Mattiello J, Evelhoch J L, Brown E, Schaap A P, Hetzel F W
Wayne State University, School of Medicine, Department of Internal Medicine, Detroit, MI 48201.
NMR Biomed. 1990 Apr;3(2):64-70. doi: 10.1002/nbm.1940030204.
Photodynamic therapy utilizes the tumor localizing drug dihematoporphyrin ether and red laser light to produce both direct tumor cell destruction via damage to mitochondrial membranes, and also indirect cell kill via destruction of the tumor vasculature. As a first step towards examining the mechanistic relationship between metabolic and vascular effects of photodynamic therapy, murine RIF-1 tumors were treated with a subcurative treatment (500 J/cm2). Tumor metabolic status was monitored using in vivo 31P NMR before, during and after the treatment. The tumor blood flow immediately before and after treatment was measured by direct intratumor injection of D2O saline and observation of the tracer signal clearance from the tumor via 2H NMR. During the photodynamic therapy treatment, significant decreases were observed for the nucleoside triphosphate concentrations, tumor pH and tumor blood flow, while inorganic phosphate concentrations increased. Animals treated with laser light alone and those not given any treatment, demonstrated no significant changes in tumor metabolic status, tumor pH or tumor blood flow. Further studies are required to determine whether tumor blood flow or metabolic status is affected first.
光动力疗法利用肿瘤定位药物二血卟啉醚和红色激光,通过损伤线粒体膜直接破坏肿瘤细胞,同时通过破坏肿瘤血管间接杀死细胞。作为研究光动力疗法代谢和血管效应之间机制关系的第一步,用亚治愈剂量(500 J/cm²)治疗小鼠RIF-1肿瘤。在治疗前、治疗期间和治疗后,使用体内³¹P NMR监测肿瘤代谢状态。通过直接向肿瘤内注射重水盐水并通过²H NMR观察示踪剂信号从肿瘤中的清除情况,测量治疗前后的肿瘤血流。在光动力疗法治疗期间,观察到核苷三磷酸浓度、肿瘤pH值和肿瘤血流显著降低,而无机磷酸盐浓度增加。仅接受激光治疗的动物和未接受任何治疗的动物,肿瘤代谢状态、肿瘤pH值或肿瘤血流均无显著变化。需要进一步研究以确定肿瘤血流或代谢状态是否首先受到影响。