Smart stimuli-responsive biofunctionalized niosomal nanocarriers for programmed release of bioactive compounds into cancer cells in vitro and in vivo

Author:

Abtahi Najmeh Alsadat1,Naghib Seyed Morteza2,Haghiralsadat Fatemeh3,Reza Javad Zavar1,Hakimian Fatemeh3,Yazdian Fatemeh4,Tofighi Davood56

Affiliation:

1. Department of Clinical Biochemistry, Faculty of Medicine International Campus, Shahid Sadoughi University of Medical Science , Yazd , Iran

2. Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology (IUST) , P.O. Box 16846-13114 , Tehran , Iran

3. Department of Advanced Medical Sciences and Technologies, Medical Nanotechnology and Tissue Engineering Research Center, Yazd Reproductive Sciences Institute, Shahid Sadoughi University of Medical Sciences , Yazd , Iran

4. Department of Life Science Engineering, Faculty of New Science and Technologies, University of Tehran , Tehran , Iran

5. Department of Psychology, University of New Mexico, Albuquerque , New Mexico , United States of America

6. Biostatistics, Epidemiology, and Research Design Support (BERD), Clinical and Translational Science Center, University of New Mexico, Albuquerque , New Mexico , United States of America

Abstract

Abstract Cancer treatment is challenging due to late-stage diagnosis, drug resistance and systemic toxicity of chemotherapeutic agents. The formulation of the drug into nanoparticles (NPs) can enhance the treatment efficacy and effectiveness. Therefore, a new cationic niosomal formulation, which contains Tween 80, Tween 60, cholesterol and lysine amino acid as a platform model to enhance transfection efficacy and reach more acceptable stability, and curcumin (Cur) as a biological anti-cancer drug, are introduced. Here, the authors focused on the design and synthesis of novel lysine-mediated niosomal NPs for the effectual and controlled release of the antitumor agent, Cur, and turned to optimize niosome formulations, concerning the volume of cholesterol and surfactant to implement these anticancer agents, simultaneously. The characterization of NPs s was carried out and the results showed the successful synthesis of Cur-entrapped niosomal NPs with high efficacy, sufficient positive charges and a favorable size (95/33 nm). The in vitro studies have been performed to investigate the cytotoxicity, cellular uptake and apoptosis of normal and cancer cells treated by black niosome, free Cur and niosom-loaded Cur. The results showed that implementing agents by niosome caused enhanced cytotoxicity, uptake and anticancer activity in cancer cells in comparison with normal cells. Furthermore, the effect of this nanodrug was surveyed on the 4T1 xenografted Balb/C mouse tumor model. Cur delivery to cancer models caused a higher tumor inhibition rate than in other groups.

Publisher

Walter de Gruyter GmbH

Subject

Surfaces, Coatings and Films,Process Chemistry and Technology,Energy Engineering and Power Technology,Biomaterials,Medicine (miscellaneous),Biotechnology

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