Meso-Tetrahydroxyphenylchlorin-Conjugated Gold Nanoparticles as a Tool to Improve Photodynamic Therapy

Elina Haimov, Hana Weitman, Shlomi Polani, Hadas Schori, David Zitoun, Orit Shefi

Research output: Contribution to journalArticlepeer-review

55 Scopus citations

Abstract

Photodynamic therapy (PDT) is a promising therapeutic modality for cancer. However, current protocols using bare drugs suffer from several limitations that impede its beneficial clinical effects. Here, we introduce a new approach for an efficient PDT treatment. It involves conjugating a PDT agent, meso-tetrahydroxyphenylchlorin (mTHPC) photosensitizer, to gold nanoparticles (AuNPs) that serve as carriers for the drug. AuNPs have a number of characteristics that make them highly suitable to function as drug carriers: they are biocompatible, serve as biomarkers, and function as contrast agents in vitro and in vivo. We synthesized AuNPs and covalently conjugated the mTHPC drug molecules through a linker. The resultant functional complex, AuNP-mTHPC, is a stable, soluble compound. SH-SY5Y human neuroblastoma cells were incubated with the complex, showing possible administration of higher doses of drug when conjugated to the AuNPs. Then cells were irradiated with a laser beam at 650 nm to mimic the PDT procedure. Our study shows higher rates of cell death in cells incubated with the AuNP-mTHPC complex compared to the incubation with the free drug. Using the new complex may form the basis for a better PDT strategy for a wide range of cancers.

Original languageEnglish
Pages (from-to)2319-2327
Number of pages9
JournalACS applied materials & interfaces
Volume10
Issue number3
DOIs
StatePublished - 24 Jan 2018

Bibliographical note

Publisher Copyright:
© 2018 American Chemical Society.

Funding

In memory of Professor Benjamin Ehrenberg who was an active faculty member of Bar Ilan University for 35 years. Prof. Ehrenberg has pioneered the field of Photodynamic therapy of cancer. The authors thank Dr. Ayelet Atkins from Bar Ilan Institute of Nanotechnology and Advanced Materials for helping with E-SEM scans. We also thank the Israel Science Foundation for partial support by grant #1786/11.

FundersFunder number
Israel Science Foundation1786/11

    Keywords

    • SH-SY5Y cells
    • nanoparticles
    • photodynamic therapy (PDT)
    • photosensitizer
    • singlet oxygen

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