4.6 Article

Cancer cell spheroids are a better screen for the photodynamic efficiency of glycosylated photosensitizers

Journal

PLOS ONE
Volume 12, Issue 5, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0177737

Keywords

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Funding

  1. QOPNA [FCTUID/QUI/00062/ 2013]
  2. IBILI [FCTUID/NEU/04539/2013]
  3. CQE [FCTUID/QUI/0100/2013]
  4. FEDER
  5. ACIMAGO [12/12]
  6. FCT [SFRH/ BD/85941/2012]
  7. National Science Foundation, United States (NSF) [CHE-1213962, IGERT-0965983]
  8. NSF
  9. City University of New York
  10. National Institute on Minority Health and Health Disparities of the National Institutes of Health [8G12MD007599]
  11. Fundação para a Ciência e a Tecnologia [SFRH/BD/85941/2012] Funding Source: FCT

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Photodynamic Therapy (PDT) relies on the use of non-toxic photosensitizers that are locally and selectively activated by light to induce cell death or apoptosis through reactive oxygen species generation. The conjugation of porphyrinoids with sugars that target cancer is increasingly viewed as an effective way to increase the selectivity of PDT. To date, in vitro PDT efficacy is mostly screened using two-dimensional monolayer cultures. Compared to monolayer cultures, three-dimensional spheroid cultures have unique spatial distributions of nutrients, metabolites, oxygen and signalling molecules; therefore better mimic in vivo conditions. We obtained 0.05 mm(3) spheroids with four different human tumor cell lines (HCT-116, MCF-7, UM-UC-3 and HeLa) with appropriate sizes for screening PDT agents. We observed that detachment from monolayer culture and growth as tumor spheroids was accompanied by changes in glucose metabolism, endogenous ROS levels, galectin-1 and glucose transporter GLUT1 protein levels. We compared the phototoxic responses of a porphyrin conjugated with four glucose molecules (PorGlu(4)) in monolayer and spheroid cultures. The uptake and phototoxicity of PorGlu(4) is highly dependent on the monolayer versus spheroid model used and on the different levels of GLUT1 protein expressed by these in vitro platforms. This study demonstrates that HCT-116, MCF-7, UM-UC-3 and HeLa spheroids afford a more rational platform for the screening of new glycosylated-photosensitizers compared to monolayer cultures of these cancer cells.

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