Methylene blue photodynamic therapy induces selective and massive cell death in human breast cancer cells

Фотодинамическая терапия метиленовым синим вызывает селективную и массивную гибель клеток рака молочной железы человека
Ancély Ferreira dos Santos, Letícia Ferreira Terra, Rosangela A.M. Wailemann, Talita C. Oliveira, Vinícius M. Gomes, Marcela Franco Mineiro, Flávia Carla Meotti, Alexandre Bruni‐Cardoso, Maurı́cio S. Baptista, Letícia Labriola
2017-03-15

3D breast tissue cultureautophagy and apoptosisbreast cancer cellsmethylene blue photodynamic therapyselective tumor cell death
BACKGROUND: Breast cancer is the main cause of mortality among women. The disease presents high recurrence mainly due to incomplete efficacy of primary treatment in killing all cancer cells. Photodynamic therapy (PDT), an approach that causes tissue destruction by visible light in the presence of a photosensitizer (Ps) and oxygen, appears as a promising alternative therapy that could be used adjunct to chemotherapy and surgery for curing cancer. However, the efficacy of PDT to treat breast tumours as well as the molecular mechanisms that lead to cell death remain unclear. METHODS: . We used a combination of imaging and biochemistry approaches to assess the involvement of classical autophagic and apoptotic pathways in mediating the cell-deletion induced by MB-PDT. The role of these pathways was investigated using specific inhibitors, activators and gene silencing. RESULTS: We observed that MB-PDT differentially induces massive cell death of tumour cells. Non-malignant cells were significantly more resistant to the therapy compared to malignant cells. Morphological and biochemical analysis of dying cells pointed to alternative mechanisms rather than classical apoptosis. MB-PDT-induced autophagy modulated cell viability depending on the cell model used. However, impairment of one of these pathways did not prevent the fatal destination of MB-PDT treated cells. Additionally, when using a physiological 3D culture model that recapitulates relevant features of normal and tumorous breast tissue morphology, we found that MB-PDT differential action in killing tumour cells was even higher than what was detected in 2D cultures. CONCLUSIONS: Finally, our observations underscore the potential of MB-PDT as a highly efficient strategy which could use as a powerful adjunct therapy to surgery of breast tumours, and possibly other types of tumours, to safely increase the eradication rate of microscopic residual disease and thus minimizing the chance of both local and metastatic recurrence.
1
MB-PDT-induced autophagy influences cell viability in a cell-model-dependent manner, but disrupting autophagy or apoptosis does not prevent cell death.
2
Methylene blue photodynamic therapy (MB-PDT) induces massive, selective death of malignant breast cancer cells while sparing non-malignant cells comparatively.
3
Morphological and biochemical evidence indicates that MB-PDT-associated cell death occurs through mechanisms distinct from classical apoptosis.
4
The findings support MB-PDT as a potential adjunct to breast tumor surgery for eliminating microscopic residual disease and reducing recurrence risk.
5
Tumor-selective MB-PDT activity is stronger in physiologically relevant three-dimensional breast tissue cultures than in two-dimensional cultures.

Human breast cancer cells and non-malignant breast cells treated with methylene blue photodynamic therapy (MB-PDT), including 2D and physiologically relevant 3D breast tissue culture models

The selective and massive cell death induced by MB-PDT, including differential malignant-cell sensitivity and the involvement of autophagic, apoptotic, and alternative cell-death mechanisms

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2017-03-15
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Ancély Ferreira dos Santos
Letícia Ferreira Terra
Rosangela A.M. Wailemann
Talita C. Oliveira
Vinícius M. Gomes
Marcela Franco Mineiro
Flávia Carla Meotti
Alexandre Bruni‐Cardoso
Maurı́cio S. Baptista
Letícia Labriola
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