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Silica Core‐based Surface‐enhanced Raman Scattering (SERS) Tag: Advances in Multifunctional SERS Nanoprobes for Bioimaging and Targeting of Biomarkers# 원문보기

Bulletin of the Korean chemical society, v.36 no.3, 2015년, pp.963 - 978  

Jun, Bong‐Hyun (Department of Bioscience and Biotechnology Konkuk University Seoul 143‐) ,  Kim, Gunsung (701 Republic of Korea) ,  Jeong, Sinyoung (Department of Chemistry Education Seoul National University Seoul 151‐) ,  Noh, Mi Suk (742 Republic of Korea) ,  Pham, Xuan‐Hung (Department of Chemistry Education Seoul National University Seoul 151‐) ,  Kang, Homan (742 Republic of Korea) ,  Cho, Myung‐Haing (Laboratory of Toxicology, College of Veterinary Medicine Seoul National University Seoul 151‐) ,  Kim, Jong‐Ho (742 Republic of Korea) ,  Lee, Yoon‐Sik (Department of Bioscience and Biotechnology Konkuk University Seoul 143‐) ,  Jeong, Dae Hong (701 Republic of Korea)

Abstract AI-Helper 아이콘AI-Helper

Surface‐enhanced Raman scattering (SERS) has attracted considerable interest as a sensitive vibration‐specific probe for bioanalytical and imaging applications. Among the various bioprobes available, Ag‐embedded SERS tags have been rigorously developed for an extensive range of ...

참고문헌 (94)

  1. Modern Drug Discov. Braeckmans K. 28 6 2003 

  2. Finkel, Nancy H., Lou, Xinhui, Wang, Cuiying, He, Lin. Peer Reviewed: Barcoding the Microworld. Analytical chemistry, vol.76, no.19, 352 A-359 A.

  3. Yao, Gang, Wang, Lin, Wu, Yanrong, Smith, Josh, Xu, Jinsheng, Zhao, Wenjun, Lee, Eunjung, Tan, Weihong. FloDots: luminescent nanoparticles. Analytical and bioanalytical chemistry, vol.385, no.3, 518-524.

  4. Jain, Rakesh K, Stroh, Mark. Zooming in and out with quantum dots. Nature biotechnology, vol.22, no.8, 959-960.

  5. Graham, D., Mallinder, B. J., Whitcombe, D., Watson, N. D., Smith, W. E.. Simple Multiplex Genotyping by Surface-Enhanced Resonance Raman Scattering. Analytical chemistry, vol.74, no.5, 1069-1074.

  6. Kneipp, K., Kneipp, H., Itzkan, I., Dasari, R. R., Feld, M. S.. Ultrasensitive Chemical Analysis by Raman Spectroscopy. Chemical reviews, vol.99, no.10, 2957-2976.

  7. Lyon, L. A., Keating, C. D., Fox, A. P., Baker, B. E., He, L., Nicewarner, S. R., Mulvaney, S. P., Natan, M. J.. Raman Spectroscopy. Analytical chemistry, vol.70, no.12, 341-362.

  8. Volkan, Mürvet, Stokes, David L., Vo-Dinh, Tuan. Surface-Enhanced Raman of Dopamine and Neurotransmitters Using Sol-Gel Substrates and Polymer-Coated Fiber-Optic Probes. Applied spectroscopy, vol.54, no.12, 1842-1848.

  9. Weaver, Michael J., Zou, Shouzhong, Chan, Ho Yeung H.. Peer Reviewed: The New Interfacial Ubiquity of Surface-Enhanced Raman Spectroscopy. Analytical chemistry, vol.72, no.1, 38 A-47 A.

  10. Doering, W. E., Nie, S.. Spectroscopic Tags Using Dye-Embedded Nanoparticles and Surface-Enhanced Raman Scattering. Analytical chemistry, vol.75, no.22, 6171-6176.

  11. Doering, W. E., Piotti, M. E., Natan, M. J., Freeman, R. G.. SERS as a Foundation for Nanoscale, Optically Detected Biological Labels. Advanced materials, vol.19, no.20, 3100-3108.

  12. Mulvaney, S. P., Musick, M. D., Keating, C. D., Natan, M. J.. Glass-Coated, Analyte-Tagged Nanoparticles: A New Tagging System Based on Detection with Surface-Enhanced Raman Scattering. Langmuir : the ACS journal of surfaces and colloids, vol.19, no.11, 4784-4790.

  13. Alvarez-Puebla, Ramón A., Liz-Marzán, Luis M.. SERS-Based Diagnosis and Biodetection. Small, vol.6, no.5, 604-610.

  14. Graham, Duncan, Goodacre, Royston. Chemical and bioanalytical applications of surface enhanced Raman scattering spectroscopy. Chemical Society reviews, vol.37, no.5, 883-884.

  15. Hering, Katharina, Cialla, Dana, Ackermann, Katrin, Dörfer, Thomas, Möller, Robert, Schneidewind, Henrik, Mattheis, Roland, Fritzsche, Wolfgang, Rösch, Petra, Popp, Jürgen. SERS: a versatile tool in chemical and biochemical diagnostics. Analytical and bioanalytical chemistry, vol.390, no.1, 113-124.

  16. Lin, Xiu-Mei, Cui, Yan, Xu, Yan-Hui, Ren, Bin, Tian, Zhong-Qun. Surface-enhanced Raman spectroscopy: substrate-related issues. Analytical and bioanalytical chemistry, vol.394, no.7, 1729-1745.

  17. Schlücker, Sebastian. SERS Microscopy: Nanoparticle Probes and Biomedical Applications. Chemphyschem : a European journal of chemical physics and physical chemistry, vol.10, no.9, 1344-1354.

  18. Stiles, Paul L., Dieringer, Jon A., Shah, Nilam C., Van Duyne, Richard P.. Surface-Enhanced Raman Spectroscopy. Annual review of analytical chemistry, vol.1, 601-626.

  19. Rohr, Thomas E., Cotton, Therese, Fan, Ni, Tarcha, Peter J.. Immunoassay employing surface-enhanced Raman spectroscopy. Analytical biochemistry, vol.182, no.2, 388-398.

  20. Qian, Ximei, Peng, Xiang-Hong, Ansari, Dominic O, Yin-Goen, Qiqin, Chen, Georgia Z, Shin, Dong M, Yang, Lily, Young, Andrew N, Wang, May D, Nie, Shuming. In vivo tumor targeting and spectroscopic detection with surface-enhanced Raman nanoparticle tags. Nature biotechnology, vol.26, no.1, 83-90.

  21. Kang, Homan, Yang, Jin-Kyoung, Noh, Mi Suk, Jo, Ahla, Jeong, Sinyoung, Lee, Minwoo, Lee, Somin, Chang, Hyejin, Lee, Hyunmi, Jeon, Su-Ji, Kim, Hye-In, Cho, Myung-Haing, Lee, Ho-Young, Kim, Jong-Ho, Jeong, Dae Hong, Lee, Yoon-Sik. One-step synthesis of silver nanoshells with bumps for highly sensitive near-IR SERS nanoprobes. Journal of materials chemistry. B, Materials for biology and medicine, vol.2, no.28, 4415-4421.

  22. Kang, Homan, Yim, Joonhyuk, Jeong, Sinyoung, Yang, Jin-Kyoung, Kyeong, San, Jeon, Su-Ji, Kim, Jaehi, Eom, Khee Dong, Lee, Hyunmi, Kim, Hye-In, Jeong, Dae Hong, Kim, Jong-Ho, Lee, Yoon-Sik. Polymer-Mediated Formation and Assembly of Silver Nanoparticles on Silica Nanospheres for Sensitive Surface-Enhanced Raman Scattering Detection. ACS applied materials & interfaces, vol.5, no.24, 12804-12810.

  23. Chang, Hyejin, Kang, Homan, Yang, Jin-Kyoung, Jo, Ahla, Lee, Ho-Young, Lee, Yoon-Sik, Jeong, Dae Hong. Ag Shell–Au Satellite Hetero-Nanostructure for Ultra-Sensitive, Reproducible, and Homogeneous NIR SERS Activity. ACS applied materials & interfaces, vol.6, no.15, 11859-11863.

  24. Kang, Homan, Kang, Taegyu, Kim, Seongyong, Kim, Jong-Ho, Jun, Bong-Hyun, Chae, Jinjoo, Park, Juyoung, Jeong, Dae-Hong, Lee, Yoon-Sik. Base Effects on Fabrication of Silver Nanoparticles Embedded Silica Nanocomposite for Surface-Enhanced Raman Scattering (SERS). Journal of nanoscience and nanotechnology, vol.11, no.1, 579-583.

  25. Yang, Jin-Kyoung, Kang, Homan, Lee, Hyunmi, Jo, Ahla, Jeong, Sinyoung, Jeon, Su-Ji, Kim, Hye-In, Lee, Ho-Young, Jeong, Dae Hong, Kim, Jong-Ho, Lee, Yoon-Sik. Single-Step and Rapid Growth of Silver Nanoshells as SERS-Active Nanostructures for Label-Free Detection of Pesticides. ACS applied materials & interfaces, vol.6, no.15, 12541-12549.

  26. Fang, Ying, Seong, Nak-Hyun, Dlott, Dana D.. Measurement of the Distribution of Site Enhancements in Surface-Enhanced Raman Scattering. Science, vol.321, no.5887, 388-392.

  27. Chen, Gang, Wang, Yong, Yang, Miaoxin, Xu, Jun, Goh, Sook Jin, Pan, Ming, Chen, Hongyu. Measuring Ensemble-Averaged Surface-Enhanced Raman Scattering in the Hotspots of Colloidal Nanoparticle Dimers and Trimers. Journal of the American Chemical Society, vol.132, no.11, 3644-3645.

  28. Liu, M. Z., Guyot-Sionnest, P.. Synthesis and Optical Characterization of Au/Ag Core/Shell Nanorods. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.108, no.19, 5882-5888.

  29. Bosnick, K. A., Jiang, J., Brus, L. E.. Fluctuations and Local Symmetry in Single-Molecule Rhodamine 6G Raman Scattering on Silver Nanocrystal Aggregates. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.106, no.33, 8096-8099.

  30. Kottmann, Jörg P., Martin, Olivier J. F.. Retardation-induced plasmon resonances in coupled nanoparticles. Optics letters, vol.26, no.14, 1096-.

  31. Okamoto, Hiromi, Imura, Kohei. Near-Field Optical Imaging of Nanoscale Optical Fields and Plasmon Waves. Japanese journal of applied physics, vol.47, no.7, 6055-.

  32. Xu, Hongxing, Aizpurua, Javier, Käll, Mikael, Apell, Peter. Electromagnetic contributions to single-molecule sensitivity in surface-enhanced Raman scattering. Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics, vol.62, no.3, 4318-4324.

  33. Cotton, Therese M., Schultz, Steven G., Van Duyne, Richard P.. Surface-enhanced resonance Raman scattering from cytochrome c and myoglobin adsorbed on a silver electrode. Journal of the American Chemical Society, vol.102, no.27, 7960-7962.

  34. Schatz, George C.. Theoretical studies of surface enhanced Raman scattering. Accounts of chemical research, vol.17, no.10, 370-376.

  35. Sau, T. K., Murphy, C. J.. Room Temperature, High-Yield Synthesis of Multiple Shapes of Gold Nanoparticles in Aqueous Solution. Journal of the American Chemical Society, vol.126, no.28, 8648-8649.

  36. Orendorff, C. J., Gole, A., Sau, T. K., Murphy, C. J.. Surface-Enhanced Raman Spectroscopy of Self-Assembled Monolayers: Sandwich Architecture and Nanoparticle Shape Dependence. Analytical chemistry, vol.77, no.10, 3261-3266.

  37. Narayanan, R., Lipert, R. J., Porter, M. D.. Cetyltrimethylammonium Bromide-Modified Spherical and Cube-Like Gold Nanoparticles as Extrinsic Raman Labels in Surface-Enhanced Raman Spectroscopy Based Heterogeneous Immunoassays. Analytical chemistry, vol.80, no.6, 2265-2271.

  38. Rycenga, Matthew, Xia, Xiaohu, Moran, Christine H., Zhou, Fei, Qin, Dong, Li, Zhi‐Yuan, Xia, Younan. Generation of Hot Spots with Silver Nanocubes for Single‐Molecule Detection by Surface‐Enhanced Raman Scattering. Angewandte Chemie. international edition, vol.50, no.24, 5473-5477.

  39. Sun, L., Sung, K.-B., Dentinger, C., Lutz, B., Nguyen, L., Zhang, J., Qin, H., Yamakawa, M., Cao, M., Lu, Y., Chmura, A., Zhu, J., Su, X., Berlin, A. A., Chan, S., Knudsen, B.. Composite Organic−Inorganic Nanoparticles as Raman Labels for Tissue Analysis. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.7, no.2, 351-356.

  40. Kwon, K., Lee, K. Y., Lee, Y. W., Kim, M., Heo, J., Ahn, S. J., Han, S. W.. Controlled Synthesis of Icosahedral Gold Nanoparticles and Their Surface-Enhanced Raman Scattering Property. The journal of physical chemistry. C, Nanomaterials and Interfaces, vol.111, no.3, 1161-1165.

  41. Nehl, C. L., Liao, H., Hafner, J. H.. Optical Properties of Star-Shaped Gold Nanoparticles. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.6, no.4, 683-688.

  42. Schütz, Max, Steinigeweg, Dennis, Salehi, Mohammad, Kömpe, Karsten, Schlücker, Sebastian. Hydrophilically stabilized gold nanostars as SERS labels for tissue imaging of the tumor suppressor p63 by immuno-SERS microscopy. Chemical communications : Chem comm, vol.47, no.14, 4216-4218.

  43. Jokerst, Jesse V., Cole, Adam J., Van de Sompel, Dominique, Gambhir, Sanjiv S.. Gold Nanorods for Ovarian Cancer Detection with Photoacoustic Imaging and Resection Guidance via Raman Imaging in Living Mice. ACS nano, vol.6, no.11, 10366-10377.

  44. Liao, Qing, Mu, Cheng, Xu, Dong-Sheng, Ai, Xi-Cheng, Yao, Jian-Nian, Zhang, Jian-Ping. Gold Nanorod Arrays with Good Reproducibility for High-Performance Surface-Enhanced Raman Scattering. Langmuir : the ACS journal of surfaces and colloids, vol.25, no.8, 4708-4714.

  45. Chon, Hyangah, Lee, Sangyeop, Son, Sang Wook, Oh, Chil Hwan, Choo, Jaebum. Highly Sensitive Immunoassay of Lung Cancer Marker Carcinoembryonic Antigen Using Surface-Enhanced Raman Scattering of Hollow Gold Nanospheres. Analytical chemistry, vol.81, no.8, 3029-3034.

  46. Lee, S., Chon, H., Lee, M., Choo, J., Shin, S.Y., Lee, Y.H., Rhyu, I.J., Son, S.W., Oh, C.H.. Surface-enhanced Raman scattering imaging of HER2 cancer markers overexpressed in single MCF7 cells using antibody conjugated hollow gold nanospheres. Biosensors & bioelectronics, vol.24, no.7, 2260-2263.

  47. Bardhan, Rizia, Chen, Wenxue, Perez-Torres, Carlos, Bartels, Marc, Huschka, Ryan M., Zhao, Liang L., Morosan, Emilia, Pautler, Robia G., Joshi, Amit, Halas, Naomi J.. Nanoshells with Targeted Simultaneous Enhancement of Magnetic and Optical Imaging and Photothermal Therapeutic Response. Advanced functional materials, vol.19, no.24, 3901-3909.

  48. Hirsch, L. R., Stafford, R. J., Bankson, J. A., Sershen, S. R., Rivera, B., Price, R. E., Hazle, J. D., Halas, N. J., West, J. L.. Nanoshell-mediated near-infrared thermal therapy of tumors under magnetic resonance guidance. Proceedings of the National Academy of Sciences of the United States of America, vol.100, no.23, 13549-13554.

  49. Lim, Dong-Kwon, Jeon, Ki-Seok, Hwang, Jae-Ho, Kim, Hyoki, Kwon, Sunghoon, Suh, Yung Doug, Nam, Jwa-Min. Highly uniform and reproducible surface-enhanced Raman scattering from DNA-tailorable nanoparticles with 1-nm interior gap. Nature nanotechnology, vol.6, no.7, 452-460.

  50. Cui, Y., Ren, B., Yao, J.-L., Gu, R.-A., Tian, Z.-Q.. Synthesis of AgcoreAushell Bimetallic Nanoparticles for Immunoassay Based on Surface-Enhanced Raman Spectroscopy. The journal of physical chemistry. B, Condensed matter, materials, surfaces, interfaces & biophysical, vol.110, no.9, 4002-4006.

  51. Küstner, Bernd, Gellner, Magdalena, Schütz, Max, Schöppler, Friedrich, Marx, Alexander, Ströbel, Philipp, Adam, Patrick, Schmuck, Carsten, Schlücker, Sebastian. SERS Labels for Red Laser Excitation: Silica-Encapsulated SAMs on Tunable Gold/Silver Nanoshells. Angewandte Chemie. international edition, vol.48, no.11, 1950-1953.

  52. Halas, Naomi J., Lal, Surbhi, Chang, Wei-Shun, Link, Stephan, Nordlander, Peter. Plasmons in Strongly Coupled Metallic Nanostructures. Chemical reviews, vol.111, no.6, 3913-3961.

  53. Moskovits, Martin. Surface-enhanced Raman spectroscopy: a brief retrospective. Journal of Raman spectroscopy : JRS, vol.36, no.6, 485-496.

  54. Romo-Herrera, José M., Alvarez-Puebla, Ramón A., Liz-Marzán, Luis M.. Controlled assembly of plasmonic colloidal nanoparticle clusters. Nanoscale, vol.3, no.4, 1304-1315.

  55. Lee, Jung-Hoon, Nam, Jwa-Min, Jeon, Ki-Seok, Lim, Dong-Kwon, Kim, Hyoki, Kwon, Sunghoon, Lee, Haemi, Suh, Yung Doug. Tuning and Maximizing the Single-Molecule Surface-Enhanced Raman Scattering from DNA-Tethered Nanodumbbells. ACS nano, vol.6, no.11, 9574-9584.

  56. Lim, Dong-Kwon, Jeon, Ki-Seok, Kim, Hyung Min, Nam, Jwa-Min, Suh, Yung Doug. Nanogap-engineerable Raman-active nanodumbbells for single-molecule detection. Nature materials, vol.9, no.1, 60-67.

  57. Su, X., Zhang, J., Sun, L., Koo, T.-W., Chan, S., Sundararajan, N., Yamakawa, M., Berlin, A. A.. Composite Organic−Inorganic Nanoparticles (COINs) with Chemically Encoded Optical Signatures. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.5, no.1, 49-54.

  58. Kim, J.-H., Kim, J.-S., Choi, H., Lee, S.-M., Jun, B.-H., Yu, K.-N., Kuk, E., Kim, Y.-K., Jeong, D. H., Cho, M.-H., Lee, Y.-S.. Nanoparticle Probes with Surface Enhanced Raman Spectroscopic Tags for Cellular Cancer Targeting. Analytical chemistry, vol.78, no.19, 6967-6973.

  59. Stöber, Werner, Fink, Arthur. Controlled growth of monodisperse silica spheres in the micron size range. Journal of colloid and interface science, vol.26, no.1, 62-69.

  60. Osseo-Asare, K., Arriagada, F.J.. Preparation of SiO2 nanoparticles in a non-ionic reverse micellar system. Colloids and surfaces, vol.50, 321-339.

  61. Yamauchi, Hirofumi, Ishikawa, Tatsuo, Kondo, Seiichi. Surface characterization of ultramicro spherical particles of silica prepared by w/o microemulsion method. Colloids and surfaces, vol.37, 71-80.

  62. Tan, Weihong, Wang, Kemin, He, Xiaoxiao, Zhao, Xiaojun Julia, Drake, Timothy, Wang, Lin, Bagwe, Rahul P.. Bionanotechnology based on silica nanoparticles. Medicinal research reviews, vol.24, no.5, 621-638.

  63. Wang, Lin, Wang, Kemin, Santra, Swadeshmukul, Zhao, Xiaojun, Hilliard, Lisa R., Smith, Joshua E., Wu, Yanrong, Tan, Weihong. Watching Silica Nanoparticles Glow in the Biological World. Analytical chemistry, vol.78, no.3, 646-654.

  64. Yan, Jilin, Estévez, M. Carmen, Smith, Joshua E., Wang, Kemin, He, Xiaoxiao, Wang, Lin, Tan, Weihong. Dye-doped nanoparticles for bioanalysis. Nano today, vol.2, no.3, 44-50.

  65. Westcott, S. L., Oldenburg, S. J., Lee, T. R., Halas, N. J.. Formation and Adsorption of Clusters of Gold Nanoparticles onto Functionalized Silica Nanoparticle Surfaces. Langmuir : the ACS journal of surfaces and colloids, vol.14, no.19, 5396-5401.

  66. Hiramatsu, H., Osterloh, F. E.. A Simple Large-Scale Synthesis of Nearly Monodisperse Gold and Silver Nanoparticles with Adjustable Sizes and with Exchangeable Surfactants. Chemistry of materials : a publication of the American Chemical Society, vol.16, no.13, 2509-2511.

  67. Kang, Homan, Jeong, Sinyoung, Park, Younggeun, Yim, Joonhyuk, Jun, Bong‐Hyun, Kyeong, San, Yang, Jin‐Kyoung, Kim, Gunsung, Hong, SoonGweon, Lee, Luke P., Kim, Jong‐Ho, Lee, Ho‐Young, Jeong, Dae Hong, Lee, Yoon‐Sik. Near‐Infrared SERS Nanoprobes with Plasmonic Au/Ag Hollow‐Shell Assemblies for In Vivo Multiplex Detection. Advanced functional materials, vol.23, no.30, 3719-3727.

  68. Yu, K. N., Lee, S.-M., Han, J. Y., Park, H., Woo, M.-A., Noh, M. S., Hwang, S.-K., Kwon, J.-T., Jin, H., Kim, Y.-K., Hergenrother, P. J., Jeong, D. H., Lee, Y.-S., Cho, M.-H.. Multiplex Targeting, Tracking, and Imaging of Apoptosis by Fluorescent Surface Enhanced Raman Spectroscopic Dots. Bioconjugate chemistry, vol.18, no.4, 1155-1162.

  69. Jun, Bong-Hyun, Noh, Mi Suk, Kim, Jaeyun, Kim, Gunsung, Kang, Homan, Kim, Min-Soo, Seo, Young-Tae, Baek, Jongho, Kim, Jong-Ho, Park, Juyoung, Kim, Seongyong, Kim, Yong-Kweon, Hyeon, Taeghwan, Cho, Myung-Haing, Jeong, Dae Hong, Lee, Yoon-Sik. Multifunctional Silver-Embedded Magnetic Nanoparticles as SERS Nanoprobes and Their Applications. Small, vol.6, no.1, 119-125.

  70. Gellner, Magdalena, Kömpe, Karsten, Schlücker, Sebastian. Multiplexing with SERS labels using mixed SAMs of Raman reporter molecules. Analytical and bioanalytical chemistry, vol.394, no.7, 1839-1844.

  71. Jun, Bong-Hyun, Kim, Gunsung, Noh, Mi Suk, Kang, Homan, Kim, Yong-Kweon, Cho, Myung-Haing, Jeong, Dae Hong, Lee, Yoon-Sik. Surface-enhanced Raman scattering-active nanostructures and strategies for bioassays. Nanomedicine, vol.6, no.8, 1463-1480.

  72. Jun, B.-H., Kim, J.-H., Park, H., Kim, J.-S., Yu, K.-N., Lee, S.-M., Choi, H., Kwak, S.-Y., Kim, Y.-K., Jeong, D. H., Cho, M.-H., Lee, Y.-S.. Surface-Enhanced Raman Spectroscopic-Encoded Beads for Multiplex Immunoassay. Journal of combinatorial chemistry, vol.9, no.2, 237-244.

  73. Kim, Jong-Ho, Kang, Homan, Kim, Seongyong, Jun, Bong-Hyun, Kang, Taegyu, Chae, Jinjoo, Jeong, Sinyoung, Kim, Jiyoung, Jeong, Dae Hong, Lee, Yoon-Sik. Encoding peptide sequences with surface-enhanced Raman spectroscopic nanoparticles. Chemical communications : Chem comm, vol.47, no.8, 2306-2308.

  74. Graf, C., Vossen, D. L. J., Imhof, A., van Blaaderen, A.. A General Method To Coat Colloidal Particles with Silica. Langmuir : the ACS journal of surfaces and colloids, vol.19, no.17, 6693-6700.

  75. Tovmachenko, O. G., Graf, C., van den Heuvel, D. J., van Blaaderen, A., Gerritsen, H. C.. Fluorescence Enhancement by Metal-Core/Silica-Shell Nanoparticles. Advanced materials, vol.18, no.1, 91-95.

  76. Aslan, K., Wu, M., Lakowicz, J. R., Geddes, C. D.. Fluorescent Core−Shell Ag@SiO2 Nanocomposites for Metal-Enhanced Fluorescence and Single Nanoparticle Sensing Platforms. Journal of the American Chemical Society, vol.129, no.6, 1524-1525.

  77. Kim, Jaeyun, Piao, Yuanzhe, Hyeon, Taeghwan. Multifunctional nanostructured materials for multimodal imaging, and simultaneous imaging and therapy. Chemical Society reviews, vol.38, no.2, 372-390.

  78. Li, T., Moon, J., Morrone, A. A., Mecholsky, J. J., Talham, D. R., Adair, J. H.. Preparation of Ag/SiO2 Nanosize Composites by a Reverse Micelle and Sol−Gel Technique. Langmuir : the ACS journal of surfaces and colloids, vol.15, no.13, 4328-4334.

  79. El-Sayed, I. H., Huang, X., El-Sayed, M. A.. Surface Plasmon Resonance Scattering and Absorption of anti-EGFR Antibody Conjugated Gold Nanoparticles in Cancer Diagnostics: Applications in Oral Cancer. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.5, no.5, 829-834.

  80. Seydack, Matthias. Nanoparticle labels in immunosensing using optical detection methods. Biosensors & bioelectronics, vol.20, no.12, 2454-2469.

  81. Bell, S. E. J., Sirimuthu, N. M. S.. Surface-Enhanced Raman Spectroscopy (SERS) for Sub-Micromolar Detection of DNA/RNA Mononucleotides. Journal of the American Chemical Society, vol.128, no.49, 15580-15581.

  82. Green, Mino, Liu, Feng-Ming, Cohen, Lesley, Köllensperger, Peter, Cass, Tony. SERS platforms for high density DNA arrays. Faraday discussions, vol.132, 269-280.

  83. Qian, Ximei, Zhou, Xi, Nie, Shuming. Surface-Enhanced Raman Nanoparticle Beacons Based on Bioconjugated Gold Nanocrystals and Long Range Plasmonic Coupling. Journal of the American Chemical Society, vol.130, no.45, 14934-14935.

  84. Noh, M.S., Jun, B.H., Kim, S., Kang, H., Woo, M.A., Minai-Tehrani, A., Kim, J.E., Kim, J., Park, J., Lim, H.T., Park, S.C., Hyeon, T., Kim, Y.K., Jeong, D.H., Lee, Y.S., Cho, M.H.. Magnetic surface-enhanced Raman spectroscopic (M-SERS) dots for the identification of bronchioalveolar stem cells in normal and lung cancer mice. Biomaterials, vol.30, no.23, 3915-3925.

  85. Woo, Min-Ah, Lee, Sang-Myung, Kim, Gunsung, Baek, JongHo, Noh, Mi Suk, Kim, Ji Eun, Park, Sung Jin, Minai-Tehrani, Arash, Park, Se-Chang, Seo, Yeong Tai, Kim, Yong-Kwon, Lee, Yoon-Sik, Jeong, Dae Hong, Cho, Myung-Haing. Multiplex Immunoassay Using Fluorescent-Surface Enhanced Raman Spectroscopic Dots for the Detection of Bronchioalveolar Stem Cells in Murine Lung. Analytical chemistry, vol.81, no.3, 1008-1015.

  86. Jun, B.H., Noh, M.S., Kim, G., Kang, H., Kim, J.H., Chung, W.J., Kim, M.S., Kim, Y.K., Cho, M.H., Jeong, D.H., Lee, Y.S.. Protein separation and identification using magnetic beads encoded with surface-enhanced Raman spectroscopy. Analytical biochemistry, vol.391, no.1, 24-30.

  87. McKenzie, Fiona, Faulds, Karen, Graham, Duncan. Sequence-Specific DNA Detection Using High-Affinity LNA-Functionalized Gold Nanoparticles. Small, vol.3, no.11, 1866-1868.

  88. Kim, Carla F.. Paving the road for lung stem cell biology: bronchioalveolar stem cells and other putative distal lung stem cells. American journal of physiology. Lung cellular and molecular physiology, vol.293, no.5, L1092-L1098.

  89. Kim, Carla F. Bender, Jackson, Erica L., Woolfenden, Amber E., Lawrence, Sharon, Babar, Imran, Vogel, Sinae, Crowley, Denise, Bronson, Roderick T., Jacks, Tyler. Identification of Bronchioalveolar Stem Cells in Normal Lung and Lung Cancer. Cell, vol.121, no.6, 823-835.

  90. Yanagi, Shigehisa, Kishimoto, Hiroyuki, Kawahara, Kohichi, Sasaki, Takehiko, Sasaki, Masato, Nishio, Miki, Yajima, Nobuyuki, Hamada, Koichi, Horie, Yasuo, Kubo, Hiroshi, Whitsett, Jeffrey A., Mak, Tak Wah, Nakano, Toru, Nakazato, Masamitsu, Suzuki, Akira. Pten controls lung morphogenesis, bronchioalveolar stem cells, and onset of lung adenocarcinomas in mice. The Journal of clinical investigation, vol.117, no.10, 2929-2940.

  91. Methods Cell Biol Cammareri P. 311 2008 

  92. David, Robert, Groebner, Michael, Franz, Wolfgang‐Michael. Magnetic Cell Sorting Purification of Differentiated Embryonic Stem Cells Stably Expressing Truncated Human CD4 as Surface Marker. Stem cells®, vol.23, no.4, 477-482.

  93. Jing, Ying, Moore, Lee R., Williams, P. Stephen, Chalmers, Jeffrey J., Farag, Sherif S., Bolwell, Brian, Zborowski, Maciej. Blood progenitor cell separation from clinical leukapheresis product by magnetic nanoparticle binding and magnetophoresis. Biotechnology and bioengineering, vol.96, no.6, 1139-1154.

  94. Zhang, Jianping, Duan, Xiaoyan, Zhang, Huali, Deng, Zhihong, Zhou, Zeyuan, Wen, Ning, Smith, Anthony J., Zhao, Wenming, Jin, Yan. Isolation of neural crest‐derived stem cells from rat embryonic mandibular processes. Biology of the cell, vol.98, no.10, 567-575.

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