Synergic Influence of Parameters Involved in the Polymeric Nanoparticle Preparation on the Efficacy of Photodynamic Therapy

Barbara Silva Figueiredo, Julyana Noval de Souza Ferreira, Vannyla Viktória Viana Vasconcelos, P. Souza, Rafaela Vergna De Angeli, A. R. Silva
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引用次数: 1

Abstract

The challenge was always great for lipophilic photosensitizer use in the photodynamic therapy (PDT) for treatment of internal body diseases. Photosensitizer metabolism in liver, incompatibility of the molecules in the gastric acid, aggregation in the bloodstream, opsonization of molecules and phagocyting process hamper the application of the free lipophilic photosensitizer in disease treatment using PDT. This problem has been partially resolved using the drug delivery system to encapsulate the photosensitizer. Many studies have been reported using polymeric nanoparticles to encapsulate the lipophilic photosensitizer showing excellent results for PDT, but few nanoparticulate formulations are available at the pharmacies. The absence of deep knowledge about the influence of synergic effect of parameters used in the nanoparticle preparation on its properties, the photobleaching process of encapsulated photosensitizer and the molecule aggregation into the nanoparticle can decrease the photodynamic efficacy for the lipophilic photosensitizer. Our research group has studied the influence of many parameters on the nanoparticulate properties of several encapsulated phthalocyanines and porphyrin using factorial design, evaluating the free and encapsulated compound aggregation, efficacy to reduce the viability of cancer cells, the photooxidation of the biomolecules and the influence of photobleaching. This work shows the most important results to be consider in the optimization of the polymeric nanoparticle.
聚合物纳米颗粒制备过程中相关参数对光动力治疗效果的协同影响
在光动力疗法(PDT)中使用亲脂性光敏剂治疗体内疾病一直是一个巨大的挑战。光敏剂在肝脏中的代谢、分子在胃酸中的不相容、在血液中的聚集、分子的调理和吞噬过程阻碍了游离亲脂性光敏剂在PDT治疗疾病中的应用。这个问题已经部分地解决了使用药物输送系统包封光敏剂。许多研究报告使用聚合纳米颗粒包封亲脂性光敏剂,显示出良好的PDT效果,但很少有纳米颗粒配方在药店可用。由于对纳米颗粒制备过程中所使用的参数协同效应对其性能、包封光敏剂的光漂白过程以及分子聚集到纳米颗粒中的影响缺乏深入的了解,会降低亲脂性光敏剂的光动力功效。课程组采用因子设计研究了多种参数对几种包封的酞菁和卟啉纳米粒性能的影响,评价了包封后的游离和包封化合物的聚集、降低癌细胞活力的功效、生物分子的光氧化以及光漂白的影响。这项工作显示了优化聚合物纳米颗粒时需要考虑的最重要的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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