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可喷涂的无杀菌剂聚氨酯涂料,可减少生物污垢并有助于从表面去除致病细菌。

Sprayable Biocide-Free Polyurethane Paint that Reduces Biofouling and Facilitates Removal of Pathogenic Bacteria from Surfaces.

作者信息

Chen Lawrence M, Quinn La'Darious J, York Jordan T, Polaske Thomas J, Nelson Alexandra E, Appadoo Visham, Audu Cornelius O, Blackwell Helen E, Lynn David M

机构信息

Department of Chemical and Biological Engineering, University of Wisconsin-Madison, 1415 Engineering Dr., Madison, Wisconsin 53706, United States.

Department of Chemistry, University of Wisconsin-Madison, 1101 University Ave., Madison, Wisconsin 53706, United States.

出版信息

ACS Omega. 2025 Feb 12;10(7):7295-7305. doi: 10.1021/acsomega.4c11020. eCollection 2025 Feb 25.

Abstract

The ability to prevent bacterial adhesion on surfaces and to facilitate the removal of bacteria once they have already contaminated or colonized a surface is important in a broad range of fundamental and applied contexts. The work reported here sought to characterize the physicochemical properties of a family of biocide-free hydrophobic polyurethane coatings containing polysiloxane segments and evaluate their ability to mitigate bacterial fouling and/or facilitate subsequent surface cleaning after exposure to pathogenic bacteria. We developed benchtop microbiological assays to characterize surface fouling and subsequent removal of bacteria after repeated (i) short-term intermittent physical contact with and (ii) longer-term continuous flow-based contact with liquid growth media containing either or , two common Gram-positive or Gram-negative bacterial pathogens, respectively. Characterization of fouled and cleaned surfaces using fluorescence microscopy and standard agar-based plaque assays revealed significant differences in both reductions in initial fouling and subsequent cleanability after gentle rinsing with water. These differences correlated to differences in the surface properties of these materials (e.g., hydrophobicity and contact angle hysteresis), with coatings exhibiting lower contact angle hysteresis generally having the greatest antibiofouling and easy-to-clean properties. Our results suggest that these biocide-free, siloxane-containing polyurethane-based clearcoat materials show significant promise for the mitigation of surface fouling and bacterial adhesion, which could prove useful in a range of commercial applications, including in "high touch" environments where microbial contamination is endemic.

摘要

在广泛的基础和应用背景下,防止细菌在表面粘附以及在细菌已经污染或定殖于表面后促进细菌清除的能力非常重要。本文报道的工作旨在表征一系列含有聚硅氧烷链段的无杀菌剂疏水聚氨酯涂层的物理化学性质,并评估它们减轻细菌污染和/或在暴露于病原菌后促进后续表面清洁的能力。我们开发了台式微生物测定法,以表征在分别与含有两种常见革兰氏阳性或革兰氏阴性细菌病原体(即金黄色葡萄球菌或大肠杆菌)的液体生长培养基进行(i)短期间歇性物理接触和(ii)长期连续流动接触后,表面的污染情况以及随后细菌的清除情况。使用荧光显微镜和基于标准琼脂的菌斑测定法对污染和清洁后的表面进行表征,结果显示,在用清水轻轻冲洗后,初始污染的减少以及后续的可清洁性均存在显著差异。这些差异与这些材料的表面性质(例如疏水性和接触角滞后)的差异相关,接触角滞后较低的涂层通常具有最大的抗生物污染和易于清洁的性能。我们的结果表明,这些不含杀菌剂、含硅氧烷的聚氨酯基清漆材料在减轻表面污染和细菌粘附方面显示出巨大潜力,这在一系列商业应用中可能会很有用,包括在微生物污染普遍存在的“高接触”环境中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/752b/11866211/b1347af9ec06/ao4c11020_0005.jpg

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