Colacicco G, Basu M K, Scarpelli E M
Respir Physiol. 1976 Aug;27(2):169-86. doi: 10.1016/0034-5687(76)90072-4.
Both high pH at 25 degrees C and humidity at 37 degrees C prevent DPL films from attaining zero surface tension, whereas humidity at 25 degrees C and high pH at 37 degrees C do not. At 37 degrees C DPL lowered surface tension to zero when spread from organic solvent or when absorbed from aqueous 0.15 M NaCl in the surface balance in which the surface film was exposed to the room air (dry film). Upon saturation of the atmosphere with water vapor in equilibrium with the aqueous phase at 37 degrees C in a closed chamber, DPL lost the ability to produce zero surface tension, and the gamma min of the DPL film increased from zero to 22 dyne/cm. Addition of DPL in chloroform to distilled water before dispersion by sonication did not prevent the effect of the humidity. However, when the chloroform solution of DPL was added to 0.15 M NaCl before sonication, the adsorbed film produced immediately a stable gamma min of zero in a saturated atmosphere, 37 degrees C. In the absence of chloroform, with DPL adsorbed from either distilled water or 0.15 M NaCl, the effect of humidity was reversed either by removing the chamber and returning the wet film to room air or by introducing small quantities of dispersing agents such as cholesteryl palmitate. However, whereas the effect of humidifying the air was reversible indefinitely, the effect of cholesteryl palmitate (zero surface tension, wet or dry film) was irreversible. This means that there are substances or conditions that can assist DPL films in maintaining zero surface tension when such films are exposed to humidity-saturated air at 37 degrees C.
25摄氏度时的高pH值和37摄氏度时的湿度都会阻止二棕榈酰磷脂酰胆碱(DPL)薄膜达到零表面张力,而25摄氏度时的湿度和37摄氏度时的高pH值则不会。在37摄氏度时,当从有机溶剂铺展或从0.15M NaCl水溶液在表面平衡中吸收时(表面薄膜暴露于室内空气,即干膜),DPL会将表面张力降低至零。在封闭腔室中,当大气与37摄氏度的水相达到水蒸气平衡而饱和时,DPL失去产生零表面张力的能力,且DPL薄膜的最小表面张力(γmin)从零增加到22达因/厘米。在通过超声分散之前,将氯仿中的DPL添加到蒸馏水中并不能阻止湿度的影响。然而,当在超声处理之前将DPL的氯仿溶液添加到0.15M NaCl中时,吸附膜在37摄氏度的饱和大气中立即产生稳定的零最小表面张力。在没有氯仿的情况下,当DPL从蒸馏水或0.15M NaCl中吸附时,通过移除腔室并将湿膜放回室内空气或通过引入少量分散剂如胆固醇棕榈酸酯,湿度的影响会被逆转。然而,虽然空气加湿的影响可以无限期逆转,但胆固醇棕榈酸酯(零表面张力,湿膜或干膜)的影响是不可逆的。这意味着当这些薄膜暴露于37摄氏度的湿度饱和空气中时,存在可以帮助DPL薄膜保持零表面张力的物质或条件。