Issue 24, 2019

Delivery of drugs into brain tumors using multicomponent silica nanoparticles

Abstract

Glioblastomas are highly lethal cancers defined by resistance to conventional therapies and rapid recurrence. While new brain tumor cell-specific drugs are continuously becoming available, efficient drug delivery to brain tumors remains a limiting factor. We developed a multicomponent nanoparticle, consisting of an iron oxide core and a mesoporous silica shell that can effectively deliver drugs across the blood–brain barrier into glioma cells. When exposed to alternating low-power radiofrequency (RF) fields, the nanoparticle's mechanical tumbling releases the entrapped drug molecules from the pores of the silica shell. After directing the nanoparticle to target the near-perivascular regions and altered endothelium of the brain tumor via fibronectin-targeting ligands, rapid drug release from the nanoparticles is triggered by RF facilitating wide distribution of drug delivery across the blood–brain tumor interface.

Graphical abstract: Delivery of drugs into brain tumors using multicomponent silica nanoparticles

Supplementary files

Article information

Article type
Paper
Submitted
03 Apr 2019
Accepted
02 Jun 2019
First published
05 Jun 2019

Nanoscale, 2019,11, 11910-11921

Author version available

Delivery of drugs into brain tumors using multicomponent silica nanoparticles

O. Turan, P. Bielecki, V. Perera, M. Lorkowski, G. Covarrubias, K. Tong, A. Yun, A. Rahmy, T. Ouyang, S. Raghunathan, R. Gopalakrishnan, M. A. Griswold, K. B. Ghaghada, P. M. Peiris and E. Karathanasis, Nanoscale, 2019, 11, 11910 DOI: 10.1039/C9NR02876E

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