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碘化聚苯乙烯衍生物的抗菌活性。

Antimicrobial activities of iodinated polystyrene derivatives.

作者信息

Lin K J, Tani T, Endo Y, Kodama M, Teramoto K

机构信息

Department of Surgery, Shiga University of Medical Science, Japan.

出版信息

Artif Organs. 1996 Nov;20(11):1191-5. doi: 10.1111/j.1525-1594.1996.tb00660.x.

Abstract

The antimicrobial activities of insoluble halogenated acetamidomethy1-styrene polymers (prepared by covalent bonding of iodine to polystyrene) were assessed as were the factors determining antimicrobial efficacy. The most active materials were selected from chlorinated or iodinated polymers. Antimicrobial activities were assessed for Escherichia coli (ATCC 25922; American Type Culture Collection, Rockville, MD, U.S.A.), Saccharomyces cerevisiae, and Candida albicans by determining time-course changes in microbial counts in vitro. A 2-iodoacetamidomethylstyrene polymer (No.6-I:-CH2I) was found to have the greatest antimicrobial activity against both bacteria and fungi. No.6-I is the first antimicrobial material that did not make an inhibition hollow in the conventional diffusion test or for which conjugated iodine showed antibacterial activity. This material can be introduced into styrene units on the surface of devices by chemical modification. This material was most active at 37 degrees C. For coated dishes, antimicrobial activity depended on the depth or swollen character of the reactive layer. NO.6-I requires not only a minimum width of polymer layer, but also frequent contact with microbes to have an antimicrobial effect. No.6-I is valuable as a new material because it has strong antimicrobial activity by itself but does not release active iodine. This material is expected to have various applications in implantable clinical devices.

摘要

评估了不溶性卤代乙酰氨基甲基苯乙烯聚合物(通过碘与聚苯乙烯共价键合制备)的抗菌活性以及决定抗菌效果的因素。从氯化或碘化聚合物中挑选出活性最高的材料。通过测定体外微生物数量随时间的变化,评估了对大肠杆菌(美国典型培养物保藏中心,ATCC 25922;美国马里兰州罗克维尔)、酿酒酵母和白色念珠菌的抗菌活性。发现一种2-碘代乙酰氨基甲基苯乙烯聚合物(No.6-I:-CH2I)对细菌和真菌均具有最大的抗菌活性。No.6-I是第一种在传统扩散试验中不会形成抑菌圈或其共轭碘具有抗菌活性的抗菌材料。这种材料可通过化学修饰引入到器械表面的苯乙烯单元中。该材料在37℃时活性最高。对于涂覆的培养皿,抗菌活性取决于反应层的深度或膨胀特性。No.6-I不仅需要聚合物层有最小宽度,还需要与微生物频繁接触才能产生抗菌效果。No.6-I作为一种新材料很有价值,因为它本身具有很强的抗菌活性但不释放活性碘。这种材料有望在可植入临床器械中有多种应用。

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