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Dual Role of Subphthalocyanine Dyes for Optical Imaging and Therapy of Cancer

机译:酞菁染料在光学成像和癌症治疗中的双重作用

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The family of subphthalocyanine (SubPc) macrocycles represents an interesting class of nonplanar aromatic dyes with promising features for energy conversion and optoelectronics. The use of SubPcs in biomedical research is, on the contrary, clearly underexplored, despite their documented high fluorescence and singlet oxygen quantum yields. Herein, for the first time it is shown that the interaction of these chromophores with light can also be useful for theranostic applications, which in the case of SubPcs comprise optical imaging and photodynamic therapy (PDT). In particular, the article evaluates, through a complete in vitro study, the dual-role capacity of a novel series of SubPcs as fluorescent probes and PDT agents, where the macrocycle axial substitution determines their biological activity. The 2D and 3D imaging of various cancer cell lines (i.e., HeLa, SCC-13, and A431) has revealed, for example, different subcellular localization of the studied photosensitizers (PS), depending on the axial substituent they bear. These results also show excellent photocytotoxicities, which are affected by the PS localization. With the best dual-role PS, preliminary in vivo studies have demonstrated their therapeutic potential. Overall, the present paper sets the bases for an unprecedented biomedical use of these well-known optoelectronic materials.
机译:亚酞菁(SubPc)大环族代表一类有趣的非平面芳香族染料,具有用于能量转换和光电的有前途的功能。相反,尽管SubPcs在生物医学研究中的用途已被证明是荧光和单线态氧量子产率很高,但仍未充分开发。在此,首次显示这些生色团与光的相互作用也可用于治疗诊断应用,在SubPcs的情况下,其包括光学成像和光动力疗法(PDT)。特别是,该文章通过完整的体外研究评估了一系列新型SubPcs作为荧光探针和PDT试剂的双重作用,其中大环轴向取代决定了它们的生物学活性。各种癌细胞系(即HeLa,SCC-13和A431)的2D和3D成像显示,例如,所研究的光敏剂(PS)的亚细胞定位不同,具体取决于它们所带有的轴向取代基。这些结果还显示出优异的光细胞毒性,受PS定位的影响。利用最好的双作用PS,初步的体内研究证明了其治疗潜力。总体而言,本文为这些著名的光电材料的空前生物医学应用奠定了基础。

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