Affiliation:
1. University Institute of Chemical Technology, Kavayitri Bahinabai Chaudhari North Maharashtra University, Jalgaon - Maharashtra 425 001, India
Abstract
Background:
Nateglinide is an antidiabetic drug having biological half-life 1.5 h which
shows a concise effect. Graphene oxide along with chitosan can be used as a nanocarrier for sustained
release of Nateglinide.
Objective:
To develop Nateglinide loaded graphene oxide-chitosan nanocomposites and to evaluate
for different characterization studies.
Methods:
Graphene Oxide (GO) was synthesized by improved hummer’s method and drug-loaded
Graphene oxide - chitosan nanocomposites were prepared. Box Behnken design was used to carry out
experiments. The nanocomposites were characterized for encapsulation efficiency and drug release.
Morphology was studied using field emission scanning electron microscope and transmission electron
microscope. An interaction between drug, polymer and GO was investigated by Fourier transform infrared
spectroscopy and X-ray diffractometer along with in vitro drug release study.
Results:
The statistical evaluation of the design showed linear and quadratic models which are significant
models for encapsulation efficiency (R1 0.6883, 0.9473) and drug loading (R2 0.6785, 0.9336),
respectively. Fourier transform infrared spectroscopy showed the compatibility of GO, Chitosan and
Nateglinide. X-ray diffractometer reveals the change in degree of crystallinity of drug. FE-SEM and
TEM images confirmed the distribution of the drug within the nanocomposites. Design expert reveals
that the concentration of GO has great influence on encapsulation efficiency. In Vitro drug release
showed the sustained release of drug over the period of 12 h.
Conclusion:
GO-Chitosan nanocomposites can be used as a sustained release carrier system for
Nateglinide to reduce dose frequency of drug as well as its probable side effects.
Publisher
Bentham Science Publishers Ltd.
Subject
Building and Construction
Cited by
3 articles.
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