Apoptosis as a mediator of delayed tissue damage in progressive stroke: a computational study

K. Revett, J. Kola
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引用次数: 1

Abstract

This paper presents a computational model of ischemic stroke that focuses on the role of apoptosis as a mediator of delayed tissue. There is strong evidence that apoptosis (programmed cell death) occurs subsequent to ischemia, but its role as a mediator of delayed cell death has not been examined quantitatively. In this computational study, evidence is presented suggesting that apoptosis can cause tissue damage in a delayed fashion, with a temporal profile similar to that reported in cases of progressive stroke. The results from this study indicate that tissue damage is bi-phasic. In the acute phase (1-3 hours post-ictus), damage in the ischemic focus occurs as a result of severe metabolic insufficiency (necrosis). After a substantial time delay, a second form of cell death becomes apparent - mediated by apoptosis. The combination of necrosis and apoptosis accounts for the final infarct volume occurring in this model of ischemic stroke
细胞凋亡作为迟发性脑卒中组织损伤的中介:一项计算研究
本文提出了一个缺血性中风的计算模型,着重于细胞凋亡作为延迟组织的介质的作用。有强有力的证据表明,细胞凋亡(程序性细胞死亡)在缺血后发生,但其作为延迟细胞死亡介质的作用尚未得到定量研究。在这项计算研究中,有证据表明,细胞凋亡可以延迟引起组织损伤,其时间特征与进行性中风的情况相似。本研究结果表明,组织损伤是双阶段的。在急性期(发作后1-3小时),由于严重的代谢不全(坏死),缺血灶发生损伤。经过相当长的时间延迟后,第二种形式的细胞死亡变得明显——由细胞凋亡介导。坏死和细胞凋亡的结合是缺血性脑卒中模型中最终梗死体积的原因
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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