PhotoGreen Lab, Department of Chemistry, University of Pavia, Pavia, Italy.
Department of Chemistry, Brooklyn College, Brooklyn, NY.
Photochem Photobiol. 2017 Oct;93(5):1139-1153. doi: 10.1111/php.12766. Epub 2017 Jun 13.
This review covers photochemical approaches aimed at supplementing surgical instruments with handheld photodynamic therapy (PDT) instruments. PDT is not widely used in hospitals, because of the laser equipment and expertise needed, and because insurance policies often do not cover the procedure. Accordingly, this review focuses on advances in photochemistry, photophysics, nanotechnology and miniaturization techniques that may likely inspire the use of handheld instruments in PDT. A takeaway point is that the advent of photochemical scalpels or lancets that deliver reactive oxygen species (ROS) on site may better equip medical practitioners and allow for eradication of tumors or infections in general. Specifically, the review is divided into several sections: sensitizer types, multiphoton and plasmonic topics, sensitizer delivery, light delivery, dosimetry, fiber optics and handheld implements in PDT.
本文综述了光化学方法,旨在为手术器械补充手持式光动力治疗(PDT)器械。由于需要激光设备和专业知识,以及保险政策通常不涵盖该程序,因此 PDT 在医院中并未广泛应用。因此,本综述重点介绍了光化学、光物理、纳米技术和小型化技术的进展,这些进展可能会激发手持式仪器在 PDT 中的应用。一个要点是,具有现场递送活性氧(ROS)的光化学手术刀或注射针的出现,可能会使医疗从业者更好地装备,并能够普遍消除肿瘤或感染。具体而言,本综述分为几个部分:敏化剂类型、多光子和等离子体主题、敏化剂传递、光传递、剂量测定、光纤和 PDT 中的手持式器械。