一种用于将气溶胶颗粒高效且可控地沉积到细胞培养物上的新型暴露系统。

A novel exposure system for the efficient and controlled deposition of aerosol particles onto cell cultures.

作者信息

Savi Melanie, Kalberer Markus, Lang Doris, Ryser Manuel, Fierz Martin, Gaschen Annina, Ricka Jaroslav, Geiser Marianne

机构信息

Institute of Anatomy, University of Bern, Bern, Switzerland.

出版信息

Environ Sci Technol. 2008 Aug 1;42(15):5667-74. doi: 10.1021/es703075q.

Abstract

Epidemiologic studies have shown correlations between morbidity and particles < or = 2.5 microm generated from pollution processes and manufactured nanoparticles. Thereby nanoparticles seem to play a specific role. The interaction of particles with the lung, the main pathway of undesired particle uptake, is poorly understood. In most studies investigating these interactions in vitro, particle deposition differs greatly from the in vivo situation, causing controversial results. We present a nanoparticle deposition chamber to expose lung cells mimicking closely the particle deposition conditions in the lung. In this new deposition chamber, particles are deposited very efficiently, reproducibly, and uniformly onto the cell culture, a key aspect if cell responses are quantified in respect to the deposited particle number. In situ analyses of the lung cells, e.g., the ciliary beat frequency, indicative of the defense capability of the cells, are complemented by off-line biochemical, physiological, and morphological cell analyses.

摘要

流行病学研究表明,由污染过程产生的直径小于或等于2.5微米的颗粒物以及人造纳米颗粒与发病率之间存在关联。因此,纳米颗粒似乎发挥着特定作用。颗粒物与肺部(不期望的颗粒物摄取的主要途径)之间的相互作用目前了解甚少。在大多数体外研究这些相互作用的实验中,颗粒沉积与体内情况有很大差异,导致结果存在争议。我们展示了一种纳米颗粒沉积室,用于使肺细胞暴露,该沉积室能非常紧密地模拟肺部的颗粒沉积条件。在这个新的沉积室中,颗粒能非常高效、可重复且均匀地沉积到细胞培养物上,这是在根据沉积颗粒数量对细胞反应进行量化时的一个关键方面。对肺细胞的原位分析,例如指示细胞防御能力的纤毛摆动频率,辅以离线的生化、生理和形态学细胞分析。

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