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Original Research

Nanostructured model implants for in vivo studies: influence of well-defined nanotopography on de novo bone formation on titanium implants

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Pages 3415-3428 | Published online: 20 Dec 2011

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Dimitrios Karazisis, Ahmed M Ballo, Sarunas Petronis, Hossein Agheli, Lena Emanuelsson, Peter Thomsen & Omar Omar. (2016) The role of well-defined nanotopography of titanium implants on osseointegration: cellular and molecular events in vivo. International Journal of Nanomedicine 11, pages 1367-1382.
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Jagoda Litowczenko, Barbara M. Maciejewska, Jacek K. Wychowaniec, Mikołaj Kościński, Stefan Jurga & Alicja Warowicka. (2019) Groove‐patterned surfaces induce morphological changes in cells of neuronal origin. Journal of Biomedical Materials Research Part A 107:10, pages 2244-2256.
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Yafeng Yang, Aditya Chawla, Jin Zhang, Adam Esa, Hae Lin Jang & Ali Khademhosseini. 2019. Principles of Regenerative Medicine. Principles of Regenerative Medicine 485 504 .
Nancy D.Rajendran N.. (2018) Vancomycin incorporated chitosan/gelatin coatings coupled with TiO2–SrHAP surface modified cp-titanium for osteomyelitis treatment. International Journal of Biological Macromolecules 110, pages 197-205.
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Crossref
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Crossref
D.M. Kalaskar & F. Alshomer. 2016. In Situ Tissue Regeneration. In Situ Tissue Regeneration 137 163 .
F.A. Shah, K. Grandfield & A. Palmquist. 2016. Laser Surface Modification of Biomaterials. Laser Surface Modification of Biomaterials 253 280 .
Roman A. Perez, Seog-Jin Seo, Jong-Eun Won, Eun-Jung Lee, Jun-Hyeog Jang, Jonathan C. Knowles & Hae-Won Kim. (2015) Therapeutically relevant aspects in bone repair and regeneration. Materials Today 18:10, pages 573-589.
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Azadeh Hashemi, Isha Mutreja, Maan M. Alkaisi, Volker Nock & Mohammad Azam Ali. (2015) Fabrication of free-standing casein devices with micro- and nanostructured regular and bioimprinted surface features. Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena 33:6, pages 06F901.
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Karin A. Jansen, Dominique M. Donato, Hayri E. Balcioglu, Thomas Schmidt, Erik H.J. Danen & Gijsje H. Koenderink. (2015) A guide to mechanobiology: Where biology and physics meet. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1853:11, pages 3043-3052.
Crossref
Furqan A. Shah, Xiaoyue Wang, Peter Thomsen, Kathryn Grandfield & Anders Palmquist. (2015) High-Resolution Visualization of the Osteocyte Lacuno-Canalicular Network Juxtaposed to the Surface of Nanotextured Titanium Implants in Human. ACS Biomaterials Science & Engineering 1:5, pages 305-313.
Crossref
Eiji Kato, Kaoru Sakurai & Masahiro Yamada. (2015) Periodontal-like gingival connective tissue attachment on titanium surface with nano-ordered spikes and pores created by alkali-heat treatment. Dental Materials 31:5, pages e116-e130.
Crossref
Marc A. Fernandez-Yague, Sunny Akogwu Abbah, Laoise McNamara, Dimitrios I. Zeugolis, Abhay Pandit & Manus J. Biggs. (2015) Biomimetic approaches in bone tissue engineering: Integrating biological and physicomechanical strategies. Advanced Drug Delivery Reviews 84, pages 1-29.
Crossref
Rogerio B. Kato, Bhaskar Roy, Fabiola S. De Oliveira, Emanuela P. Ferraz, Paulo T. De Oliveira, Austin G. Kemper, Mohammad Q. Hassan, Adalberto L. Rosa & Marcio M. Beloti. (2014) Nanotopography Directs Mesenchymal Stem Cells to Osteoblast Lineage Through Regulation of microRNA-SMAD-BMP-2 Circuit. Journal of Cellular Physiology 229:11, pages 1690-1696.
Crossref
Patricia Neacsu, Anca Mazare, Anisoara Cimpean, Jung Park, Marieta Costache, Patrik Schmuki & Ioana Demetrescu. (2014) Reduced inflammatory activity of RAW 264.7 macrophages on titania nanotube modified Ti surface. The International Journal of Biochemistry & Cell Biology 55, pages 187-195.
Crossref
Alicia Calzado-Martín, Lara Crespo, Laura Saldaña, Alba Boré, Enrique Gómez-Barrena & Nuria Vilaboa. (2014) Human bone-lineage cell responses to anisotropic Ti6Al4V surfaces are dependent on their maturation state. Journal of Biomedical Materials Research Part A 102:9, pages 3154-3166.
Crossref
Andrey Koptioug, Claudia Bergemann, Regina Lange, Victor Emanuel JaggiLars Erik Rännar & J. Barbara Nebe. (2014) Osteoblast Ingrowth into Titanium Scaffolds Made by Electron Beam Melting. Materials Science Forum 783-786, pages 1292-1297.
Crossref
Takayuki Ikeda, Yoshiyuki Hagiwara, Makoto Hirota, Masako Tabuchi, Masahiro Yamada, Yoshihiko Sugita & Takahiro Ogawa. (2013) Effect of photofunctionalization on fluoride-treated nanofeatured titanium. Journal of Biomaterials Applications 28:8, pages 1200-1212.
Crossref
Arie Bruinink, Malak Bitar, Miriam Pleskova, Peter Wick, Harald F. Krug & Katharina Maniura-Weber. (2014) Addition of nanoscaledbioinspiredsurface features: A revolution for bone related implants and scaffolds?. Journal of Biomedical Materials Research Part A 102:1, pages 275-294.
Crossref
M. Hulander, A. Lundgren, L. Faxälv, T.L. Lindahl, A. Palmquist, M. Berglin & H. Elwing. (2013) Gradients in surface nanotopography used to study platelet adhesion and activation. Colloids and Surfaces B: Biointerfaces 110, pages 261-269.
Crossref
Witold I. Tatkiewicz, Joaquin Seras-Franzoso, Elena García-Fruitós, Esther Vazquez, Nora Ventosa, Karl Peebo, Imma Ratera, Antonio Villaverde & Jaume Veciana. (2013) Two-Dimensional Microscale Engineering of Protein-Based Nanoparticles for Cell Guidance. ACS Nano 7:6, pages 4774-4784.
Crossref
Rohan A. Shirwaiker, Meghan E. Samberg, Paul H. Cohen, Richard A. Wysk & Nancy A. Monteiro-Riviere. (2013) Nanomaterials and synergistic low-intensity direct current (LIDC) stimulation technology for orthopedic implantable medical devices. Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 5:3, pages 191-204.
Crossref
Ghadeer Thalji, Christina Gretzer & Lyndon F. Cooper. (2013) Comparative molecular assessment of early osseointegration in implant-adherent cells. Bone 52:1, pages 444-453.
Crossref