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Articles

Biological impact of nanodiamond particles – label free, high-resolution methods for nanotoxicity assessment

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Pages 1210-1226 | Received 27 Oct 2018, Accepted 26 Jul 2019, Published online: 14 Sep 2019

References

  • Alhaddad, Anna, Marie-Pierre Adam, Jacques Botsoa, Géraldine Dantelle, Sandrine Perruchas, Thierry Gacoin, Christelle Mansuy, Solange Lavielle, Claude Malvy, François Treussart., et al. 2011. “Nanodiamond as a Vector for siRNA Delivery to Ewing Sarcoma Cells.” Small 7(21): 3087–3095. doi:10.1002/smll.201101193.
  • Baidakova, M. V., Y. A. Kukushkina, A. A. Sitnikova, M. A. Yagovkina, D. A. Kirilenko, V. V. Sokolov, M. S. Shestakov, A. Y. Vul’, B. Zousman, and O. Levinson. 2013. “Structure of Nanodiamonds Prepared by Laser Synthesis.” Physics of the Solid State 55(8): 1747–1753. doi:10.1134/S1063783413080027.
  • Berntsen, P., C. Y. Park, B. Rothen-Rutishauser, A. Tsuda, T. M. Sager, R. M. Molina, T. C. Donaghey, A. M. Alencar, D. I. Kasahara, T. Ericsson., et al. 2010. “Biomechanical Effects of Environmental and Engineered Particles on Human Airway Smooth Muscle Cells.” Journal of the Royal Society Interface 7(suppl_3), S331–S340. doi:10.1098/rsif.2010.0068.focus.[Mismatch]
  • Bettini, Sarah, Elisa Boutet-Robinet, Christel Cartier, Christine Coméra, Eric Gaultier, Jacques Dupuy, Nathalie Naud, Sylviane Taché, Patrick Grysan, Solenn Reguer., et al. 2017. “Food-Grade TiO2 Impairs Intestinal and Systemic Immune Homeostasis, Initiates Preneoplastic Lesions and Promotes Aberrant Crypt Development in the Rat Colon.” Scientific Reports 7(1): 40373. doi:10.1038/srep40373.
  • Boudou, J.-P., P. A. Curmi, F. Jelezko, J. Wrachtrup, P. Aubert, M. Sennour, G. Balasubramanian, R. Reuter, A. Thorel, and E. Gaffet. 2009. “High Yield Fabrication of Fluorescent Nanodiamonds.” Nanotechnology 20(23): 235602–235602. doi:10.1088/0957-4484/20/23/235602.
  • Brady, Mariea A., Andrea Renzing, Timothy E. L. Douglas, Qin Liu, Sebastian Wille, Martin Parizek, Lucie Bacakova, Alexander Kromka, Marketa Jarosova, Greetje Godier., et al. 2015. “Development of Composite Poly (Lactide-co-Glycolide)-Nanodiamond Scaffolds for Bone Cell Growth.” Journal of Nanoscience and Nanotechnology 15(2): 1060–1069. doi:10.1166/jnn.2015.9745.
  • Butt, H.-J., B. Cappella, and M. Kappl. 2005. “Force Measurements with the Atomic Force Microscope: Technique, Interpretation and Applications.” Surface Science Reports 59(1-6): 1–152. doi:10.1016/j.surfrep.2005.08.003.
  • Buyukhatipoglu, K., and A. M. Clyne. 2011. “Superparamagnetic Iron Oxide Nanoparticles Change Endothelial Cell Morphology and Mechanics via Reactive Oxygen Species Formation.” Journal of Biomedical Materials Research Part A 96: 186–195. doi:10.1002/jbm.a.32972.
  • Cai, X., X. Xing, J. Cai, Q. Chen, S. Wu, and F. Huang. 2010. “Connection between Biomechanics and Cytoskeleton Structure of Lymphocyte and Jurkat Cells: An AFM Study.” Micron 41(3): 257–262. doi:10.1016/j.micron.2009.08.011.
  • Cassio, D., and M. C. Weiss. 1979. “Expression of Fetal and Neonatal Hepatic Functions by Mouse Hepatoma-Rat Hepatoma Hybrids.” Somatic Cell Genetics 5(6): 719–738. doi:10.1007/BF01542637.
  • Chao, J.-I., E. Perevedentseva, P.-H. Chung, K.-K. Liu, C.-Y. Cheng, C.-C. Chang, and C.-L. Cheng. 2007. “Nanometer-Sized Diamond Particle as a Probe for Biolabeling.” Biophysical Journal 93(6): 2199–2208. doi:10.1529/biophysj.107.108134.
  • Chaya, D., C. Fougère-Deschatrette, and M. C. Weiss. 1997. “Liver-Enriched Transcription Factors Uncoupled from Expression of Hepatic Functions in Hepatoma Cell Lines.” Molecular and Cellular Biology 17(11): 6311–6320. doi:10.1128/MCB.17.11.6311.
  • Chia, S. L., C. Y. Tay, M. I. Setyawati, and D. T. Leong. 2015. “Biomimicry 3D Gastrointestinal Spheroid Platform for the Assessment of Toxicity and Inflammatory Effects of Zinc Oxide Nanoparticles.” Small 11(6): 702–712. doi:10.1002/smll.201401915.
  • Chu, Z., K. Miu, P. Lung, S. Zhang, S. Zhao, H.-C. Chang, G. Lin, and Q. Li. 2015. “Rapid Endosomal Escape of Prickly Nanodiamonds: Implications for Gene Delivery.” Scientific Reports 5(1): 11661. doi:10.1038/srep11661.
  • Cohen, J., G. Deloid, G. Pyrgiotakis, and P. Demokritou. 2013. “Interactions of Engineered Nanomaterials in Physiological Media and Implications for in Vitro Dosimetry.” Nanotoxicology 7(4): 417–431. doi:10.3109/17435390.2012.666576.
  • Collins, A. R., B. Annangi, L. Rubio, R. Marcos, M. Dorn, C. Merker, I. Estrela-Lopis, M. R. Cimpan, M. Ibrahim, E. Cimpan., et al. 2017. “High Throughput Toxicity Screening and Intracellular Detection of Nanomaterials.” Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 9: E 1413. doi:10.1002/wnan.1413.
  • Cross, S. E., Y.-S. Jin, J. Rao, and J. K. Gimzewski. 2007. “Nanomechanical Analysis of Cells from Cancer Patients.” Nature Nanotechnology 2(12): 780. doi:10.1038/nnano.2007.388.
  • Daquinag, A. C., G. R. Souza, and M. G. Kolonin. 2013. “Adipose Tissue Engineering in Three-Dimensional Levitation Tissue Culture System Based on Magnetic Nanoparticles.” Tissue Engineering Part C: Methods 19(5): 336–344. doi:10.1089/ten.tec.2012.0198.
  • Deschatrette, J., C. Fougere-Deschatrette, L. Corcos, and R. T. Schimke. 1985. “Expression of the Mouse Serum Albumin Gene Introduced into Differentiated and Dedifferentiated Rat Hepatoma Cells.” Proceedings of the National Academy of Sciences 82(3): 765–769. doi:10.1073/pnas.82.3.765.
  • Dong, C., M. L. Kashon, D. Lowry, J. S. Dordick, S. H. Reynolds, Y. Rojanasakul, L. M. Sargent, and C. Z. Dinu. 2013. “Exposure to Carbon Nanotubes Leads to Changes in the Cellular Biomechanics.” Advanced Healthcare Materials 2(7): 945–951. doi:10.1002/adhm.201200430.
  • Edmondson, R., J. J. Broglie, A. F. Adcock, and L. Yang. 2014. “Three-Dimensional Cell Culture Systems and Their Applications in Drug Discovery and Cell-Based Biosensors.”Assay and Drug Development Technologies 12(4): 207–218. doi:10.1089/adt.2014.573.
  • Gupta, A. K., and A. S. Curtis. 2004. “Lactoferrin and Ceruloplasmin Derivatized Superparamagnetic Iron Oxide Nanoparticles for Targeting Cell Surface Receptors.” Biomaterials 25(15): 3029–3040. doi:10.1016/j.biomaterials.2003.09.095.
  • Haghi, M., D. Traini, L. G. Wood, B. Oliver, P. M. Young, and W. Chrzanowski. 2015. “A ‘Soft Spot’for Drug Transport: Modulation of Cell Stiffness Using Fatty Acids and Its Impact on Drug Transport in Lung Model.” Journal of Materials Chemistry B 3(13): 2583–2589. doi:10.1039/C4TB01928H.
  • Hau, H.,. D. Khanal, L. Rogers, N. Suchowerska, R. Kumar, S. Sridhar, D. McKenzie, and W. Chrzanowski. 2016. “Dose Enhancement and Cytotoxicity of Gold Nanoparticles in Colon Cancer Cells When Irradiated with Kilo- and Mega-Voltage Radiation.” Bioengineering & Translational Medicine 1: 94–102. doi:10.1002/btm2.10007.
  • Head, B. P., H. H. Patel, and P. A. Insel. 2014. “Interaction of Membrane/Lipid Rafts with the Cytoskeleton: Impact on Signaling and Function: Membrane/Lipid Rafts, Mediators of Cytoskeletal Arrangement and Cell Signaling.” Biochimica et Biophysica Acta (Bba) - Biomembranes 1838(2): 532–545. doi:10.1016/j.bbamem.2013.07.018.
  • Holt, B. D., P. A. Short, A. D. Rape, Y.-l Wang, M. F. Islam, and K. N. Dahl. 2010. “Carbon Nanotubes Reorganize Actin Structures in Cells and Ex Vivo.” ACS Nano 4(8): 4872–4878. doi:10.1021/nn101151x.
  • Jaffar, J.,. S.-H. Yang, S. Y. Kim, H.-W. Kim, A. Faiz, W. Chrzanowski, and J. K. Burgess. 2018. “Greater Cellular Stiffness in Fibroblasts from Patients with Idiopathic Pulmonary Fibrosis.” American Journal of Physiology-Lung Cellular and Molecular Physiology 315(1): L59–L65. doi:10.1152/ajplung.00030.2018.
  • Khanal, D., A. Kondyurin, H. Hau, J. C. Knowles, O. Levinson, I. Ramzan, D. Fu, C. Marcott, and W. Chrzanowski. 2016. “Biospectroscopy of Nanodiamond-Induced Alterations in Conformation of Intra- and Extracellular Proteins: A Nanoscale IR Study.” Analytical Chemistry 88(15): 7530–7538. doi:10.1021/acs.analchem.6b00665.
  • Khanal, D., H. Hau, A. Kondyurin, D. Fu, I. Ramzan, and W. Chrzanowski. 2017. “Nanotoxicity of Nanodiamond in Two and Three Dimensional Liver Models.” International Journal of Nanotechnology 14(1/2/3/4/5/6): 133–154. doi:10.1504/IJNT.2017.082436.
  • Kirmizis, D., and S. Logothetidis. 2010. “Atomic Force Microscopy Probing in the Measurement of Cell Mechanics.” International Journal of Nanomedicine 5: 137–145.
  • Krüger, A. 2006. “Hard and Soft: Biofunctionalized Diamond.” Angewandte Chemie (International ed. in English) 45(39): 6426–6427. doi:10.1002/anie.200602509.
  • Lee, Dong-Keun, Theodore Kee, Zhangrui Liang, Desiree Hsiou, Darron Miya, Brian Wu, Eiji Osawa, Edward Kai-Hua Chow, Eric C. Sung, Mo K. Kang., et al. 2017. “Clinical Validation of a Nanodiamond-Embedded Thermoplastic Biomaterial.” Proceedings of the National Academy of Sciences 114(45): E9445. doi:10.1073/pnas.1711924114.
  • Lee, J., G. D. Lilly, R. C. Doty, P. Podsiadlo, and N. A. Kotov. 2009. “In Vitro Toxicity Testing of Nanoparticles in 3D Cell Culture.” Small (Weinheim an Der Bergstrasse, Germany) 5(10): 1213–1221. doi:10.1002/smll.200801788.
  • Li, J., Y. Zhu, W. Li, X. Zhang, Y. Peng, and Q. Huang. 2010. “Nanodiamonds as Intracellular Transporters of Chemotherapeutic Drug.” Biomaterials 31(32): 8410–8418. doi:10.1016/j.biomaterials.2010.07.058.
  • Li, M., L. Liu, N. Xi, Y. Wang, Z. Dong, X. Xiao, and W. Zhang. 2012. “Atomic Force Microscopy Imaging and Mechanical Properties Measurement of Red Blood Cells and Aggressive Cancer Cells.” Science China Life Sciences 55(11): 968–973. doi:10.1007/s11427-012-4399-3.
  • Liu, K.-K., C.-L. Cheng, C.-C. Chang, and J.-I. Chao. 2007. “Biocompatible and Detectable Carboxylated Nanodiamond on Human Cell.” Nanotechnology 18(32): 325102. doi:10.1088/0957-4484/18/32/325102.
  • Luo, X., H. Zhang, Z. Cao, N. Cai, Y. Xue, and F. Yu. 2016. “A Simple Route to Develop Transparent Doxorubicin-Loaded Nanodiamonds/Cellulose Nanocomposite Membranes as Potential Wound Dressings.” Carbohydrate Polymers 143: 231–238. doi:10.1016/j.carbpol.2016.01.076.
  • Manus, L. M., D. J. Mastarone, E. A. Waters, X.-Q. Zhang, E. A. Schultz-Sikma, K. W. MacRenaris, D. Ho, and T. J. Meade. 2010. “Gd (III)-Nanodiamond Conjugates for MRI Contrast Enhancement.” Nano Letters 10(2): 484–489. doi:10.1021/nl903264h.
  • Mochalin, V. N., O. Shenderova, D. Ho, and Y. Gogotsi. 2012. “The Properties and Applications of Nanodiamonds.” Nature Nanotechnology 7(1): 11–23. doi:10.1038/nnano.2011.209.
  • Moche, H., V. Paget, D. Chevalier, E. Lorge, N. Claude, H. A. Girard, J. C. Arnault, S. Chevillard, and F. Nesslany. 2017. “Carboxylated Nanodiamonds Can Be Used as Negative Reference in in Vitro Nanogenotoxicity Studies.” Journal of Applied Toxicology 37(8): 954–961. doi:10.1002/jat.3443.
  • Mytych, J., A. Lewinska, A. Bielak-Zmijewska, W. Grabowska, J. Zebrowski, and M. Wnuk. 2014. “Nanodiamond-Mediated Impairment of Nucleolar Activity Is Accompanied by Oxidative Stress and DNMT2 Upregulation in Human Cervical Carcinoma Cells.” Chemico-Biological Interactions 220: 51–63. doi:10.1016/j.cbi.2014.06.004.
  • Ong, K. J., T. J. MacCormack, R. J. Clark, J. D. Ede, V. A. Ortega, L. C. Felix, M. K. Dang, G. Ma, H. Fenniri, J. G. Veinot., et al. 2014. “Widespread Nanoparticle-Assay Interference: Implications for Nanotoxicity Testing.”PloS One 9(3): e90650. doi:10.1371/journal.pone.0090650.
  • Paget, V., J. A. Sergent, R. Grall, S. Altmeyer-Morel, H. A. Girard, T. Petit, C. Gesset, M. Mermoux, P. Bergonzo, J. C. Arnault., et al. 2014. “Carboxylated Nanodiamonds Are Neither Cytotoxic nor Genotoxic on Liver, Kidney, Intestine and Lung Human Cell Lines.” Nanotoxicology 8(sup1): 46–56. doi:10.3109/17435390.2013.855828.
  • Peng, F., M. I. Setyawati, J. K. Tee, X. Ding, J. Wang, M. E. Nga, H. K. Ho, and D. T. Leong. 2019. “Nanoparticles Promote in Vivo Breast Cancer Cell Intravasation and Extravasation by Inducing Endothelial Leakiness.” Nature Nanotechnology 14(3): 279. doi:10.1038/s41565-018-0356-z.
  • Peper, J. K., H. Schuster, M. W. Löffler, B. Schmid-Horch, H.-G. Rammensee, and S. Stevanović. 2014. “An Impedance-Based Cytotoxicity Assay for Real-Time and Label-Free Assessment of T-Cell-Mediated Killing of Adherent Cells.” Journal of Immunological Methods 405: 192–198. doi:10.1016/j.jim.2014.01.012.
  • Pinget, G., J. Tan, B. Janac, N. O. Kaakoush, A. S. Angelatos, J. O'Sullivan, Y. C. Koay, F. Sierro, J. Davis, S. K. Divakarla., et al. 2019. “Impact of the Food Additive Titanium Dioxide (E171) on Gut Microbiota-Host Interaction.” Frontiers in Nutrition 6: 57. doi:10.3389/fnut.2019.00057.
  • Sarhan, O. M. M., and R. M. Hussein. 2014. “Effects of Intraperitoneally Injected Silver Nanoparticles on Histological Structures and Blood Parameters in the Albino Rat.” International Journal of Nanomedicine 9: 1505–1517.
  • Schrand, A. M., L. Dai, J. J. Schlager, S. M. Hussain, and E. Osawa. 2007. “Differential Biocompatibility of Carbon Nanotubes and Nanodiamonds.” Diamond and Related Materials 16(12): 2118–2123. doi:10.1016/j.diamond.2007.07.020.
  • Setyawati, M. I., C. Y. Tay, B. H. Bay, and D. T. Leong. 2017. “Gold Nanoparticles Induced Endothelial Leakiness Depends on Particle Size and Endothelial Cell Origin.” ACS Nano 11(5): 5020–5030. doi:10.1021/acsnano.7b01744.
  • Setyawati, M. I., V. N. Mochalin, and D. T. Leong. 2016. “Tuning Endothelial Permeability with Functionalized Nanodiamonds.” ACS Nano 10(1): 1170–1181. doi:10.1021/acsnano.5b06487.
  • Setyawati, M.I., C.Y. Tay, S.L. Chia, S.L. Goh, W. Fang, M.J. Neo, H.C. Chong, S.M. Tan, S.C.J. Loo, K.W. Ng., et al. 2013. “Titanium Dioxide Nanomaterials Cause Endothelial Cell Leakiness by Disrupting the Homophilic Interaction of VE–Cadherin.” Nature Communications 4(1): 1673. doi:10.1038/ncomms2655.
  • Solarska, K., A. Gajewska, W. Kaczorowski, G. Bartosz, and K. Mitura. 2012. “Effect of Nanodiamond Powders on the Viability and Production of Reactive Oxygen and Nitrogen Species by Human Endothelial Cells.” Diamond and Related Materials 21: 107–113. doi:10.1016/j.diamond.2011.10.020.
  • Subbiah, R., S. Ramasundaram, P. Du, K. Hyojin, D. Sung, K. Park, N.-E. Lee, K. Yun, and K. J. Choi. 2013. “Evaluation of Cytotoxicity, Biophysics and Biomechanics of Cells Treated with Functionalized Hybrid Nanomaterials.” Journal of the Royal Society Interface 10(88): 20130694. doi:10.1098/rsif.2013.0694.
  • Timm, David M., Jianbo Chen, David Sing, Jacob A. Gage, William L. Haisler, Shane K. Neeley, Robert M. Raphael, Mehdi Dehghani, Kevin P. Rosenblatt, T. C. Killian., et al. 2013. “A High-Throughput Three-Dimensional Cell Migration Assay for Toxicity Screening with Mobile Device-Based Macroscopic Image Analysis.” Scientific Reports 3(1): 1–8. doi:10.1038/srep03000.
  • Tseng, Hubert, Jacob A. Gage, Tsaiwei Shen, William L. Haisler, Shane K. Neeley, Sue Shiao, Jianbo Chen, Pujan K. Desai, Angela Liao, Chris Hebel., et al. 2015. “A Spheroid Toxicity Assay Using Magnetic 3D Bioprinting and Real-Time Mobile Device-Based Imaging.” Scientific Reports 5 (1): 13987. doi:10.1038/srep13987.
  • Wang, D., Y. Tong, Y. Li, Z. Tian, R. Cao, and B. Yang. 2013. “PEGylated Nanodiamond for Chemotherapeutic Drug Delivery.” Diamond and Related Materials 36: 26–34. doi:10.1016/j.diamond.2013.04.002.
  • Webb, H. K., V. K. Truong, J. Hasan, R. J. Crawford, and E. P. Ivanova. 2011. “Physico-Mechanical Characterisation of Cells Using Atomic Force Microscopy—Current Research and Methodologies.” Journal of Microbiological Methods 86 (2): 131–139. doi:10.1016/j.mimet.2011.05.021.
  • Wei, H., O. T. Bruns, M. G. Kaul, E. C. Hansen, M. Barch, A. Wiśniowska, O. Chen, Y. Chen, N. Li, S. Okada., et al. 2017. “Exceedingly Small Iron Oxide Nanoparticles as Positive MRI Contrast Agents.” Proceedings of the National Academy of Sciences 114(9): 2325–2330. doi:10.1073/pnas.1620145114.
  • Xie, F. Y., W. G. Xie, L. Gong, W. H. Zhang, S. H. Chen, Q. Z. Zhang, and J. Chen. 2010. “Surface Characterization on Graphitization of Nanodiamond Powder Annealed in Nitrogen Ambient.” Surface and Interface Analysis 42(9): 1514–1518. doi:10.1002/sia.3350.
  • Yamada, K. M., and E. Cukierman. 2007. “Modeling Tissue Morphogenesis and Cancer in 3D.” Cell 130(4): 601–610. doi:10.1016/j.cell.2007.08.006.
  • Yamashita, Kohei, Yasuo Yoshioka, Kazuma Higashisaka, Kazuya Mimura, Yuki Morishita, Masatoshi Nozaki, Tokuyuki Yoshida, Toshinobu Ogura, Hiromi Nabeshi, Kazuya Nagano., et al. 2011. “Silica and Titanium Dioxide Nanoparticles Cause Pregnancy Complications in Mice.” Nature Nanotechnology 6(5): 321. doi:10.1038/nnano.2011.41.
  • Yu, S.-J., M.-W. Kang, H.-C. Chang, K.-M. Chen, and Y.-C. Yu. 2005. “Bright Fluorescent Nanodiamonds: No Photobleaching and Low Cytotoxicity.” Journal of the American Chemical Society 127(50): 17604–17605. doi:10.1021/ja0567081.
  • Yuan, Y., Y. Chen, J.-H. Liu, H. Wang, and Y. Liu. 2009. “Biodistribution and Fate of Nanodiamonds in Vivo.” Diamond and Related Materials 18: 95–100. doi:10.1016/j.diamond.2008.10.031.
  • Zhang, Q., V. N. Mochalin, I. Neitzel, K. Hazeli, J. Niu, A. Kontsos, J. G. Zhou, P. I. Lelkes, and Y. Gogotsi. 2012. “Mechanical Properties and Biomineralization of Multifunctional nanodiamond-PLLA Composites for Bone Tissue Engineering.” Biomaterials 33(20): 5067–5075. doi:10.1016/j.biomaterials.2012.03.063.
  • Zhao, L., Y.-H. Xu, T. Akasaka, S. Abe, N. Komatsu, F. Watari, and X. Chen. 2014. “Polyglycerol-Coated Nanodiamond as a Macrophage-Evading Platform for Selective Drug Delivery in Cancer Cells.” Biomaterials 35(20): 5393–5406. doi:10.1016/j.biomaterials.2014.03.041.

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