Khetani Salman R, Bhatia Sangeeta N
Harvard MIT Division of Health Sciences and Technology/Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 77 Massachusetts Avenue, E19-502D, Cambridge, MA 02139, USA.
Curr Opin Biotechnol. 2006 Oct;17(5):524-31. doi: 10.1016/j.copbio.2006.08.009. Epub 2006 Sep 15.
Engineered tissues can be employed for studies on the fundamental mechanisms of embryology and adult physiology and for investigating the evolution of disease processes. They also provide platforms to evaluate the behavior of new chemical entities in drug development. The recent development of three specific technologies has greatly facilitated the engineering of tissues for in vitro applications: the microfabrication tools that serve to both define the cellular microenvironment and enable parallelization of cell-based assays; synthetic, tunable hydrogels to create three-dimensional microenvironments; and bioreactors to control nutrient transport and fluid shear stress. Furthermore, convergence of these tools is providing investigators with the opportunity to construct and study tissues in vitro with unprecedented levels of sophistication.
工程组织可用于胚胎学和成人生理学基本机制的研究,以及疾病过程演变的研究。它们还为评估药物开发中新化学实体的行为提供了平台。最近三种特定技术的发展极大地促进了用于体外应用的组织工程:微制造工具既用于定义细胞微环境,又能实现基于细胞的检测的并行化;合成的、可调节的水凝胶用于创建三维微环境;生物反应器用于控制营养物质运输和流体剪切应力。此外,这些工具的融合为研究人员提供了机会,使其能够以前所未有的复杂程度在体外构建和研究组织。