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Phthalocyanines for Photodynamic Therapy

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© 2020 ECS - The Electrochemical Society
, , Citation Ana Belen Dominguez et al 2020 Meet. Abstr. MA2020-01 946 DOI 10.1149/MA2020-0112946mtgabs

2151-2043/MA2020-01/12/946

Abstract

Photodynamic therapy combines light, molecular oxygen and a PS for the production of reactive oxygen species (ROS), such as singlet oxygen (1O2) and free radicals, leading to oxidative stress and eventual cell death. Phthalocyanines (Pcs) fulfil many of the requirements to be applied as photosensitizers for singlet oxygen generation.1,2 However, a major drawback of these compounds is their low solubility in physiological media. Functionalization of the macrocycle at the peripheral and/or axial positions with appropriate hydrophilic functions provides compounds with an enhanced solubility in water. In this respect, several strategies have been adopted to increase the hydrophilicity of Pcs and make them more bio-compatible, like their functionalization with charged groups,3 aminoacids4 or carbohydrates.5 The introduction of such entities at Pc axial positions reduces the aggregation of the macrocycles in solution, thus improving their 1O2 generation efficiency. For recent work of our group, see reference 1 and articles cited therein.

1Almeida-Marrero V, van de Winckel E, Anaya-Plaza E, Torres T and de la Escosura A. Chem. Soc. Rev., 2018; 47: 7369-7400. 2Dąbrowski JM, Pucelik B, Regiel-Futyra A, Brindell M, Kyzioł A, Stochel G, Macyk W and Arnaut LG. Coord. Chem. Rev., 2016; 325: 67-101. 3Setaro F, Ruiz-González R, Nonell S, Hahn U and Torres T. J. Inorg. Biochem., 2014; 136: 170-176. 4Chen Z, Zhou S, Chen J, Deng Y, Luo Z, Chen H, Hamblin MR, and Huang M. ChemMedChem, 2010; 5: 890-898. 5Alvarez-Mico X, Calvete MJF, Hanack M, Ziegler T. Tetrahedron Lett., 2006; 47: 3283-3286.

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10.1149/MA2020-0112946mtgabs