Change in tolbutamide permeability in rat jejunum and Caco-2 cells by Sho-saiko-to (Xiao Chai Hu Tang), a Chinese traditional medicine.

N. Nishimura, Tomichika Uemura, K. Iwamoto, K. Naora
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引用次数: 1

Abstract

OBJECTIVES This study was designed to investigate the effects of Sho-saiko-to (Xiao Chai Hu Tang), a Chinese traditional medicine, on the membrane permeability of tolbutamide in the intestinal tract. We carried out an in-situ loop study with rat jejunum and a transport study with Caco-2 cell monolayers. METHODS In the in-situ loop study, absorption clearance of tolbutamide was estimated from the drug concentrations in the loop and plasma. The apical-to-basolateral and basolateral-to-apical transport of tolbutamide and d-mannitol, a paracellular transport marker, was assessed using Caco-2 cell monolayers cultured on a polycarbonate membrane. KEY FINDINGS The absorption clearance of tolbutamide was enhanced by a concomitant dose of Sho-saiko-to over 10 min in the rat in-situ loop. Sho-saiko-to increased the apical-to-basolateral transport of tolbutamide, whereas the basolateral-to-apical transport of this drug was reduced by Sho-saiko-to. On the other hand, in both directions the P(app) of d-mannitol was reduced by the presence of Sho-saiko-to. Furthermore, the apical-to-basolateral transport of tolbutamide in ATP-depleted Caco-2 cells was diminished by Sho-saiko-to. These findings suggest that Sho-saiko-to can facilitate the epithelial membrane permeability of tolbutamide across the rat jejunum in-situ and Caco-2 cell monolayers. Since Sho-saiko-to suppressed the passive transport of tolbutamide from the apical-to-basolateral side, enhanced permeability may be related to effects of Sho-saiko-to on the energy-dependent transport of tolbutamide in the intestine. CONCLUSIONS Our findings suggest that Sho-saiko-to might facilitate the energy-dependent transport of tolbutamide across the rat jejunum in-situ and Caco-2 cell monolayers.
中药消柴胡汤对大鼠空肠和Caco-2细胞甲磺丁胺通透性的影响
目的观察中药消柴胡汤对大鼠肠道内甲磺丁胺膜通透性的影响。我们对大鼠空肠进行了原位环研究,并对Caco-2细胞单层进行了转运研究。方法原位环法研究中,通过环内药物浓度和血浆中药物浓度估算对甲苯丁胺的吸收清除率。利用聚碳酸酯膜上培养的Caco-2细胞单层,评估了甲磺丁酰胺和d-甘露醇(一种细胞旁转运标志物)的根尖到基底外侧和基底外侧到根尖的转运。主要发现:在大鼠原位环中,同时给药10 min以上的shoo -saiko-to可增强甲苯丁酰胺的吸收清除率。shoo -saiko-to增加了甲磺丁胺从基底外侧到基底外侧的转运,而shoo -saiko-to则减少了甲磺丁胺从基底外侧到基底外侧的转运。另一方面,在两个方向上,d-甘露醇的P(app)都因shoo -saiko-to的存在而降低。此外,在atp耗尽的Caco-2细胞中,shoo -saiko-to减少了甲磺丁酰胺的尖向基底侧转运。这些结果表明,shoo -saiko-to可以促进甲苯丁胺在大鼠空肠原位和Caco-2细胞单层上的上皮膜通透性。由于shoo -saiko-to抑制了tolbutamide从根尖到基底外侧的被动运输,因此增强的通透性可能与shoo -saiko-to对肠道中tolbutamide的能量依赖性运输的影响有关。结论shoo -saiko-to可能促进了甲苯丁胺在大鼠空肠原位和Caco-2细胞单层上的能量依赖性运输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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