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Tunable antibacterial activities and biosafety evaluation of photocatalytic nano-titania particles loaded on fabrics

机译:负载在织物上的光催化纳米二氧化钛颗粒的可调抗菌活性和生物安全性评价

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摘要

We have witnessed booming demands in recent years from fabrics industry for desired antibacterial properties. In this essay, we are reporting the selection and characterization of photocatalytic nanosized TiO2 particles for potential use in fabrics for antibacterial activities. The nanoparticles within a certain size range are simply immersing-loaded on the surfaces of fabrics to examine their physicochemical and antibacterial properties. Toxicity of the materials is evaluated by flow cytometry testing by using mouse fibroblasts. The results have shown that the efficient photocatalytic degradation of E. coli bacteria and the toxicity of the TiO2 particles are size-dependent and concentration-dependent. The particles below 40 nm in size and higher than 50 mu g/mL in concentration slightly harm the fibroblasts cells, while those above 40 nm in size and higher than 50 mu g/mL in concentration do not deteriorate the behaviors of the cells. The easiness and cost efficiency of coating processing of the photocatalytic particles and their remarkable antibacterial activities will give insights into their widespread applications to combating infectious microorganisms in fabric industry. GRAPHICS .
机译:近年来,我们目睹了织物行业对所需抗菌性能的蓬勃发展的需求。在本文中,我们报告了光催化纳米级TiO2颗粒的选择和表征,这些颗粒在织物中的潜在用途是抗菌活性。将一定尺寸范围内的纳米颗粒简单地浸入织物表面,以检查其物理化学和抗菌性能。通过使用小鼠成纤维细胞的流式细胞术测试来评估材料的毒性。结果表明,大肠杆菌的高效光催化降解和TiO2颗粒的毒性具有尺寸依赖性和浓度依赖性。小于 40 nm 且浓度高于 50 μ g/mL 的颗粒会轻微损伤成纤维细胞,而尺寸高于 40 nm 且浓度高于 50 μ g/mL 的颗粒不会使细胞的行为恶化。光催化颗粒涂层加工的简便性和成本效益及其显著的抗菌活性,将有助于了解其在织物工业中对抗传染性微生物的广泛应用。[图形] .

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