Gillies Robert J, Raghunand Natarajan, Karczmar Gregory S, Bhujwalla Zaver M
Department of Biochemistry, Arizona Cancer Center, University of Arizona HSC, Tucson, Arizona 85724-5024, USA.
J Magn Reson Imaging. 2002 Oct;16(4):430-50. doi: 10.1002/jmri.10181.
The microenvironment within tumors is significantly different from that in normal tissues. A major difference is seen in the chaotic vasculature of tumors, which results in unbalanced blood supply and significant perfusion heterogeneities. As a consequence, many regions within tumors are transiently or chronically hypoxic. This exacerbates tumor cells' natural tendency to overproduce acids, resulting in very acidic pH values. The hypoxia and acidity of tumors have important consequences for antitumor therapy and can contribute to the progression of tumors to a more aggressive metastatic phenotype. Over the past decade, techniques have emerged that allow the interrogation of the tumor microenvironment with high resolution and molecularly specific probes. Techniques are available to interrogate perfusion, vascular distribution, pH, and pO(2) nondestructively in living tissues with relatively high precision. Studies employing these methods have provided new insights into the causes and consequences of the hostile tumor microenvironment. Furthermore, it is quite exciting that there are emerging techniques that generate tumor image contrast via ill-defined mechanisms. Elucidation of these mechanisms will yield further insights into the tumor microenvironment. This review attempts to identify techniques and their application to tumor biology, with an emphasis on nuclear magnetic resonance (NMR) approaches. Examples are also discussed using electron MR, optical, and radionuclear imaging techniques.
肿瘤内的微环境与正常组织中的微环境显著不同。一个主要差异体现在肿瘤混乱的脉管系统中,这导致血液供应不均衡以及显著的灌注异质性。因此,肿瘤内的许多区域会出现短暂或长期的缺氧。这加剧了肿瘤细胞过度产生酸性物质的自然倾向,导致pH值非常低。肿瘤的缺氧和酸性环境对抗肿瘤治疗具有重要影响,并且可能促使肿瘤发展为更具侵袭性的转移表型。在过去十年中,出现了一些技术,能够使用高分辨率和分子特异性探针来研究肿瘤微环境。现有技术可在活体组织中以相对较高的精度无损地检测灌注、血管分布、pH值和氧分压。采用这些方法的研究为恶劣的肿瘤微环境的成因和后果提供了新的见解。此外,令人兴奋的是,正在出现一些通过不明确机制产生肿瘤图像对比度的技术。阐明这些机制将进一步深入了解肿瘤微环境。本综述试图确定相关技术及其在肿瘤生物学中的应用,重点是核磁共振(NMR)方法。还将讨论使用电子磁共振、光学和放射性核素成像技术的示例。