Materials Reports 2019, Vol. 33 Issue (Z2): 553-558 |
POLYMERS AND POLYMER MATRIX COMPOSITES |
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Mechanical Property and Osteogenesis Bioactivity Improvement of BioactiveGlass as Bone Graft Substitutes: a Review |
YANG Li1, WANG Pengsheng2, ZHANG Hao1, WANG Feng1, YANG Xionggang1, FENG Jiangtao1, HUA Kunchi1,HU Yongcheng3
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1 Tianjin Medical University, Tianjin 300070; 2 The Wei Dafeng Biological Materials Company in Beijing, Beijing 101102; 3 Tianjin Hospital, Tianjin 300211 |
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Abstract Bone graft materials which can induce and promote the bone regeneration have always been applied to replace damaged parts of the bone. Among these bone graft materials, bioactive glass is one sort of bioactive materials with high biological activity, biocompatibility and biodegradability. However, because of its fragility, breaking tenacity and low mechanical strength compared with normal bone tissue, there remains limitations when applying bioactive glass for repairment of long load-bearing and large area bone defect. And the current article focuses on deve-lopment and perspectives to improve the mechanical property and osteogenesis bioactivity of bioactive glass including regulating the component of it, recombining with other materials and improving the preparation technology.
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Published: 25 November 2019
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About author:: Li Yang, a postgraduate student of Tianjin Medical University, is mainly engaged in the repairment and reconstruction of bone defects after bone tumors resection. At present, he has published five academic articles as the first author in related fields, including 2 articles included by SCI. Yongcheng Hu is master tutor of Tianjin Medical University, “131” Engineering Talent in Tianjin and director of Orthopedic Oncology Department of Tianjin Hospital. He graduated from Dalian Medical College in 1986 and received his doctorate from PLA Institute for Advanced Studies, also went to UCSD University in 2005 for one year. For more than 20 years, Professor Hu took the lead in the application research of adjuvant chemotherapy for malignant bone tumors in China. Preoperative embolization and chemotherapy for spinal, pelvic and extremity tumors have also been actively carried out and satisfactory results have been achieved. Professor Hu has published 172 academic articles, 11 of which were included by SCI as the first author and he has undertaken and completed more than 20 national, provincial, ministerial and bureau-level projects and won many awards for scientific research achievements. |
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1 Gardiner A, Weitzel P P. Sports Medicine and Arthroscopy Review,2007,15(3),158. 2 Liao J C, Niu C C, Chen W J, et al. International Orthopaedics,2008,32(5),643. 3 Hench L L, Splinter R J, Allen W,et al. Journal of Biomedical Materials Research Part A,1971,5,117. 4 朱阳光.45S5生物玻璃的晶化、生物活性及Eu离子掺杂发光性能研究.硕士学位论文,苏州大学,2016. 5 Hench L L. Journal of the American Ceramic Society,2014,74,1487. 6 Blencke B A, Pfeil E, Brömer H, et al. Implant ateaus Glaskeramik in der Knochenchirurgie (tierexperimentelle Untersuchungen), Springer Berlin Heidelberg,1973. 7 Reck R. Laryngoscope,1984,94,1. 8 Reck R, Störkel S, Meyer A. Annals of the New York Academy of Sciences,1988,523,100. 9 杨为中.生物医学工程学杂志,2003,3,1001. 10 徐更生,王德平.材料导报,2004,18(10),25. 11 Wood D J, Bubb N L, Clifford A. et al. Journal of Microbiology,2009,29,107. 12 Baino F, Fiorilli S, Vitale-Brovarone C. Bioengineering (Basel),2017,23,4(1),15. 13 El-Fiqi A, Lee J H, Lee E J, et al. Acta Biomaterialia,2013,9(12),9508. 14 Sionkowska A, Kozłowska J. International Journal of Biological Macromolecules,2013,52,250. 15 Richert L, Lavalle P, Payan E, et al. Langmuir,2003,20,448. 16 Yin Y J, Yao K D, Cheng G X, et al. Polymer International,1999,48,429. 17 孟永春,陈晓峰,南开辉,等.中国组织工程研究,2014,21,2095. 18 Wu C, Ramaswamy Y, Zhu Y, et al. Biomaterials,2009,30(12),2199. 19 Filipowska J, Pawlik J, Cholewa-Kowalska K, et al. Biomedical Mate-rials,2014,20,9(6),065001. 20 Misra S K, Ansari T I, Valappil S P,et al. Biomaterials,2010,31,2806. 21 Li W J, Laurencin C T, Caterson E J, et al. Journal of Biomedical Materials Research,2002,60,613. 22 Knowles J C, Hastings G W, Ohta H, et al. Biomaterials,1992,13(8),491. 23 Montazeri M, Karbasi S, Foroughi M R, et al. Journal of Materials Science: Materials in Medicine,2015,26(2),62. 24 Li R, Clark A E, Hench L L. Journal of Applied Biomaterials,1991,2(4),231. 25 Salgado P C, Sathler P C, Castro H C, et al. Journal of Biomaterials and Nanobiotechnology,2011,2,318. 26 Aoba T. Critical Reviews in Oral Biology & Medicine,1997,8(2),136. 27 Brauer D S, Karpukhina N, O’Donnell M D, et al. Acta Biomaterialia,2010,6(8),3275. 28 Evans G P, Behiri J C, Currey J D, et al. Journal of Materials Science-Materials in Medicine,1990,1,38. 29 Bellucci D, Sola A, Anesi A, et al. Materials Science & Engineering C-Materials for Biological Applications,2015,51,196. 30 Bellucci D, Sola A, Cannillo V. Materials Science & Engineering C-Materials for Biological Applications,2013,33(4),2138. 31 Cholewa-Kowalska K, Kokoszka J, Laczka M, et al. Biomedical Mate-rials,2009,4(5),055007. 32 Clupper D C, Hench L L. Journal of Non-Crystalline Solids,2003,318,43. 33 Bellucci D, Cannillo V, Sola A. Science of Sintering,2010,42,307. 34 Peitl Filho O, LaTorre G P, Hench L L. Journal of Biomedical Materials Research Part A,1996,30(4),509. 35 Park E K, Lee Y E, Choi J Y, et al. Biomaterials,2004,25(17),3403. 36 Kameda T, Mano H, Yamada Y, et al. Biochemical and Biophysical Research Communications,1998,245(2),419. 37 Lazary A, Balla B, Kosa J P, et al. Biomaterials,2007,28(3),393. 38 Qi X, Pei P, Zhu M, et al. Scientific Reports,2017,13,7. 39 Kim S B, Kim Y J, Yoon T L, et al. Biomaterials,2004,25(26),5715. 40 Doadrio J, Arcos D, Cabanas M V, et al. Biomaterials,2004,25(13),2629. 41 Lopez-Heredia M A, Kamphuis G J, Thüne P C, et al. Biomaterials,2011,32(23),5411. 42 张亚东.可注射性硼酸盐生物玻璃骨水泥的制备及对骨缺损修复的研究.博士学位论文,上海交通大学,2015. 43 Hench L L, Roki N, Fenn M B. Journal of Molecular Structure,2014,1073,24. 44 Baino F, Hamzehlou S, Kargozar S. Funct Biomater,2018,9(1),25. 45 O’Donnell S, Cranney A, Wells G A,et al. Cochrane Database of Systematic Reviews (Online),2006,4,CD005326. 46 Bonnelye E, Chabadel A, Saltel F,et al. Bone,2008,42(1),129. 47 Gentleman E, Fredholm Y C, Jell G, et al. Biomaterials,2010,31(14),3949. 48 Huang W, Day D E, Kittiratanapiboon K, et al. Journal of Materials Science Materials in Medicine,2006,17(7),583. 49 Yao A, Wang D, Huang W, et al. Journal of the American Ceramic Society,2006,90(1),303. 50 宁佳,王德佳,黄文旵,等.硅酸盐学报,2006,11,0454. 51 Hakki S S, Bozkurt B S, Hakki E E. Journal of Trace Elements in Medicine and Biology,2010,24(4),243. 52 Sepulveda P, Jones J R, Hench L L. Journal of Biomedical Materials Research,2002,61(2),301. 53 Chen F M, Wu L A, Zhang M, et al. Biomaterials,2011,32(12),3189. 54 White A P, Vaccaro A R, Hall J A, et al. International Orthopaedics,2007,31(6),735. 55 Govender S, Csimma C, Genant H K, et al. Bone Joint Surg Am,2002,84(12),2123. 56 Steed D L, Donohoe D, Webster M W, et al. Journal of the American College of Surgeons,1996,183(1),61. 57 Wieman T J, Smiell J M, Su Y. Diabetes Care,1998,21(5),822. 58 Miron R J, Zhang Y F. Journal of Dental Research,2012,91(8),736. 59 Eldesoqi K, Henrich D, El-Kady A M, et al. Plos One,2014,9(2),e87642 60 Zhang Y, Cheng N, Miron R, et al. Biomaterials,2012,33(28),6698. 61 Genge B R, Wu L N, Wuthier R E. Journal of Biological Chemistry,2007,282(36),26035. 62 Wang Y J, Yang C R, Chen X F. Macromolecular Materials and Engineering,2006,291(3),254. 63 Merolli A, Santin M. Molecules,2009,14(12),5367. 64 Genge B R, Wu L N, Wuthier R E. Journal of Biological Chemistry,2008,283(15),9737. 65 Xu C, Su P, Chen X, et al. Biomaterials,2011,32(4),1051. 66 Ghosh S, Reis R L, Mano J F. Advanced Engineering Materials,2008,10(8),B18. 67 Jones J R, Ehrenfried L M, Hench L L. Biomaterials,2006,27(7),964. 68 Zhang K, Yue M, Francis L F. Journal of Biomedical Materials Research,2002,61(4),551. 69 Brunner T J, Grass R N, Stark W J. Chemical Communications,2006,13,1384. 70 Vichery C, Nedelec J M. Materials (Basel),2016,9(4),288. 71 汤爱明,吴琳莉,陈纯,等.化学与粘接,2003(2),61. 72 Rojbani H, Nyan M, Ohka K, et al. Journal of Biomedical Materials Research Part A,2011,98(4),488. 73 Dang W, Li T, Li B, et al. Biomaterials,2018,160,92. |
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