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Fabrication and Characterization of Shellac/2-isopropyl-5-methylphenol Composite Film Patch: Physical and Antimicrobial Properties

机译:贝壳/ 2-异丙基-5-甲基苯酚复合膜贴片的制备和表征:物理和抗微生物性质

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The purpose of this study was to evaluate the physicochemical properties and antimicrobial activity of shellac/2-isopropyl-5-methylphenol composite film patch. 2SHL was applied as a matrix film forming agent for antimicrobial film patch. The samples of IPMP loaded within SHL were prepared in a free film by the casting method. The SHL/IPMP composite film patch was characterized on the physicochemical properties such as: FTIR spectroscopy, X-ray diffraction and mechanical properties. Antimicrobial property was assessed against Staphylococcus aureus and E.coli. The results demonstrated that all films were easily prepared. However, the mechanical properties, XRD and FT-IR of composite film patch were dependent on the composition of blending film while the melting and solubility of film showed no change. The % elongation of the films was increased as the fraction of IPMP increased to 20%, resulting in more flexibility of shellac. The composite film could be formed by the hydrogen bonds, giving the change in physicochemical properties of films. These results were supported by the change in FT-IR and XRD pattern of composite film. The SHL/IPMP composite films exhibited the inhibition zone at 5% concentration of IPMP or more concentration. The diameter of inhibition zone was increased as increasing the percentage of IPMP. The result suggested that antimicrobial SHL/IPMP composite film patch could be achieved. In conclusion, shellac could be a promising polymer for fabrication of antimicrobial film patch, contributing to the widely used as medical products for wound dressing.
机译:本研究的目的是评估贝壳/ 2-异丙基-5-甲基苯酚复合膜贴剂的物理化学性质和抗微生物活性。将2SHL作为抗微生物膜贴剂的基质成膜剂施用。通过铸造方法在游离膜中制备SHL内的IPMP样品。 SHL / IPMP复合膜贴片的特征在于物理化学性质,如:FTIR光谱,X射线衍射和机械性能。评估抗微生物性能对金黄色葡萄球菌和大肠杆菌进行评估。结果表明,所有薄膜都很容易制备。然而,复合膜贴片的机械性能,XRD和FT-IR取决于混合膜的组成,同时薄膜的熔融和溶解性显示不变化。随着IPMP的一部分增加到20%,薄膜的百分比伸长率升高,导致虫胶的柔韧性。复合膜可以由氢键形成,促进薄膜的物理化学性质的变化。通过复合膜的FT-IR和XRD图案的变化支持这些结果。 SHL / IPMP复合膜在5%浓度的IPMP或更多浓度下表现出抑制区。增加抑制区的直径随着增加IPMP的百分比而增加。结果表明,可以实现抗微生物SHL / IPMP复合膜贴片。总之,虫胶可能是用于制备抗微生物膜贴剂的有前途的聚合物,有助于被广泛用作伤口敷料的医疗产品。

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