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Microspheres with 2D rGO/Alginate Matrix for Unusual Prolonged Release of Cefotaxime

Authors :
Islam Gomaa
Merna H. Emam
Ahmed R. Wassel
Kholoud Ashraf
Sara Hussan
Haitham Kalil
Mekki Bayachou
Medhat A. Ibrahim
Source :
Nanomaterials, Vol 13, Iss 9, p 1527 (2023)
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

A synergistic interaction between reduced graphene oxide (rGO) and a biodegradable natural polymer, sodium alginate, was developed to create unique microspheres with protruding spiky features at the surface (spiky microspheres) that act as a super encapsulation and sustained release system for the highly effective antibiotic cefotaxime. Three forms of microspheres, namely alginate (Alg), alginate-cefotaxime (Alg-CTX), and alginate-cefotaxime-reduced graphene (Alg-CTX-rGO) composites, were prepared using calcium chloride as a cross-linking agent. The microspheres were characterized using field emission scanning electron microscopy (FESEM), Fourier-transform infrared (FT-IR) spectroscopy, and X-ray diffraction to investigate their pores, roughness, surface morphology, functional groups, phase formation, purity, and structural properties. The membrane diffusion method was employed to determine the release profile of Cefotaxime from the fabricated microspheres. The antibacterial activities of CTX solution, Alg microspheres, Alg-CTX microspheres, and Alg-CTX-rGO microspheres were investigated against gram-negative bacteria (Escherichia coli) using the agar diffusion method on Muller–Hinton agar. The prepared samples exhibited excellent results, suggesting their potential for enhanced antibiotic delivery. The results demonstrated the potential of the microsphere 2D rGO/alginate matrix for enhancing cefotaxime delivery with an unusual, prolonged release profile.

Details

Language :
English
ISSN :
20794991
Volume :
13
Issue :
9
Database :
Directory of Open Access Journals
Journal :
Nanomaterials
Publication Type :
Academic Journal
Accession number :
edsdoj.b8633e8a4bae4f57b9762de06e003e4b
Document Type :
article
Full Text :
https://doi.org/10.3390/nano13091527