通过使用石英调叉传感器实时和快速量化细菌细胞
Abeer Alshammari1, Sabaa T Abdulmawla1, Reem Alsaigh1
1Department of Physics and Astronomy, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.
Micromachines
|June 28, 2023
概括
石英调音叉 (QTF) 提供了一种快速,低成本的实时细菌检测方法. 这项研究表明,QTF可以量化大肠杆菌度,并将活细胞与死细胞区分开来,从而实现现场微生物分析.
科学领域:
- 微生物学 微生物学
- 传感器技术 传感器技术
- 生物物理学的生物物理.
背景情况:
- 定量细菌评估至关重要,但目前的方法耗时且样本密集.
- 对细菌计数的现场,用户友好和直接检测技术是非常理想的.
- 石英调音叉 (QTF) 对粘度和密度的变化敏感,使它们成为潜在的生物传感器.
研究的目的:
- 研究使用QTFs实时检测大肠杆菌 (大肠杆菌) 的实时检测.
- 为了将QTF参数与细菌度和状态相关联.
- 建立QTF作为快速微生物计数的可行工具.
主要方法:
- 评估了对各种介质的QTF反应 (例如,卢里亚-贝塔尼).
- 经过测试的QTF具有大肠杆菌度从10^2到10^5的殖民地形成单位/毫升.
- 分析了QTF频率和质量因子对细菌存在和状态 (活/死) 的反应变化.
主要成果:
- 卢里亚-贝尔塔尼引起了最显著的频率变化在QTFs.
- QTF频率和质量因子的减少与增加的大肠杆菌度相关.
- 确定了线性相关性 (R=0.955),检测极限为26 CFU/mL.
- QTF区分了活细胞和死细胞的细菌.
结论:
- QTF可实现实时,快速和非破坏性的微生物计数.
- 该技术需要最小的样本量,并为传统方法提供了低成本的替代方案.
- QTF显示出对现场细菌检测和状态确定有前景.
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