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92. Barth BM, Sharma R, Altinoglu EI, Morgan TT, Shanmugavelandy SS, Kaiser JM,
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93. Tarn D, Ashley CE, Xue M, Carnes EC, Zink JI, Brinker CJ (2013) Mesoporous silica
nanoparticle nanocarriers: biofunctionality and biocompatibility. Acc Chem Res 46:792–801
94. Cho EB, Volkov DO, Sokolov I (2011) Ultrabright fluorescent silica mesoporous silica
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95. Ow H, Larson DR, Srivastava M, Baird BA, Webb WW, Wiesner U (2005) Bright and stable
core-shell fluorescent silica nanoparticles. Nano Lett 5:113–117
96. Benezra M, Penate-Medina O, Zanzonico PB, Schaer D, Ow H, Burns A, DeStanchina E,
Longo V, Herz E, Iyer S, Wolchok J, Larson SM, Wiesner U, Bradbury MS (2011) Multimodal silica nanoparticles are effective cancer-targeted probes in a model of human melanoma. J Clin Invest 121:2768–2780
97. Phillips E, Penate-Medina O, Zanzonico PB, Carvajal RD, Mohan P, Ye YP, Humm J,
Gonen M, Kalaigian H, Schoder H, Strauss HW, Larson SM, Wiesner U, Bradbury MS
(2014) Clinical translation of an ultrasmall inorganic optical-PET imaging nanoparticle
probe. Sci Transl Med 6:260ra149
98. Sharma P, Bengtsson NE, Walter GA, Sohn HB, Zhou GY, Iwakuma N, Zeng HD,
Grobmyer SR, Scott EW, Moudgil BM (2012) Gadolinium-doped silica nanoparticles encapsulating indocyanine green for near infrared and magnetic resonance imaging. Small
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79
imaging of albumin-conjugated fluorescent nanodiamonds in cells by stimulated emission
depletion. Angew Chem-Int Edit 50:2262–2265
84. Haziza S, Mohan N, Loe-Mie Y, Lepagnol-Bestel AM, Massou S, Adam MP, Le XL, Viard J,
Plancon C, Daudin R, Koebel P, Dorard E, Rose C, Hsieh FJ, Wu CC, Potier B, Herault Y,
Sala C, Corvin A, Allinquant B, Chang HC, Treussart F, Simonneau M (2017) Fluorescent
nanodiamond tracking reveals intraneuronal transport abnormalities induced by brain-diseaserelated genetic risk factors. Nat Nanotechnol 12:322–328
85. Wu TJ, Tzeng YK, Chang WW, Cheng CA, Kuo Y, Chien CH, Chang HC, Yu J (2013)
Tracking the engraftment and regenerative capabilities of transplanted lung stem cells using
fluorescent nanodiamonds. Nat Nanotechnol 8:682–689
86. Lecuyer T, Teston E, Ramirez-Garcia G, Maldiney T, Viana B, Seguin J, Mignet N,
Scherman D, Richard C (2016) Chemically engineered persistent luminescence nanoprobes
for bioimaging. Theranostics 6:2488–2524
87. le Masne de Chermont Q, Chaneac C, Seguin J, Pelle F, Maitrejean S, Jolivet JP, Gourier D,
Bessodes M, Scherman D (2007) Nanoprobes with near-infrared persistent luminescence for
in vivo imaging. Proc Natl Acad Sci U S A 104:9266–9271
88. Maldiney T, Bessiere A, Seguin J, Teston E, Sharma SK, Viana B, Bos AJJ, Dorenbos P,
Bessodes M, Gourier D, Scherman D, Richard C (2014) The in vivo activation of persistent
nanophosphors for optical imaging of vascularization, tumours and grafted cells. Nat Mater
13:418–426
89. Altinoglu EI, Russin TJ, Kaiser JM, Barth BM, Eklund PC, Kester M, Adair JH (2008) Nearinfrared emitting fluorophore-doped calcium phosphate nanoparticles for in vivo imaging of
human breast cancer. ACS Nano 2:2075–2084
90. Tabakovic A, Kester M, Adair JH (2012) Calcium phosphate-based composite nanoparticles
in bioimaging and therapeutic delivery applications. Wiley Interdiscip Rev-Nanomed
Nanobiotechnol 4:96–112
91. Frangioni JV (2003) In vivo near-infrared fluorescence imaging. Curr Opin Chem Biol
7:626–634
92. Barth BM, Sharma R, Altinoglu EI, Morgan TT, Shanmugavelandy SS, Kaiser JM,
McGovern C, Matters GL, Smith JP, Kester M, Adair JH (2010) Bioconjugation of calcium
phosphosilicate composite nanoparticles for selective targeting of human breast and pancreatic
cancers in vivo. ACS Nano 4:1279–1287
93. Tarn D, Ashley CE, Xue M, Carnes EC, Zink JI, Brinker CJ (2013) Mesoporous silica
nanoparticle nanocarriers: biofunctionality and biocompatibility. Acc Chem Res 46:792–801
94. Cho EB, Volkov DO, Sokolov I (2011) Ultrabright fluorescent silica mesoporous silica
nanoparticles: control of particle size and dye loading. Adv Funct Mater 21:3129–3135
95. Ow H, Larson DR, Srivastava M, Baird BA, Webb WW, Wiesner U (2005) Bright and stable
core-shell fluorescent silica nanoparticles. Nano Lett 5:113–117
96. Benezra M, Penate-Medina O, Zanzonico PB, Schaer D, Ow H, Burns A, DeStanchina E,
Longo V, Herz E, Iyer S, Wolchok J, Larson SM, Wiesner U, Bradbury MS (2011) Multimodal silica nanoparticles are effective cancer-targeted probes in a model of human melanoma. J Clin Invest 121:2768–2780
97. Phillips E, Penate-Medina O, Zanzonico PB, Carvajal RD, Mohan P, Ye YP, Humm J,
Gonen M, Kalaigian H, Schoder H, Strauss HW, Larson SM, Wiesner U, Bradbury MS
(2014) Clinical translation of an ultrasmall inorganic optical-PET imaging nanoparticle
probe. Sci Transl Med 6:260ra149
98. Sharma P, Bengtsson NE, Walter GA, Sohn HB, Zhou GY, Iwakuma N, Zeng HD,
Grobmyer SR, Scott EW, Moudgil BM (2012) Gadolinium-doped silica nanoparticles encapsulating indocyanine green for near infrared and magnetic resonance imaging. Small
8:2856–2868
Inorganic Fluorescent Nanomaterials
79
