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May 9, 2013
Chapter 13

Nanosensors

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13.14 References

Alivisatos, A. P. (1996). “Perspectives on the physical chemistry of semiconductor nanocrystals.” Journal of Physical Chemistry, 100(31), 13226–13239.
Alocilja, E. C., and Radke, S. M. (2003). “Market analysis of biosensors for food safety.” Biosensors Bioelectronics, 18(5–6), 841–846.
Anderson, G. P., King, K. D., Gaffney, K. L., and Johnson, L. H. (2000). “Multi-analyte interrogation using the fiber optic biosensor.” Biosensors Bioelectronics, 14(10–11), 771–777.
Arora, K., Chand, S., and Malhotra, B. D. (2006). “Recent developments in bio-molecular electronics techniques for food pathogens.” Analytica Chimica Acta, 568(1–2), 259–274.
Baselt, D. R., Lee, G. U., and Colton, R. J. (1996). “Biosensor based on force microscope technology.” Journal of Vacuum Science Technology B, 14(2), 789–793.
Baselt, D. R., Lee, G. U., Natesan, M., Metzger, S. W., Sheehan, P. E., and Colton, R. J. (1998). “A biosensor based on magnetoresistance technology.” Biosensors Bioelectronics, 13(7–8), 731–739.
Berganza, J., Olabarria, G., Garcia, R., Verdoy, D., Rebollo, A., and Arana, S. (2007). “DNA microdevice for electrochemical detection of Escherichia coli 0157:H7 molecular markers.” Biosensors Bioelectronics, 22(9–10), 2132–7.
Bergman, A. A., Buijs, J., Herbig, J., Mathes, D. T., Demarest, J. J., Wilson, C. D., Reimann, C. T., Baragiola, R. A., Hu, R., and Oscarsson, S. O. (1998). “Nanometer-scale arrangement of human serum albumin by adsorption on defect arrays created with a finely focused ion beam.” Langmuir, 14(24), 6785–6788.
Boatman, E. M., Lisensky, G. C., and Nordell, K. J. (2005). “A safer, easier, faster synthesis for CdSe quantum dot nanocrystals.” Journal of Chemical Education, 82(11), 1697–1699.
Branch, D. W., and Brozik, S. M. (2004). “Low-level detection of a Bacillus anthracis simulant using Love-wave biosensors on 36 degrees YX LiTaO3.” Biosensors Bioelectronics, 19(8), 849–859.
Bruchez, M. Jr., Moronne, M., Gin, P., Weiss, S., and Alivisatos, A. P. (1998). “Semiconductor nanocrystals as fluorescent biological labels.” Science, 281(5385), 2013–6.
Brust, M., Walker, M., Bethell, D., Schiffrin, D. J., and Whyman, R. (1994). “Synthesis of Thiol-Derivatized Gold Nanoparticles in a 2-Phase Liquid-Liquid System.” Journal of the Chemical Society-Chemical Communications(7), 801–802.
Campbell, G. A., and Mutharasan, R. (2007). “A method of measuring Escherichia coli O157 : H7 at 1 cell/mL in 1 liter sample using antibody functionalized piezoelectric-excited millimeter-sized cantilever sensor.” Environmental Science Technology, 41(5), 1668–1674.
Campbell, G. A., and Mutharasan, R. (2008). “Near real-time detection of Cryptosporidium parvum oocyst by IgM-functionalized piezoelectric-excited millimeter-sized cantilever biosensor.” Biosensors Bioelectronics, 23, 1039–1045.
Canu, G., Dipasquale, M., Bernini, C., Bonanno, P., Zitti, E. D., Marrè, D., Pellegrino, L., Ricci, D., Sassetti, M., and Siri, A. S. (2008). “Controlling the formation of gold nanoparticle domains onto inorganic substrates” Physica E: Low-dimensional Systems and Nanostructures, 40(5), 1709–171.
Cao, Y. C., Jin, R., and Mirkin, C. A. (2002). “Nanoparticles with Raman spectroscopic fingerprints for DNA and RNA detection.” Science, 297(5586), 1536–40.
Carrascosa, L. G., Moreno, M., Alvarez, M., and Lechuga, L. M. (2006). “Nanomechanical biosensors: a new sensing tool.” Trac-Trends in Analytical Chemistry, 25(3), 196–206.
Chan, W. C. W., and Nie, S. M. (1998). “Quantum dot bioconjugates for ultrasensitive nonisotopic detection.” Science, 281(5385), 2016–2018.
Chen, L. H., McBranch, D. W., Wang, H. L., Helgeson, R., Wudl, F., and Whitten, D. G. (1999). “Highly sensitive biological and chemical sensors based on reversible fluorescence quenching in a conjugated polymer.” Proceedings of the National Academy of Sciences of the United States of America, 96(22), 12287–12292.
Chen, L. L., Deng, L., Liu, L. L., and Peng, Z. H. (2007). “Immunomagnetic separation and MS/SPR end-detection combined procedure for rapid detection of Staphylococcus aureus and protein A.” Biosensors Bioelectronics, 22(7), 1487–1492.
Chinowsky, T. M., Quinn, J. G., Bartholomew, D. U., Kaiser, R., and Elkind, J. L. (2003). “Performance of the Spreeta 2000 integrated surface plasmon resonance affinity sensor.” Sensors and Actuators B-Chemical, 91(1–3), 266–274.
Chinowsky, T. M., Soelberg, S. D., Baker, P., Swanson, N. R., Kauffman, P., Mactutis, A., Grow, M. S., Atmar, R., Yee, S. S., and Furlong, C. E. (2007). “Portable 24-analyte surface plasmon resonance instruments for rapid, versatile biodetection.” Biosensors Bioelectronics, 22(9–10), 2268–2275.
Craun, M. F., Craun, G. F., Calderon, R. L., and Beach, M. J. (2006). “Waterborne outbreaks reported in the United States.” Journal of Water and Health, 4 Suppl 2, 19–30.
Crowley, E. L., O’Sullivan, C. K., and Guilbault, G. G. (1999). “Increasing the sensitivity of Listeria monocytogenes assays: evaluation using ELISA and amperometric detection.” Analyst, 124(3), 295–299.
Csaki, A., Moller, R., Straube, W., Kohler, J. M., and Fritzsche, W. (2001). “DNA monolayer on gold substrates characterized by nanoparticle labeling and scanning force microscopy.” Nucleic Acids Research, 29(16), art. no.-e81.
Docherty, F. T., Clark, M., McNay, G., Graham, D., and Smith, W. E. (2004). “Multiple labelled nanoparticles for bio detection.” Faraday Discussions, 126, 281–288.
Dore, K., Dubus, S., Ho, H. A., Levesque, I., Brunette, M., Corbeil, G., Boissinot, M., Boivin, G., Bergeron, M. G., Boudreau, D., and Leclerc, M. (2004). “Fluorescent polymeric transducer for the rapid, simple, and specific detection of nucleic acids at the zeptomole level.” Journal of the American Chemical Society, 126(13), 4240–4244.
Ekins, R. P. (1998). “Ligand assays: from electrophoresis to miniaturized microarrays.” Clinical Chemistry, 44(9), 2015–30.
Erickson, D., Mandal, S., Yang, A. H. J., and Cordovez, B. (2008). “Nanobiosensors: optofluidic, electrical and mechanical approaches to biomolecular detection at the nanoscale.” Microfluidics and Nanofluidics, 4(1–2), 33–52.
Escamilla-Gomez, V., Campuzano, S., Pedrero, M., and Pingarron, J. M. (2007). “Development of an amperometric immunosensor for the quantification of staphylococcus aureus using self-assembled monolayer-modiried electrodes as immobilization platforms.” Electroanalysis, 19(14), 1476–1482.
Fratamico, P. M., Strobaugh, T. P., Medina, M. B., and Gehring, A. G. (1998). “Detection of Escherichia coli O157 : H7 using a surface plasmon resonance biosensor.” Biotechnology Techniques, 12(7), 571–576.
Fritz, J., Baller, M. K., Lang, H. P., Rothuizen, H., Vettiger, P., Meyer, E., Guntherodt, H., Gerber, C., and Gimzewski, J. K. (2000). “Translating biomolecular recognition into nanomechanics.” Science, 288(5464), 316–8.
Gooding, J. J. (2006). “Biosensor technology for detecting biological warfare agents: Recent progress and future trends.” Analytica Chimica Acta, 559(2), 137–151.
Gupta, A., Akin, D., and Bashir, R. (2004). “Single virus particle mass detection using microresonators with nanoscale thickness.” Applied Physics Letters, 84(11), 1976–1978.
Haes, A. J., and Van Duyne, R. P. (2002). “A nanoscale optical biosensor: Sensitivity and selectivity of an approach based on the localized surface plasmon resonance spectroscopy of triangular silver nanoparticles.” Journal of the American Chemical Society, 124(35), 10596–10604.
Han, M. Y., Gao, X. H., Su, J. Z., and Nie, S. (2001). “Quantum-dot-tagged microbeads for multiplexed optical coding of biomolecules.” Nature Biotechnology, 19(7), 631–635.
He, L., Musick, M. D., Nicewarner, S. R., Salinas, F. G., Benkovic, S. J., Natan, M. J., and Keating, C. D. (2000). “Colloidal Au-enhanced surface plasmon resonance for ultrasensitive detection of DNA hybridization.” Journal of the American Chemical Society, 122(38), 9071–9077.
Higgins, J. A., Ibrahim, M. S., Knauert, F. K., Ludwig, G. V., Kijek, T. M., Ezzell, J. W., Courtney, B. C., and Henchal, E. A. (1999). “Sensitive and rapid identification of biological threat agents.” Food and Agricultural Security, 894, 130–148.
Ho, J. A. A., and Hsu, H. W. (2003). “Procedures for preparing Escherichia coli O157 : H7 immunoliposome and its application in liposome immunoassay.” Analytical Chemistry, 75(16), 4330–4334.
Ilic, B., Craighead, H. G., Krylov, S., Senaratne, W., Ober, C., and Neuzil, P. (2004). “Attogram detection using nanoelectromechanical oscillators.” Journal of Applied Physics, 95(7), 3694–3703.
Jianrong, C., Yuqing, M., Nongyue, H., Xiaohua, W., and Sijiao, L. (2004). “Nanotechnology and biosensors.” Biotechnology Advances, 22(7), 505–518.
Kang, C. D., Lee, S. W., Park, T. H., and Sim, S. J. (2006). “Performance enhancement of real-time detection of protozoan parasite, Cryptosporidium oocyst by a modified surface plasmon resonance (SPR) biosensor.” Enzyme and Microbial Technology, 39(3), 387–390.
Karlsson, R. (2004). “SPR for molecular interaction analysis: a review of emerging application areas.” Journal of Molecular Recognition, 17(3), 151–161.
Khaled, A. R. A., Vafai, K., Yang, M., Zhang, X., and Ozkan, C. S. (2003). “Analysis, control and augmentation of microcantilever deflections in bio-sensing systems.” Sensors and Actuators B-Chemical, 94(1), 103–115.
Kneipp, K., Kneipp, H., Itzkan, I., Dasari, R. R., and Feld, M. S. (1999). “Ultrasensitive chemical analysis by Raman spectroscopy.” Chemical Reviews, 99(10), 2957–2976.
Lakshmanan, R. S., Guntupalli, R., Hu, J., Petrenko, V. A., Barbaree, J. M., and Chin, B. A. (2007). “Detection of Salmonella typhimurium in fat free milk using a phage immobilized magnetoelastic sensor.” Sensors and Actuators B-Chemical, 126(2), 544–550.
Lazcka, O., Del Campo, F. J., and Munoz, F. X. (2007). “Pathogen detection: A perspective of traditional methods and biosensors.” Biosensors Bioelectronics, 22(7), 1205–1217.
Lee, H. J., Goodrich, T. T., and Corn, R. M. (2001). “SPR imaging measurements of 1-D and 2-D DNA microarrays created from microfluidic channels on gold thin films.” Analytical Chemistry, 73(22), 5525–5531.
Lian, W., Litherland, S. A., Badrane, H., Tan, W., Wu, D., Baker, H. V., Gulig, P. A., Lim, D. V., and Jin, S. (2004). “Ultrasensitive detection of biomolecules with fluorescent dye-doped nanoparticles.” Analytical Biochemistry, 334(1), 135–144.
Lim, D. V., Simpson, J. M., Kearns, E. A., and Kramer, M. F. (2005). “Current and developing technologies for monitoring agents of bioterrorism and biowarfare.” Clinical Microbiology Reviews, 18(4), 583–607.
Lindroos, K., Sigurdsson, S., Johansson, K., Ronnblom, L., and Syvanen, A. C. (2002). “Multiplex SNP genotyping in pooled DNA samples by a four-colour microarray system.” Nucleic Acids Res, 30(14), e70.
Liu, J. F., Cruchon-Dupeyrat, S., Garno, J. C., Frommer, J., and Liu, G. Y. (2002). “Three-dimensional nanostructure construction via nanografting: Positive and negative pattern transfer.” Nano Letters, 2(9), 937–940.
Maraldo, D., and Mutharasan, R. (2007). “10-minute assay for detecting Escherichia coli O157:H7 in ground beef samples using piezoelectric-excited millimeter-size cantilever sensors.” Journal of Food Protection, 70(7), 1670–1677.
Marziali, A., and Thompson, J. (2005). “Scalable DNA purification by synchronous perturbation of electrophoretic mobility.” Biophysical Journal, 88(1), 658a-658a.
McKendry, R., Zhang, J. Y., Arntz, Y., Strunz, T., Hegner, M., Lang, H. P., Baller, M. K., Certa, U., Meyer, E., Guntherodt, H. J., and Gerber, C. (2002). “Multiple label-free biodetection and quantitative DNA-binding assays on a nanomechanical cantilever array.” Proceedings of the National Academy of Sciences of the United States of America, 99(15), 9783–9788.
Muhammad-Tahir, Z., and Alocilja, E. C. (2003). “Fabrication of a disposable biosensor for Escherichia coli O157 : H7 detection.” IEEE Sensors Journal, 3(4), 345–351.
Murphy, C. L., and Orendorff, C. J. (2005). “Alignment of gold nanorods in polymer composites and on polymer surfaces.” Advanced Materials, 17(18), 2173–2177.
Nam, J. M., Stoeva, S. I., and Mirkin, C. A. (2004). “Bio-bar-code-based DNA detection with PCR-like sensitivity.” Journal of American Chemical Society, 126(19), 5932–5933.
Nam, J. M., Thaxton, C. S., and Mirkin, C. A. (2003). “Nanoparticle-based bio-bar codes for the ultrasensitive detection of proteins.” Science, 301(5641), 1884–6.
Nataro, J. P., and Kaper, J. B. (1998). “Diarrheagenic Escherichia coli.” Clinical Microbiology Reviews, 11(1), 142–201.
Nelson, B. P., Liles, M. R., Frederick, K. B., Corn, R. M., and Goodman, R. M. (2002). “Label-free detection of 16S ribosomal RNA hybridization on reusable DNA arrays using surface plasmon resonance imaging.” Environmental Microbiology, 4(11), 735–743.
Niemeyer, C. M. (2001). “Nanoparticles, proteins, and nucleic acids: Biotechnology meets materials science.” Angewandte Chemie-International Edition, 40(22), 4128–4158.
Nirmal, M., and Brus, L. (1999). “Luminescence photophysics in semiconductor nanocrystals.” Accounts of Chemical Research, 32(5), 407–414.
Odenthal, K. J., and Gooding, J. J. (2007). “An introduction to electrochemical DNA biosensors.” Analyst, 132(7), 603–610.
Oh, B. K., Kim, Y. K., Lee, W., Bae, Y. M., Lee, W. H., and Choi, J. W. (2003). “Immunosensor for detection of Legionella pneumophila using surface plasmon resonance.” Biosensora Bioelectronics, 18(5–6), 605–611.
Oh, B. K., Lee, W., Kim, Y. K., Lee, W. H., and Choi, J. W. (2004). “Surface plasmon resonance immunosensor using self-assembled protein G for the detection of Salmonella paratyphi.” Journal of Biotechnology, 111(1), 1–8.
Olsvik, O., Popovic, T., Skjerve, E., Cudjoe, K. S., Hornes, E., Ugelstad, J., and Uhlen, M. (1994). “Magnetic Separation Techniques in Diagnostic Microbiology.” Clinical Microbiology Reviews, 7(1), 43–54.
Pal, S., Alocilja, E. C., and Downes, F. P. (2007). “Nanowire labeled direct-charge transfer biosensor for detecting Bacillus species.” Biosensors Bioelectronics, 22(9–10), 2329–2336.
Panchuk-Voloshina, N., Haugland, R. P., Bishop-Stewart, J., Bhalgat, M. K., Millard, P. J., Mao, F., Leung, W. Y., and Haugland, R. P. (1999). “Alexa dyes, a series of new fluorescent dyes that yield exceptionally bright, photostable conjugates.” Journal of Histochemistry Cytochemistry, 47(9), 1179–1188.
Patolsky, F., Zheng, G. F., Hayden, O., Lakadamyali, M., Zhuang, X. W., and Lieber, C. M. (2004). “Electrical detection of single viruses.” Proceedings of the National Academy of Sciences of the United States of America, 101(39), 14017–14022.
Pavey, K. D., Barnes, L. M., Hanlon, G. W., Olliff, C. J., Ali, Z., and Paul, F. (2001). “A rapid, non-destructive method for the determination of Staphylococcus epidermidis adhesion to surfaces using quartz crystal resonant sensor technology.” Letters in Applied Microbiology, 33(5), 344–348.
Piner, R. D., Zhu, J., Xu, F., Hong, S. H., and Mirkin, C. A. (1999). ““Dip-pen” nanolithography.” Science, 283(5402), 661–663.
Santra, S., Zhang, P., Wang, K., Tapec, R., and Tan, W. (2001). “Conjugation of biomolecules with luminophore-doped silica nanoparticles for photostable biomarkers.” Analytical Chemistry, 73(20), 4988–4993.
Scott, T. M., Lukasik, J., and Farrah, S. R. (2002). “Improved method for recovery of bacteriophage from large volumes of water using negatively charged microporous filters.” Canadian Journal of Microbiology, 48(4), 305–310.
Service, R. F. (2001). “EUV lithography - Optical lithography goes to extremes - And beyond.” Science, 293(5531), 785–786.
Shibata, S., Taniguchi, T., Yano, T., and Yamane, M. (1997). “Formation of water-soluble dye-doped silica particles.” Journal of Sol-Gel Science and Technology, 10(3), 263–268.
Su, X. L., and Li, Y. B. (2004). “Quantum dot biolabeling coupled with immunomagnetic separation for detection of Escherichia coli O157 : H7.” Analytical Chemistry, 76(16), 4806–4810.
Tansil, N. C., Xie, F., Xie, H., and Gao, Z. Q. (2005). “An ultrasensitive nucleic acid biosensor based on the catalytic oxidation of guanine by a novel redox threading intercalator.” Chemical Communications (8), 1064–1066.
Taton, T. A., Mirkin, C. A., and Letsinger, R. L. (2000). “Scanometric DNA array detection with nanoparticle probes.” Science, 289(5485), 1757–1760.
Thomas, J. H., Kim, S. K., Hesketh, P. J., Halsall, H. B., and Heineman, W. R. (2004). “Bead-based electrochemical immunoassay for bacteriophage MS2.” Analytical Chemistry, 76(10), 2700–2707.
Tombelli, S., Mascini, M., Sacco, C., and Turner, A. P. F. (2000). “A DNA piezoelectric biosensor assay coupled with a polymerase chain reaction for bacterial toxicity determination in environmental samples.” Analytica Chimica Acta, 418(1), 1–9.
Totzeck, M., Ulrich, W., Gohnermeier, A., and Kaiser, W. (2007). “Semiconductor fabrication - Pushing deep ultraviolet lithography to its limits.” Nature Photonics, 1(11), 629–631.
Turkevich, J., Stevenson, P. C., and Hillier, J. (1951). “A Study of the Nucleation and Growth Processes in the Synthesis of Colloidal Gold.” Discussions of the Faraday Society(11), 55–75.
Uttenthaler, E., Schraml, M., Mandel, J., and Drost, S. (2001). “Ultrasensitive quartz crystal microbalance sensors for detection of M13-Phages in liquids.” Biosensors Bioelectronics, 16(9–12), 735–743.
Varshney, M., and Li, Y. (2007). “Interdigitated array microelectrode based impedance biosensor coupled with magnetic nanoparticle-antibody conjugates for detection of Escherichia coli O157:H7 in food samples.” Biosensors Bioelectronics, 22(11), 2408–2414.
Vaseashta, A., and Dimova-Malinovska, D. (2005). “Nanostructured and nanoscale devices, sensors and detectors.” Science and Technology of Advanced Materials, 6(3–4), 312–318.
Vo-Dinh, T., and Cullum, B. (2000). “Biosensors and biochips: advances in biological and medical diagnostics.” Fresenius Journal of Analytical Chemistry, 366(6–7), 540–551.
Wan, J. H., Shu, H. H., Huang, S. C., Fiebor, B., Chen, I. H., Petrenko, V. A., and Chin, B. A. (2007). “Phage-based magnetoelastic wireless biosensors for detecting Bacillus anthracis spores.” IEEE Sensors Journal, 7(3–4), 470–477.
Wang, H., Li, Y. B., and Slavik, M. (2007). “Rapid detection of Listeria monocytogenes using quantum dots and nanobeads-based optical biosensor.” Journal of Rapid Methods and Automation in Microbiology, 15(1), 67–76.
Wang, J. (2006). “Electrochemical biosensors: towards point-of-care cancer diagnostics.” Biosensors Bioelectronics, 21(10), 1887–1892.
Wong, Y. Y., Ng, S. P., Ng, M. H., Si, S. H., Yao, S. Z., and Fung, Y. S. (2002). “Immunosensor for the differentiation and detection of Salmonella species based on a quartz crystal microbalance.” Biosensors Bioelectronics, 17(8), 676–684.
Yamauchi, H., Ishikawa, T., and Kondo, S. (1989). “Surface Characterization of Ultramicro Spherical-Particles of Silica Prepared by W/O Microemulsion Method.” Colloids and Surfaces, 37, 71–80.
Yan, J. L., Estevez, M. C., Smith, J. E., Wang, K. M., He, X. X., Wang, L., and Tan, W. H. (2007). “Dye-doped nanoparticles for bioanalysis.” Nano Today, 2(3), 44–50.
Yi, J. W., Shih, W. Y., Mutharasan, R., and Shih, W. H. (2003). “In situ cell detection using piezoelectric lead zirconate titanate-stainless steel cantilevers.” Journal of Applied Physics, 93(1), 619–625.
Zhao, X., Hilliard, L. R., Mechery, S. J., Wang, Y., Bagwe, R. P., Jin, S., and Tan, W. (2004). “A rapid bioassay for single bacterial cell quantitation using bioconjugated nanoparticles.” Proceedings of the National Academy of Sciences of the United States of America, 101(42), 15027–15032.
Zhao, X., Tapec-Dytioco, R., and Tan, W. (2003). “Ultrasensitive DNA detection using highly fluorescent bioconjugated nanoparticles.” Journal of American Chemical Society, 125(38), 11474–11475.
Ziegler, C. (2004). “Cantilever-based biosensors.” Analytical and Bioanalytical Chemistry, 379(7–8), 946–959.

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