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组织工程的先进工具:支架、生物反应器与信号传导

Advanced tools for tissue engineering: scaffolds, bioreactors, and signaling.

作者信息

Freed Lisa E, Guilak Farshid, Guo X Edward, Gray Martha L, Tranquillo Robert, Holmes Jeffrey W, Radisic Milica, Sefton Michael V, Kaplan David, Vunjak-Novakovic Gordana

机构信息

Harvard-MIT Division of Health Sciences and Technology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Tissue Eng. 2006 Dec;12(12):3285-305. doi: 10.1089/ten.2006.12.3285.

Abstract

This article contains the collective views expressed at the second session of the workshop "Tissue Engineering--The Next Generation,'' which was devoted to the tools of tissue engineering: scaffolds, bioreactors, and molecular and physical signaling. Lisa E. Freed and Farshid Guilak discussed the integrated use of scaffolds and bioreactors as tools to accelerate and control tissue regeneration, in the context of engineering mechanically functional cartilage and cardiac muscle. Edward Guo focused on the opportunities that tissue engineering generates for studies of mechanobiology and on the need for tissue engineers to learn about mechanical forces during tissue and organ genesis. Martha L. Gray focused on the potential of biomedical imaging for noninvasive monitoring of engineered tissues and on the opportunities biomedical imaging can generate for the development of new markers. Robert Tranquillo reviewed the approach to tissue engineering of a spectrum of avascular habitually loaded tissues- blood vessels, heart valves, ligaments, tendons, cartilage, and skin. Jeffrey W. Holmes offered the perspective of a "reverse paradigm''--the use of tissue constructs in quantitative studies of cell-matrix interactions, cell mechanics, matrix mechanics, and mechanobiology. Milica Radisic discussed biomimetic design of tissue-engineering systems, on the example of synchronously contractile cardiac muscle. Michael V. Sefton proposed a new, simple approach to the vascularization of engineered tissues. This session stressed the need for advanced scaffolds, bioreactors, and imaging technologies and offered many enlightening examples on how these advanced tools can be utilized for functional tissue engineering and basic research in medicine and biology.

摘要

本文包含了在“组织工程——下一代”研讨会第二届会议上表达的集体观点,该会议致力于组织工程工具:支架、生物反应器以及分子和物理信号传导。丽莎·E·弗里德和法希德·吉拉克在构建具有机械功能的软骨和心肌的背景下,讨论了支架和生物反应器作为加速和控制组织再生工具的综合应用。爱德华·郭重点关注了组织工程为力学生物学研究带来的机遇,以及组织工程师了解组织和器官形成过程中机械力的必要性。玛莎·L·格雷重点关注了生物医学成像在对工程组织进行无创监测方面的潜力,以及生物医学成像为开发新标记物所带来的机遇。罗伯特·特兰奎洛回顾了一系列无血管且经常受力组织(血管、心脏瓣膜、韧带、肌腱、软骨和皮肤)的组织工程方法。杰弗里·W·霍姆斯提出了一种“反向范式”的观点——在细胞 - 基质相互作用、细胞力学、基质力学和力学生物学的定量研究中使用组织构建体。米利察·拉迪西奇以同步收缩心肌为例讨论了组织工程系统的仿生设计。迈克尔·V·塞夫顿提出了一种新的、简单的工程组织血管化方法。本次会议强调了先进支架、生物反应器和成像技术的必要性,并提供了许多关于如何将这些先进工具用于功能性组织工程以及医学和生物学基础研究的启发性实例。

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