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PMID: 39332464 Published · ppublish English

Formulation and optimization of surfactant-modified chitosan nanoparticles loaded with cefdinir for novel topical drug delivery: Elevating wound healing efficacy with enhanced antibacterial properties.

International journal of pharmaceutics ·Vol. 666 ·2024-12-05

Badie MA, Teaima MH, El-Nabarawi MA, Badawi NM

Abstract

Burn wounds remain a significant global health concern, frequently exacerbated by bacterial infections that hinder healing and raise morbidity rates. Cefdinir, a third-generation cephalosporin antibiotic, is used to treat various conditions, but it has limitations such as low water solubility, limited bioavailability, and a short biological half-life. This study aimed to fabricate and optimize novel surfactant-based Cefdinir-loaded chitosan nanoparticles (CFD-CSNPs) for enhancing topical CFD delivery and efficacy in burn healing. Box-Behnken Design (BBD) was employed to develop optimized CFD-CSNPs using Design Expert® software, where the independent factors were chitosan concentration, chitosan: sodium tripolyphosphate ratio, pH, and surfactant type. Particle size PS, zeta potential ZP, Polydispersity index PDI, and entrapment efficiency EE% were evaluated as dependent factors. CFD-CSNPs were produced using the ionic gelation method. The optimized formula was determined and then examined for further in vitro and in vivo assessments. The optimized CFD-CSNPs exhibited acceptable PS, PDI, and ZP values. The EE% of CFD from CSNPs reached 57.89 % ± 1.66. TEM analysis revealed spherical morphology. In vitro release studies demonstrated a biphasic release profile up to (75.5 % ± 3.8) over 48 hrs. The optimized CFD-CSNPs showed improved antimicrobial efficacy against the tested microorganisms, exhibiting superior performance for both biofilm prevention and eradication. Enhanced wound healing activity was achieved by the optimized CFD-CSNPs in both in vitro and in vivo studies as confirmed by scratch wound assay and skin burn mice model. The current study advocates the efficacy of the innovative topical application of CFD-CSNPs for wound healing purposes and treatment of wound infections.

Keywords
Box-Behnken Design Burn wounds Cefdinir Chitosan nanoparticles Topical delivery Wound healing
MeSH 主题词
Chitosan/chemistry,administration & dosage Wound Healing/drug effects Animals Anti-Bacterial Agents/administration & dosage,pharmacology,chemistry Nanoparticles/chemistry Surface-Active Agents/chemistry Mice Cefdinir/administration & dosage Drug Liberation Male Burns/drug therapy Particle Size Drug Carriers/chemistry Drug Delivery Systems Administration, Topical Staphylococcus aureus/drug effects
Article Info
Journal
International journal of pharmaceutics
Abbr.
Int J Pharm
ISSN
1873-3476
Corresponding email
Published
2024-12-05
Language
English
Country/Region
Netherlands
NLM ID
7804127
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