Tuning properties of CTAB-HSA-AuNR nanocomposite antibacterial thin films

IF 3.8 Q2 CHEMISTRY, PHYSICAL Chemical Physics Impact Pub Date : 2024-07-10 DOI:10.1016/j.chphi.2024.100682
Krishna Halder, Kabira Sabnam, Atri Sen, Swagata Dasgupta
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Abstract

Protein-based biomaterials such as thin films have an edge over synthetic and bio-based polymers, due to their biodegradability in addition to other interesting properties. Proteins can be utilized to create such materials with specific functional characteristics. We report the preparation of transparent human serum albumin thin films in presence of CTAB-capped gold nanorods with different compositions of protein as well as the plasticizer i.e., sorbitol. The mechanical properties, surface topology, morphology, molecular structure, moisture content, total soluble material, biodegradability, antibacterial activity and optical properties have been investigated. Gold nanorods act as crosslinkers and sorbitol as a plasticizer increases plasticity and hardness of the films. The films deposited are biodegradable, water soluble and flexible in nature. AFM images reveal a pattern on the surface with different average heights with an increase in surface roughness with the addition of sorbitol. NINT studies show increased hardness and elastic modulus with the same amount of sorbitol but higher amounts of protein. Fourier Transform Infrared spectroscopy studies indicate the change in molecular structure of the films, in terms of a change in the hydrogen bonding network that impacts the water content and hardness of the films. Most importantly the films show antibacterial property, modulated by the composition used. The interesting features and the enhanced mechanical properties pave the path for potential applications of the films. The study shows that the optimization of the composition is crucial to achieve the desired film material with required properties.

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CTAB-HSA-AuNR 纳米复合抗菌薄膜的调谐特性
以蛋白质为基础的生物材料(如薄膜)比合成聚合物和生物聚合物更具优势,因为它们除了具有其他有趣的特性外,还具有生物可降解性。蛋白质可用于制造具有特定功能特性的此类材料。我们报告了在 CTAB 封端的金纳米棒与不同成分的蛋白质以及增塑剂(即山梨醇)的作用下制备透明人血清白蛋白薄膜的情况。该研究考察了人血清白蛋白薄膜的机械性能、表面拓扑、形态、分子结构、含水量、总可溶物、生物降解性、抗菌活性和光学性能。金纳米棒作为交联剂,山梨醇作为增塑剂,提高了薄膜的可塑性和硬度。沉积的薄膜具有生物可降解性、水溶性和柔韧性。原子力显微镜(AFM)图像显示,添加山梨糖醇后,表面会出现不同平均高度的图案,表面粗糙度也会增加。NINT 研究表明,在山梨醇含量相同而蛋白质含量较高的情况下,硬度和弹性模量都会增加。傅立叶变换红外光谱研究表明,薄膜的分子结构发生了变化,氢键网络的变化影响了薄膜的含水量和硬度。最重要的是,薄膜显示出抗菌特性,并受所用成分的影响。这些有趣的特征和增强的机械性能为薄膜的潜在应用铺平了道路。这项研究表明,要获得具有所需特性的理想薄膜材料,优化成分至关重要。
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来源期刊
Chemical Physics Impact
Chemical Physics Impact Materials Science-Materials Science (miscellaneous)
CiteScore
2.60
自引率
0.00%
发文量
65
审稿时长
46 days
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