Bovine Lactoferrin Induces Cell Death in Human Prostate Cancer Cells

Author:

Rocha Vanessa P.12ORCID,Campos Samir P. C.3ORCID,Barros Caroline A.14ORCID,Trindade Pablo25ORCID,Souza Leticia R. Q.5,Silva Triciana G.6,Gimba Etel R. P.78ORCID,Teodoro Anderson J.9ORCID,Gonçalves Rafael B.12ORCID

Affiliation:

1. Department of Biochemistry, Biomedical Institute, UNIRIO, 20211-040, Brazil

2. Cell and Molecular Biology Graduate Program, UNIRIO, 20211-040, Brazil

3. Medical Biochemistry Institute, UFRJ, 21941-590, Brazil

4. Multicentre Graduate Program in Biochemistry and Molecular Biology, IFRJ, 20270-021, Brazil

5. D’Or Institute for Research and Education-IDOR, 22281-100, Brazil

6. National Center for Structural Biology and Bioimaging, CENABIO, UFRJ, 21941-902, Brazil

7. Natural Science Department, UFF, 28895-532, Brazil

8. Cellular and Molecular Oncology Program, National Institute of Cancer (INCA), 20231-050, Brazil

9. Department of Nutrition and Dietetics, UFF, 22290-250, Brazil

Abstract

Bovine lactoferrin (bLf) is a multifunctional protein widely associated with anticancer activity. Prostate cancer is the second most frequent type of cancer worldwide. This study was aimed at evaluating the influence of bLf on cell viability, cell cycle progression, reactive oxygen species (ROS) production, and rate of apoptosis in the human prostate cancer cell line (DU-145). MTT assay and trypan blue exclusion were used to analyze cell viability. Morphological changes were analyzed through optical microscopy after 24 h and 48 h of bLf treatment. FITC-bLf internalization and cellular damage were observed within 24 h by confocal fluorescence microscopy. Cell cycle analyses were performed by flow cytometry and propidium iodide. For caspases 3/7 activation and reactive oxygen species production evaluation, cells were live-imaged using the high-throughput system Operetta. The cell viability assays demonstrated that bLf induces cell death and morphological changes after 24 h and 48 h of treatment compared to control on DU-145 cells. The bLf internalization was detected in DU-145 cells, G1-phase arrest of the cell cycle, caspase 3/7 activation, and increased oxidative stress on bLf-treated cells. Our data support that bLf has an important anticancer activity, thus offering new perspectives in preventing and treating prostate cancer.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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