New CeF3–ZnO nanocomposites for self-lighted photodynamic therapy that block adenocarcinoma cell life cycle

Author:

Orsi Davide1,Rimoldi Tiziano1,Pinelli Silvana2,Alinovi Rossella2,Goldoni Matteo2,Benecchi Giovanna3,Rossi Francesca4,Cristofolini Luigi1

Affiliation:

1. Department of Mathematical, Physical & Computer Sciences, University of Parma, 43124 Parma, Italy

2. Department of Medicine & Surgery, University of Parma, 43126 Parma, Italy

3. Servizio di Fisica Sanitaria, Azienda Ospedaliero-Universitaria di Parma, 43126 Parma, Italy

4. Consiglio Nazionale Ricerche, Istituto dei Materiali per l'Elettronica ed il Magnetismo IMEM-CNR, 43124 Parma, Italy

Abstract

Aim: To synthesize and characterize the performances of a new all-inorganic nanocomposite (NC) for self-lighted photodynamic therapy against cancer. This NC could allow radiotherapy doses to be reduced, as it enhances the effects of x-rays, generating cytotoxic reactive oxygen species as singlet oxygen. Materials & methods: The proposed NC combines CeF3 and ZnO; CeF3 absorbs 6-MeV x-rays and activates the photosensitizer ZnO. Characterization is performed by transmission electron microscopy (TEM), scanning-TEM, energy dispersive x-ray spectrometry and fluorescence spectroscopies. Efficiency on human adenocarcinoma cells (A549) was tested by fluorescence spectroscopy, cytofluorimetry, viability assays, clonogenic assays, cell cycle progression assays. Results: NC blocks A549's cell cycle before mitosis in the dark. Upon low-dose x-ray irradiation (2 Gy), reactive oxygen species/singlet oxygen are generated, further blocking cell cycle and reducing viability by 18% with respect to the sum of x-ray irradiation and NC dark activity. Conclusion: These novel NCs promise to reduce doses in radiotherapy, helping to reduce unwanted side effects.

Publisher

Future Medicine Ltd

Subject

Development,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

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