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Imaging Enabled Platforms for Development of Therapeutics

机译:成像支持治疗方法的平台

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Advances in imaging and spectroscopic technologies have enabled the optimization of many therapeutic modalities in cancer and noncancer pathologies either by earlier disease detection or by allowing therapy monitoring. Amongst the therapeutic options benefiting from developments in imaging technologies, photodynamic therapy (PDT) is exceptional. PDT is a photochemistry-based therapeutic approach where a light-sensitive molecule (photosensitizer) is activated with light of appropriate energy (wavelength) to produce reactive molecular species such as free radicals and singlet oxygen. These molecular entities then react with biological targets such as DNA, membranes and other cellular components to impair their function and lead to eventual cell and tissue death. Development of PDT-based imaging also provides a platform for rapid screening of new therapeutics in novel in vitro models prior to expensive and labor-intensive animal studies. In this study we demonstrate how an imaging platform can be used for strategizing a novel combination treatment strategy for multifocal ovarian cancer. Using an in vitro 3D model for micrometastatic ovarian cancer in conjunction with quantitative imaging we examine dose and scheduling strategies for PDT in combination with carboplatin, a chemotherapeutic agent presently in clinical use for management of this deadly form of cancer.
机译:成像和光谱技术的进步使得能够通过早期的疾病检测或通过允许治疗监测来优化癌症和非癌症病理的许多治疗方式。在从成像技术的发展中受益的治疗选择中,光动力治疗(PDT)是特殊的。 PDT是一种基于光化学的治疗方法,其中光敏分子(光敏剂)是用适当的能量(波长)的光激活,以产生反应性分子物种,如自由基和单态氧。然后,这些分子实体与DNA,膜和其他细胞组分如DNA,膜和其他细胞组分反应,以损害其功能并导致最终的细胞和组织死亡。基于PDT的成像的开发还提供了一种在昂贵和劳动密集型动物研究之前快速筛选新型治疗方法的平台。在这项研究中,我们展示了成像平台如何用于策略多焦卵巢癌的新型组合治疗策略。使用对微转移卵巢癌的体外3D模型结合定量成像,我们将PDT与Carboplatin组合的剂量和调度策略,目前在临床用途中的临床用途,用于管理这种致命形式的癌症。

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