Simultaneous detection of pathogenic bacteria using an aptamer based biosensor and dual fluorescence resonance energy transfer from quantum dots to carbon nanoparticles
Author:
Publisher
Springer Science and Business Media LLC
Subject
Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00604-014-1406-3.pdf
Reference28 articles.
1. Long M, Wang JM, Zhuang H, Zhang YY, Wu HZ, Zhang JH (2014) Performance and mechanism of standard nano-TiO2(P-25) in photocatalytic disinfection of foodborne microorganismse Salmonella typhimurium and Listeria monocytogenes. Food Control 39:68–74
2. Dastjerdi R, Montazer M (2010) A review on the application of inorganic nano-structured materials in the modification of textiles: focus on anti-microbial properties. Colloid Surf B 79:5–18
3. Basu M, Seggerson S, Henshaw J et al (2004) Nano-biosensor development for bacterial detection during human kidney infection: use of glycoconjugate-specific antibody-bound gold nanowire arrays (GNWA). Glycoconj J 21(8–9):487–496
4. Seo S, Dobozi-King M, Young RF, Kish LB, Cheng MS (2008) Patterning a nanowell sensor biochip for specific and rapid detection of bacteria. Microelectron Eng 85(7):1484–1489
5. Yang DP, Chen SH, Huang P et al (2010) Bacteria-template synthesized silver microspheres with hollow and porous structures as excellent SERS substrate. Green Chem 12(11):2038–2042
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