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首页> 外文期刊>International Journal of Food Sciences and Nutrition >Dietary sn-2 palmitic triacylglycerols reduced faecal lipids, calcium contents and altered lipid metabolism in Sprague-Dawley rats
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Dietary sn-2 palmitic triacylglycerols reduced faecal lipids, calcium contents and altered lipid metabolism in Sprague-Dawley rats

机译:膳食SN-2棕榈酰硫基甘油减少了粪便脂质,钙含量和Sprague-Dawley大鼠的脂质代谢改变

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In this study, the impact of dietary sn-2 palmitic triacylglycerol (sn-2 PTAG) on faecal lipids, calcium excretion and lipid metabolic alternation was investigated in Sprague-Dawley (SD) rats fed with high-fat diet containing either palm olein (PO, sn-2 palmitic acid (PA) of 14.8%), sn-2 PTAG50 (sn-2 PA of 56.4%) or sn-2 PTAG70 (sn-2 PA of 72.4%), respectively. After 4-week feeding period, SD rats fed with sn-2 PTAGs showed reduced faecal soap fatty acids, neutral lipid and calcium excretion compared to those of PO-fed rats, whereas a significant difference was only observed for the sn-2 PTAG70-fed rats (p < .05). Moreover, dietary sn-2 PTAG70 also showed a significant effect on decreasing serum triacylglycerol (TAG) level, reducing perirenal adipocyte size and regulating lipid metabolism in small intestine and perirenal adipose tissue of SD rats. Significantly increased mRNA levels of genes involved in intestinal lipid anabolism as well as lipid catabolism were both observed in the sn-2 PTAG70-fed rats (p < .05). Meanwhile, dietary sn-2 PTAG70 also significantly up-regulated lipolysis, mitochondrial fatty acid oxidation and thermogenesis-related gene and protein levels in perirenal adipose tissue, which might be correlated with the reduced perirenal adipocyte size. Taken together, our findings indicated that sn-2 PTAG70 may have some beneficial effects on intestinal lipid utilisation and lipid metabolic activity for energy supply in visceral adipose tissue.
机译:在这项研究中,研究了含有棕榈油蛋白的高脂饮食( PO,SN-2棕榈酸(PA)为14.8%),SN-2 PTAG50(SN-2 PA为56.4%)或SN-2 PTAG70(SN-2 PA为72.4%)。在4周的喂养期后,与SN-2 PTAG喂养的SD大鼠显示出与Po馈大鼠相比的粪便皂脂肪酸,中性脂质和钙排泄,而仅针对SN-2 PTAG70-仅观察到显着差异 - 喂养大鼠(p <.05)。此外,膳食SN-2 PTAG70还对降低血清三酰基甘油(标签)水平的显着影响,降低了肝癌小肠和肝癌脂肪组织中的肝癌脂肪细胞大小和调节脂质代谢。在SN-2 PTAG70馈大鼠SN-2 PTAG70-FED大鼠中观察到肠脂分脂和脂质分解代谢参与的基因的MRNA水平显着增加(P <.05)。同时,膳食SN-2 PTAG70也显着上调脂肪解,线粒体脂肪酸氧化和肝脏脂肪组织中的热生成相关基因和蛋白质水平,其可能与降低的肝癌脂肪细胞大小相关。我们的研究结果表明,SN-2 PTAG70对内脏脂肪组织中的能量供应具有一些有益的效果。

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