Kelleher D K, Thews O, Scherz A, Salomon Y, Vaupel P
Institute of Physiology and Pathophysiology, Johannes Gutenberg-University Mainz, Duesbergweg 6 D-55099 Mainz, Germany.
Br J Cancer. 2003 Dec 15;89(12):2333-9. doi: 10.1038/sj.bjc.6601457.
The effects of combined and simultaneously applied localised 43 degrees C hyperthermia (HT) and an antivascular bacteriochlorophyll-serine-based photodynamic therapy (Bchl-ser-PDT) on tumour growth and several microenvironmental parameters were examined. Rats bearing DS-sarcomas were allocated to treatment groups: (i) sham-treatment (control), (ii) Bchl-ser-PDT (20 mg kg(-1) i.v.), (iii) localised HT, (iv) Bchl-ser-PDT+HT. The light source used was an infrared-A irradiator, which, by use of appropriate filters, delivered the different ranges of wavelengths required. Following treatment, tumour volume was monitored. The greatest tumour growth inhibition was seen with Bchl-ser-PDT+HT, and subsequent experiments identified the pathophysiological basis for this effect. Red blood cell flux in tumour microvessels declined rapidly upon Bchl-ser-PDT+HT, reaching approximately 10% of initial values by the end of treatment. Similarly, tumour oxygenation worsened, reaching almost anoxic levels by the end of the treatment period. Assessment of metabolic parameters showed a pronounced increase in lactate levels and a decrease in ATP concentrations after combined treatment. The results presented suggest that vascular collapse and flow stasis resulting in a deterioration of tumour oxygenation and a switch from oxidative to glycolytic glucose turnover are key elements in the tumour eradication seen with this novel approach in which an antivascular PDT and HT are combined and simultaneously applied.
研究了联合并同时应用局部43摄氏度高温(HT)和基于细菌叶绿素-丝氨酸的抗血管光动力疗法(Bchl-ser-PDT)对肿瘤生长及若干微环境参数的影响。将患有DS肉瘤的大鼠分配至治疗组:(i)假治疗(对照),(ii)Bchl-ser-PDT(20 mg kg⁻¹静脉注射),(iii)局部HT,(iv)Bchl-ser-PDT+HT。所用光源为红外-A辐射器,通过使用合适的滤光片,可发出所需的不同波长范围。治疗后,监测肿瘤体积。Bchl-ser-PDT+HT组观察到最大程度的肿瘤生长抑制,后续实验确定了这种效应的病理生理基础。Bchl-ser-PDT+HT治疗后,肿瘤微血管中的红细胞通量迅速下降,治疗结束时降至初始值的约10%。同样,肿瘤氧合恶化,治疗期末几乎达到缺氧水平。代谢参数评估显示,联合治疗后乳酸水平显著升高,ATP浓度降低。所呈现的结果表明,血管塌陷和血流停滞导致肿瘤氧合恶化,以及葡萄糖代谢从氧化型转变为糖酵解型,是这种将抗血管光动力疗法和高温联合并同时应用的新方法实现肿瘤根除的关键因素。