Ibuprofen-Loaded Silver Nanoparticle-Doped PVA Gels: Green Synthesis, In Vitro Cytotoxicity, and Antibacterial Analyses

Author:

Altınay Ezgi1ORCID,Köse Fatma Zehra2ORCID,Ateş Sezen Canım2,Kızılbey Kadriye3ORCID

Affiliation:

1. Institute of Science and Engineering, İstanbul Yeni Yüzyıl University, İstanbul 34010, Türkiye

2. Biomedical Engineering Department, Faculty of Engineering and Architecture, İstanbul Yeni Yüzyıl University, İstanbul 34010, Türkiye

3. Department of Natural Sciences, Faculty of Engineering and Natural Sciences, Acıbadem University, İstanbul 34752, Türkiye

Abstract

In contrast to conventional drug delivery systems, controlled drug release systems employ distinct methodologies. These systems facilitate the release of active substances in predetermined quantities and for specified durations. Polymer hydrogels have gained prominence in controlled drug delivery because of their unique swelling–shrinkage behavior and ability to regulate drug release. In this investigation, films with a hydrogel structure were crafted using polyvinyl alcohol, a biocompatible polymer, and silver nanoparticles. Following characterization, ibuprofen was loaded into the hydrogels to evaluate their drug release capacity. The particle sizes of silver nanoparticles synthesized using a green approach were determined. This study comprehensively examined the structural properties, morphological features, mechanical strength, and cumulative release patterns of the prepared films. In vitro cytotoxicity analysis was employed to assess the cell viability of drug-loaded hydrogel films, and their antibacterial effects were examined. The results indicated that hydrogel films containing 5% and 10% polyvinyl alcohol released 89% and 97% of the loaded drug, respectively, by day 14. The release kinetics fits the Korsmeyer–Peppas model. This study, which describes nanoparticle-enhanced polyvinyl alcohol hydrogel systems prepared through a cost-effective and environmentally friendly approach, is anticipated to contribute to the existing literature and serve as a foundational study for future research.

Funder

Acıbadem University

Publisher

MDPI AG

Reference67 articles.

1. Adepu, S., and Ramakrishna, S. (2021). Controlled Drug Delivery Systems: Current Status and Future Directions. Molecules, 26.

2. Nanocarriers Based Novel and Effective Drug Delivery System;Khizar;Int. J. Pharm.,2023

3. Bioadhesive-Based Dosage Forms: The next Generation;Lee;J. Pharm. Sci.,2000

4. Biocompatibility Safety Assessment of Devices: FDA/ISO and Japanese Guide;Anand;Med. DevicesDiagnostic Ind. Mag.,2000

5. Controlled Drug Release for Tissue Engineering;Rambhia;J. Control. Release,2015

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