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Partial Physiologic Differences between High-fat Diet Induced Obesity-prone and Obesity-resistant Rats

机译:高脂饮食诱发肥胖和肥胖抵抗大鼠之间的部分生理差异

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Objective: To observe the differences of partial physiologic indexes including weight, food intake, Lee's index, the wet weight of fat pad, plasma lipids and the genetic expression of LPL mRNA in adipose tissue between obesity-prone rats (OP) and obesity-resistant rats (OR) on a high-fat diet. Methods: After 1 week of free access to a high-fat diet (HFD), 48 rats were separated on the basis of 1 week body weight percentage gained in OP (OP ≥ P75) or OR (OR ≤ P25) groups. Rats were continuously fed on the HFD for another 4 weeks. The body weight and food intake were recorded in the course of model-making. And the Lee's index, the plasma lipid and lipoproteins, the wet weight of both epididymal and retroperitoneal fat pad were measured after the rat was killed. And the level of LPL mRNA expression in adipose tissue was detected by Northern Blot technique. Results: ① In OP rats, the speed of body weight gain, the cumulative energy intake, the Lee's index, and the wet weight of fat pad at both epididymal and retroperitoneal sites were significantly higher than those in OR rats, but there was no significant difference in the level of plasma lipid and lipoproteins between these two groups. ② After 1 week and 5 weeks on the high-fat diet, the gain of body weight in OP rats were about 6.45 and 4.25 times of those in OR rats. Meanwhile, the cumulative energy intake in OP rats was only about 1.13 and 1.15 times of those in OR rats. ③ Despite the depressive effect of the high-fat diet on the level of LPL mRNA expression in adipose tissue, there was a significant level of LPL mRNA in adipose tissue of OP rats compared with that in OR rats. Conclusion:. The physiologic differences exist between OP and OR rats. Besides a higher level of energy intake, the higher energy efficiency associated with LPL mRNA expression in adipose tissue may also contribute to the enhancement of susceptibility to obesity in OP rats.
机译:目的:观察肥胖易感大鼠与肥胖人群体重,食物摄入量,李氏指数,脂肪垫湿重,血浆脂质及脂肪组织中LPL mRNA基因表达的部分生理指标的差异。高脂饮食的大鼠(OR)。方法:在自由食用高脂饮食(HFD)1周后,根据OP(OP≥P75)或OR(OR≤P25)组的1周体重百分比,将48只大鼠分离。再用HFD连续喂养大鼠4周。在建模过程中记录体重和食物摄入量。处死大鼠后,测量Lee指数,血浆脂质和脂蛋白,附睾和腹膜后脂肪垫的湿重。用Northern Blot技术检测脂肪组织中LPL mRNA的表达水平。结果:①在OP大鼠中,附睾和腹膜后部位的体重增加速度,累积能量摄入,Lee指数和脂肪垫湿重均显着高于OR大鼠,但无统计学意义。两组之间血浆脂质和脂蛋白水平的差异。 ②高脂饮食1周和5周后,OP大鼠的体重增加约为OR大鼠的6.45倍和4.25倍。同时,OP大鼠的累积能量摄入仅为OR大鼠的约1.13倍和1.15倍。 ③尽管高脂饮食对脂肪组织中LPL mRNA表达水平有抑制作用,但OP大鼠的脂肪组织中LPL mRNA表达水平明显高于OR大鼠。结论:。 OP和OR大鼠之间存在生理差异。除了更高水平的能量摄入外,与脂肪组织中LPL mRNA表达相关的更高能量效率也可能有助于提高OP大鼠对肥胖的敏感性。

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