DNA duplex-based photodynamic molecular Beacon for targeted killing of retinoblastoma cell

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Abstract

PURPOSES. Retinoblastoma (RB) is the most common primary intraocular malignancy of infancy. An alternative RB treatment protocol is proposed and tested. It is based on a photodynamic therapy (PDT) with a designed molecular beacon that specifically targets the murine double minute x (MDMX) high-expressed RB cells. METHODS. A MDMX mRNA triggered photodynamic molecular beacon is designed by binding a photosensitizer molecule (pyropheophorbide-a, or PPa) and a black hole quencher-3 (BHQ3) through a complementary oligonucleotide sequence. Cells with and without MDMX highexpression are incubated with the beacon and then irradiated with a laser. The fluorescence and reactive oxygen species are detected in solution to verify the specific activation of PPa by the perfectly matched DNA targets. The cell viabilities are evaluated with CCK-8 and flow cytometry assay. RESULTS. The fluorescence and photo-cytoxicity of PPa is recovered and significantly higher in the MDMX high-expressed Y79 and WERI-Rb1 cells, compared to that with the MDMX lowexpressed cells. CONCLUSIONS. The synthesized beacon exhibits high PDT efficiency toward MDMX highexpressed RB cells. The data suggest that the designed beacon may provide a potential alternative for RB therapy and secures the ground for future investigation.

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Wei, Y., Lu, C., Chen, Q., & Xing, D. (2016). DNA duplex-based photodynamic molecular Beacon for targeted killing of retinoblastoma cell. Investigative Ophthalmology and Visual Science, 57(14), 6011–6019. https://doi.org/10.1167/iovs.15-18723

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