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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 108, 2009 - Issue 3
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Articles

RETRACTED: Sol–gel preparation, characterisation and in vitro bioactivity of Mg containing bioactive glass

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Pages 155-161 | Published online: 18 Jul 2013

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A Zamanian, F Moztarzadeh, S Kordestani, S Hesaraki & M R Tahriri. (2010) Novel calcium hydroxide/nanohydroxyapatite composites for dental applications: in vitro study. Advances in Applied Ceramics 109:7, pages 440-444.
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Amirhossein Moghanian, Majid Raz, Zahra Miri, Saba Nasiripour, Loghman Dehghan Mehrjardi, Mohammad Mohaghegh Dehabadi & Morteza Elsa. (2023) Synthesis and characterization of Mg and Sr-modified calcium phosphate/gelatin biomimetic scaffolds for bone tissue engineering. Ceramics International.
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Seyed Peiman Ghorbanzade Zaferani, Nima Nabian, Maedeh Delavar & Sayed Mahmood Rabiee. (2021) Direct Impregnation of MgO Nanoparticles in 58S Bioactive Glass: Bioactivity Evaluation and Antibacterial Activity. Iranian Journal of Science and Technology, Transactions A: Science 45:3, pages 885-898.
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Amirhossein Moghanian, Mahzad Haji Mahdi Tajer, Mohammadamin Zohourfazeli, Zahra Miri & MortezaSaghafi Yazdi. (2021) Sol-gel derived silicate-based bioactive glass: Studies of synergetic effect of zirconium and magnesium on structural and biological characteristics. Journal of Non-Crystalline Solids 554, pages 120613.
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Fariborz Sharifianjazi, Mostafa Moradi, Aliasghar Abouchenari, Amir Hossein Pakseresht, Amirhossein Esmaeilkhanian, Mohammadreza Shokouhimehr & Mehdi Shahedi Asl. (2020) Effects of Sr and Mg dopants on biological and mechanical properties of SiO2–CaO–P2O5 bioactive glass. Ceramics International 46:14, pages 22674-22682.
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Damandeep Kaur, M. S. Reddy & O. P. Pandey. (2020) In-vitro bioactivity of silicate-phosphate glasses using agriculture biomass silica. Journal of Materials Science: Materials in Medicine 31:8.
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Patricia Hubner, Nicoly Donati, Luci Kelin de Menezes Quines, Isabel Cristina Tessaro & Nilson Romeu Marcilio. (2020) Gelatin-based films containing clinoptilolite-Ag for application as wound dressing. Materials Science and Engineering: C 107, pages 110215.
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Ch Vijaya Kumari, Y. Gandhi, P. Sobhanachalam, A. Siva Sesha Reddy, N. Venkatramaiah, P. Venkateswara Rao & V. Ravi Kumar. (2019) Bioactive behaviour of NiO substituted CaF2–CaO–B2O3–BaO–P2O5 glasses by means of spectroscopic studies. Optical Materials 97, pages 109394.
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Sampath Kumar Arepalli, Himanshu Tripathi, Partha Pratim Manna, Paliwal Pankaj, Sairam Krishnamurthy, Shashikant C.U. Patne, Ram Pyare & S. P. Singh. (2018) Preparation and in vitro investigation on bioactivity of magnesia-contained bioactive glasses. Journal of the Australian Ceramic Society 55:1, pages 145-155.
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Anuj Kumar & Sung Soo Han. 2019. Materials for Biomedical Engineering. Materials for Biomedical Engineering 397 439 .
S Bouhazma, S Chajri, S Herradi, M Khaldi, A El Hachadi, B El Bali & M Lachkar. (2018) Effect of P, Na, Mg, and Ag content on the in vitro bioactivity, wettability and mechanical strength of sol-gel glasses. Journal of Physics: Conference Series 984, pages 012012.
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Md Towhidul Islam, Kazi M. Zakir Hossain, Nusrat Sharmin, Andrew J. Parsons & Ifty Ahmed. (2017) Effect of magnesium content on bioactivity of near invert phosphate-based glasses. International Journal of Applied Glass Science 8:4, pages 391-402.
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Mohammadreza Tahriri, Rizwan Bader, Wiley Yao, Shima Dehghani, Kimia Khoshroo, Morteza Rasoulianboroujeni & Lobat Tayebi. 2017. Biomaterials for Oral and Dental Tissue Engineering. Biomaterials for Oral and Dental Tissue Engineering 7 24 .
Gurbinder KaurGurbinder Kaur. 2017. Bioactive Glasses. Bioactive Glasses 99 143 .
Vikash Kumar Vyas, Arepalli Sampath Kumar, Akher Ali, Sunil Prasad, Pradeep Srivastava, Sarada Prasanna Mallick, Md Ershad, Saryoo Prasad Singh & Ram Pyare. (2016) Assessment of nickel oxide substituted bioactive glass-ceramic on in vitro bioactivity and mechanical properties. Boletín de la Sociedad Española de Cerámica y Vidrio 55:6, pages 228-238.
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Sampath Kumar Arepalli, Himanshu Tripathi, Vikash Kumar Vyas, Shubham Jain, Shyam Kumar Suman, Ram Pyare & S.P. Singh. (2015) Influence of barium substitution on bioactivity, thermal and physico-mechanical properties of bioactive glass. Materials Science and Engineering: C 49, pages 549-559.
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Gurbinder Kaur, O.P. Pandey, K. Singh, Dan Homa, Brian Scott & Gary Pickrell. (2014) A review of bioactive glasses: Their structure, properties, fabrication and apatite formation. Journal of Biomedical Materials Research Part A 102:1, pages 254-274.
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R. Veres, A. Vulpoi, K. Magyari, C. Ciuce & V. Simon. (2013) Synthesis, characterisation and in vitro testing of macroporous zinc containing scaffolds obtained by sol–gel and sacrificial template methods. Journal of Non-Crystalline Solids 373-374, pages 57-64.
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Maziar Ashuri, Fathollah Moztarzadeh, Nader Nezafati, Ali Ansari Hamedani & Mohammadreza Tahriri. (2012) Development of a composite based on hydroxyapatite and magnesium and zinc‐containing sol–gel-derived bioactive glass for bone substitute applications. Materials Science and Engineering: C 32:8, pages 2330-2339.
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Lijun Ji, Yunfeng Si, Ailing Li, Wenjun Wang, Dong Qiu & Aiping Zhu. (2012) Progress of three-dimensional macroporous bioactive glass for bone regeneration. Frontiers of Chemical Science and Engineering 6:4, pages 470-483.
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D. Laurencin, C. Gervais, H. Stork, S. Krämer, D. Massiot & F. Fayon. (2012) 25 Mg Solid-State NMR of Magnesium Phosphates: High Magnetic Field Experiments and Density Functional Theory Calculations . The Journal of Physical Chemistry C 116:37, pages 19984-19995.
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Mani Diba, Felipe Tapia, Aldo R. Boccaccini & Leonie A. Strobel. (2012) Magnesium-Containing Bioactive Glasses for Biomedical Applications. International Journal of Applied Glass Science 3:3, pages 221-253.
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Nader Nezafati, Fathollah Moztarzadeh & Saeed Hesaraki. (2012) Surface reactivity and in vitro biological evaluation of sol gel derived silver/calcium silicophosphate bioactive glass. Biotechnology and Bioprocess Engineering 17:4, pages 746-754.
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F. Shafiei, M. Behroozibakhsh, F. Moztarzadeh, M. Haghbin-Nazarpak & M. Tahriri. (2012) Nanocrystalline fluorine-substituted hydroxyapatite [Ca5(PO4)3(OH)1−xFx (0≤x≤1)] for biomedical applications: preparation and characterisation. Micro & Nano Letters 7:2, pages 109.
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Gisela M Luz & João F Mano. (2011) Preparation and characterization of bioactive glass nanoparticles prepared by sol–gel for biomedical applications. Nanotechnology 22:49, pages 494014.
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J. Ma, C.Z. Chen, D.G. Wang & J.H. Hu. (2011) Synthesis, characterization and in vitro bioactivity of magnesium-doped sol–gel glass and glass-ceramics. Ceramics International 37:5, pages 1637-1644.
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Francesco Baino & Chiara Vitale-Brovarone. (2011) Three-dimensional glass-derived scaffolds for bone tissue engineering: Current trends and forecasts for the future. Journal of Biomedical Materials Research Part A 97A:4, pages 514-535.
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M. Erol, A. Özyuguran & Ö. Çelebican. (2010) Synthesis, Characterization, and In Vitro Bioactivity of Sol‐Gel‐Derived Zn, Mg, and Zn‐Mg Co‐Doped Bioactive Glasses. Chemical Engineering & Technology 33:7, pages 1066-1074.
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Saeed Hesaraki, Masoud Alizadeh, Hamid Nazarian & Davood Sharifi. (2009) Physico-chemical and in vitro biological evaluation of strontium/calcium silicophosphate glass. Journal of Materials Science: Materials in Medicine 21:2, pages 695-705.
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Saeed Hesaraki, Mojgan Safari & Mohammad Ali Shokrgozar. (2009) Composite bone substitute materials based on β-tricalcium phosphate and magnesium-containing sol–gel derived bioactive glass. Journal of Materials Science: Materials in Medicine 20:10, pages 2011-2017.
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Saeed Hesaraki, Mojgan Safari & Mohammad Ali Shokrgozar. (2009) Development of β‐tricalcium phosphate/sol‐gel derived bioactive glass composites: Physical, mechanical, and in vitro biological evaluations . Journal of Biomedical Materials Research Part B: Applied Biomaterials 91B:1, pages 459-469.
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