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Zucker-挪威棕褐(ZBN)杂交大鼠肥胖综合征的特征

Characteristics of the obesity syndrome in Zucker-Brown Norway (ZBN) hybrid rats.

作者信息

Busch B L, Johnson P R, Stern J S, Greenwood M R, Horwitz B A

机构信息

Section of Neurobiology, Physiology, and Behavior, Division of Biological Sciences, University of California, Davis, CA 95616, USA.

出版信息

Obes Res. 1994 Jan;2(1):5-12. doi: 10.1002/j.1550-8528.1994.tb00037.x.

Abstract

The existence of a restriction fragment length polymorphism (RFLP) closely linked to the fatty locus between the Zucker (Z) and Brown Norway (BN) rat strains allows evaluation of early effects of the fatty (fa) gene using offspring of back-crosses (N2) between F1 females and Zucker obese males. We examined several metabolic characteristics of N2 animals to determine if these hybrid animals exhibited similar characteristics of the obese syndrome to those of Zucker rats. Females from crosses of obese male Zucker (fa/fa) and lean female BN (+/+) rats were back-crossed to their sires, resulting in twelve N2 litters. At 9 weeks of age, liver, spleen, interscapular brown fat (IBAT), and gonadal, retroperitoneal (RP), and inguinal fat depots were removed and weighed. Samples of the RP depot were analyzed for cell size and number. Obese N2 rats were hyperphagic, with body weights in the range of those of obese Zucker rats. Obese N2 rats were also hyperinsulinemic [mean +/- SEM, microU/ml: females, 7.9 +/- 0.6 vs. 82.1 +/- 8.4 (lean vs. obese); males, 10.5 +/- 1.6 vs. 128.5 +/- 13.4 (lean vs. obese)] and mildly hyperglycemic [mean +/- SEM, mg/dl: females, 104.1 +/- 2.0 vs. 139.0 +/- 14.7 (lean vs. obese); males, 100.9 +/- 2.6 vs. 132.0 +/- 2.8 (lean vs. obese) p < or = 0.05]. White fat depots in obese rats were 3 to 7 times heavier than those in lean rats; adipocyte numbers in RP depots were 50% greater in obese than in lean rats; and cell size was more than 3 times larger. IBAT, liver, and spleen were also heavier in obese vs. lean rats, while tail lengths were shorter. Percent lean carcass mass and % carcass protein were about 30% greater in lean vs. obese rats, while % carcass fat in obese rats was 5 times greater than that of lean rats. Thus, phenotypic expression of the fa gene in ZBN hybrid animals, with approximately 25% of their genetic background coming from the BN strain, appears to be similar to that in Zucker rats. Given the similarity of phenotypic expression of the fa gene between the Zucker strain and ZBN hybrids, it is plausible to consider using ZBN hybrids for studies of early manifestations of fa gene action prior to onset of detectable obesity.

摘要

在Zucker(Z)大鼠品系和挪威棕鼠(BN)品系之间存在一种与肥胖基因座紧密连锁的限制性片段长度多态性(RFLP),这使得我们可以利用F1代雌性大鼠与Zucker肥胖雄性大鼠回交(N2)产生的后代,来评估肥胖(fa)基因的早期效应。我们检测了N2代动物的几种代谢特征,以确定这些杂交动物是否表现出与Zucker大鼠相似的肥胖综合征特征。肥胖雄性Zucker(fa/fa)大鼠与瘦雌性BN(+/+)大鼠杂交产生的雌性后代再与其父本回交,得到了12窝N2代幼崽。在9周龄时,取出肝脏、脾脏、肩胛间棕色脂肪(IBAT)以及性腺、腹膜后(RP)和腹股沟脂肪库并称重。对RP脂肪库样本进行细胞大小和数量分析。肥胖的N2代大鼠食量过大,体重与肥胖的Zucker大鼠相当。肥胖的N2代大鼠还表现为高胰岛素血症[平均值±标准误,微单位/毫升:雌性,7.9±0.6对82.1±8.4(瘦对肥胖);雄性,10.5±1.6对128.5±13.4(瘦对肥胖)],且有轻度高血糖[平均值±标准误,毫克/分升:雌性,104.1±2.0对139.0±14.7(瘦对肥胖);雄性,100.9±2.6对132.0±2.8(瘦对肥胖),p≤0.05]。肥胖大鼠的白色脂肪库比瘦大鼠重3至7倍;RP脂肪库中的脂肪细胞数量,肥胖大鼠比瘦大鼠多50%;细胞大小则是瘦大鼠的3倍多。与瘦大鼠相比,肥胖大鼠的IBAT、肝脏和脾脏也更重,而尾巴长度较短。瘦大鼠的瘦肉胴体质量百分比和胴体蛋白质百分比比肥胖大鼠高约30%,而肥胖大鼠的胴体脂肪百分比是瘦大鼠的5倍。因此,在遗传背景约25%来自BN品系的ZBN杂交动物中,fa基因的表型表达似乎与Zucker大鼠相似。鉴于Zucker品系和ZBN杂交种之间fa基因表型表达的相似性,在可检测到的肥胖症出现之前,考虑使用ZBN杂交种来研究fa基因作用的早期表现是合理的。

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