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고분자 생체재료의 시장동향 분석과 전망 The Market …

biomaterials Research (2012) 16(3) : 108-111108 BiomaterialsResearchCThe Korean Society for biomaterials The Market Analysis of Polymeric biomaterials for Biomedical Applications *Jin Won Eo, Hyuk Hahn, Ju Hwan Seo, and Joon Woo Lee* TCI Technology Commercialization Intelligence Center, Korea Institute of Science and Technology Information(KISTI), #206-9,Cheongnyangni-dong, Dongdaemun-gu, Seoul 130-741, Korea(Received May 3, 2012/Acccepted August 10, 2012)Polymeric biomaterials have been used for various biomedical applications for several decades. Of these polymers, theapplication of PLA(poly(lactic acid)), PGA(poly(glycolic acid)), and their copolymers has received a great deal of atten-tion in the past 15 years for use in controlled drug delivery systems, tissue repair, tissue engineering, and controllingcertain biological events.

Biomaterials Research (2012) 16(3) : 108-111108 Biomaterials Research CThe Korean Society for Biomaterials 고분자 생체재료의 시장동향 분석과 전망 The Market Analysis of Polymeric Biomaterials for Biomedical Applications

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Transcription of 고분자 생체재료의 시장동향 분석과 전망 The Market …

1 biomaterials Research (2012) 16(3) : 108-111108 BiomaterialsResearchCThe Korean Society for biomaterials The Market Analysis of Polymeric biomaterials for Biomedical Applications *Jin Won Eo, Hyuk Hahn, Ju Hwan Seo, and Joon Woo Lee* TCI Technology Commercialization Intelligence Center, Korea Institute of Science and Technology Information(KISTI), #206-9,Cheongnyangni-dong, Dongdaemun-gu, Seoul 130-741, Korea(Received May 3, 2012/Acccepted August 10, 2012)Polymeric biomaterials have been used for various biomedical applications for several decades. Of these polymers, theapplication of PLA(poly(lactic acid)), PGA(poly(glycolic acid)), and their copolymers has received a great deal of atten-tion in the past 15 years for use in controlled drug delivery systems, tissue repair, tissue engineering, and controllingcertain biological events.

2 Interest in synthetic absorbable polymers has grown considerably over the last three decades,principally because of their transient nature when used as biochemical implants or drug carriers. The global marketof polymeric biomaterials is expected to amount to $ billion in 2012 and $ billion in 2015. We focused onthe recent progress in R&D and analyzed the recent Market trend related to polymeric biomaterials Key word : polymeric, biomaterials , Market , poly(lactic acid), poly(glycolic acid), biodegradable, medical, applications .. , , , . , .. , PLA(poly(latic acid)) PGA(poly(glycolicacid)) , DDS(drugdelivery system), (scaffold).

3 , , . , , , , , , , , , (biocompatibility) , . ( biomaterials ) , , , , (Table 1). , (Table 2). * : Table 1. 109 Vol. 16, No. 3 , .. 10,000 , (polymer) . , (monomer).

4 , 1990 , , . , . ( ) , , . ( , ) , . (tissue compatibility) (blood compatibility) . , . , , . ( , ).

5 , , .. , , . , . ( ) . , .. , GNP.

6 BCC Research 2011 400 2016 800 Table 2. ( ) ( ) , , , ( ) , , , , , , , , , 110 biomaterials Research 2012 . SRI(Stanford Research Institute) , 2010 19 6500 Markets and markets 2015 2015 46 2800 . 2020 . 40% . 25% 2010 2 2100 . , . 2000 . Market and markets PLA(lactic acid ) 2015 32 2,800.

7 2012 Table 3. ( : ) CAGR(%)201020112012201320142015 Global1,9652,3322,7683,2853,8994, ,0491,2461,4451,6761, , , : The freedonia group(2009) Markets and markets(2012) KISTI Table 4. (LA & PLA) ( : , ) CAGR(%)2010 2011 2012 2013 2014 2015 1,370 1,626 1,930 2,291 2,719 3, : The freedonia group(2009) Markets and markets(2012) KISTI 111 Vol. 16, No. 3 5~10% , 30% . , 2010 /.

8 , . , , . , .. , , , . , , .. , .. 1. Dae Hyeon Lim, et. al., The Market analysis and perspectivesof bioplastics, biomaterials Research., 15(2), 66-71 (2011).2. Markets and markets, Global Lactic Acid & Poly Lactic Acid(PLA) Market by Raw Materials, Types, Applications and PotentialOpportunities (Forecast to 2016) (2011).

9 3. The Freedonia Group, Inc., World Bioplastics, Industry Study2548, 2009. 4. SRI Consulting Business Intelligence, Explore, Biopolymers, X. Wang, et. al. Tissue engineering of biphasic cartilageconstructs using various biodegradable scaffolds: an in vitrostudy, biomaterials ., 25, 3681-3688 (2004).6. E. Marshall, The business of stem cells, Science., 287, 1419-1421 (2000).7. J. A. Thomson, et. al., Embryonic stem cell lines derived fromhuman blastocysts, Science., 282, 1145-1147 (1998).8. H. Alexander, The clinical impact of tissue engineering, TissueEngineering., 1, 197-202 (1995).9. R. Langer and J. P. Vacanti, Tissue Engineering, Science., 260,920-926 (1993).


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