Pathogenic microorganisms, such as pathogenic mycobacteria, pose a global health burden. Studying these organisms is crucial for gaining detailed knowledge about the pathogens and the diseases they cause. To handle pathogenic organisms, specific biosafety measures appropriate to the virulence of the organism must be fulfilled, most importantly ensuring that all manipulations of pathogenic material are performed within a confined environment. Atomic force microscopy (AFM) is a powerful technique to study biological samples at nanometer-scale resolution, yielding also mechanical properties, all while maintaining physiological conditions. However, standard AFM sample holders do not meet stringent biosafety requirements since they do not constitute a confined system. AFM imaging relies on direct contact between the cantilever and the sample and is sensitive to mechanical interference, rendering conventional containment systems for handling infectious substances inapplicable. Here, we introduce a hermetically sealed AFM sample chamber that meets biosafety demands while satisfying the mechanical and optical constraints of correlated optical microscopy and AFM. We imaged various pathogenic mycobacteria to demonstrate the chamber's versatility and effectiveness in containing biohazardous materials. This sample chamber enables high-resolution, time-lapse correlated imaging and biomechanical characterization of pathogenic microorganisms in vitro. It broadens the scope of research with pathogenic microorganisms under safe and controlled conditions.
A hermetically closed sample chamber enables time-lapse nano-characterization of pathogenic microorganisms in vitro.
密封的样品室可以对体外病原微生物进行延时纳米表征
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作者:Braun Esther, Andany Santiago H, Kangül Mustafa, Asmari Navid S, McKinney John D, Fantner Georg E
| 期刊: | Nanoscale Advances | 影响因子: | 4.600 |
| 时间: | 2025 | 起止号: | 2025 Feb 19; 7(8):2290-2300 |
| doi: | 10.1039/d4na01053a | 研究方向: | 微生物学 |
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