乳铁蛋白与胆汁酸相互作用,增加大鼠粪便胆固醇排泄。

Kanae Nakamura, S. Morishita, Tomoji Ono, M. Murakoshi, K. Sugiyama, H. Kato, I. Ikeda, H. Nishino
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引用次数: 15

摘要

乳铁蛋白(LF)是哺乳动物乳中的一种多功能阳离子蛋白(pI 8.2-8.9)。我们之前报道过,在Microminipig饮食诱导的动脉粥样硬化模型中,肠溶lf可预防高胆固醇血症和动脉粥样硬化,尽管其潜在机制尚不清楚。由于假定LF与胆汁酸静电相互作用抑制肠道胆固醇吸收,因此LF可以促进胆固醇排泄。在本研究中,我们在体外评估了LF与牛磺胆酸盐的相互作用,以及LF对大鼠胆固醇排泄的影响。牛磺胆酸酯与LF的结合率显著高于与转铁蛋白的结合率(pI为5.2 ~ 6.3)。给大鼠喂食含有5% LF的高胆固醇饮食(HCD),在给药后7.5 ~ 60 min用ELISA法检测上小肠的LF。大鼠分别饲喂对照组、HCD或HCD + 5%低脂饲料21天。HCD组粪便中性类固醇和肝脏胆固醇水平显著高于对照组。在HCD中添加LF可显著提高粪便中性类固醇水平(提高22%,p < 0.05),降低肝脏胆固醇水平(降低17%,p < 0.05)。这些参数呈负相关(R = -0.63, p < 0.05)。这些结果表明,LF通过与胆汁酸相互作用促进胆固醇排泄。
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Lactoferrin interacts with bile acids and increases fecal cholesterol excretion in rats.
Lactoferrin (LF) is a multifunctional cationic protein (pI 8.2-8.9) in mammalian milk. We previously reported that enteric-LF prevented hypercholesterolemia and atherosclerosis in a diet-induced atherosclerosis model using Microminipig, although the underlying mechanisms remain unclear. Because LF is assumed to electrostatically interact with bile acids to inhibit intestinal cholesterol absorption, LF could promote cholesterol excretion. In this study, we assessed the interaction between LF and taurocholate in vitro, and the effect of LF on cholesterol excretion in rats. The binding rate of taurocholate to LF was significantly higher than that to transferrin (pI 5.2-6.3). When rats were administered a high-cholesterol diet (HCD) containing 5% LF, LF was detected using ELISA in the upper small intestine from 7.5 to 60 min after the administration. Rats were fed one of the following diets: control, HCD, or HCD + 5% LF for 21 days. Fecal neutral steroids and hepatic cholesterol levels in the HCD group were significantly higher than those in the control group. The addition of LF to a HCD significantly increased fecal neutral steroids levels (22% increase, p < 0.05) and reduced hepatic cholesterol levels (17% decrease, p < 0.05). These parameters were inversely correlated (R = -0.63, p < 0.05). These results suggest that LF promotes cholesterol excretion via interactions with bile acids.
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