Teixeira Ana P, Carinhas Nuno, Dias João M L, Cruz Pedro, Alves Paula M, Carrondo Manuel J T, Oliveira Rui
IBET/ITQB, Instituto de Biologia Experimental e Tecnológica/Instituto de Tecnologia Química e Biológica, Apartado 12, 2781-901 Oeiras, Portugal.
J Biotechnol. 2007 Dec 1;132(4):418-25. doi: 10.1016/j.jbiotec.2007.08.020. Epub 2007 Aug 15.
Systems biology is an integrative science that aims at the global characterization of biological systems. Huge amounts of data regarding gene expression, proteins activity and metabolite concentrations are collected by designing systematic genetic or environmental perturbations. Then the challenge is to integrate such data in a global model in order to provide a global picture of the cell. The analysis of these data is largely dominated by nonparametric modelling tools. In contrast, classical bioprocess engineering has been primarily founded on first principles models, but it has systematically overlooked the details of the embedded biological system. The full complexity of biological systems is currently assumed by systems biology and this knowledge can now be taken by engineers to decide how to optimally design and operate their processes. This paper discusses possible methodologies for the integration of systems biology and bioprocess engineering with emphasis on applications involving animal cell cultures. At the mathematical systems level, the discussion is focused on hybrid semi-parametric systems as a way to bridge systems biology and bioprocess engineering.
系统生物学是一门整合科学,旨在对生物系统进行全面表征。通过设计系统性的基因或环境扰动,收集了大量有关基因表达、蛋白质活性和代谢物浓度的数据。接下来的挑战是将这些数据整合到一个全局模型中,以便提供细胞的整体图景。这些数据的分析在很大程度上由非参数建模工具主导。相比之下,经典生物过程工程主要基于第一原理模型,但它系统性地忽略了所嵌入生物系统的细节。目前,系统生物学承担了生物系统的全部复杂性,工程师们现在可以利用这些知识来决定如何优化设计和操作他们的过程。本文讨论了整合系统生物学和生物过程工程的可能方法,重点是涉及动物细胞培养的应用。在数学系统层面,讨论聚焦于混合半参数系统,将其作为连接系统生物学和生物过程工程的一种方式。