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                 您的位置是:論文中心 -> 基礎科 -> 3D 生物打印支架材料的研究ω進展
                3D 生物打印支架材料的研究進展
                發布時間:2018-11-27 15:46:30 來源:知網 瀏覽次數:7705 
                關鍵詞: 3D 生物打印支架材料
                作者: 史建峰,王涵,趙蕾,韓倩倩 ,王春仁
                作者單位: 中國食品藥品檢定研究←院,北京 102629
                摘要:
                綜述3D生物打印支架材料的研究進展和╱應用
                詳細內容:
                  摘要 目的:綜述3D生物打印支架材料的研究進展和應一时间用。方法:應用計算機所以向张耀德提出如此檢索PubMed數據庫關於3D生物打印支架材料的文章,檢索詞為“3D bioprinting, scaffold”。結果與結論:3D生物打印技術●具有快速成型、精確〓控制等特點,而且可以應用於個性化治療。天然材料和復合材料可制今日之事備成生物墨水用於3D生物打印,通過化學修飾和交聯、多種材料復合可提高材料力學和生物性能。利用3D生物打印可以構
                造精密、復雜的組織結構∞。在再生醫學領域,3D生物打印有廣闊的發展前景。
                  關鍵詞: 3D 生物打印;組織工程;支架材料;生物墨水
                  中圖︽分類號:R318.08 文獻¤標識碼:A 文章編號:1002-7777(2018)10-1406-06
                  doi:10.16153/j.1002-7777.2018.10.015

                  Research Progress of Scaffold Materials for 3-Dimensional Bioprinting
                  Shi Jianfeng, Wang Han, Zhao Lei, Han Qianqian*
                  , Wang Chunren*
                  (National Institutes for Food and Drug Control, Beijing 102629, China)
                  Abstract Objective: To review research progress and application of scaffold materials for 3-dimensional (3D) bioprinting. Methods: A computer-based retrieval was performed to search articles addressing scaffold materials for 3D bioprinting published in PubMed database by using the keywords of “bioprinting”, “scaffold”. Result and
                  Conclusion: The 3D bioprinting possesses the characteristics of rapid prototyping and precise control and can be applied to personalized treatments. Natural and synthetic materials can be used to prepare bioink for the 3D bioprinting. The mechanical and biological properties of the materials can be improved by chemical modification and cross-linking. Complex and precise tissue structure can be fabricated by the 3D bioprinting. It is believed that the 3D bioprinting has a great prospect in the field of regenerative medicine.
                  Keywords: 3D bioprinting; tissue engineering; scaffold material; bioink
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