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Original Research

Tissue engineering scaffold material of porous nanohydroxyapatite/polyamide 66

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Pages 331-335 | Published online: 20 Apr 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (8)

Muhammad Saleem, Sidra Rasheed & Chen Yougen. (2020) Silk fibroin/hydroxyapatite scaffold: a highly compatible material for bone regeneration. Science and Technology of Advanced Materials 21:1, pages 242-266.
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Neda Shah Hosseini, Nimet Bölgen, Nabyl Khenoussi, Şakir Necat Yılmaz, Derya Yetkin, Amir Houshang Hekmati, Laurence Schacher & Dominique Adolphe. (2018) Novel 3D electrospun polyamide scaffolds prepared by 3D printed collectors and their interaction with chondrocytes. International Journal of Polymeric Materials and Polymeric Biomaterials 67:3, pages 143-150.
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Meng-Zhu Yao, Ming-Yi Huang-Fu, Hui-Na Liu, Xia-Rong Wang, Xiaoxia Sheng & Jian-Qing Gao. (2016) Fabrication and characterization of drug-loaded nano-hydroxyapatite/polyamide 66 scaffolds modified with carbon nanotubes and silk fibroin. International Journal of Nanomedicine 11, pages 6181-6194.
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Shiyang Zhang, Qiming Yang, Weikang Zhao, Bo Qiao, Hongwang Cui, Jianjun Fan, Hong Li, Xiaolin Tu & Dianming Jiang. (2016) In vitro and in vivo biocompatibility and osteogenesis of graphene-reinforced nanohydroxyapatite polyamide66 ternary biocomposite as orthopedic implant material. International Journal of Nanomedicine 11, pages 3179-3189.
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Xiaonan Wu, Leiying Miao, Yingfang Yao, Wenlei Wu, Yu Liu, Xiaofeng Chen & Weibin Sun. (2014) Electrospun fibrous scaffolds combined with nanoscale hydroxyapatite induce osteogenic differentiation of human periodontal ligament cells. International Journal of Nanomedicine 9, pages 4135-4143.
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Yan Xiong, Cheng Ren, Bin Zhang, Hongsheng Yang, Yun Lang, Li Min, Wenli Zhang, Fuxing Pei, Yonggang Yan, Hong Li, Anchun Mo, Chongqi Tu & Hong Duan. (2014) Analyzing the behavior of a porous nano-hydroxyapatite/polyamide 66 (n-HA/PA66) composite for healing of bone defects. International Journal of Nanomedicine 9, pages 485-494.
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Mehran Mehrabanian & Mojtaba Nasr-Esfahani. (2011) HA/nylon 6,6 porous scaffolds fabricated by salt-leaching/solvent casting technique: effect of nano-sized filler content on scaffold properties. International Journal of Nanomedicine 6, pages 1651-1659.
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Jun Ye, Qianqian Yao, Anchun Mo, Jing Nie, Wenwen Liu, Cui Ye & Xianji Chen. (2011) Effects of an antibacterial membrane on osteoblast-like cells in vitro. International Journal of Nanomedicine 6, pages 1853-1861.
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Articles from other publishers (7)

Pengqiang Lou, Xiaolei Deng & Decai Hou. (2023) The effects of nano-hydroxyapatite/polyamide 66 scaffold on dog femoral head osteonecrosis model: a preclinical study. Biomedical Materials 18:2, pages 025011.
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Ju’an Yue, Xiaozhong Guo, Randong Wang, Bing Li, Qiang Sun, Wangyan Liu & Jiao Chen. (2022) Preliminary report of the outcomes and indications of single approach, double-channel core decompression with structural bone support and bone grafting for osteonecrosis of the femoral head. BMC Musculoskeletal Disorders 23:1.
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Luana A. Osório, Elisabete Silva & Ruth E. Mackay. (2021) A Review of Biomaterials and Scaffold Fabrication for Organ-on-a-Chip (OOAC) Systems. Bioengineering 8:8, pages 113.
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Xi Liang, Feilong Li, Xuan Gong, Junchao Li, Shijie Yin, Qi Li, Ziming Liu, Zenghui Zhao, Xiaolin Tu, Wei Huang & Ning Hu. (2020) In vivo evaluation of porous nanohydroxyapatite/polyamide 66 struts in a goat cervical fusion model. Scientific Reports 10:1.
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Yun Lang, Ze-ping Yu, Yan Xiong, Chong-qi Tu, Cheng Ren, Bin Zhang, Hong-sheng Yang, Fang Yuan, Hong Li, Yong-gang Yan & Hong Duan. (2015) Interim Clinical Outcomes in Nanocomposite Bone Material Repairing Large Proximal Femoral Defect of Fibrous Dysplasia. Journal of Nanomaterials 2015, pages 1-9.
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Ipsita A. Banerjee, Karl R. Fath, Nako Nakatsuka, Nazmul H. Sarker & Ipsita A. Banerjee. (2012) Formation of Calcium Phosphate-Ellagic Acid Composites by Layer by Layer Assembly for Cellular Attachment to Osteoblasts. Journal of Biomimetics, Biomaterials and Tissue Engineering 13, pages 1-17.
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Davood Sharifi, Hamid Reza Khoushkerdar, Gholamreza Abedi, Ahmad Asghari & Saeed Hesaraki. (2012) Mechanical properties of radial bone defects treated with autogenous graft covered with hydroxyapatite in rabbit. Acta Cirurgica Brasileira 27:3, pages 256-259.
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