Coupling Chlorin e6 to the surface of Nanoscale Gas Vesicles strongly enhances their intracellular delivery and photodynamic killing of cancer cells

Author:

Fernando Ann,Gariépy Jean

Abstract

AbstractProtein-based nanobubbles such as halophilic archaeabacterial gas vesicles (GVs) represent a new class of stable, homogeneous nanoparticles with acoustic properties that allow them to be visualized by ultrasound (US) waves. To design GVs as theranostic agents, we modified them to respond to light, with a view to locally generate reactive oxygen species that can kill cancer cells. Specifically, up to 60,000 photoreactive chlorin e6 (Ce6) molecules were chemically attached to lysine ε-amino groups present on the surface of each purified Halobacterium sp. NRC-1 GV. The resulting fluorescent NRC-1 Ce6-GVs have dimensions comparable to that of native GVs and were efficiently taken up by human breast [MCF-7] and human hypopharyngeal [FaDu-GFP] cancer cells as monitored by confocal microscopy and flow cytometry. When exposed to light, internalized Ce6-GVs were 200-fold more effective on a molar basis than free Ce6 at killing cells. These results demonstrate the potential of Ce6-GVs as novel and promising nanomaterials for image-guided photodynamic therapy.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference37 articles.

1. Warner, S. Diagnostics + Therapy = Theranostics. The Scientist Magazine®. Available at, https://www.the-scientist.com/profession/diagnostics-therapy-theranostics-49660 [Accessed 26 Apr. 2019] (2019)

2. Taber, S. W., Fingar, V. H., Coots, C. T. & Wieman, T. J. Photodynamic Therapy Using Mono-L-Aspartyl Chlorin E6 (Npe6) for The Treatment Of Cutaneous Disease: A Phase I Clinical Study. Clin. Cancer Res. 4, 2741–2746 (1998).

3. Baum, R. P. & Kulkarni, H. R. Theranostics: From Molecular Imaging Using Ga-68 Labeled Tracers And PET/CT To Personalized Radionuclide Therapy—The Bad Berka Experience. Theranostics. 2, 437–447 (2012).

4. Matsumura, Y. & Maeda, H. A New Concept For Macromolecular Therapeutics In Chemotherapy: Mechanism Of Tumoritrophic Accumulation Of Proteins And The Antitumor Agent Smancs. Cancer Res. 12, 6387–92 (1986).

5. Greish, K. Enhanced Permeability and Retention (EPR) Effect for Anticancer Nanomedicine Drug Targeting. Methods Mol. Biol. 25–37 (2010).

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