TiO2-ZnPc nanoparticles functionalized with folic acid as a target photosensitizer for photodynamic therapy against glioblastoma cells

光敏剂 光动力疗法 材料科学 胶质母细胞瘤 叶酸 纳米颗粒 癌症研究 光化学 纳米技术 医学 有机化学 内科学 化学
作者
Gustavo Jardón-Guadarrama,Ma. Elena Manríquez-Ramírez,Citlali Ekaterina Rodríguez-Pérez,Araceli Dı́az-Ruiz,María de los Ángeles Martínez-Cárdenas,Alfonso Mata-Bermúdez,Camilo Rı́os,Emma Ortiz-Islas
出处
期刊:Journal of Materials Science: Materials in Medicine [Springer Science+Business Media]
卷期号:35 (1): 51-51 被引量:11
标识
DOI:10.1007/s10856-024-06823-w
摘要

The use of TiO2 as a photosensitizer in photodynamic therapy is limited due to TiO2 generates reactive oxygen species only under UV irradiation. The TiO2 surface has been modified with different functional groups to achieve activation at longer wavelengths (visible light). This work reports the synthesis, characterization, and biological toxicity assay of TiO2 nanoparticles functionalized with folic acid and combined with a zinc phthalocyanine to obtain a nano-photosensitizer for its application in photodynamic therapy for glioblastoma cancer treatment. The nano-photosensitizer was prepared using the sol-gel method. Folic acid and zinc phthalocyanine were added during the hydrolysis and condensation of titanium butoxide, which was the TiO2 precursor. The samples obtained were characterized by several microscopy and spectroscopy techniques. An in vitro toxicity test was performed using the MTT assay and the C6 cellular line. The results of the characterization showed that the structure of the nanoparticles corresponds mainly to the anatase phase. Successful functionalization with folic acid and an excellent combination with phthalocyanine was also achieved. Both folic acid-functionalized TiO2 and phthalocyanine-functionalized TiO2 had no cytotoxic effect on C6 cells (even at high concentrations) in comparison to Cis-Pt, which was very toxic to C6 cells. The materials behaved similarly to the control (untreated cells). The cell viability and light microscopy images suggest that both materials could be considered biocompatible and mildly phototoxic in these cells when activated by light.
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