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利用微分干涉显微镜和高速视频系统研究培养的人呼吸道细胞的纤毛摆动。

Ciliary beat of cultured human respiratory cells studied with differential interference microscope and high speed video system.

作者信息

Rautiainen M, Matsune S, Shima S, Sakamoto K, Hanamure Y, Ohyama M

机构信息

Department of Oto-Rhino-Laryngology, Kagoshima University, Japan.

出版信息

Acta Otolaryngol. 1992 Sep;112(5):845-51. doi: 10.3109/00016489209137483.

Abstract

The ciliary beating of upper respiratory tract cells cultured on cover glasses was studied by using differential interference microscope equipped with high speed video. By culturing the cells on collagen coated cover glasses, objectives with higher magnifications could be used. With this system we could evaluate not only ciliary beat frequency, but also amplitude, wave form, orientation and synchrony of ciliary beating. Also some structural anomalies such as compound cilia and tide cilia bundles could be recognized. Ciliary beat frequency measured from 1,026 ciliated cells was 20.6 +/- 4.7 Hz (mean +/- SD). The orientation of ciliary beat directions was random and the mean standard deviation for measured angles was 73.0 degrees +/- 28.9 degrees (mean SD +/- SD). When the ciliary beat frequency was 20 Hz, the time used for effective phase was 0.022 +/- 0.002 s (mean +/- SD), and 0.028 +/- 0.004 s (mean +/- SD) for the recovery phase of beat. This system is advantageous for studying ciliary function because all parts can be studied simultaneously with higher magnification, and the effects of chemical physical mediators can be studied without disturbing effects of the autonomic nervous system or secretory cells. Also, the same cells could be observed before and after challenge with test medication and thus evaluated more accurately.

摘要

利用配备高速视频的微分干涉显微镜,对培养在盖玻片上的上呼吸道细胞的纤毛运动进行了研究。通过在胶原包被的盖玻片上培养细胞,可以使用更高放大倍数的物镜。利用该系统,我们不仅可以评估纤毛搏动频率,还可以评估纤毛搏动的幅度、波形、方向和同步性。此外,还可以识别一些结构异常,如复合纤毛和潮汐纤毛束。从1026个纤毛细胞测得的纤毛搏动频率为20.6±4.7Hz(平均值±标准差)。纤毛搏动方向的取向是随机的,测量角度的平均标准差为73.0度±28.9度(平均值±标准差)。当纤毛搏动频率为20Hz时,有效相位所用时间为0.022±0.002s(平均值±标准差),搏动恢复阶段所用时间为0.028±0.004s(平均值±标准差)。该系统有利于研究纤毛功能,因为可以在更高放大倍数下同时研究所有部分,并且可以在不干扰自主神经系统或分泌细胞影响的情况下研究化学物理介质的作用。此外,可以在给予测试药物前后观察相同的细胞,从而进行更准确的评估。

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