Degracia Donald J
Department of Physiology, Wayne State University, Detroit, MI 48201, U.S.A.
J Exp Stroke Transl Med. 2010;3(1):90-103. doi: 10.6030/1939-067x-3.1.90.
The general failure of neuroprotectants in clinical trials of ischemic stroke points to the possibility of a fundamental blind spot in the current conception of ischemic brain injury, the "ischemic cascade". This is the third in a series of four papers whose purpose is to work towards a revision of the concept of brain ischemia by applying network concepts to develop a bistable model of brain ischemia. Here the bistable model of brain ischemia is compared to the ischemic cascade concept. The core weakness of the ischemic cascade concept is revealed to be its assumption of superposition, or that the elements of the ischemic cascade can be summed as linearly independent events. This assumption leads to a concept of neuroprotection as a subtraction of ostensibly independent damage events. The bistable model offers a different concept of neuroprotection where the role of individual molecular pathways decreases in relevance with respect to the efficacy of outcome. Network thinking provides a framework for critical assessment of widely-used preclinical experimental approaches. The importance of allometric scaling is also discussed. We illustrate that the bistable model provides a viable alternative to the ischemic cascade as an explanatory framework and as a guide for therapeutic development.
神经保护剂在缺血性中风临床试验中的普遍失败表明,当前对缺血性脑损伤的概念,即“缺血级联反应”,可能存在根本性的盲点。这是系列四篇论文中的第三篇,其目的是通过应用网络概念来构建缺血性脑损伤的双稳态模型,从而对脑缺血概念进行修订。本文将缺血性脑损伤的双稳态模型与缺血级联反应概念进行了比较。缺血级联反应概念的核心弱点在于其叠加假设,即缺血级联反应的各个要素可作为线性独立事件进行累加。这一假设导致了将神经保护视为对表面上独立的损伤事件进行减法运算的概念。双稳态模型提供了一种不同的神经保护概念,其中各个分子途径的作用与结果疗效的相关性降低。网络思维为批判性评估广泛使用的临床前实验方法提供了一个框架。文中还讨论了异速生长比例的重要性。我们阐明,双稳态模型作为一种解释框架和治疗开发指南,为缺血级联反应提供了一个可行的替代方案。