4.6 Article

An Insight into Symmetrical Cyanine Dyes as Promising Selective Antiproliferative Agents in Caco-2 Colorectal Cancer Cells

Journal

MOLECULES
Volume 27, Issue 18, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27185779

Keywords

cyanine dyes; colorectal cancer; antiproliferative agents; Caco-2 cells; cell cycle arrest

Funding

  1. CICS-UBI [UIDB/00709/2020, UIDP/00709/2020]
  2. Portuguese Foundation for Science and Technology (FCT)/MCTES
  3. FCT [UID/QUI/UI0616/2019, SFRH/BD/148028/2019, SFRH/BD/147645/2019]
  4. FEDER [022161]

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This study synthesized a series of symmetric cyanine dyes and evaluated their potential as anticancer agents. The dyes demonstrated high antiproliferative effects on several cancer cell lines in the absence of light, with one dye derived from benzoxazole showing the most promise. It had a high selectivity index and could arrest the cell cycle.
Cancer remains one of the diseases with the highest worldwide incidence. Several cytotoxic approaches have been used over the years to overcome this public health threat, such as chemotherapy, radiotherapy, and photodynamic therapy (PDT). Cyanine dyes are a class of compounds that have been extensively studied as PDT sensitisers; nevertheless, their antiproliferative potential in the absence of a light source has been scarcely explored. Herein, the synthesis of eighteen symmetric mono-, tri-, and heptamethine cyanine dyes and their evaluation as potential anticancer agents is described. The influences of the heterocyclic nature, counterion, and methine chain length on the antiproliferative effects and selectivities were analysed, and relevant structure-activity relationship data were gathered. The impact of light on the cytotoxic activity of the most promising dye was also assessed and discussed. Most of the monomethine and trimethine cyanine dyes under study demonstrated a high antiproliferative effect on human tumour cell lines of colorectal (Caco-2), breast (MCF-7), and prostate (PC-3) cancer at the initial screening (10 mu M). However, concentration-viability curves showed higher potency and selectivity for the Caco-2 cell line. A monomethine cyanine dye derived from benzoxazole was the most promising compound (IC50 for Caco-2 = 0.67 mu M and a selectivity index of 20.9 for Caco-2 versus normal human dermal fibroblasts (NHDF)) and led to Caco-2 cell cycle arrest at the G0/G1 phase. Complementary in silico studies predicted good intestinal absorption and oral bioavailability for this cyanine dye.

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