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Optical Imaging Photodynamic Therapy and Optically-Triggered Combination Treatments

机译:光学成像光动力疗法和光触发组合治疗

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摘要

Optical imaging is becoming increasingly promising for real-time image-guided resections and combined with photodynamic therapy (PDT), a photochemistry-based treatment modality, optical approaches can be intrinsically “theranostic”. Challenges in PDT include precise light delivery, dosimetry and photosensitizer tumor localization to establish tumor selectivity, and like all other modalities, incomplete treatment and subsequent activation of molecular escape pathways are often attributable to tumor heterogeneity. Key advances in molecular imaging, target-activatable photosensitizers and optically active nanoparticles that provide both cytotoxicity and a drug release mechanism, have opened exciting avenues to meet these challenges. The focus of the review is optical imaging in the context of PDT but the general principles presented are applicable to many of the conventional approaches to cancer management. We highlight the role of optical imaging in providing structural, functional and molecular information regarding photodynamic mechanisms of action, thereby advancing PDT and PDT-based combination therapies of cancer. These advances represent a PDT renaissance with increasing applications of clinical PDT as a frontline cancer therapy working in concert with fluorescence-guided surgery, chemotherapy and radiation.
机译:对于实时图像引导的切除术,光学成像正变得越来越有希望,并且与基于光化学的治疗方式光动力疗法(PDT)相结合,光学方法本质上是“热疗”的。 PDT面临的挑战包括精确的光传输,剂量测定和光敏剂肿瘤定位以建立肿瘤选择性,并且像所有其他方式一样,治疗不彻底以及随后分子逃逸途径的激活通常归因于肿瘤异质性。分子成像,可激活靶标的光敏剂和提供细胞毒性和药物释放机制的光学活性纳米颗粒的关键进展,为应对这些挑战开辟了令人兴奋的途径。审查的重点是在PDT背景下进行光学成像,但提出的一般原则适用于许多传统的癌症治疗方法。我们强调了光学成像在提供有关光动力机制的结构,功能和分子信息方面的作用,从而推进了PDT和基于PDT的癌症联合治疗。这些进展代表了PDT的复兴,随着临床PDT作为与荧光引导的手术,化学疗法和放射疗法协同工作的一线癌症疗法的应用越来越多。

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