Evidence relating cigarettes, cigars and pipes to cardiovascular disease and stroke: Meta-analysis of recent data from three regions

Peter Nicholas Lee, K. J. Coombs, Jan S Hamling
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Abstract

Neoplasms can be considered as a group of aberrant cells that need more vascular supply to fulfill all their functions. Therefore, they promote angiogenesis through the same neovascularization pathway used physiologically. Angiogenesis is a process characterized by a heterogeneous distribution of oxygen caused by the tumor and oxidative stress; the latter being one of the most powerful stimuli of angiogenesis. As a result of altered tumor metabolism due to hypoxia, acidosis occurs. The angiogenic process and oxidative stress can be detected by measuring serum and tissue biomarkers. The study of the mechanisms underlying angiogenesis and oxidative stress could lead to the identification of new biomarkers, ameliorating the selection of patients with neoplasms and the prediction of their response to possible anti-tumor therapies. In particular, in the treatment of patients with similar clinical tumor phenotypes but different prognoses, the new biomarkers could be useful. Moreover, they may lead to a better understanding of the mechanisms underlying drug resistance. Experimental studies show that blocking the vascular supply results in antiproliferative activity in vivo in neuroendocrine tumor cells, which require a high vascular supply.
香烟、雪茄和烟斗与心血管疾病和中风有关的证据:对三个地区最新数据的元分析
肿瘤可被视为一组异常细胞,它们需要更多的血管供应来实现其所有功能。因此,它们会通过与生理学上相同的新生血管生成途径促进血管生成。血管生成过程的特点是由肿瘤和氧化应激引起的氧气分布不均;氧化应激是血管生成的最强刺激因素之一。由于缺氧导致肿瘤新陈代谢改变,酸中毒也随之发生。血管生成过程和氧化应激可通过测量血清和组织生物标记物来检测。研究血管生成和氧化应激的内在机制可以确定新的生物标志物,从而更好地选择肿瘤患者,并预测他们对可能的抗肿瘤疗法的反应。特别是,在治疗临床肿瘤表型相似但预后不同的患者时,新的生物标志物可能非常有用。此外,新的生物标志物还能帮助人们更好地了解抗药性的内在机制。实验研究表明,阻断血管供应可在体内对需要大量血管供应的神经内分泌肿瘤细胞产生抗增殖活性。
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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