Intracellular delivery of redox cycler-doxorubicin to the mitochondria of cancer cell by folate receptor targeted mitocancerotropic liposomes

Abstract

Cancer cells reflect higher level of ROS in comparison to the normal cell, so they become more vulnerable to further oxidative stress induced by exogenous ROS-generating agents. Through this a novel therapeutic strategy has evolved, which involves the delivery of redox cycler-doxorubicin (DOX) to the mitochondria of cancer cell where it acts as a source of exogenous ROS production. The purpose of this study is to develop a liposomal preparation which exhibits a propensity to selectively target cancer cell along with the potential of delivering drug to mitochondria of cell. We have rendered liposomes mitocancerotropic (FA-MTLs) by their surface modification with dual ligands, folic acid (FA) for cancer cell targeting and triphenylphosphonium (TPP) cations for mitochondria targeting. The cytotoxicity, ROS production and cell uptake of doxorubicin loaded liposomes were evaluated in FR (+) KB cells and found to be increased considerably with FA-MTLs in comparison to folic acid appended, mitochondria targeted and non-targeted liposomes. As confirmed by confocal microscopy, the STPP appended liposomes delivered DOX to mitochondria of cancer cell and also showed higher ROS production and cytotoxicity in comparison to folic acid appended and non-targeted liposomes. Most importantly, mitocancerotropic liposomes showed superior activity over mitochondria targeted liposomes which confirm the synergistic effect imparted by the presence of dual ligands - folic acid and TPP on the enhancement of cellular and mitochondrial delivery of doxorubicin in KB cells. ? 2012 Elsevier B.V. All rights reserved.

Description

Keywords

Cholesterol, Doxorubicin, Folate Receptor, Folic Acid, Liposome, Macrogol, Cancer Cell, Confocal Microscopy, Controlled Study, Cytotoxicity, Drug Delivery System, Drug Potentiation, Drug Release, Encapsulation, Flow Cytometry, Human, Human Cell, In Vitro Study, Mitochondrion, Mouth Carcinoma, Oxidation Reduction Reaction, P Size, Priority Journal, Zeta Potential, Antibiotics, Antineoplastic, Cell Line, Tumor, Cell Survival, Cholesterol, Doxorubicin, Folate Receptors, Gpi-Anchored

Citation

Malhi, S. S., Budhiraja, A., Arora, S., Chaudhari, K. R., Nepali, K., Kumar, R., . . . Murthy, R. S. R. (2012). Intracellular delivery of redox cycler-doxorubicin to the mitochondria of cancer cell by folate receptor targeted mitocancerotropic liposomes. International Journal of Pharmaceutics, 432(1-2), 63-74. doi: 10.1016/j.ijpharm.2012.04.030

Endorsement

Review

Supplemented By

Referenced By