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[水凝胶镜片上银层的抗菌效果][引用文献]

[Antimicrobial efficacy of a silver layer on hydrogel lenses] Citation].

作者信息

Nissen S, Furkert F H

机构信息

Fachbereich Augenoptik der Fachhochschule Aalen.

出版信息

Ophthalmologe. 2000 Sep;97(9):640-3. doi: 10.1007/s003470070054.

Abstract

BACKGROUND

The high standard of hygiene required in using contact lenses requires regular sterilization, for which the application of a hydrogen peroxide system or storage in liquids containing antimicrobial agents are regarded as the most effective procedures. An approach to avoiding contamination could be to provide the lenses themselves with antimicrobial properties. For this purpose contact lenses equipped with a silver layer were examined for their effect on bacteria.

MATERIALS AND METHODS

The antimicrobial efficacy of a silver layer on Weflex 55 hydrogellenses (watercontent 55%, nonionic) was investigated. The lenses were incubated at 37 degrees C for 1 h in suspensions (10(8) CFU/ml) with Pseudomonas aeruginosa or Staphylococcus aureus and were rinsed afterwards. The detachment of the adherent bacteria took place by shaking the lenses in the presence of glass beads (diameter 0.5 mm). Samples of these suspensions were taken, and microbial counts were performed before and after incubation of the contaminated lenses for 6 h and 24 h in a sterile solution of sodium chloride (0.9%, w/v).

RESULTS

Lenses with a silver layer showed markedly fewer test organisms than did unprepared lenses. However, this effect was detectable only when the contaminated lenses were kept in sodium chloride solution (0.9%) for several hours. After incubation for 67 at 25 degrees C the microbial numbers of P. aeruginosa were diminished by about 4 log steps, and those of S. aureus by about 1 log step. Particularly in the case of P. aeruginosa the antimicrobial property of the silver layer was very effective. The microbial numbers of this species, which can cause serious infections of the eyes, were reduced after 24 h by more than 6 log steps. However, S. aureus showed a reduction of only 1.5 log steps. These results reflect the antimicrobial effect of silver ions which are dissolved from depots in the surfaces of the lenses only in traces because of their low dissolution properties.

CONCLUSIONS

These first investigations of preserved contact lenses indicate a new possibility for reducing lens-induced infections of the eyes. Due to the weak efficacy against the gram-positive species S. aureus a silver layer probably cannot replace other sterilization procedures completely, but it may represent an additional protection from contamination. Side effects to the eyes due to the negligible toxicity of oligodynamics silver concentrations, such are known to occur with high silver concentrations, should be not expected, but possible allergic reactions caused by the silver-ions should be investigated.

摘要

背景

使用隐形眼镜需要高标准的卫生条件,这就需要定期进行消毒,为此,应用过氧化氢系统或储存在含有抗菌剂的液体中被认为是最有效的方法。一种避免污染的方法可能是使隐形眼镜本身具有抗菌性能。为此,研究了带有银层的隐形眼镜对细菌的影响。

材料与方法

研究了银层对Weflex 55水凝胶隐形眼镜(含水量55%,非离子型)的抗菌效果。将隐形眼镜在37℃下于含有铜绿假单胞菌或金黄色葡萄球菌的悬液(10⁸CFU/ml)中孵育1小时,然后冲洗。通过在玻璃珠(直径0.5mm)存在的情况下摇晃隐形眼镜使附着的细菌脱落。取这些悬液的样本,并在污染的隐形眼镜于无菌氯化钠溶液(0.9%,w/v)中孵育6小时和24小时前后进行微生物计数。

结果

带有银层的隐形眼镜显示出的受试微生物明显少于未处理的隐形眼镜。然而,只有当污染的隐形眼镜在氯化钠溶液(0.9%)中放置数小时后,这种效果才可以检测到。在25℃下孵育6小时后,铜绿假单胞菌的微生物数量减少了约4个对数级,金黄色葡萄球菌的微生物数量减少了约1个对数级。特别是对于铜绿假单胞菌,银层的抗菌性能非常有效。这种可导致严重眼部感染的细菌种类的微生物数量在24小时后减少了超过6个对数级。然而,金黄色葡萄球菌仅减少了1.5个对数级。这些结果反映了银离子的抗菌作用,由于其低溶解性,银离子仅从隐形眼镜表面的储存库中微量溶解。

结论

这些对保存型隐形眼镜的初步研究表明了一种减少隐形眼镜引起的眼部感染的新可能性。由于对革兰氏阳性菌金黄色葡萄球菌的疗效较弱,银层可能无法完全取代其他消毒程序,但它可能代表了一种额外的防污染保护。由于微量动力学银浓度的毒性可忽略不计,预计不会出现高银浓度时已知会发生的对眼睛的副作用,但应由银离子引起的可能过敏反应应进行研究。

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