The Pathophysiological Aspects of Cerebral Diseases

Henrique Coelho Silva, Rafael Costa Lima Maia, Paulo Roberto Leitao de Vasconcelos, Orleancio Gomes Ripardo de Azevedo
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Abstract

Introduction. Cerebrovascular disorders are the main causes of heavy burden health worldwide, also, it is critical to understand the pathophysiological mechanism and then trying to prevent the neurological sequels. Objective. To discuss the inflammatory and oxidative stress aspects associated to the cerebrovascular diseases, focusing on biomarkers, also the role of omega oils, and the intracellular molecular network associated to the tissue burden on those conditions. Results. One of the most promising biomarkers it is Neuron-Specific Enolase (NSE). Serum NSE levels were elevated in stroke-patients compared to the non-stroke controls. Also, studies have demonstrated that in specific ratio omega oils 3, 6 and 9 can ameliorate the inflammatory and oxidative stress in nervous tissue and could be useful to the inflammatory and oxidative stress negative effects of cerebrovascular diseases. In addition, the study of the molecular mechanisms is essential to understand which molecules could be addressed in cascade of events preventing the permanent damage on the nervous tissue. Final considerations. The studies on cerebrovascular disorders must precisely identify the mechanisms and key molecules involved and improve the time of diagnostics and prognostics reducing the negative impacts of those conditions.
脑疾病的病理生理方面
介绍。脑血管疾病是世界范围内造成沉重健康负担的主要原因,了解其病理生理机制,预防其神经系统后遗症至关重要。目标。讨论与脑血管疾病相关的炎症和氧化应激方面,重点关注生物标志物,欧米茄油的作用,以及与这些疾病的组织负担相关的细胞内分子网络。结果。其中最有前途的生物标志物是神经元特异性烯醇化酶(NSE)。与非卒中对照组相比,卒中患者血清NSE水平升高。此外,研究表明,欧米茄油3,6和9按特定比例可以改善神经组织的炎症和氧化应激,并可能对脑血管疾病的炎症和氧化应激负面影响有用。此外,分子机制的研究对于了解哪些分子可以在防止神经组织永久性损伤的级联事件中得到解决至关重要。最后考虑。脑血管疾病的研究必须准确地识别其机制和关键分子,提高诊断和预后的时间,减少这些疾病的负面影响。
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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