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实时监测多物种生物膜和牙科复合材料界面的 pH 微环境。

Real-time monitoring of the pH microenvironment at the interface of multispecies biofilm and dental composites.

机构信息

Department of Chemistry, Oregon State University, Corvallis, OR, 97331, USA.

Department of Dentistry, Oregon Health and Science University, Portland, OR, USA.

出版信息

Anal Chim Acta. 2022 Apr 8;1201:339589. doi: 10.1016/j.aca.2022.339589. Epub 2022 Feb 14.

Abstract

Bacterial-mediated local pH change plays an important role in altering the integrity of resin dental composite materials in a dynamic environment such as the oral cavity. To address this, we developed a 300-μm-diameter, flexible, solid-state potentiometric pH microsensor capable of detecting and quantifying the local pH microenvironment at the interface of multispecies biofilm and dental resin in real time over 10 days. We used fluorinated poly(3,4-ethylenedioxythiophene) as the back contact in our newly developed pH sensor, along with a PVC-based ion-selective membrane and PTFE-AF coating. The high temporal resolution pH data demonstrated pH changes from 7 to 6 and 7 to 5.8 for the first 2 days and then fluctuated between 6.5 to 6 and 6 to 5.5 for the remaining 8 days with the resin composite or glass slide substrate respectively. We could observe the fluctuations in pH mediated by lactic acid production within the biofilm and the re-establishment of pH back to 7. However, acid production started to overwhelm buffering capacity with the continuous feed of sucrose cycles and reduced the local pH nearer to 5.5. No such changes or fluctuations were observed above the biofilm, as the pH remained at 7.0 ± 0.2 for 10 days. The localized real-time monitoring of the pH within the biofilm showed that the pH shift underneath the biofilm could lead to damage to the underlying material and their interface but cannot be sensed external to the biofilm.

摘要

细菌介导的局部 pH 值变化在改变口腔等动态环境中树脂牙科复合材料的完整性方面起着重要作用。为了解决这个问题,我们开发了一种 300μm 直径的柔性固态电位 pH 微传感器,能够实时检测和量化多物种生物膜和牙科树脂界面的局部 pH 微环境,持续 10 天。我们在新开发的 pH 传感器中使用氟化聚(3,4-亚乙基二氧噻吩)作为背接触,并使用基于 PVC 的离子选择性膜和 PTFE-AF 涂层。高时间分辨率的 pH 值数据表明,在最初的 2 天内,pH 值从 7 降至 6 和 7 降至 5.8,然后在剩余的 8 天内,树脂复合材料或玻璃载玻片基质的 pH 值分别在 6.5 到 6 和 6 到 5.5 之间波动。我们可以观察到生物膜内乳酸产生引起的 pH 值波动以及 pH 值恢复到 7。然而,随着蔗糖循环的不断供给,酸的产生开始超过缓冲能力,使局部 pH 值更接近 5.5。生物膜上方没有观察到这种变化或波动,因为 pH 值在 10 天内保持在 7.0±0.2。生物膜内 pH 值的实时局部监测表明,生物膜下的 pH 值变化可能导致下面材料及其界面的损坏,但不能在生物膜外部感知到。

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