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Factors affecting the microclimate pH in rat jejunum.

机译:影响大鼠空肠小气候pH值的因素。

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摘要

1. Single-barrelled pH-sensitive microelectrodes filled with liquid ion exchanger were used to study the layer of microclimate pH in the vicinity of the surface of rat jejunum in vitro. 2. During perfusion with a Na+-containing solution of pH 7.30, a layer having a pH gradient ranging from 7.30 (pH of the luminal bulk phase) to 6.05 +/- 0.03 (pH of the deepest region) was detected in eighteen different animals. The thickness of the layer was estimated to be 600-700 microns. No regional difference was seen along the height of the villus. 3. The addition of D-glucose to the perfusion solution significantly augmented the acidity of the deepest region without changing the thickness of the layer. On the other hand, the elimination of Na+ from the perfusion solution caused a significant reduction of the pH gradient. The lowest pH changed from a control value of 6.18 +/- 0.15 (n = 13 measurements from three animals) to 6.46 +/- 0.06 (n = 13). The gradient was sensitive to amiloride in the presence of Na+, K+, Ca2+ and Cl- had no significant effect on the microclimate pH. 4. Depletion of the surface mucus by treatment with dithiothreitol significantly raised the pH of the deepest region. 5. Glycylglycine and L-carnosine were found to reduce the microclimate pH gradient significantly, while glycine did not. 6. These results indicate that H+ secretion by the Na+-H+ antiport and the formation of mucus layer are important factors for maintaining the microclimate pH layer, and that H+-coupled co-transport, such as H+-dipeptide co-transport, causes a significant diminution of the microclimate pH gradient.
机译:1.用装有液体离子交换剂的单桶pH敏感微电极体外研究大鼠空肠表面附近的微气候pH层。 2.在用pH 7.30的含Na +溶液灌注期间,在十八只不同的动物中检测到pH梯度范围为7.30(腔体本体相的pH)至6.05 +/- 0.03(最深区域的pH)的层。该层的厚度估计为600-700微米。沿绒毛高度未发现区域差异。 3.在灌注溶液中添加D-葡萄糖可显着增加最深区域的酸度,而不会改变层的厚度。另一方面,从灌注溶液中消除Na +导致pH梯度显着降低。最低pH值从控制值6.18 +/- 0.15(三只动物的n = 13个测量值)变为6.46 +/- 0.06(n = 13)。在Na +,K +,Ca2 +和Cl-的存在下,梯度对阿米洛利敏感,对微气候pH值无明显影响。 4.通过用二硫苏糖醇处理来清除表面粘液会显着提高最深区域的pH。 5.发现甘氨酰甘氨酸和左旋肌氨酸显着降低了小气候的pH梯度,而甘氨酸却没有。 6.这些结果表明,Na + -H +反向转运所引起的H +分泌和粘液层的形成是维持微气候pH层的重要因素,H +偶联的共同转运(例如H +-二肽共同转运)导致小气候pH梯度显着减小。

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