Caveolin-1 Modulation Increases Efficacy of a Galacto-Conjugated Phthalocyanine in Bladder Cancer Cells Resistant to Photodynamic Therapy

Mol Pharm. 2020 Jun 1;17(6):2145-2154. doi: 10.1021/acs.molpharmaceut.0c00298. Epub 2020 May 12.

Abstract

Photodynamic therapy (PDT) has demonstrated encouraging anticancer therapeutic results, but the current clinically approved photosensitizers (PSs) are not ideal in the treatment of bladder cancer. Conventional PSs have low selectivity to the bladder tumor tissue and induce toxicity or bystander effects on nontumor urothelium. Previous studies demonstrated that the use of galactose-photosensitizer (PS) conjugates is a more selective method of delivering PDT-mediated toxicity due to their ability to recognize carbohydrate-binding domains overexpressed in bladder tumors. Using patient-derived bladder tumor specimens cultured ex vivo and bladder cancer cell lines with different PDT sensitivity, we find that a galactose-phthalocyanine (PcGal16) accumulates in bladder tumors expressing galactose-binding proteins and internalizes through an endocytic process. The endocytosis mechanism is cell line-dependent. In HT-1376 bladder cancer lines resistant to PDT, depletion of caveolin-1-the main structural protein of caveolae structures-increased the amount of sugar-binding proteins, i.e. GLUT1, at the cell membrane resulting in an improved PcGal16 uptake and PDT efficacy. These data show the potential of ex vivo cultures of bladder cancer, that ideally could mimic the original microenvironment, in screening galacto-PDT agents. Additionally, our studies demonstrate that PDT efficacy in bladder cancer depends on the endocytic mechanisms that regulate PS accumulation and internalization in cancer cells.

Keywords: GLUT1; bladder cancer; caveolae; endocytosis; photodynamic therapy.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Blotting, Western
  • Caveolin 1 / genetics
  • Caveolin 1 / metabolism*
  • Cell Line, Tumor
  • Endocytosis / drug effects
  • Female
  • Galectin 1 / genetics
  • Galectin 1 / metabolism
  • Galectin 3 / genetics
  • Galectin 3 / metabolism
  • Glucose Transporter Type 1 / genetics
  • Glucose Transporter Type 1 / metabolism
  • Humans
  • In Vitro Techniques
  • Indoles / chemistry*
  • Indoles / therapeutic use*
  • Isoindoles
  • Male
  • Microscopy, Fluorescence
  • Photochemotherapy / methods*
  • Urinary Bladder Neoplasms / metabolism*
  • Urinary Bladder Neoplasms / therapy*

Substances

  • Caveolin 1
  • Galectin 1
  • Galectin 3
  • Glucose Transporter Type 1
  • Indoles
  • Isoindoles
  • SLC2A1 protein, human
  • phthalocyanine