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Original Research

Carbon Quantum Dots: In vitro and in vivo Studies on Biocompatibility and Biointeractions for Optical Imaging

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Pages 6519-6529 | Published online: 28 Aug 2020

References

  • Chow HW. Nanodiamonds: the intersection of nanotechnology, drug development, and personalized medicine. Biomedical engineer. 2015;7:1500439.
  • Mochalin VN, Shenderova O, Ho D, Gogotsi Y. The properties and applications of Nanodia- monds. Nat Nanotechnol. 2011;7(1):11–23. doi:10.1038/nnano.2011.20922179567
  • Passeri D, Rinaldi F, Ingallina C, et al. Biomedical applications of nanodiamonds: an overview. J Nanosci Nanotechnol. 2015;15(2):972–988. doi:10.1166/jnn.2015.973426353603
  • Montalti M, Cantelli A, Battistelli G. Nanodiamonds and silicon quantum dots: ultrastable and biocompatible luminescent nanoprobes for long-term bioimaging. Chem Soc Rev. 2015;44(14):4853–4921. doi:10.1039/C4CS00486H26051500
  • Moham JM. Carbon quantum dots and their biomedical and therapeutic applications: a review. RSC Adv. 2019;9(12):6460. doi:10.1039/C8RA08088G
  • Rosenholm JM, Vlasov II, Burikov SA, Dolenko TA, Shenderova OA. Nanodiamond- based composite structures for biomedical imaging and drug delivery. J Nanosci Nanotechnol. 2015;15(2):959–971. doi:10.1166/jnn.2015.974226353602
  • Whitlow J, Pacelli S, Paul A. Multifunctional nanodiamonds in regenerative medicine: recent advances and future directions. J Control Release. 2017;261:62–86. doi:10.1016/j.jconrel.2017.05.03328596105
  • Chipaux M, Laan KJ, Hemelaar SR, Hasani M, Zheng T, Schirhagl R. Nanodiamonds and their applications in cells. Small. 2018;14(24):e1704263. doi:10.1002/smll.20170426329573338
  • Lim DG, Prim RE, Kim KH, Kang E, Park K, Jeong SH. Combinatorial nanodiamond in pharmaceutical and biomedical applications. Int J Pharm. 2016;514(1):41–51. doi:10.1016/j.ijpharm.2016.06.00427863681
  • Kunzmann A, Andersson B, Thurnherr T, Krug H, Scheynius A, Fadeel B. Toxicology of engineered nanomaterials: focus on biocompatibility, biodistribution and biodegradation. Biochim Biophys Acta. 2011;1810(3):361–373. doi:10.1016/j.bbagen.2010.04.00720435096
  • Dobrovolskaia MA, Germolec DR, Weaver JL. Evaluation of nanoparticle immunotoxicity. Nat Nanotechnol. 2009;4(7):411–414. doi:10.1038/nnano.2009.17519581891
  • Dobrovolskaia MA, McNeil SE. Immunological properties of engineered nanomaterials. Nat Nanotechnol. 2007;2(8):469–478. doi:10.1038/nnano.2007.22318654343
  • Monaco AM, Giugliano M. Carbon-based smart nanomaterials in biomedicine and neuroengineering. Beilstein J Nanotechnol. 2014;5:1849–1863. doi:10.3762/bjnano.5.19625383297
  • Zolnik BS, Gonzalez-Fernandez A, Sadrieh N, Dobrovolskaia MA. Nanoparticles and the immune system. Endocrinology. 2010;151(2):458–465. doi:10.1210/en.2009-108220016026
  • Van der Laan K, Hasani M, Zheng T, Schirhagl R. Nanodiamonds for in vivo applications. Small. 2018;14(19):e1703838. doi:10.1002/smll.20170383829424097
  • Petersen LK, Ramer-Tait AE, Broderick SR, et al. Activation of innate immune responses in a pathogen-mimicking manner by amphiphilic polyanhydride nanoparticle adjuvants. Biomaterials. 2011;32(28):6815–6822. doi:10.1016/j.biomaterials.2011.05.06321703679
  • Bhattacharya K, Mukherjee SP, Gallud A, et al. Biological interactions of carbon-based nanomaterials: from coronation to degradation. Nanomedicine. 2016;12(2):333–351. doi:10.1016/j.nano.2015.11.01126707820
  • Wei Q, Wang Y, Wang S, Zhang Y, Chen X. Investigating the properties and interaction mechanism of nano-silica in polyvinyl alcohol/polyacrylamide blends at an atomic level. J Mech Behav Biomed Mater. 2017;75:529–537. doi:10.1016/j.jmbbm.2017.08.02728850923
  • Xiao J, Liu P, Yang GW. Nanodiamonds from coal under ambient conditions. Nanoscale. 2015;7(14):6114–6125. doi:10.1039/C4NR06186A25774000
  • Xiao J, Liu P, Li L, Yang G. Fluorescence origin of nanodiamonds. J Phys Chem C. 2015;119(4):2239–2248. doi:10.1021/jp512188x
  • Xiao J, Li JL, Liu P, Yang GW. A new phase transformation path from nanodiamond to new-diamond via an intermediate carbon onion. Nanoscale. 2014;6(24):15098–15106. doi:10.1039/C4NR05246C25369973
  • Xiao J, Ouyang G, Liu P, Wang CX, Yang GW. Reversible nanodiamond-carbon onion phase transformations. Nano Lett. 2014;14(6):3645–3652. doi:10.1021/nl501423424823241
  • Wang H, Zhang S, Tian X, et al. High sensitivity of gold nanoparticles co-doped with Gd2O3 mesoporous silica nanocomposite to nasopharyngeal carcinoma cells. Sci Rep. 2016;6:34367. doi:10.1038/srep3436727694966
  • Tian X, Li E, Yang F, et al. In vivo immunotoxicity of SiO2@(Y0.5Gd0.45Eu 0.05)2O3 as dual-modality nanoprobes. Int J Mol Sci. 2014;15(8):13649–13662. doi:10.3390/ijms15081364925105724
  • Tian X, Guan X, Luo N, et al. In vivo immunotoxicity evaluation of Gd2O3 nanoprobes prepared by laser ablation in liquid for MRI preclinical applications. J Nanoparticle Res. 2014;16(9):2594. doi:10.1007/s11051-014-2594-9
  • Chen F, Li G, Zhao ER, et al. Cellular toxicity of silicon carbide nanomaterials as a function of morphology. Biomaterials. 2018;179:60–70. doi:10.1016/j.biomaterials.2018.06.02729980075
  • Tian X, Yang F, Yang C, et al. Toxicity evaluation of Gd2O3@SiO2 nanoparticles prepared by laser ablation in liquid as MRI contrast agents in vivo. Int J Nanomedicine. 2014;9:4043–4053. doi:10.2147/IJN.S6616425187708
  • Valko M, Leibfritz D, Moncol J, Cronin MT, Mazur M, Telser J. Free radicals and antioxidants in normal physiological functions and human disease. Int J Biochem Cell Biol. 2007;39(1):44–84. doi:10.1016/j.biocel.2006.07.00116978905
  • Yang Y, Bazhin AV, Werner J, Karakhanova S. Reactive oxygen species in the immune system. Int Rev Immunol. 2013;32(3):249–270. doi:10.3109/08830185.2012.75517623617726
  • Fruman DA, Bismuth G. Fine tuning the immune response with PI3K. Immunol Rev. 2009;228(1):253–272. doi:10.1111/j.1600-065X.2008.00750.x19290933