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Point-wise laser effect on NIH/3T3 cells impregnated with photosensitizer-loaded porous calcium carbonate microparticles

机译:点状激光对浸渍有光敏剂的多孔碳酸钙微粒浸渍的NIH / 3T3细胞的影响

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The development of novel carriers for the targeted photosensitizer delivery is a significant problem in a modern photodynamic therapy. Such a nanomedicine research is aimed to reduce the sides effects connected with insufficient selectivity of action for the applied dye. Porous calcium carbonate (CaCO) particles were proposed as matrices for the photosensitizer “Photosens” encapsulation. Cellular uptake and phototoxicity of the carriers were investigated using NIH/3T3 cells. The local concentration of the dye inside of the cell was increased by the usage of Photosens-loaded CaCO particles in comparison with the “free” Photosens solution, due to the fact, that the particles trapped by cells provided the dye localization inside. Cellular experiments demonstrated high penetration of containers into the cells within 24h. The point-wise laser (670 nm, 3 mW, 5 min) effect on cells was investigated by confocal laser scanning microscopy. Significant phototoxic effect was shown for Photosens-loaded CaCO particles allowing controlled consequential cell destroying by the laser. The demonstrated effect hold out the prospect for the application of proposed system in anticancer PDT.
机译:用于靶向光敏剂递送的新型载体的开发是现代光动力疗法中的重要问题。此类纳米医学研究旨在减少与所用染料的作用选择性不足有关的副作用。多孔碳酸钙(CaCO)颗粒被提议作为光敏剂“光敏”封装的基质。使用NIH / 3T3细胞研究了载体的细胞摄取和光毒性。与“游离” Photosens溶液相比,通过使用装载有光敏剂的CaCO颗粒,可以增加细胞内染料的局部浓度,原因是被细胞捕获的颗粒在内部提供了染料定位。细胞实验表明,容器在24小时内可高度渗透到细胞中。通过共聚焦激光扫描显微镜研究了点状激光(670 nm,3 mW,5分钟)对细胞的影响。对于装载有光敏剂的CaCO颗粒,显示出显着的光毒性作用,从而可以控制激光对细胞的破坏作用。证明的效果为该系统在抗癌PDT中的应用提供了前景。

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