In vitro restructuring effect of human airway immunoglobulins A and lysozyme on airway secretions.

E Puchelle, J Jacqot, J M Zahm
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Abstract

The in vitro effects of different pure proteins: IgA, IgM and human airway lysozyme (HAL) on rheological and transport properties of airway secretions from patients with chronic bronchitis, were studied. The proteins were added to the reconstituted sputum samples in concentrations within the range present in sputa (IgA: 4% HAL: 1% and IgM: 0.5%). A significant (p less than 0.05) positive increase in apparent viscosity and in elastic modulus was observed after adding IgA or HAL. This suggests that these two secretory proteins contribute to the viscoelastic properties of airway secretions and may act as restructuring molecules. After protein overload of the sputum samples, opposite changes in mucociliary transport rate were observed according to whether the initial values of protein concentration and rheology were abnormally low or high. These results suggest that, as for mucus rheology, there is an intermediate range of IgA and HAL optimal for mucociliary transport rate.

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人气道免疫球蛋白A和溶菌酶对气道分泌物的体外重组作用。
研究了不同纯蛋白IgA、IgM和人气道溶菌酶(HAL)对慢性支气管炎患者气道分泌物流变学和转运特性的体外影响。在痰液存在的浓度范围内(IgA: 4% HAL: 1%和IgM: 0.5%),将蛋白质添加到重组痰液样品中。添加IgA或HAL后,表观粘度和弹性模量显著(p < 0.05)正增加。这表明,这两种分泌蛋白有助于气道分泌物的粘弹性特性,并可能作为重组分子。痰样蛋白超载后,根据蛋白浓度和流变学的初始值异常低或异常高,观察到粘膜纤毛转运率的相反变化。这些结果表明,在黏液流变学方面,IgA和HAL的中间范围最适合黏液纤毛运输速率。
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