首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Na-H Exchanger Isoform-2 (NHE2) Mediates Butyrate-dependent Na+ Absorption in Dextran Sulfate Sodium (DSS)-induced Colitis
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Na-H Exchanger Isoform-2 (NHE2) Mediates Butyrate-dependent Na+ Absorption in Dextran Sulfate Sodium (DSS)-induced Colitis

机译:Na-H交换异构体2(NHE2)介导右旋糖酐硫酸钠(DSS)诱导的结肠炎中丁酸依赖的Na +吸收

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摘要

Diarrhea associated with ulcerative colitis (UC) occurs primarily as a result of reduced Na+ absorption. Although colonic Na+ absorption is mediated by both epithelial Na+ channels (ENaC) and Na-H exchangers (NHE), inhibition of NHE-mediated Na+ absorption is the primary cause of diarrhea in UC. As there are conflicting observations reported on NHE expression in human UC, the present study was initiated to identify whether NHE isoforms (NHE2 and NHE3) expression is altered and how Na+ absorption is regulated in DSS-induced inflammation in rat colon, a model that has been used to study UC. Western blot analyses indicate that neither NHE2 nor NHE3 expression is altered in apical membranes of inflamed colon. Na+ fluxes measured in vitro under voltage clamp conditions in controls demonstrate that both HCO3-dependent and butyrate-dependent Na+ absorption are inhibited by S3226 (NHE3-inhibitor), but not by HOE694 (NHE2-inhibitor) in normal animals. In contrast, in DSS-induced inflammation, butyrate-, but not HCO3-dependent Na+ absorption is present and is inhibited by HOE694, but not by S3226. These observations indicate that in normal colon NHE3 mediates both HCO3-dependent and butyrate-dependent Na+ absorption, whereas DSS-induced inflammation activates NHE2, which mediates butyrate-dependent (but not HCO3-dependent) Na+ absorption. In in vivo loop studies HCO3-Ringer and butyrate-Ringer exhibit similar rates of water absorption in normal rats, whereas in DSS-induced inflammation luminal butyrate-Ringer reversed water secretion observed with HCO3-Ringer to fluid absorption. Lumen butyrate-Ringer incubation activated NHE3-mediated Na+ absorption in DSS-induced colitis. These observations suggest that the butyrate activation of NHE2 would be a potential target to control UC-associated diarrhea.
机译:溃疡性结肠炎(UC)相关的腹泻主要是由于Na + 吸收减少所致。尽管结肠Na + 的吸收是通过上皮Na + 通道(ENaC)和Na-H交换子(NHE)介导的,但NHE介导的Na + <吸收是UC腹泻的主要原因。由于关于人类UC中NHE表达的报道存在矛盾,本研究旨在确定NHE亚型(NHE2和NHE3)的表达是否发生改变以及在DSS诱导的炎症中如何调节Na + 吸收在大鼠结肠中,已经用于研究UC的模型。蛋白质印迹分析表明,发炎的结肠顶膜中的NHE2和NHE3表达均未改变。对照中在电压钳条件下体外测量的Na + 通量表明,HCO3 -依赖性和丁酸酯依赖性的Na + 吸收均受到抑制。 S3226(NHE3抑制剂),但在正常动物中不被HOE694(NHE2抑制剂)吸收。相比之下,在DSS诱导的炎症中,存在丁酸酯,但不依赖HCO3 -的Na + 吸收,并且被HOE694抑制,但不受S3226抑制。这些观察结果表明,正常结肠中NHE3介导HCO3 -依赖性和丁酸盐依赖性Na + 吸收,而DSS诱导的炎症激活NHE2,后者介导丁酸依赖性(但不依赖HCO3 -)Na + 吸收。在体内循环研究中,正常大鼠中的HCO3 - -Ringer和丁酸盐-Ringer表现出相似的吸水率,而在DSS诱导的炎症中,HCO3 - -林格吸收液体。 Lumen Butyrate-Ringer孵育激活了DSS诱导的结肠炎中NHE3介导的Na + 吸收。这些观察结果表明,NHE2的丁酸活化可能是控制UC相关性腹泻的潜在靶标。

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