首页> 美国卫生研究院文献>Biophysical Journal >Cell viability and probe-cell membrane interactions of XR1 glial cells imaged by atomic force microscopy.
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Cell viability and probe-cell membrane interactions of XR1 glial cells imaged by atomic force microscopy.

机译:XR1胶质细胞的细胞活力和探针细胞膜相互作用的原子力显微镜成像。

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摘要

As atomic force microscopy (AFM) imaging of live specimens becomes more commonplace, at least two important questions arise: 1) do live specimens remain viable during and after AFM, and 2) is there transfer of membrane components from the cell to the AFM probe during probe-membrane interactions? We imaged live XR1 glial cells in culture by single- or dual-pass contact or tapping-mode AFM, examined cell viability at various postimaging times, and report that AFM-imaged live XR1 cells remained viable up to 48 h postimaging and that cell death rates did not increase. To determine if nonlethal, transient interactions between the AFM probe and cell membrane led to transfer of XR1 cell membrane phospholipid components on the probe, we treated the scanned probes with the lipid-binding fluorophore FM 1-43. Confocal microscopy revealed that phospholipid membrane components did accumulate on the probe, and to a generally greater extent during contact-mode imaging than during tapping-mode imaging. Moreover, membrane accumulations on the probe were greater when live XR1 cells were damaged or perturbed, yet membrane did not accumulate in fluorescently detectable quantities during repeated "force curves" during control experiments. Taken together, our data indicate that although AFM imaging of live cells in culture does not affect long-term cell viability, there are substantial probe-membrane interactions that lead to transfer of membrane components to the probe.
机译:随着活体标本的原子力显微镜(AFM)成像变得越来越普遍,至少出现了两个重要的问题:1)活体标本在AFM期间和之后是否仍然可行,以及2)膜成分从细胞转移到AFM探针在探针-膜相互作用期间?我们通过单次或两次通过接触或敲击模式AFM为培养中的活XR1胶质细胞成像,检查了在不同的成像后时间的细胞活力,并报告了AFM成像的活XR1细胞在成像后48小时内仍保持活力,并且该细胞死亡率没有增加。为了确定AFM探针与细胞膜之间的非致命性瞬时相互作用是否导致XR1细胞膜磷脂组分在探针上的转移,我们用结合脂质的荧光团FM 1-43处理了扫描的探针。共聚焦显微镜显示,磷脂膜成分确实会积聚在探针上,并且在接触模式成像期间通常比敲击模式成像期间更大。此外,当活XR1细胞受损或受到干扰时,探针上的膜积聚更大,而在对照实验中重复的“力曲线”中膜却没有以荧光可检测的量积聚。两者合计,我们的数据表明,尽管培养物中活细胞的AFM成像不影响长期细胞生存力,但仍有大量的探针-膜相互作用导致膜成分转移到探针上。

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