Biomaterials for tissue engineering

被引:1
|
作者
Byung-Soo Kim
Carlos E. Baez
Anthony Atala
机构
[1] Laboratory for Tissue Engineering and Cellular Therapeutics,
[2] Department of Urology,undefined
[3] Children's Hospital and Harvard Medical School,undefined
[4] 300 Longwood Avenue,undefined
[5] Boston,undefined
[6] MA 02115,undefined
[7] USA e-mail: atala@a1.tch.harvard.edu Tel: +1-617-3556169; Fax: +1-617-3556587,undefined
来源
World Journal of Urology | 2000年 / 18卷
关键词
Polymer; Peptide; Tissue Engineering; Lost; Polylactic Acid;
D O I
暂无
中图分类号
学科分类号
摘要
Biomaterials play a critical role in the engineering of new functional genitourinary tissues for the replacement of lost or malfunctioning tissues. They provide a temporary scaffolding to guide new tissue growth and organization and may provide bioactive signals (e.g., cell-adhesion peptides and growth factors) required for the retention of tissue-specific gene expression. A variety of biomaterials, which can be classified into three types – naturally derived materials (e.g., collagen and alginate), acellular tissue matrices (e.g., bladder submucosa and small-intestinal submucosa), and synthetic polymers [e.g., polyglycolic acid, polylactic acid, and poly(lactic-co-glycolic acid)] – have proved to be useful in the reconstruction of a number of genitourinary tissues in animal models. Some of these materials are currently being used clinically for genitourinary applications. Ultimately, the development or selection of appropriate biomaterials may allow the engineering of multiple types of functional genitourinary tissues.
引用
收藏
页码:2 / 9
页数:7
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