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发育工程:基于细胞产品设计和制造的新模式。第二部分:从基因到网络:从系统生物学和网络科学角度看组织工程。

Developmental engineering: a new paradigm for the design and manufacturing of cell-based products. Part II: from genes to networks: tissue engineering from the viewpoint of systems biology and network science.

机构信息

Department of Biochemistry and Molecular Biology IV, Veterinary Faculty, Complutense University of Madrid , Madrid, Spain .

出版信息

Tissue Eng Part B Rev. 2009 Dec;15(4):395-422. doi: 10.1089/ten.TEB.2009.0461.

Abstract

The field of tissue engineering is moving toward a new concept of "in vitro biomimetics of in vivo tissue development." In Part I of this series, we proposed a theoretical framework integrating the concepts of developmental biology with those of process design to provide the rules for the design of biomimetic processes. We named this methodology "developmental engineering" to emphasize that it is not the tissue but the process of in vitro tissue development that has to be engineered. To formulate the process design rules in a rigorous way that will allow a computational design, we should refer to mathematical methods to model the biological process taking place in vitro. Tissue functions cannot be attributed to individual molecules but rather to complex interactions between the numerous components of a cell and interactions between cells in a tissue that form a network. For tissue engineering to advance to the level of a technologically driven discipline amenable to well-established principles of process engineering, a scientifically rigorous formulation is needed of the general design rules so that the behavior of networks of genes, proteins, or cells that govern the unfolding of developmental processes could be related to the design parameters. Now that sufficient experimental data exist to construct plausible mathematical models of many biological control circuits, explicit hypotheses can be evaluated using computational approaches to facilitate process design. Recent progress in systems biology has shown that the empirical concepts of developmental biology that we used in Part I to extract the rules of biomimetic process design can be expressed in rigorous mathematical terms. This allows the accurate characterization of manufacturing processes in tissue engineering as well as the properties of the artificial tissues themselves. In addition, network science has recently shown that the behavior of biological networks strongly depends on their topology and has developed the necessary concepts and methods to describe it, allowing therefore a deeper understanding of the behavior of networks during biomimetic processes. These advances thus open the door to a transition for tissue engineering from a substantially empirical endeavor to a technology-based discipline comparable to other branches of engineering.

摘要

组织工程领域正在朝着“体外模拟体内组织发育的新观念”发展。在本系列的第一部分,我们提出了一个理论框架,将发育生物学的概念与过程设计的概念结合起来,为仿生过程的设计提供了规则。我们将这种方法命名为“发育工程”,以强调需要设计的不是组织,而是体外组织发育的过程。为了以能够进行计算设计的严格方式制定过程设计规则,我们应该参考数学方法来模拟体外发生的生物过程。组织功能不能归因于单个分子,而是归因于细胞的众多成分之间以及组织中细胞之间的复杂相互作用,这些相互作用形成了一个网络。为了使组织工程能够达到技术驱动的学科水平,能够应用成熟的过程工程原理,需要对一般设计规则进行科学严格的表述,以便能够将控制发育过程展开的基因、蛋白质或细胞网络的行为与设计参数联系起来。现在已经有足够的实验数据来构建许多生物控制回路的合理数学模型,因此可以使用计算方法来评估明确的假设,以促进过程设计。系统生物学的最新进展表明,我们在第一部分中用于提取仿生过程设计规则的发育生物学经验概念可以用严格的数学术语来表达。这允许对组织工程中的制造过程以及人工组织本身的特性进行准确描述。此外,网络科学最近表明,生物网络的行为强烈依赖于它们的拓扑结构,并发展了描述它的必要概念和方法,从而可以更深入地了解仿生过程中网络的行为。这些进展为组织工程从一门主要依靠经验的学科向一门与其他工程分支相当的技术学科转变打开了大门。

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