Evelhoch J L, Sapareto S A, Nussbaum G H, Ackerman J J
Radiat Res. 1986 Apr;106(1):122-31.
The tumor physiological environment is one of the least understood and most important factors in determining the response of solid tumors to cancer therapy. To examine several important characteristics of the tumor physiological environment we have used in situ photon activation-15O decay measurements (perfusion characteristics) and 31P surface coil-NMR spectroscopy (metabolic characteristics) to observe in vivo subcutaneous RIF-1 tumors grown in female C3H/Anf mice. The following correlations between the 15O perfusion characteristics and the 31P NMR metabolic characteristics in individual tumors were observed: a negative correlation between pH, as measured by NMR (pHNMR), and the inorganic phosphate to nucleosides triphosphate peak height ratio (Pi:NTP); for the well-perfused fraction of the tumor there is a positive correlation with both pHNMR and the phosphocreatine to nucleosides triphosphate peak height ratio (PCr:NTP), and a negative correlation with Pi:NTP. These correlations are interpreted as evidence for a direct relationship between the distribution of cellular physiological environments and the tumor metabolic state. Because these physiological characteristics affect tumor response to various therapeutic modalities and both measurements can be made on humans, it is suggested that these techniques may be of prognostic value in the clinical management of human cancer.
肿瘤生理环境是实体瘤对癌症治疗反应中最不为人所了解但又最重要的因素之一。为了研究肿瘤生理环境的几个重要特征,我们使用原位光子激活 - 15O 衰变测量(灌注特征)和31P表面线圈核磁共振波谱(代谢特征)来观察雌性C3H/Anf小鼠体内生长的皮下RIF - 1肿瘤。在各个肿瘤中观察到了15O灌注特征与31P核磁共振代谢特征之间的以下相关性:通过核磁共振测量的pH值(pHNMR)与无机磷酸盐与三磷酸核苷峰高比(Pi:NTP)呈负相关;对于肿瘤的灌注良好部分,与pHNMR以及磷酸肌酸与三磷酸核苷峰高比(PCr:NTP)均呈正相关,与Pi:NTP呈负相关。这些相关性被解释为细胞生理环境分布与肿瘤代谢状态之间存在直接关系的证据。由于这些生理特征会影响肿瘤对各种治疗方式的反应,并且这两种测量都可以在人体上进行,因此有人认为这些技术可能在人类癌症的临床管理中具有预后价值。