Maher M M, Gontarek J D, Bess R S, Donowitz M, Yeo C J
Department of Surgery, Johns Hopkins Medical Institutions, Baltimore, Maryland, USA.
Gastroenterology. 1997 Jan;112(1):174-83. doi: 10.1016/s0016-5085(97)70232-4.
BACKGROUND & AIMS: Three different Na+/H+ exchange isoforms have been localized in mammalian ileum: Na+/H+ exchange isoform 1 (NHE1) on the basolateral membrane and NHE2 and NHE3 on the brush border membrane. The aim of this study was to determine whether NHE3 is the predominant isoform serving basal ileal Na+ absorption.
Immunocytochemistry was performed on canine ileum with specific polyclonal antibodies. Absorption studies (n = 58) were performed in dogs with 25-cm ileal Thiry-Vella fistulas. In groups 1-4, luminal 5-(N,N-dimethyl)-amiloride (DMA) was administered at doses of 100 nmol/L, 5 mumol/L, and 0.7 mmol/L to inhibit NHE1, NHE2, and NHE3, respectively. In groups 5-8, 1 mmol/L phlorizin (PHLZ), 0.7 mmol/L DMA, and 1 mmol/L PHLZ plus 0.7 mmol/L DMA were administered intraluminally.
NHE2 and NHE3 were present in the brush border of canine ileal villus epithelial cells. The highest concentration of DMA (0.7 mmol/L) caused a significant reduction (P < 0.05) in basal ileal water and sodium absorption. PHLZ and 0.7 mmol/L DMA each alone significantly reduced basal ileal absorption (P < 0.05), whereas PHLZ plus 0.7 mmol/L DMA had an additive effect.
NHE3 seems to be the Na+/H+ exchange isoform involved in the modulation of basal ileal water and sodium absorption. Both Na+/H+ exchange mediated through NHE3 and Na(+)-glucose cotransport contribute to basal ileal water and sodium absorption.
三种不同的钠氢交换亚型已定位在哺乳动物回肠中:基底外侧膜上的钠氢交换亚型1(NHE1)以及刷状缘膜上的NHE2和NHE3。本研究的目的是确定NHE3是否是回肠基础钠吸收的主要亚型。
用特异性多克隆抗体对犬回肠进行免疫细胞化学检测。在患有25厘米回肠Thiry-Vella瘘管的犬中进行吸收研究(n = 58)。在第1 - 4组中,分别以100 nmol/L、5 μmol/L和0.7 mmol/L的剂量给予腔内5 -(N,N - 二甲基)氨氯吡脒(DMA)以抑制NHE1、NHE2和NHE3。在第5 - 8组中,腔内给予1 mmol/L根皮苷(PHLZ)、0.7 mmol/L DMA以及1 mmol/L PHLZ加0.7 mmol/L DMA。
NHE2和NHE3存在于犬回肠绒毛上皮细胞的刷状缘。最高浓度的DMA(0.7 mmol/L)导致回肠基础水和钠吸收显著降低(P < 0.05)。单独使用PHLZ和0.7 mmol/L DMA均显著降低回肠基础吸收(P < 0.05),而PHLZ加0.7 mmol/L DMA具有相加作用。
NHE3似乎是参与调节回肠基础水和钠吸收的钠氢交换亚型。通过NHE3介导的钠氢交换和钠 - 葡萄糖共转运都有助于回肠基础水和钠吸收。