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本文引用的文献

1
Relationship between serum leptin immunoreactivity and body fat mass as estimated by use of a novel gas-phase Fourier transform infrared spectroscopy deuterium dilution method in cats.采用新型气相傅里叶变换红外光谱氘稀释法估算猫血清瘦素免疫反应性与体脂量之间的关系。
Am J Vet Res. 2000 Jul;61(7):796-801. doi: 10.2460/ajvr.2000.61.796.
2
The influence of diet and other factors on owner-perceived obesity in privately owned cats from metropolitan Perth, Western Australia.饮食及其他因素对西澳大利亚州珀斯市私人饲养猫主人所感知的肥胖情况的影响。
Prev Vet Med. 1999 May 31;40(2):75-85. doi: 10.1016/s0167-5877(99)00024-0.
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High-fat meals reduce 24-h circulating leptin concentrations in women.高脂肪餐会降低女性24小时循环瘦素浓度。
Diabetes. 1999 Feb;48(2):334-41. doi: 10.2337/diabetes.48.2.334.
4
Regulation of ob gene expression and leptin secretion by insulin and dexamethasone in rat adipocytes.胰岛素和地塞米松对大鼠脂肪细胞中ob基因表达及瘦素分泌的调节作用
Diabetes. 1999 Feb;48(2):272-8. doi: 10.2337/diabetes.48.2.272.
5
A study in the relationships between leptin, insulin, and body fat in Asian subjects.一项关于亚洲受试者中瘦素、胰岛素与体脂之间关系的研究。
Int J Obes Relat Metab Disord. 1999 Mar;23(3):246-52. doi: 10.1038/sj.ijo.0800801.
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The uncoupling proteins, a review.解偶联蛋白综述
Eur J Endocrinol. 1998 Jul;139(1):1-9. doi: 10.1530/eje.0.1390001.
7
Leptin induction of UCP1 gene expression is dependent on sympathetic innervation.瘦素对解偶联蛋白1基因表达的诱导依赖于交感神经支配。
Am J Physiol. 1998 Aug;275(2):E259-64. doi: 10.1152/ajpendo.1998.275.2.E259.
8
Changes of serum leptin and endocrine and metabolic parameters after 7 days of energy restriction in men and women.男性和女性能量限制7天后血清瘦素及内分泌和代谢参数的变化。
Metabolism. 1998 Apr;47(4):429-34. doi: 10.1016/s0026-0495(98)90055-5.
9
Leptin production and action: relevance to energy balance in humans.瘦素的产生与作用:与人类能量平衡的相关性。
Am J Clin Nutr. 1998 Mar;67(3):355-6. doi: 10.1093/ajcn/67.3.355.
10
Evidence that glucose metabolism regulates leptin secretion from cultured rat adipocytes.葡萄糖代谢调节培养的大鼠脂肪细胞分泌瘦素的证据。
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猫血浆瘦素浓度:参考范围、体重增加的影响以及与双能X线吸收法测量的肥胖的关系。

Plasma leptin concentrations in cats: reference range, effect of weight gain and relationship with adiposity as measured by dual energy X-ray absorptiometry.

作者信息

Appleton D J, Rand J S, Sunvold G D

机构信息

The Companion Animal Centre for Diabetes and Obesity, Companion Animal Sciences, School of Veterinary Science and Animal Production, The University of Queensland, St. Lucia, Brisbane, 4067, Australia.

出版信息

J Feline Med Surg. 2000 Dec;2(4):191-9. doi: 10.1053/jfms.2000.0103.

DOI:10.1053/jfms.2000.0103
PMID:11716618
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10829137/
Abstract

The aims of our study were to determine a reference range for plasma leptin in healthy, normal-weight cats and to measure the effect of weight gain on plasma leptin levels. To increase our understanding of the association between leptin and feline obesity, we investigated the relationship between plasma leptin and measures of adiposity in cats. Twenty-six normal-weight cats were used to determine the reference range for feline leptin using a multispecies radioimmunoassay. In the second part of the study, plasma leptin concentrations were determined in 16 cats before and after approximately 10 months of spontaneous weight gain. Dual energy X-ray absorptiometry scans (DEXA) were performed after weight gain. The tolerance interval for plasma leptin concentrations was 0.92-11.9 ng/ml Human Equivalent (HE) with a mean concentration of 6.41+/-2.19 ng/ml HE. In part two of the study, 16 cats gained on average 44.2% bodyweight over 10 months. The percentage of body fat in obese cats ranged from 34.2 to 48.7%. Mean plasma leptin concentrations increased from 7.88+/-4.02 ng/ml HE before weight gain to 24.5+/-12.1 ng/ml HE after weight gain, (P<0.001). Total body fat and body fat per cent were the strongest predictors of plasma leptin in obese cats (r=0.8 and r=0.78, P<0.001, respectively). In conclusion, plasma leptin concentrations increased three-fold in cats as a result of weight gain and were strongly correlated with the amount of adipose tissue present. Despite elevated leptin levels, cats continued to eat and gain weight, suggesting decreased sensitivity to leptin. This investigation into the biology of leptin in cats may aid the overall understanding of the role of leptin and the development of future treatments to help prevent and manage feline obesity.

摘要

我们研究的目的是确定健康、体重正常的猫血浆瘦素的参考范围,并测量体重增加对血浆瘦素水平的影响。为了加深我们对瘦素与猫肥胖症之间关联的理解,我们研究了猫血浆瘦素与肥胖指标之间的关系。使用多物种放射免疫分析法,对26只体重正常的猫进行检测,以确定猫瘦素的参考范围。在研究的第二部分,对16只猫在自发体重增加约10个月前后的血浆瘦素浓度进行了测定。体重增加后进行了双能X线吸收法扫描(DEXA)。血浆瘦素浓度的耐受区间为0.92 - 11.9 ng/ml人等效值(HE),平均浓度为6.41±2.19 ng/ml HE。在研究的第二部分中,16只猫在10个月内平均体重增加了44.2%。肥胖猫的体脂百分比在34.2%至48.7%之间。平均血浆瘦素浓度从体重增加前的7.88±4.02 ng/ml HE增加到体重增加后的24.5±12.1 ng/ml HE,(P<0.001)。总体脂肪和体脂百分比是肥胖猫血浆瘦素的最强预测指标(r分别为0.8和0.78,P<0.001)。总之,猫体重增加导致血浆瘦素浓度增加了三倍,且与体内脂肪组织量密切相关。尽管瘦素水平升高,但猫仍继续进食并增重,表明对瘦素的敏感性降低。这项对猫瘦素生物学的研究可能有助于全面理解瘦素的作用以及未来预防和管理猫肥胖症治疗方法的开发。