海藻酸钙作为食品添加剂的药理作用及应用

Fumiyoshi Kasahara, Yoko Idota, Yuuki Fukai, C. Kakinuma, T. Ogihara
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摘要

本文综述了海藻酸钙盐(Ca-Alg)的生理作用,重点介绍了我们的工作。首先,我们发现Ca-Alg促进排泄并减少各种金属的吸收,并且比海藻酸钠(Na-Alg)更有效。钙- alg还能降低高胆固醇饮食大鼠2周的血浆胆固醇(Cho)。这被认为是由于Ca-Alg和胆汁酸结合导致胆汁酸的肠重吸收减少;这导致肝脏中Cho合成胆汁酸的增加,导致血浆中Cho的减少。高脂饮食5周后,Ca-Alg显著抑制大鼠血液甘油三酯(TG)水平的升高,导致肝脏和全身脂肪堆积减少。食物中的钙- alg也能有效抑制大鼠和人类餐后血糖水平的升高。一项体外研究表明,钙- alg抑制α -葡萄糖苷酶与其底物麦芽糖的相互作用。综上所述,钙alg作为一种功能性食品成分具有许多有益的作用,有望成为一种安全有效的长期使用的食品添加剂。肝病理显示HF组有明显的圆形液泡,而Ca-Alg组有较少的液泡。这些结果表明Ca-Alg通过直接抑制TG吸收来降低血TG,独立于其对Cho的影响。至于Ca-Alg作用的机制,肝脏病理显示,HF组存在明确的圆形脂肪滴,推测代表TG积累,但在HF组减少
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmacological Effects and Utility as a Food Additive of Calcium Alginate
Here we review the physiological effects of the calcium salt of alginate (Ca-Alg), focusing on our own work. First, we found that Ca-Alg promotes the excretion and decreases the absorption of various metals, and does so more effectively than sodium alginate (Na-Alg). Ca-Alg also reduced plasma cholesterol (Cho) in rats fed a high-Cho diet for 2 weeks. This was considered to be due to reduced intestinal reabsorption of bile acid, resulting from the binding of Ca-Alg and bile acid; this induces an increase of bile acid synthesis from Cho in the liver, leading to a decrease in Cho in plasma. The increase of blood triglyceride (TG) levels in rats fed a high-fat diet for 5 weeks was significantly suppressed by Ca-Alg, leading to decreased fat accumulation in the liver and whole body. Ca-Alg in food was also effective in suppressing the postprandial increase of blood glucose level in rats and humans. An in vitro study suggested that Ca-Alg inhibits the interaction between α -glucosidase and its substrate maltose. In conclusion, Ca-Alg has a number of beneficial effects as a functional food ingredient, and is expected to be a safe and effective food additive for long-term use. the total in the RMD, 5 and 10% Ca-Alg Hepatic pathology clear circular vacuoles TG accumulation in the HF group, while fewer vacuoles were in the Ca-Alg groups.These results suggest that Ca-Alg lowers blood TG through direct suppression of TG absorption, independently of its effect on Cho. As regards the mechanism of Ca-Alg action, hepatic pathology showed that clear circular fatty droplets presumed to represent TG accumulation were present in the HF group, but were reduced in
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