Mutual Jellification of Two Bactericidal Cationic Polymers: Synthesis and Physicochemical Characterization of a New Two-Component Hydrogel

Author:

Alfei SilvanaORCID,Zorzoli AlessiaORCID,Marimpietri DaniloORCID,Schito Anna Maria,Russo EleonoraORCID

Abstract

Here, a new two-component hydrogel (CP1OP2-Hgel) was developed, simply by dispersing in water two cationic bactericidal polymers (CP1 and OP2) effective against several multidrug-resistant (MDR) clinical isolates of the most relevant Gram-positive and Gram-negative species. Interestingly, while OP2 acts only as an antibacterial ingredient when in gel, CP1 works as both an antibacterial and a gelling agent. To verify whether it would be worthwhile to use CP1 and OP2 as bioactive ingredients of a new hydrogel supposed for a future treatment of skin infections, dose-dependent cytotoxicity studies with CP1 and OP2 were performed on human fibroblasts for 24 h, before preparing the formulation. Although a significant cytotoxicity at concentrations > 2 µM was evidenced for both polymers, selectivity indices (SIs) over 12 (CP1) and up to six (OP2) were determined, due to the powerful antibacterial properties of the two polymers, thus supporting the rationale for their formulation as a hydrogel. The chemical structure and morphology of CP1OP2-Hgel were investigated by PCA-assisted attenuated total reflectance (ATR) Fourier-transform infrared (FTIR) analysis and scanning electron microscopy (SEM), while its rheological properties were assessed by determining its dynamic viscosity. The cumulative weight loss and swelling percentage curves, the porosity, and the maximum swelling capability of CP1OP2-Hgel were also determined and reported. Overall, due to the potent bactericidal effects of CP1 and OP2 and their favorable selectivity indices against several MDR pathogens, good rheological properties, high porosity, and strong swelling capability, CP1OP2-Hgel may, in the future, become a new weapon for treating severe nosocomial skin infections or infected chronic wounds. Further investigations in this sense are currently being carried out.

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference54 articles.

1. Point Prevalence Survey for Healthcare-Associated Infections within Canadian Adult Acute-Care Hospitals;J. Hosp. Infect.,2007

2. Practice Guidelines for the Diagnosis and Management of Skin and Soft Tissue Infections: 2014 Update by the Infectious Diseases Society of America;Clin. Infect. Dis.,2014

3. FDA (2022, September 06). Guidance for Industry Acute Bacterial Skin and Skin Structure Infections: Developing Drugs for Treatment, Available online: https://www.fda.gov/media/71052/download.

4. Update on treating uncomplicated skin and skin structure infections;J. Drugs Dermatol.,2005

5. The Utility of Microbiological Studies in Diagnosis and Management of Suspected Dermatological Infection;JAMA Derm.,2017

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