a Institute of Food and Nutraceutical Science, School of Agriculture and Biology , Shanghai Jiao Tong University , Shanghai , China.
b Wilmar (Shanghai) Biotechnology Research & Development Center Co. Ltd , Shanghai , China.
Int J Food Sci Nutr. 2019 Jun;70(4):474-483. doi: 10.1080/09637486.2018.1541968. Epub 2018 Dec 20.
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.
在这项研究中,我们用分别富含棕榈油(sn-2 棕榈酸占比 14.8%)、sn-2 三酰甘油 50(sn-2 棕榈酸占比 56.4%)和 sn-2 三酰甘油 70(sn-2 棕榈酸占比 72.4%)的饲料喂养高脂肪饮食诱导的 Sprague-Dawley 大鼠,来研究 sn-2 位棕榈酸三酰甘油(sn-2 PTAG)对粪便脂质、钙排泄和脂质代谢变化的影响。4 周喂养后,与棕榈油喂养的大鼠相比,sn-2 PTAG 喂养的大鼠粪便皂化脂肪酸、中性脂质和钙排泄减少,而 sn-2 PTAG70 喂养的大鼠差异显著(p<0.05)。此外,sn-2 PTAG70 还显著降低了血清三酰甘油(TAG)水平,减小了大鼠肾周脂肪细胞的大小,并调节了大鼠小肠和肾周脂肪组织的脂质代谢。sn-2 PTAG70 喂养的大鼠肠道脂质合成和分解代谢相关基因的 mRNA 水平显著升高(p<0.05)。同时,sn-2 PTAG70 还显著上调了肾周脂肪组织中脂肪分解、线粒体脂肪酸氧化和产热相关基因和蛋白水平,这可能与肾周脂肪细胞大小减小有关。综上,这些发现表明 sn-2 PTAG70 可能对肠道脂质利用和脂质代谢活性具有有益作用,有助于内脏脂肪组织供能。