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immunoassay using gold nanoparticles loaded with enzymes. Biosensors & Bioelectronics,
40, 412–416.
59. Gao, Z. F., Song, W. W., Luo, H. Q., et al. (2015). Detection of mercury ions (II) based on
non-cross-linking aggregation of double-stranded DNA modified gold nanoparticles by
resonance Rayleigh scattering method. Biosensors & Bioelectronics, 65, 360–365.
60. Li, M., Wang, Q., Shi, X., et al. (2011). Detection of mercury (II) by quantum dot/DNA/gold
nanoparticle ensemble based nanosensor via nanometal surface energy transfer. Analytical
Chemistry, 83, 7061–7065.
61. Li, T., Li, B., Wang, E., et al. (2009b). G-quadruplex-based DNAzyme for sensitive mercury
detection with the naked eye. Chemical Communications, 3551–3553.
62. Long, F., Zhu, A., Shi, H., et al. (2013). Rapid on-site/in-situ detection of heavy metal ions in
environmental water using a structure-switching DNA optical biosensor. Scientific Reports, 3,
2308.
63. Miyake, Y., Togashi, H., Tashiro, M., et al. (2006). MercuryII-mediated formation of
thymine–HgII–thymine base pairs in DNA duplexes. Journal of the American Chemical
Society, 128, 2172–2173.
64. Ono, A., & Togashi, H. (2004). Highly selective oligonucleotide-based sensor for mercury
(II) in aqueous solutions. Angewandte Chemie International Edition, 43, 4300–4302.
65. Clever, G. H., Kaul, C., & Carell, T. (2007). DNA-metal base pairs. Angewandte Chemie
International Edition, 46, 6226–6236.
66. Shen, J., Zhou, Y., Fu, F., et al. (2015). Immunochromatographic assay for quantitative and
sensitive detection of hepatitis B virus surface antigen using highly luminescent quantum
dot-beads. Talanta, 142, 145–149.
67. Yang, Q., Gong, X., Song, T., et al. (2011). Quantum dot-based immunochromatography test
strip for rapid, quantitative and sensitive detection of alpha fetoprotein. Biosensors &
Bioelectronics, 30, 145–150.
68. Li, X., Lu, D., Sheng, Z., et al. (2012). A fast and sensitive immunoassay of avian influenza
virus based on label-free quantum dot probe and lateral flow test strip. Talanta, 100, 1–6.
69. Beloglazova, N., Speranskaya, E., Wu, A., et al. (2014). Novel multiplex fluorescent
immunoassays based on quantum dot nanolabels for mycotoxins determination. Biosensors &
Bioelectronics, 62, 59–65.
70. Duan, H., Chen, X., Xu, W., et al. (2015). Quantum-dot submicrobead-based immunochromatographic assay for quantitative and sensitive detection of zearalenone. Talanta, 132, 126–
131.
71. Taranova, N., Berlina, A., Zherdev, A., et al. (2015). ‘Traffic light’immunochromatographic
test based on multicolor quantum dots for the simultaneous detection of several antibiotics in
milk. Biosensors & Bioelectronics, 63, 255–261.
72. Qiu, W., Xu, H., Takalkar, S., et al. (2015). Carbon nanotube-based lateral flow biosensor for
sensitive and rapid detection of DNA sequence. Biosensors & Bioelectronics, 64, 367–372.
73. Lönnberg, M., Drevin, M., & Carlsson, J. (2008). Ultra-sensitive immunochromatographic
assay for quantitative determination of erythropoietin. Journal of Immunological Methods,
339, 236–244.
74. Wiriyachaiporn, N., Sirikett, H., & Dharakul, T. (2013). Rapid influenza a antigen detection
using carbon nanostrings as label for lateral flow immunochromatographic assay. In 2013
13th IEEE International Conference on Nanotechnology (IEEE-NANO 2013) (pp. 166–169).
IEEE.
75. Li, L., Zhou, L., Yu, Y., et al. (2009a). Development of up-converting phosphor
technology-based lateral-flow assay for rapidly quantitative detection of hepatitis B surface
antibody. Diagnostic Microbiology and Infectious Disease, 63, 165–172.
76. Qu, Q., Zhu, Z., Wang, Y., et al. (2009). Rapid and quantitative detection of Brucella by
up-converting phosphor technology-based lateral-flow assay. Journal of Microbiological
Methods, 79, 121–123.
252
M. Pant et al.
