Department of Air quality and Noise, Division of Climate and Environmental Health, Norwegian Institute of Public Health, PO Box 222, Skøyen, Oslo 0213, Norway.
Department of Air quality and Noise, Division of Climate and Environmental Health, Norwegian Institute of Public Health, PO Box 222, Skøyen, Oslo 0213, Norway.
Toxicol In Vitro. 2024 Jun;98:105841. doi: 10.1016/j.tiv.2024.105841. Epub 2024 May 8.
3D cell culture models exposed at the air-liquid interface (ALI) represent a potential alternative to animal experiments for hazard and risk assessment of inhaled compounds. This study compares cocultures composed of either Calu-3, A549 or HBEC3-KT lung epithelial cells, cultured together with THP-1-derived macrophages and EA.hy926 endothelial cells, in terms of barrier capacity and responses to a standard reference sample of fine particulate matter (SRM 2786). High-content imaging analysis revealed a similar cellular composition between the different cell models. The 3D cell cultures with Calu-3 cells showed the greatest barrier capacity, as measured by transepithelial electrical resistance and permeability to Na-fluorescein. Mucus production was detected in 3D cell cultures based on Calu-3 and A549 cells. Exposure to SRM 2786 at ALI increased cytokine release and expression of genes associated with inflammation and xenobiotic metabolism. Moreover, the presence of THP-1-derived macrophages was central to the cytokine responses in all cell models. While the different 3D cell culture models produced qualitatively similar responses, more pronounced pro-inflammatory responses were observed in the basolateral compartment of the A549 and HBEC3-KT models compared to the Calu-3 model, likely due to their reduced barrier capacity and lower retention of secreted mediators in the apical compartment.
在气液界面(ALI)下暴露的 3D 细胞培养模型代表了一种替代动物实验的潜在方法,可用于评估吸入化合物的危害和风险。本研究比较了由 Calu-3、A549 或 HBEC3-KT 肺上皮细胞与 THP-1 衍生的巨噬细胞和 EA.hy926 内皮细胞共培养的共培养物,在屏障能力和对细颗粒物标准参考样品(SRM 2786)的反应方面。高内涵成像分析显示,不同细胞模型之间具有相似的细胞组成。用跨上皮电阻和 Na-荧光素通透性测量,具有 Calu-3 细胞的 3D 细胞培养物显示出最大的屏障能力。在基于 Calu-3 和 A549 细胞的 3D 细胞培养物中检测到了黏液的产生。在 ALI 下暴露于 SRM 2786 会增加细胞因子的释放和与炎症和异生物质代谢相关的基因的表达。此外,THP-1 衍生的巨噬细胞的存在是所有细胞模型中细胞因子反应的核心。虽然不同的 3D 细胞培养模型产生了定性相似的反应,但与 Calu-3 模型相比,A549 和 HBEC3-KT 模型的基底外侧隔室中观察到更明显的促炎反应,这可能是由于它们的屏障能力降低,以及在顶侧隔室中分泌的介质保留减少所致。