Department of Urology, Kochi Medical School, Kohasu, Oko, Nankoku, Kochi, 783-8505, Japan.
Int J Clin Oncol. 2021 Jan;26(1):18-25. doi: 10.1007/s10147-020-01704-y. Epub 2020 May 26.
Photodynamic technology using light-sensitive and fluorescent substances has an important role in an accurate diagnosis for a variety of malignancies, including bladder cancer and prostate cancer. Light-sensitive and fluorescent substances accumulate specifically in tumor cells compared to normal tissue, and by light irradiation and excitation at each specific wavelength, tumor lesion, blood flow, lymph node and so on show fluorescence. 5-Aminolevulinic acid (ALA) is converted to protoporphyrin IX (PpIX) into mitochondria. PpIX is excited by blue light, red fluorescence is emitted in the mitochondria. This phenomenon is the mechanism of ALA-mediated photodynamic diagnosis (ALA-PDD). ALA-PDD has made it possible to visualize smaller lesions and flat lesions that were previously difficult to visualize by endoscope using a white-light source. So accurate diagnosis and complete resection become possible during operation. The accumulation of PpIX in the mitochondria also induces direct mitochondrial damage and subsequent cell death by red and green light. This biological reaction is the ALA-mediate photodynamic therapy (ALA-PDT). ALA-PDT has been developed as a modality for minimum invasive cancer treatment that utilizes low-energy light and photosensitizer. Vascular-activated photosensitizer induces rapid tumor ablation by PDT involving direct tumor cell killing as well as damage to the exposed microvasculature. We summarize the clinical outcomes of PDD and PDT for urothelial carcinoma and prostate cancer.
光动力技术利用光敏感和荧光物质,在膀胱癌和前列腺癌等多种恶性肿瘤的准确诊断中具有重要作用。与正常组织相比,光敏感和荧光物质特异性地在肿瘤细胞中积累,通过在每个特定波长的光照射和激发,肿瘤病变、血流、淋巴结等会发出荧光。5-氨基酮戊酸(ALA)转化为原卟啉 IX(PpIX)进入线粒体。PpIX 被蓝光激发,线粒体发出红色荧光。这一现象是 ALA 介导的光动力诊断(ALA-PDD)的机制。ALA-PDD 使得使用白光光源通过内窥镜可视化以前难以可视化的更小的病变和平坦病变成为可能。因此,在手术过程中可以实现更准确的诊断和完整切除。PpIX 在线粒体中的积累也通过红光和绿光诱导直接的线粒体损伤和随后的细胞死亡。这种生物反应是 ALA 介导的光动力治疗(ALA-PDT)。ALA-PDT 已作为一种利用低能量光和光敏剂的微创癌症治疗方式得到发展。血管激活的光敏剂通过 PDT 诱导快速肿瘤消融,包括直接杀死肿瘤细胞以及暴露的微血管损伤。我们总结了 PDD 和 PDT 在尿路上皮癌和前列腺癌中的临床结果。