Griffith Linda G
Biological Engineering Division and Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Rm. 66-466, Cambridge, MA 02139, USA.
Ann N Y Acad Sci. 2002 Jun;961:83-95. doi: 10.1111/j.1749-6632.2002.tb03056.x.
Biomaterials and scaffolds play an essential role in tissue engineering by guiding new tissue growth in vivo and in vitro. While adaptation of existing surgical materials has fulfilled some needs in the field, new applications demand better control of bulk properties such as degradation and of surface properties that control cell interactions. Advances in molecular cell biology are driving the incorporation of new biological moieties into materials, and a set of design principles based on quantitative analysis of key cellular processes involved in regeneration is emerging. At the same time, new materials-processing methodologies are emerging to allow fabrication of these fragile materials into devices appropriate for delivery.
生物材料和支架在组织工程中发挥着至关重要的作用,可在体内和体外引导新组织生长。虽然对现有外科材料的改良满足了该领域的一些需求,但新的应用需要更好地控制诸如降解等 bulk 属性以及控制细胞相互作用的表面属性。分子细胞生物学的进展推动了将新的生物部分纳入材料中,并且基于对再生过程中关键细胞过程的定量分析的一套设计原则正在形成。与此同时,新的材料加工方法正在出现,以使这些易碎材料能够制成适合递送的装置。