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优化正常人体支气管上皮(NHBE)细胞 3D 培养物,用于体外肺模型研究。

Optimization of Normal Human Bronchial Epithelial (NHBE) Cell 3D Cultures for in vitro Lung Model Studies.

机构信息

The Ohio State University, Department of Veterinary Biosciences, Columbus, OH, 43210, USA.

RAI Services Company, Winston-Salem, NC, 27101, USA.

出版信息

Sci Rep. 2019 Jan 24;9(1):500. doi: 10.1038/s41598-018-36735-z.

Abstract

Robust in vitro lung models are required for risk assessment to measure key events leading to respiratory diseases. Primary normal human bronchial epithelial cells (NHBE) represent a good lung model but obtaining well-differentiated 3D cultures can be challenging. Here, we evaluated the ability to expand primary NHBE cells in different culture conditions while maintaining their 3D culture characteristics such as ciliated and goblet cells, and ion channel function. Differentiated cultures were optimally obtained with PneumaCult-Ex Plus (expansion medium)/PneumaCult-ALI (differentiation medium). Primary cells passaged up to four times maintained airway epithelial characteristics as evidenced by ciliated pseudostratified columnar epithelium with goblet cells, trans-epithelial electrical resistance (TEER) (>400 Ohms.cm), and cystic fibrosis transmembrane conductance regulator-mediated short-circuit currents (>3 µA/cm). No change in ciliary beat frequency (CBF) or airway surface liquid (ASL) meniscus length was observed up to passage six. For the first time, this study demonstrates that CFTR ion channel function and normal epithelial phenotypic characteristics are maintained in passaged primary NHBE cells. Furthermore, this study highlights the criticality of evaluating expansion and differentiation conditions for achieving optimal phenotypic and functional endpoints (CBF, ASL, ion channel function, presence of differentiated cells, TEER) when developing in vitro lung models.

摘要

体外肺模型对于风险评估至关重要,可用于测量导致呼吸道疾病的关键事件。原代正常人支气管上皮细胞(NHBE)是一种很好的肺模型,但获得充分分化的 3D 培养物可能具有挑战性。在此,我们评估了在不同培养条件下扩增原代 NHBE 细胞的能力,同时保持其 3D 培养特性,如纤毛细胞和杯状细胞以及离子通道功能。在 PneumaCult-Ex Plus(扩增培养基)/PneumaCult-ALI(分化培养基)中可最佳获得分化培养物。传代至 4 次的原代细胞保持气道上皮细胞特征,表现为纤毛假复层柱状上皮和杯状细胞、跨上皮电阻(TEER)(>400 Ohms.cm)和囊性纤维化跨膜电导调节剂介导的短路电流(>3μA/cm)。传代至 6 代时,纤毛摆动频率(CBF)或气道表面液体(ASL)弯月面长度没有变化。本研究首次证明 CFTR 离子通道功能和正常上皮表型特征在传代的原代 NHBE 细胞中得以维持。此外,本研究强调了在开发体外肺模型时,评估扩增和分化条件对于实现最佳表型和功能终点(CBF、ASL、离子通道功能、分化细胞存在、TEER)的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/890d/6346027/f2d7f1de1296/41598_2018_36735_Fig1_HTML.jpg

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