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Contact-Killing Antibacterial Polystyrene Polymerized Using a Quaternized Cationic Initiator

机译:使用季铵化阳离子引发剂聚合的接触杀灭抗菌聚苯乙烯

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摘要

Contact-killing antibacterial materials are attracting attention owing to their ability for sustained antibacterial activity. However, contact-killing antibacterial polystyrene (PS) has not been extensively studied because its chemically stable structure impedes chemical modification. In this study, we developed an antibacterial PS sheet with a contact-killing surface using PS synthesized from 2,2′-azobis-[2-(1,3-dimethyl-4,5-dihydro-1H-imidazol-3-ium-2-yl)]propane triflate (ADIP) as a radical initiator with cationic moieties. The PS sheet synthesized with ADIP (ADIP-PS) exhibited antibacterial activity in contrast to PS synthesized with other azo radical initiators. Surface ζ-potential measurements revealed that only ADIP-PS had a cationic surface, which contributed to its contact-killing antibacterial activity. The ADIP-PS sheets also exhibited antibacterial activity after washing. In contrast, PS sheets containing silver, a typical leachable antibacterial agent, lost all antibacterial activity after the same washing treatment. The antibacterial ADIP-PS sheet demonstrated strong broad-spectrum activity against both Gram-positive and Gram-negative bacteria, including drug-resistant bacteria. Cytotoxicity tests using L929 cells showed that the ADIP-PS sheets were noncytotoxic. This contact-killing antibacterial PS synthesized with ADIP thus demonstrated good prospects as an easily producible antimicrobial material.
机译:接触杀伤抗菌材料因其持续的抗菌活性而备受关注。然而,接触杀伤抗菌聚苯乙烯 (PS) 尚未得到广泛研究,因为其化学稳定的结构阻碍了化学改性。在这项研究中,我们使用由 2,2′-偶氮二-[2-(1,3-二甲基-4,5-二氢-1H-咪唑-3-ium-2-yl)] 丙烷三氟磺酸酯 (ADIP) 合成的 PS 作为具有阳离子基团的自由基引发剂,开发了一种具有接触杀伤表面的抗菌 PS 片材。与用其他偶氮自由基引发剂合成的 PS 相比,用 ADIP (ADIP-PS) 合成的 PS 片材表现出抗菌活性。表面ζ电位测量表明,只有 ADIP-PS 具有阳离子表面,这有助于其接触杀伤抗菌活性。ADIP-PS 片材在洗涤后也表现出抗菌活性。相比之下,含有银(一种典型的可浸出抗菌剂)的 PS 片材在相同的洗涤处理后失去了所有抗菌活性。抗菌 ADIP-PS 片剂对革兰氏阳性菌和革兰氏阴性菌(包括耐药菌)均表现出很强的广谱活性。使用 L929 细胞的细胞毒性测试表明 ADIP-PS 片剂无细胞毒性。因此,这种用 ADIP 合成的接触杀伤抗菌 PS 显示出作为一种易于生产的抗菌材料的良好前景。

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