Fabrication of Antimicrobial Hydrogel Using Biodegradable Blended Materials for Skin Applications

Lina Abdallah, Alaa Ayyed
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Abstract

Biodegradable polymers are very useful polymers in biomedical applications. In this research, several hydrogels were fabricated by using two polymers, Polyvinyl alcohol (PVA) and Chitosan (Chs) by the solvent casting method in order to use them for skin applications. Several tests were carried out on these membranes such as Agar diffusion method to examine their antimicrobial activities, Fourier transform infrared microscopy (FTIR) test to study the differences in their chemical structures. Uniaxial tensile test was performed to examine the mechanical characteristics of these membranes. In addition, the wettability test was used to investigate the hydrophobicity or hydrophilicity of the surfaces. The results showed that all membranes are hydrophilic, of which the contact angles are less than 90°. The membrane manufactured from 75:25 Chs-PVA is more hydrophobic (contact angle is 74°) than other membranes made of 50:50 Chs-PVA and 25:75 Chs-PVA as the contact angles were 59° and 61°, respectively. The tensile test results indicate that the membrane fabricated of the PVA and the membrane that was fabricated by 75% Chs and 25% PVA has the highest tensile strength of 17.9 MPa, 16.2 MPa and Young^’ s Modulus of 181.2 MPa and 7.18 MPa, respectively. The highest strain at break was observed by the membrane of 25:75 Chs-PVA which equals to 24.67%. Chitosan membranes showed inhibition zones of about 2.99 cm and 2.75 cm in length, and 75:25 Chs-PVA membranes showed 5.1 and 5.91 cm in length for E.coli. To sum up, this copolymer is considered as promising hydrogel for skin applications such as wound dressing.
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利用可生物降解混合材料制备皮肤用抗菌水凝胶
生物可降解聚合物是生物医学应用中非常有用的聚合物。在这项研究中,使用聚乙烯醇(PVA)和壳聚糖(Chs)这两种聚合物,通过溶剂浇铸法制造了几种水凝胶,以便将它们用于皮肤应用。对这些薄膜进行了多项测试,如琼脂扩散法检测其抗菌活性,傅立叶变换红外显微镜(FTIR)测试研究其化学结构的差异。还进行了单轴拉伸试验,以检验这些膜的机械特性。此外,还使用了润湿性测试来研究表面的疏水性或亲水性。结果表明,所有膜都具有亲水性,其接触角均小于 90°。与其他由 50:50 Chs-PVA 和 25:75 Chs-PVA 制成的膜相比,由 75:25 Chs-PVA 制成的膜更疏水(接触角为 74°),接触角分别为 59°和 61°。拉伸试验结果表明,由 PVA 制成的膜和由 75% Chs 和 25% PVA 制成的膜具有最高的拉伸强度,分别为 17.9 兆帕和 16.2 兆帕,杨^'s 模量分别为 181.2 兆帕和 7.18 兆帕。25:75 Chs-PVA 膜的断裂应变最大,相当于 24.67%。壳聚糖膜对大肠杆菌的抑制区长度分别为 2.99 厘米和 2.75 厘米,75:25 Chs-PVA 膜对大肠杆菌的抑制区长度分别为 5.1 厘米和 5.91 厘米。总之,这种共聚物被认为是一种很有前途的皮肤水凝胶,可用于伤口敷料等。
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