Description:
Background: The present investigation aimed to prepare Vancomycin-loaded nanoparticles
(VAN-NPs) using chitosan (CS) and tripolyphosphate (TPP) besides exploring the effects of
changing CS/TPP ratio on the physicochemical properties, corneal permeation, and ocular
delivery of the prepared NPs.
Methods: Different pre-formulations were prepared using the modified ionic gelation process,
then were characterized in terms of size distribution. Optimized formulations were furtherly
evaluated by some characteristic tools such as Fourier-transform infrared (FTIR) spectroscopy
and thermogravimetric analysis (TGA). The in vitro antimicrobial efficacy and drug release
amounts along with the Ex-vivo corneal permeation of NPs through the sheep cornea were
investigated. Quantification was performed using high-performance liquid chromatography.
Results: Spherical and uniformly distributed NPs were developed with a mean particle size
varied between 215–290 nm. FTIR spectroscopy confirmed that the CS/TPP cross-linking has
taken place without affecting the pharmacologically active moiety of the drug. The obtained
zeta potential values were in the range of +34 to +37 mV, which could ensure the stability of
formulations. TGA analysis indicated enhanced thermal stability for the encapsulated drug
compared to the plain drug. Formulations indicated suitable antimicrobial efficacy while
releasing more than 90% of the drug during 24 h. NPs offered a 10-fold enhancement in corneal
permeation compared to the drug solution.
Conclusion: Although further in vivo evaluation is still required to completely confirm the
efficacy of the formulations, the enhanced release and corneal permeation of the drug suggest
that the prepared NPs are suitable for ocular delivery of VAN.
URL:
http://103.158.96.210:88/web_repository/uploads/ps-28-449.pdf
Type:
Journal
Document:
Diploma III Farmasi
Date:
23-06-2024
Author:
Farhad Safari