Suppr超能文献

心血管组织工程学 I. 灌注生物反应器:综述

Cardiovascular tissue engineering I. Perfusion bioreactors: a review.

作者信息

Mironov Vladimir, Kasyanov Vladimir A, Yost Michael J, Visconti Richard, Twal Waleed, Trusk Thomas, Wen Xuejun, Ozolanta Iveta, Kadishs Arnolds, Prestwich Glenn D, Terracio Louis, Markwald Roger R

机构信息

Medical University of South Carolina, Cell Biology and Anatomy Department, Charleston, South Carolina 29425, USA.

出版信息

J Long Term Eff Med Implants. 2006;16(2):111-30. doi: 10.1615/jlongtermeffmedimplants.v16.i2.10.

Abstract

Tissue engineering is a fast-evolving field of biomedical science and technology with future promise to manufacture living tissues and organs for replacement, repair, and regeneration of diseased organs. Owing to the specific role of hemodynamics in the development, maintenance, and functioning of the cardiovascular system, bioreactors are a fundamental of cardiovascular tissue engineering. The development of perfusion bioreactor technology for cardiovascular tissue engineering is a direct sequence of previous historic successes in extracorporeal circulation techniques. Bioreactors provide a fluidic environment for tissue engineered tissue and organs, and guarantee their viability, maturation, biomonitoring, testing, storage, and transportation. There are different types of bioreactors and they vary greatly in their size, complexity, and functional capabilities. Although progress in design and functional properties of perfusion bioreactors for tissue engineered blood vessels, heart valves, and myocardial patches is obvious, there are some challenges and insufficiently addressed issues, and room for bioreactor design improvement and performance optimization. These challenges include creating a triple perfusion bioreactor for vascularized tubular tissue engineered cardiac construct; designing and manufacturing fluidics-based perfused minibioreactors; incorporation of systematic mathematical modeling and computer simulation based on computational fluid dynamics into the bioreactor designing process; and development of automatic systems of hydrodynamic regime control. Designing and engineering of built-in noninvasive biomonitoring systems is another important challenge. The optimal and most efficient perfusion and conditioning regime, which accelerates tissue maturation of tissue-engineered constructs also remains to be determined. This is a first article in a series of reviews on critical elements of cardiovascular tissue engineering technology describing the current status, unsolved problems, and challenges of bioreactor technology in cardiovascular tissue engineering and outlining future trends and developments.

摘要

组织工程是生物医学科学与技术中一个快速发展的领域,有望在未来制造活组织和器官,用于替代、修复和再生患病器官。由于血液动力学在心血管系统的发育、维持和功能中具有特定作用,生物反应器是心血管组织工程的基础。心血管组织工程灌注生物反应器技术的发展是体外循环技术先前历史性成功的直接延续。生物反应器为组织工程化组织和器官提供流体环境,并确保其生存能力、成熟度、生物监测、测试、储存和运输。生物反应器有不同类型,其大小、复杂性和功能能力差异很大。尽管用于组织工程化血管、心脏瓣膜和心肌补片的灌注生物反应器在设计和功能特性方面取得了明显进展,但仍存在一些挑战和未充分解决的问题,生物反应器设计改进和性能优化仍有空间。这些挑战包括创建用于血管化管状组织工程心脏构建体的三重灌注生物反应器;设计和制造基于流体的灌注微型生物反应器;将基于计算流体动力学的系统数学建模和计算机模拟纳入生物反应器设计过程;以及开发流体动力状态自动控制系统。设计和构建内置非侵入性生物监测系统是另一项重要挑战。加速组织工程构建体组织成熟的最佳和最有效灌注及调节方案也有待确定。这是关于心血管组织工程技术关键要素系列综述文章中的第一篇,描述了心血管组织工程中生物反应器技术的现状、未解决的问题和挑战,并概述了未来趋势和发展。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验