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Caspase-3-dependent and -independent apoptosis in focal brain ischemia.

机译:Caspase-3依赖性和非依赖性凋亡在局灶性脑缺血中的作用。

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摘要

BACKGROUND: Although extensive caspase-3 activation has been demonstrated in experimental brain ischemia produced in neonatal rat, the role this caspase plays in the focal ischemia of adult brain is not clear, as the levels of caspase-3 in adult rat brain are extremely low. This raises the question whether caspase-3 synthesis and activation are essential for execution of the apoptotic program and DNA fragmentation in permanent brain ischemia, a condition that impairs cellular protein synthesis. MATERIALS AND METHODS: Rat middle cerebral artery was permanently occluded and histochemical detection of procaspase-3, active caspase-3 and DFF 40/CAD and apoptotic morphology analysis were performed at 6, 24, 48, and 72 hours after occlusion. RESULTS: Necrosis and two types of programmed cell death (PCD) are identified in this study of permanent focal brain ischemia. The first type of PCD is represented by active caspase-3 and DFF 40/CAD-positive cells. The second type of PCD is represented by caspase-3 and DFF40/CAD negative cells, which display morphological signs of apoptosis-like PCD: namely, nuclear chromatin condensation in lump masses and apoptotic body formation. The cells of the first type have a maximum number noted after 24 hours of ischemia. The cells of the second type are primarily seen after 48 and 72 hours of ischemia. Necrotic cells, which are also detected in the stroke, are caspase-3 negative, and have swollen nuclei, without chromatin condensation and apoptotic body formation. CONCLUSIONS: Our results indicate that in permanent brain ischemia in adult rats, PCD processes occur differently in various parts of ischemic zone. In conditions of severe energy depletion, the reactions of cellular disassembly and packaging into apoptotic bodies are accomplished without either caspase-3 expression or the activation of caspase-3-dependent deoxyribonuclease.
机译:背景:尽管已在新生大鼠产生的实验性脑缺血中证明了caspase-3的广泛活化,但由于成年大鼠脑中caspase-3的水平非常低,这种caspase在成年脑局灶性缺血中的作用尚不清楚。 。这就提出了一个问题,即在永久性脑缺血(一种损害细胞蛋白质合成的疾病)中,凋亡程序的执行和caspase-3的合成和激活是否对细胞凋亡程序的执行至关重要。材料与方法:大鼠大脑中动脉被永久性闭塞,在闭塞后6、24、48和72小时进行procaspase-3,活性caspase-3和DFF 40 / CAD的组织化学检测以及凋亡形态分析。结果:在这项永久性局灶性脑缺血的研究中鉴定出坏死和两种类型的程序性细胞死亡(PCD)。第一类PCD以活跃的caspase-3和DFF 40 / CAD阳性细胞为代表。第二种PCD以caspase-3和DFF40 / CAD阴性细胞为代表,它们显示出凋亡样PCD的形态学特征:即核染色质团块浓缩和凋亡小体形成。在缺血24小时后,第一种细胞的数量最多。在缺血48和72小时后主要看到第二种细胞。在中风中也检测到的坏死细胞是caspase-3阴性的,具有肿胀的核,没有染色质凝聚和凋亡小体形成。结论:我们的结果表明,在成年大鼠永久性脑缺血中,PCD进程在缺血区的不同部位发生的方式不同。在严重的能量消耗情况下,无需caspase-3表达或caspase-3依赖性脱氧核糖核酸酶的激活即可完成细胞分解和包装成凋亡小体的反应。

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