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DNA polymer films used as drug delivery systems to early-stage diagnose and treatment of breast cancer using 3D tumor spheroids as a model

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Author(s):
Jayme, Cristiano Ceron ; Pires, Ananda Ferreira ; Fernandes, Daniela Silvestrini ; Bi, Hong ; Tedesco, Antonio Claudio
Total Authors: 5
Document type: Journal article
Source: Photodiagnosis and Photodynamic Therapy; v. 37, p. 12-pg., 2022-03-01.
Abstract

The present study examines the design of DNA polymeric films (DNA-PFs) associated with aluminum chloride phthalocyanine (AlClPc) (DNA-PFs-AlClPc), as a promising drug delivery system (DDS), applicable for breast cancer treatment and early-stage diagnosis using photodynamic therapy (PDT). This study starts evaluating (MCF7) as a model for breast cancer cell behavior associated with DNA-PFs. Analyses of the morphological behaviors, biochemical reaction, and MCF7 cell adhesion profile on DNA-PFs were evaluated. SEM and AFM analysis allowed the morphological characterization of the DNA-PFs. Cell viability and cell cycle kinetics studies indicate highly biocompatible material capable of anchoring MCF7 cells, allowing the attachment and support of cell in the same structure where the insertion of AlClPc (DNA-PFs-AlClPc). The application of visible light photoactivation based on classical PDT protocol over the DNA-PFs-AlClPc showed a reduction in cell viability with increased cell death proportional to the fluency energy range from 600, 900, and 1800 mJ cm(-2). The 3D organoid system mimics the tumor microenvironment which was precisely observed in human breast cancer in early-stage progression in the body. The results observed indicate that the viability was reduced by more than 80% in monolayer culture and around 50% in the 3D organoid cell culture at the highest energy fluency (1800 mJ cm(-2)). With low energy fluency (100 mJ cm(-2),), the DNA-PFs-AlClPc did not show a cytotoxic effect on MCF7 cells, enabling the potential for photodiagnosis of early-stage human breast cancer detection in the initial stage of progression. (AU)

FAPESP's process: 18/10237-1 - Development and characterization of scaffolds based on PCL-PGE and DNA applied to tissue engineering for bone regeneration
Grantee:Cristiano Ceron Jayme
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 13/50181-1 - Use of drugs containing nanocarriers with photosensitizers and/or other active compounds applied to cell therapy and treatment of central nervous system disorders
Grantee:Antonio Claudio Tedesco
Support Opportunities: Research Projects - Thematic Grants