首页> 外文期刊>The Japanese journal of physiology >Cellular signaling mechanisms underlying pharmacological action of Bak Foong Pills on gastrointestinal secretion.
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Cellular signaling mechanisms underlying pharmacological action of Bak Foong Pills on gastrointestinal secretion.

机译:白凤丸对胃肠道分泌的药理作用的细胞信号传导机制。

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摘要

Bak Foong Pills (BFP, also known as Bai Feng Wan) is an over-the-counter traditional Chinese medicine that has long been used for treating gynecological disorders and improving overall body functions, including gastrointestinal (GI) function. However, the cellular signaling mechanism underlying BFP action, especially on the GI tract, has not been elucidated. In the present study, the human colonic epithelia cell line T(84) was used as a model to investigate the effect of BFP ethanol extract on ion transport in conjunction with the short-circuit current (I(SC)) technique. The results showed that the apical addition of BFP extract produced a concentration-dependent (10-1,000 microg/ml, EC(50) = 120 microg/ml) increase in I(SC). The maximal response was observed at 500 microg/ml with an increase in I(SC) of 24.4 +/- 2.3 microA/cm(2) and apical conductance. The BFP-induced I(SC) was not observed when extracellular Cl(-) was replaced or when treated with Bumetanide (100 microM), an inhibitor of the Na(+)-K(+)-2Cl(-) cotransporter. The BFP-induced I(SC) was insensitive to the Na(+) channel blocker, amiloride, but partially inhibited by the Cl(-) channel blocker, DIDS (100 microM), and completely blocked by DPC (2 mM) or glibenclamide (1 mM) with a significant reduction in the apical conductance. The BFP-induced I(SC) could be mimicked by forskolin (10 microM), but inhibited by a pretreatment of the cells with adenylate cyclase inhibitor, MDL-12330A (10 microM). Pretreatment with EGTA (5 mM) and thapsigargin (10 microM) decreased the BFP-induced I(SC) by 10%. These results demonstrated that BFP ethanol extract exerted a stimulatory effect on gastrointestinal Cl(-) secretion by predominantly activating adenylate cyclase and apical cAMP-dependent Cl(-) channels, with minor contributions from calcium-dependent Cl(-) channels. The effect of BFP may be explored to treat GI disorders such as constipation.
机译:白凤丸(BFP Foong Pills,又称白凤丸)是一种非处方中药,长期以来一直用于治疗妇科疾病和改善全身功能,包括胃肠功能。但是,尚未阐明BFP作用,尤其是在胃肠道上的细胞信号传导机制。在本研究中,以人结肠上皮细胞系T(84)为模型,结合短路电流(I(SC))技术研究BFP乙醇提取物对离子迁移的影响。结果表明,顶端添加BFP提取物会导致I(SC)浓度依赖性增加(10-1,000 microg / ml,EC(50)= 120 microg / ml)。在500 microg / ml处观察到最大响应,I(SC)增加24.4 +/- 2.3 microA / cm(2)和根尖电导。当替换胞外Cl(-)或用布美他尼(100 microM),Na(+)-K(+)-2Cl(-)共转运蛋白的抑制剂治疗时,未观察到BFP诱导的I(SC)。 BFP诱导的I(SC)对Na(+)通道阻滞剂阿米洛利不敏感,但被Cl(-)通道阻滞剂DIDS(100 microM)部分抑制,并被DPC(2 mM)或格列本脲完全阻滞(1 mM)并显着降低根尖电导。 BFP诱导的I(SC)可以被毛喉素(10 microM)模仿,但是可以通过用腺苷酸环化酶抑制剂MDL-12330A(10 microM)预处理细胞来抑制。用EGTA(5 mM)和thapsigargin(10 microM)预处理将BFP诱导的I(SC)降低10%。这些结果表明BFP乙醇提取物主要激活腺苷酸环化酶和根尖cAMP依赖的Cl(-)通道,对胃肠道Cl(-)的分泌产生刺激作用,而钙依赖的Cl(-)通道的贡献很小。可以探索BFP的作用来治疗胃肠道疾病,例如便秘。

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