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使用石英晶体微天平及反射率测量对生物膜生长和消毒进行长期监测。

Long-term monitoring of biofilm growth and disinfection using a quartz crystal microbalance and reflectance measurements.

作者信息

Reipa Vytas, Almeida Jamie, Cole Kenneth D

机构信息

Biochemical Science Division, Chemical Sciences and Technology Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD 20899, USA.

出版信息

J Microbiol Methods. 2006 Sep;66(3):449-59. doi: 10.1016/j.mimet.2006.01.016. Epub 2006 Mar 30.

Abstract

A biofilm reactor was constructed to monitor the long-term growth and removal of biofilms as monitored by the use of a quartz crystal microbalance (QCM) and a novel optical method. The optical method measures the reflectance of white light off the surface of the quartz crystal microbalance electrode (gold) for determination of the biofilm thickness. Biofilm growth of Pseudomonas aeruginosa (PA) on the surface was used as a model system. Bioreactors were monitored for over 6 days. Expressing the QCM data as the ratio of changes in resistance to changes in frequency (DeltaR/Deltaf) facilitated the comparison of individual biofilm reactor runs. The various stages of biofilm growth and adaptation to low nutrients showed consistent characteristic changes in the DeltaR/Deltaf ratio, a parameter that reflects changes in the viscoelastic properties of the biofilm. The utility of white light reflectance for thickness measurements was shown for those stages of biofilm growth when the solution was not turbid due to high numbers of unattached cells. The thickness of the biofilms after 6 days ranged from 48 mum to 68 mum. Removal of the biofilm by a disinfectant (chlorine) was also measured in real time. The combination of QCM and reflectance allowed us to monitor in real time changes in the viscoelastic properties and thickness of biofilms over long periods of time.

摘要

构建了一个生物膜反应器,通过使用石英晶体微天平(QCM)和一种新颖的光学方法来监测生物膜的长期生长和去除情况。该光学方法通过测量石英晶体微天平电极(金)表面的白光反射率来测定生物膜厚度。以铜绿假单胞菌(PA)在表面的生物膜生长作为模型系统。对生物反应器进行了超过6天的监测。将QCM数据表示为电阻变化与频率变化的比值(DeltaR/Deltaf),便于比较各个生物膜反应器的运行情况。生物膜生长和适应低营养的各个阶段在DeltaR/Deltaf比值中显示出一致的特征变化,该参数反映了生物膜粘弹性特性的变化。当溶液不因大量未附着细胞而浑浊时,白光反射率用于厚度测量在生物膜生长的这些阶段得到了验证。6天后生物膜的厚度范围为48微米至68微米。还实时测量了消毒剂(氯)对生物膜的去除情况。QCM和反射率的结合使我们能够长期实时监测生物膜粘弹性特性和厚度的变化。

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