Review: development of clinically relevant scaffolds for vascularised bone tissue engineering
Clinical translation of scaffold-based bone tissue engineering (BTE) therapy still faces many challenges despite intense investigations and advancement over the years. To address these clinical barriers, it is important to analyse the current technical challenges in constructing a clinically relevan...
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sg-ntu-dr.10356-989242020-03-07T11:35:38Z Review: development of clinically relevant scaffolds for vascularised bone tissue engineering Liu, Yuchun Lim, Jing Teoh, Swee-Hin School of Chemical and Biomedical Engineering Clinical translation of scaffold-based bone tissue engineering (BTE) therapy still faces many challenges despite intense investigations and advancement over the years. To address these clinical barriers, it is important to analyse the current technical challenges in constructing a clinically relevant scaffold and subsequent clinical issues relating to bone repair. This review highlights the key challenges hampering widespread clinical translation of scaffold-based vascularised BTE, with a focus on the repair of large non-union defects. The main limitations of current scaffolds include the lack of sufficient vascularisation, insufficient mechanical strength as well as issues relating to the osseointegration of the bioresorbable scaffold and bone infection management. Critical insights on the current trends of scaffold technologies and future directions for advancing next-generation BTE scaffolds into the clinical realm are discussed. Considerations concerning regulatory approval and the route towards commercialisation of the scaffolds for widespread clinical utility will also be introduced. 2013-08-01T02:34:18Z 2019-12-06T20:01:11Z 2013-08-01T02:34:18Z 2019-12-06T20:01:11Z 2013 2013 Journal Article Liu, Y., Lim, J.,& Teoh, S. H. (2013). Review: Development of clinically relevant scaffolds for vascularised bone tissue engineering. Biotechnology Advances, 31(5), 688-705. 0734-9750 https://hdl.handle.net/10356/98924 http://hdl.handle.net/10220/12715 10.1016/j.biotechadv.2012.10.003 en Biotechnology advances |
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Clinical translation of scaffold-based bone tissue engineering (BTE) therapy still faces many challenges despite intense investigations and advancement over the years. To address these clinical barriers, it is important to analyse the current technical challenges in constructing a clinically relevant scaffold and subsequent clinical issues relating to bone repair. This review highlights the key challenges hampering widespread clinical translation of scaffold-based vascularised BTE, with a focus on the repair of large non-union defects. The main limitations of current scaffolds include the lack of sufficient vascularisation, insufficient mechanical strength as well as issues relating to the osseointegration of the bioresorbable scaffold and bone infection management. Critical insights on the current trends of scaffold technologies and future directions for advancing next-generation BTE scaffolds into the clinical realm are discussed. Considerations concerning regulatory approval and the route towards commercialisation of the scaffolds for widespread clinical utility will also be introduced. |
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School of Chemical and Biomedical Engineering |
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School of Chemical and Biomedical Engineering Liu, Yuchun Lim, Jing Teoh, Swee-Hin |
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Article |
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Liu, Yuchun Lim, Jing Teoh, Swee-Hin |
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Liu, Yuchun Lim, Jing Teoh, Swee-Hin Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
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Liu, Yuchun |
title |
Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
title_short |
Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
title_full |
Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
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Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
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Review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
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review: development of clinically relevant scaffolds for vascularised bone tissue engineering |
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2013 |
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https://hdl.handle.net/10356/98924 http://hdl.handle.net/10220/12715 |
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