| Literature DB >> 29031951 |
Sundeep Chaurasia1, Ravi R Patel2, Prasad Vure3, Brahmeshwar Mishra4.
Abstract
The objective of the study was to improve the bioavailability and anticancer potential of naringenin (NRG) by developing a drug-loaded polymeric nanodelivery system. NRG-loaded eudragit E100 nanoparticle (NRG-EE100-NPs) system was developed and physicochemically characterized. In vivo pharmacokinetic and in vitro cytotoxicity abilities of the NRG-EE100-NPs were investigated. In vivo anticancer activity was evaluated in murine BALB/c mice-bearing colorectal tumor. The NRG-EE100-NPs had an optimum mean particle size (430.42 ± 5.78 nm), polydispersity index (0.283 ± 0.089) with percent entrapment efficiency (68.83 ± 3.45%). The NRG-EE100-NPs demonstrated significant higher bioavailability (∼96-fold; p <0.05) as well as cytotoxicity (∼16-fold; p <0.001) as compared to free NRG. Furthermore, NRG-EE100-NPs indicated significant tumor suppression (p <0.01) subsequently improvement in survival rate compared to free NRG in vivo. Thus, the physicochemical properties and colorectal cancer efficacy of NRG were improved by successful encapsulating in cationic-polymeric nanoparticle system.Entities:
Keywords: bioavailability; colorectal cancer efficacy; eudragit E100; naringenin; polymeric nanoparticle
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Year: 2017 PMID: 29031951 DOI: 10.1016/j.xphs.2017.10.006
Source DB: PubMed Journal: J Pharm Sci ISSN: 0022-3549 Impact factor: 3.534