhang L W. Sens. Actuator B-Chem., 2011, 156(1): 499-503
[16]  16 Radhakumary C, Sreenivasan K. Anal. Chem., 2011, 83(7): 2829-2833
[17]  17 Jiang Y, Zhao H, Lin Y Q, Zhu N N, Ma Y R, Mao L Q. Angew. Chem. Int. Edit., 2010, 49(28): 4800-4804
[18]  18 Xu C, Ren J S, Feng L Y, Qu X G. Chem. Commun., 2012, 48(31): 3739-3741
[19]  19 Li T S, Zhu K, He S, Xia X, Liu S Q, Wang Z, Jiang X Y. Analyst, 2011, 136(14): 2893-2896
[20]  20 Xianyu Y L, Sun J S, Li Y X, Tian Y, Wang Z, Jiang X Y. Nanoscale, 2013, 5(14): 6303-6306
[21]  21 Ullman B, Wormsted M A, Cohen M B, Martin D W. Proceedings of the National Academy of Sciences of the United States of America-Biological Sciences, 1982, 79(17): 5127-5131
[22]  22 Yamanaka H, Togashi R, Hakoda M, Terai C, Kashiwazaki S, Dan T, Kamatani N. Purine and Pyrimidine Metabolism in Man Ⅸ Advances in Experimental Medicine and Biollgy. 1998; 431: 13-18
[23]  23 Bera R K, Anoop A, Raj C R. Chem. Commun., 2011, 47(41): 11498-11500
[24]  24 Liu M L, Chen Q, Lai C L, Zhang Y Y, Deng J H, Li H T, Yao S Z. Biosens. Bioelectron., 2013, 48: 75-81
[25]  25 Uehara N, Ookubo K, Shimizu T. Langmuir,, 2010, 26(9): 6818-6825
[26]  26 Li Y, Wu P, Xu H, Zhang H, Zhong X H. Analyst, 2011, 136(1): 196-200
[27]  27 Xiao Q Y, Shang F, Xu X C, Li Q Q, Lu C, Lin J M. Biosens. Bioelectron, 2011, 30(1): 211-215
[28]  28 Qian Q, Deng J J, Wang D L, Yang L F, Yu P, Mao L Q. Anal. Chem., 2012, 84(21): 9579-9584
[29]  29 Park K S, Kim M I, Woo M A, Park H G. Biosens. Bioelectron., 2013, 45: 65-69
[30]  30 Su H Y, Zheng Q L, Li H B. J. Mater. Chem., 2012, 22(14): 6546-6548
[31]  31 Zhou Y L, Yang Z C, Xu M T. Anal. Methods, 2012, 4(9): 2711-2714
[32]  32 Chen Z B, Guo J X, Li J, Guo L. Nanotechnology, 2013, 24(29): 95501-95501
[33]  33 Saha K, Agasti S S, Kim C, Li X N, Rotello V M. Chem. Rev.,, 2012, 112(5): 2739-2779
[34]  34 Mirkin C A, Letsinger R L, Mucic R C, Storhoff J J. Nature, 1996, 382(6592): 607-609
[35]  35 Elghanian R, Storhoff J J, Mucic R C, Letsinger R L, Mirkin C A. Science, 1997, 277(5329): 1078-1081
[36]  36 Xia F, Zuo X L, Yang R Q, Xiao Y, Kang D, Vallee-Belisle A, Gong X, Yuen J D, Hsu B B Y, Heeger A J, Plaxco K W. Proc. Natl. Acad. Sci. U. S. A., 2010, 107(24): 10837-10841
[37]  37 Li J S, Deng T, Chu X, Yang R H, Jiang J H, Shen G L, Yu R Q. Anal. Chem., 2010, 82(7): 2811-2816
[38]  38 Xing Y S, Wang P, Zang Y C, Ge Y Q, Jin Q H, Zhao J L, Xu X, Zhao G Q, Mao H J. Analyst, 2013, 138(12): 3457-3462
[39]  39 Liu M Y, Yuan M, Lou X H, Mao H J, Zheng D M, Zou R X, Zou N L, Tang X R, Zhao J L. Biosens. Bioelectron., 2011, 26(11): 4294-4300
[40]  40 He Y Q, Zhang X B, Zhang S Q, Kris M K L, Kawde A N, Liu G D. Biosens. Bioelectron., 2012, 34(1): 37-43
[41]  41 Wang W, Yuan X Q, Liu X H, Gao Q, Qi H L, Zhang C X. Science China-Chemistry, 2013, 56(7): 1009-1016
[42]  44 Zhang X, Tony G, Kristian G, Mark R S, Ron G, Liu J W. Journal of Physical Chemistry C, 2013, 117(30): 15677-15684
[43]  45 Zhang X, Liu B W, Mark R S, Liu J W. Langmuir, 2013, 29(20): 6091-6098
[44]  46 Wang D, Zhu X C, Zhao D Q, Cai Y X, Zhao M P. Chem. Asian J., 2012, 7(7): 1546-1549
[45]  47 Liu D B, Chen W W, Tian Y, He S, Zheng W F, Wang Z, Jiang X Y. Adv. Healthc. Mater., 2012, 1(1): 90-95
[46]  48 Qu W S, Liu Y Y, Liu D B, Wang Z, Jiang X Y. Angew. Chem. Int. Edit., 2011, 50(15): 3442-3445
[47]  49 Zhu K, Zhang Y, He S, Chen W W, Shen J Z, Wang Z, Jiang X Y. Anal. Chem., 2012, 84(10): 4267-4270
[48]  50 De La Rica R, Stevens M M. Nature Nanotechnology, 2012, 7(12): 821-824
[49]  51 Niu Y, Wang P, Zhao Y, Fan A. Analyst, 2013, 138(5): 1475-1482
[50]  42 Liu F, Liu H, Zhang M, Yu J H, Wang S W, Lu J J. Analyst, 2013, 138(12): 3463-3469
[51]  43 Saberi R S, Shahrokhian S, Marrazza G. Electroanalysis, 2013, 25(6): 1373-1380

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133