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评估储存和评估呼吸道纤毛运动所需的液体介质

Assessment of liquid media requirements for storing and evaluating respiratory cilia motility.

作者信息

Francis Richard

机构信息

College of Medicine and Dentistry, James Cook University, Townsville, QLD, Australia.

出版信息

PeerJ. 2025 Mar 27;13:e19191. doi: 10.7717/peerj.19191. eCollection 2025.

Abstract

Mucociliary clearance is critical for maintaining normal lung function. Respiratory cilia which drive mucociliary clearance are commonly studied by measuring cilia beat frequency (CBF). There is currently significant variation within the literature regarding what is a normal value for CBF, this may be due in part to the large variety of liquid media used to suspend, maintain, and image ciliated cells. This study aimed to conduct a thorough examination to assess how media choice influences respiratory cilia motility. To accomplish this, Adult C57/BL6 mouse trachea samples were incubated in eight commonly used liquid media including: Saline, Dulbecco's Phosphate-Buffered Saline (DPBS), Hanks' Balanced Salt Solution (HBSS), Medium 199 (M199), Dulbecco's Modified Eagle's Medium (DMEM), Roswell Park Memorial Institute Medium (RPMI), Minimum Essential Medium (MEM), and Leibovitz's L-15 Medium (L-15); with or without 10% FBS supplementation. The effects of storage time (0-12 hours) and storage temperature (4 °C or room temperature) were also assessed. All media except saline were found to be equally effective in maintaining cilia function in airway samples that were freshly harvested and immediately imaged. Saline, however, significantly reduced the number of cells with motile cilia. A more complex pattern emerged when samples were stored before imaging. In saline, cilia function was significantly impaired after just one hour of storage. Samples stored in all other media showed strong maintenance of motile cilia function, with only minor changes. Notably, cilia function was better preserved with storage at 4 °C, while room temperature storage generally led to significant increases in CBF, especially in media containing FBS. Lastly, FBS supplementation was essential for maintaining cilia motility in L-15 media, as L-15 without FBS resulted in significant decreases in cilia motility following storage at either 4 °C or room temperature. In conclusion, saline should only be used if cilia are to be imaged immediately, as cilia stored in saline quickly lose motile function. All other commonly used media appear equally capable of maintaining motile cilia function for up to 12 hours when stored at 4 °C. Surprisingly, DPBS was just as effective as more expensive media in preserving ciliated samples. Storing ciliated tissue at room temperature generally leads to increased CBF, particularly in media containing FBS. Finally, L-15 media alone specifically requires the addition of 10% FBS to maintain cilia motility. These findings provide a valuable foundation for standardizing the handling, collection, and transport of ciliated samples for motile cilia assessment.

摘要

黏液纤毛清除功能对于维持正常肺功能至关重要。驱动黏液纤毛清除功能的呼吸道纤毛通常通过测量纤毛摆动频率(CBF)来进行研究。目前,文献中关于CBF的正常值存在显著差异,这可能部分归因于用于悬浮、维持和成像纤毛细胞的液体培养基种类繁多。本研究旨在进行全面检查,以评估培养基的选择如何影响呼吸道纤毛的运动性。为实现这一目标,将成年C57/BL6小鼠的气管样本在八种常用液体培养基中孵育,这些培养基包括:生理盐水、杜氏磷酸盐缓冲盐水(DPBS)、汉克斯平衡盐溶液(HBSS)、199培养基(M199)、杜氏改良 Eagle培养基(DMEM)、罗斯威尔公园纪念研究所培养基(RPMI)、最低必需培养基(MEM)和莱博维茨L-15培养基(L-15);添加或不添加10%胎牛血清(FBS)。还评估了储存时间(0 - 12小时)和储存温度(4°C或室温)的影响。发现除生理盐水外,所有培养基在维持新鲜收获并立即成像的气道样本中的纤毛功能方面同样有效。然而,生理盐水显著减少了具有运动性纤毛的细胞数量。当样本在成像前储存时,出现了更复杂的情况。在生理盐水中,储存仅一小时后纤毛功能就显著受损。储存在所有其他培养基中的样本显示运动性纤毛功能得到了很好的维持,只有微小变化。值得注意的是,在4°C储存时纤毛功能保存得更好,而室温储存通常导致CBF显著增加,尤其是在含有FBS的培养基中。最后,添加FBS对于维持L-15培养基中的纤毛运动性至关重要,因为不含FBS的L-15在4°C或室温储存后会导致纤毛运动性显著下降。总之,如果要立即对纤毛进行成像,应仅使用生理盐水,因为储存在生理盐水中的纤毛会迅速丧失运动功能。当在4°C储存时,所有其他常用培养基似乎同样能够维持运动性纤毛功能长达12小时。令人惊讶的是,DPBS在保存纤毛样本方面与更昂贵的培养基同样有效。在室温下储存纤毛组织通常会导致CBF增加,特别是在含有FBS的培养基中。最后,单独的L-15培养基特别需要添加10% FBS以维持纤毛运动性。这些发现为标准化用于运动性纤毛评估的纤毛样本的处理、采集和运输提供了有价值的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0436/11955192/e903f992dcbb/peerj-13-19191-g001.jpg

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