Vodovotz Yoram, An Gary
Center for Inflammation and Regenerative Modeling, McGowan Institute of Regenerative Medicine and Department of Surgery, University of Pittsburgh, Pittsburgh, PA, USA.
Methods Mol Biol. 2010;662:181-201. doi: 10.1007/978-1-60761-800-3_9.
Inflammation is a complex, multiscale biological response to threats - both internal and external - to the body, which is also required for proper healing of injured tissue. In turn, damaged or dysfunctional tissue stimulates further inflammation. Despite continued advances in characterizing the cellular and molecular processes involved in the interactions between inflammation and tissue damage, there exists a significant gap between the knowledge of mechanistic pathophysiology and the development of effective therapies for various inflammatory conditions. We have suggested the concept of translational systems biology, defined as a focused application of computational modeling and engineering principles to pathophysiology primarily in order to revise clinical practice. This chapter reviews the existing, translational applications of computational simulations and related approaches as applied to inflammation.
炎症是机体对来自内部和外部威胁的一种复杂的、多尺度的生物学反应,同时也是受损组织正常愈合所必需的。反过来,受损或功能失调的组织会刺激进一步的炎症反应。尽管在描述炎症与组织损伤相互作用中涉及的细胞和分子过程方面不断取得进展,但在机制病理生理学知识与针对各种炎症性疾病开发有效疗法之间仍存在巨大差距。我们提出了转化系统生物学的概念,其定义为主要将计算建模和工程原理集中应用于病理生理学,以便修订临床实践。本章回顾了计算模拟及相关方法在炎症方面现有的转化应用。