Development of cellulose-based films containing salicylic acid for wound dressing applications: Fabrication, properties and in vitro assessment

Author:

Ahmad Sohaimy Mohd Ibnu Haikal1,Ismail Muhammad Amir Amzar1,Ahmad Khiar Azwani Sofia1,Mhd Sarbon Norizah2,Md Salim Nora Salina3,Yahya Hanis Nadia4,Mohamad Isa Mohd Ikmar Nizam13ORCID

Affiliation:

1. Energy Materials Consortium, Advanced Materials Team, Ionic and Kinetic Materials Research Laboratory, Faculty of Science and Technology, Universiti Sains Islam Malaysia, Nilai, Negeri Sembilan Darul Khusus, Malaysia

2. Faculty of Fisheries and Food Science, Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia

3. Advanced Nano Materials, Advanced Materials team, Ionic State Analysis Laboratory, Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, Kuala Nerus, Terengganu Darul Iman, Malaysia

4. Food Biotechnology Programme, Faculty of Science and Technology, Universiti Sains Islam Malaysia, Bandar Baru Nilai, Negeri Sembilan, Malaysia

Abstract

A wound dressing is important to ensure an efficient healing process while protecting the wound area. This research study combined 2-hydroxyethyl cellulose (2HEC)—an etherified cellulose derivative with salicylic acid (SA) to develop a single layer and investigate the 2HEC viability as wound dressing material. Nine different samples with different compositions of SA, from 5 wt.% to 40 wt.% (with an interval of 5 wt.%) and one control sample without adding SA were prepared via the solution casting method. The 2HEC-SA films were studied regarding the effects of SA composition on antimicrobial properties ( Staphylococcus aureus) via the well-diffusion method. Additionally, degradability, mechanical properties, X-ray diffraction (XRD), and Fourier transform infrared (FTIR) of 2HEC-SA films have also been tested. The strongest antimicrobial effect of 2HEC-SA film was obtained at 40 wt.% with a 16 mm inhibition zone diameter. There was a noticeable decreasing weight loss pattern in the degradation test and the tensile strength of 2HEC-SA film when the composition of salicylic acid is increased. 2HEC-SA film changes phases from amorphous to crystalline starting at 25 wt.% of salicylic acid as seen through XRD, while FTIR shows that complexation of 2HEC and salicylic acid occurred at 1050 cm−1.

Funder

Universiti Sains Islam Malaysia

Publisher

SAGE Publications

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