Vaupel P, Hockel M
Institute of Physiology and Pathophysiology, University of Mainz, D-55099 Mainz, Germany.
Int J Oncol. 2000 Nov;17(5):869-79. doi: 10.3892/ijo.17.5.869.
The metabolic microenvironment of a tumor is predominantly determined by the efficacy of blood flow, flux parameters (such as diffusion and convective currents in the interstitial space) and metabolic rates. The most important factors in this context include oxygen and nutrient supply, tissue pH and the bioenergetic status. It is now widely accepted that the metabolic microenvironment of a tumor can dramatically influence a range of factors such as proliferation rate, cell cycle position, growth rate and the development of apoptosis and necrosis. At the same time, these parameters can have an impact on tumor detection, therapeutic response to conventional irradiation, some chemotherapy agents and other non-surgical treatment modalities, while also having the capacity to modulate malignant progression (e.g., enhanced local spread, metastasis). The metabolic microenvironment appears to have a potentially important role to play in the prediction of long-term treatment outcome, and thus might be useful as a prognostic factor. Currently available information related to the parameters defining the metabolic microenvironment in breast cancers are presented in this review. According to these data, significant variations in these relevant factors are likely to occur between different locations within a tumor, and between tumors of the same clinical size, stage, grade and histology. The
肿瘤的代谢微环境主要由血流效率、通量参数(如间质空间中的扩散和对流)及代谢率决定。在此背景下,最重要的因素包括氧气和营养供应、组织pH值及生物能状态。现在人们普遍认为,肿瘤的代谢微环境可显著影响一系列因素,如增殖率、细胞周期位置、生长速率以及凋亡和坏死的发生。同时,这些参数可影响肿瘤检测、对传统放疗、某些化疗药物及其他非手术治疗方式的治疗反应,还具有调节恶性进展(如局部扩散增强、转移)的能力。代谢微环境似乎在预测长期治疗结果方面具有潜在重要作用,因此可能作为一个预后因素。本综述介绍了目前与定义乳腺癌代谢微环境的参数相关的信息。根据这些数据,这些相关因素在肿瘤内不同位置之间以及相同临床大小、分期、分级和组织学的肿瘤之间可能会出现显著差异。还考虑了治疗的<生理屏障>。