首页> 外文会议>Optical Methods for Tumor Treatment and Detection: Mechanisms and Techniques in Photodynamic Therapy XIV; Progress in Biomedical Optics and Imaging; vol.6 no.4 >Techniques for Delivery and Monitoring of TOOKAD (WST09)-Mediated Photodynamic Therapy of the Prostate: Clinical Experience and Practicalities
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Techniques for Delivery and Monitoring of TOOKAD (WST09)-Mediated Photodynamic Therapy of the Prostate: Clinical Experience and Practicalities

机译:TOOKAD(WST09)介导的前列腺光动力疗法的递送和监测技术:临床经验和实用性

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Photodynamic therapy of solid organs requires sufficient PDT dose throughout the target tissue while minimizing the dose to proximal normal structures. This requires treatment planning for position and power of the multiple delivery channels, complemented by on-line monitoring during treatment of light delivery, drug concentration and oxygen levels. We describe our experience in implementing this approach in Phase Ⅰ/Ⅱ clinical trials of the Pd-bacteriophephorbide photosensitizer TOOKAD (WST09)-mediated PDT of recurrent prostate cancer following radiation failure. We present several techniques for delivery and monitoring of photodynamic therapy, including beam splitters for light delivery to multiple delivery fibers, multi-channel light dosimetry devices for monitoring the fluence rate in the prostate and surrounding organs, methods of measuring the tissue optical properties in situ, and optical spectroscopy for monitoring drug pharmacokinetics of TOOKAD in whole blood samples and in situ in the prostate. Since TOOKAD is a vascular-targeted agent, the design and implementation of the techniques are different than for cellular-targeted agents. Further development of these delivery and monitoring techniques will permit full on-line monitoring of the treatment that will enable real-time, patient-specific and optimized delivery of PDT.
机译:实体器官的光动力疗法需要在整个目标组织中施加足够的PDT剂量,同时将对近端正常结构的剂量降至最低。这需要对多个输送通道的位置和功率进行治疗计划,并在光输送,药物浓度和氧气水平的治疗过程中进行在线监测。我们在Pd-细菌弗洛比肽光敏剂TOOKAD(WST09)介导的复发性前列腺癌的PDT的Ⅰ/Ⅱ期临床试验中描述了在实施这种方法时的经验,这些患者在放射衰竭后复发。我们介绍了几种用于光动力疗法的输送和监测的技术,包括用于将光输送到多根输送光纤的分束器,用于监测前列腺和周围器官的注量率的多通道光剂量测定设备,用于原位测量组织光学特性的方法,以及用于监测TOOKAD在全血样品中和前列腺中原位的药物药代动力学的光谱。由于TOOKAD是一种血管靶向药物,因此该技术的设计和实施与细胞靶向药物不同。这些输送和监测技术的进一步发展将允许对治疗进行全面的在线监测,从而实现PDT的实时,针对患者的优化输送。

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