Naphth[1,2- d ]imidazoles Bioactive from β-Lapachone: Fluorescent Probes and Cytotoxic Agents to Cancer Cells.
Victória Laysna Dos Anjos SantosArlan de Assis GonsalvesDélis Galvão GuimarãesSidney Silva SimplicioHelinando Pequeno de OliveiraLara Polyana Silva RamosMarcília Pinheiro da CostaFátima de Cássia Evangelista de OliveiraCláudia do Ó PessoaCleônia Roberta Melo AraújoPublished in: Molecules (Basel, Switzerland) (2023)
Theranostics combines therapeutic and imaging diagnostic techniques that are extremely dependent on the action of imaging agent, transporter of therapeutic molecules, and specific target ligand, in which fluorescent probes can act as diagnostic agents. In particular, naphthoimidazoles are potential bioactive heterocycle compounds to be used in several biomedical applications. With this aim, a group of seven naphth[1,2- d ]imidazole compounds were synthesized from β-lapachone. Their optical properties and their cytotoxic activity against cancer cells and their compounds were evaluated and confirmed promising values for molar absorptivity coefficients (on the order of 10 3 to 10 4 ), intense fluorescence emissions in the blue region, and large Stokes shifts (20-103 nm). Furthermore, the probes were also selective for analyzed cancer cells (leukemic cells (HL-60). The naphth[1,2- d ]imidazoles showed IC 50 between 8.71 and 29.92 μM against HL-60 cells. For HCT-116 cells, values for IC 50 between 21.12 and 62.11 μM were observed. The selective cytotoxicity towards cancer cells and the fluorescence of the synthesized naphth[1,2- d ]imidazoles are promising responses that make possible the application of these components in antitumor theranostic systems.
Keyphrases
- induced apoptosis
- cell cycle arrest
- living cells
- fluorescence imaging
- single molecule
- small molecule
- high resolution
- cell death
- endoplasmic reticulum stress
- photodynamic therapy
- fluorescent probe
- signaling pathway
- pi k akt
- heavy metals
- mass spectrometry
- cell proliferation
- human health
- nucleic acid
- oxide nanoparticles