Lee J S
J Physiol. 1983 Feb;335:335-41. doi: 10.1113/jphysiol.1983.sp014537.
A 'mini' canine mucosal membrane preparation permitting simultaneous determination of water (Jv) and glucose (Jg) absorption rates, microscopic examination or micropuncture of the villi was used in this study. The small membranes were more stretched than the large ones, with more than a one-fold increase in both Jv and Jg, apparently due to a change in architectural orientation between the villi and subvillous supporting tissue so as to facilitate water transport via the lymphatic system. During stirring of the bathing solution, the villi in the small membranes were widely separated from each other with more to-and-fro swaying movements than in the large ones. Stirring was seen to cause up-and-down movements of the loosely suspended large membranes but not the small ones. In the small membranes stirring caused no change in Jv but an increase in Jg due to the increase in glucose concentration in the absorbate, while in the large membranes both Jv and Jg were greatly increased. It is thus considered that the increase in absorption in the large membranes caused by stirring is mainly due to the increased membrane movements promoting lymph flow.
本研究采用一种“微型”犬类黏膜膜制剂,该制剂可同时测定水(Jv)和葡萄糖(Jg)的吸收速率,还可对绒毛进行显微镜检查或微穿刺。小膜比大膜伸展程度更大,Jv和Jg均增加了一倍以上,这显然是由于绒毛与绒毛下支持组织之间的结构取向发生了变化,从而便于水通过淋巴系统运输。在搅拌浴液时,小膜中的绒毛彼此广泛分离,来回摆动的动作比大膜中的更多。可以看到搅拌会使松散悬挂的大膜上下移动,但小膜不会。在小膜中,搅拌不会使Jv发生变化,但由于吸收液中葡萄糖浓度增加,Jg会增加,而在大膜中,Jv和Jg都会大幅增加。因此,认为搅拌导致大膜吸收增加主要是由于膜运动增加促进了淋巴流动。