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用于研究黏液运输速度和黏液纤毛频率的蛙腭。

The frog palate for studying mucus transport velocity and mucociliary frequency.

作者信息

Puchelle E, Tournier J M, Petit A, Zahm J M, Lauque D, Vidailhet M, Sadoul P

出版信息

Eur J Respir Dis Suppl. 1983;128 (Pt 1):293-303.

PMID:6604652
Abstract

The palate of the frog possess a pseudostratified epithelium with mucus secreting cells and numerous ciliated cells covered with a continuous mucus blanket of 4 to 8 micron thickness. This palate can be used as a simple model for studying mucus transport and giving rapid information on the transportability of pathological bronchial secretion by the ciliary mechanism. The analysis of the relationship between the rheological properties of sputum an their transport rates on the frog palate showed that the highest transport rates were obtained with sputum samples characterized by a high spinability (Sp greater than 70 mm) and an intermediate range of viscosity (25-180 P) and elasticity (SR = 4-12 units). The mucociliary frequency (Fm) of the frog palate was measured by a photoelectric method and analyzed as a distribution function of the ciliary frequencies by the Fast Fourier Transform method. Fm decreased significantly after mucus depletion and was restored when adding a drop of frog mucus collected on a freshly excised frog palate. On the other hand, it remained about 20% lower than the original predepleted value, when adding purulent sputum collected in patients with chronic bronchitis and cystic fibrosis. The frog palate appears as a valuable model for analyzing the mucociliary transport rate and also for studying the effect of pathological secretions on the ciliary beating frequency.

摘要

青蛙的腭部具有假复层上皮,其中含有黏液分泌细胞和众多纤毛细胞,表面覆盖着一层厚度为4至8微米的连续黏液层。该腭部可作为一个简单模型,用于研究黏液运输,并快速获取有关病理支气管分泌物通过纤毛机制的运输能力的信息。对痰液流变学特性与其在青蛙腭部运输速率之间关系的分析表明,运输速率最高的痰液样本具有高可纺性(Sp大于70毫米)、中等黏度范围(25 - 180泊)和弹性(SR = 4 - 12单位)。青蛙腭部的黏液纤毛频率(Fm)通过光电方法测量,并采用快速傅里叶变换方法作为纤毛频率的分布函数进行分析。黏液耗尽后,Fm显著下降,当添加一滴从刚切除的青蛙腭部收集的青蛙黏液时,Fm得以恢复。另一方面,当添加慢性支气管炎和囊性纤维化患者咳出的脓性痰液时,Fm仍比原始排空前的值低约20%。青蛙腭部似乎是一个有价值的模型,可用于分析黏液纤毛运输速率,也可用于研究病理分泌物对纤毛跳动频率的影响。

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