Department of Physical Therapy Faculty Articles
Nanoplexes for Cell Imaging and Hyperthermia: In Vitro Studies
Publication Title
Journal of Biomedical Nanotechnology
ISSN
1550-7033
Publication Date
8-2012
Keywords
Cell Death, Cell Line, Heterocyclic Compounds, 3-Ring, Humans, Hyperthermia, Induced, Nanofibers, Ovarian Neoplasms, Polyethyleneimine, Sarcoma, Staining and Labeling, Uterine Neoplasms
Abstract
Novel IR820-polyethylene glycol-diamine nanoplexes (IR820-PDNCs) have potential multifunctional imaging-hyperthermia applications in cancer. Nanoplexes were formulated by ionic interaction and characterized in vitro for their imaging and hyperthermia capabilities. The resulting nanoplexes were approximately 50 nm diameter, with a zeta potential of 2.0 +/- 0.9 mV, and able to generate heat upon exposure to 808 nm laser. Cytotoxicity studies in SKOV-3, MES-SA and Dx5 cancer cell lines demonstrate comparable cytotoxicity of IR820-PDNCs versus free IR820 after 24 hours. The nanoplexes are able to produce hyperthermic cell growth inhibition in all three cancer cell lines after excitation with laser. The level of cell growth inhibition caused by hyperthermia is significantly higher for IR820-PDNCs compared to IR820 in MES-SA and Dx5 cells. Fluorescent microscope images after 2.5-hour exposure to 5 microM IR820-PDNCs or 5 microM free IR820 show increased uptake for IR820-PDNCs compared to free IR820, especially for SKOV-3 and Dx5 cancer cells. This formulation can potentially be used in multifunctional cancer theranostics.
DOI
10.1166/jbn.2012.1413
Volume
8
Issue
4
First Page
686
Last Page
694
Disciplines
Medicine and Health Sciences
NSUWorks Citation
Manchanda, Romila; Fernandez-Fernandez, Alicia; Carvajal, Denny A.; Lei, Tingjun; Tang, Yuan; and McGoron, Anthony J., "Nanoplexes for Cell Imaging and Hyperthermia: In Vitro Studies" (2012). Department of Physical Therapy Faculty Articles. 105.
https://nsuworks.nova.edu/hpd_pt_facarticles/105