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小鼠体内循环瘦素半衰期的测定。

Determination of the half-life of circulating leptin in the mouse.

作者信息

Burnett L C, Skowronski A A, Rausch R, LeDuc C A, Leibel R L

机构信息

Columbia University Institute of Human Nutrition, New York, NY, USA.

Columbia University Department of Pediatrics, Division of Molecular Genetics, New York, NY, USA.

出版信息

Int J Obes (Lond). 2017 Mar;41(3):355-359. doi: 10.1038/ijo.2016.238. Epub 2016 Dec 27.

Abstract

BACKGROUND

The adipokine hormone, leptin, is a major component of body weight homeostasis. Numerous studies have been performed administering recombinant mouse leptin as an experimental reagent; however, the half-life of circulating leptin following exogenous administration of recombinant mouse leptin has not been carefully evaluated.

METHODS

Exogenous leptin was administered (3 mg leptin per kg body weight) to 10-week-old fasted non-obese male mice and plasma was serially collected at seven time points; plasma leptin concentration was measured by enzyme-linked immunosorbent assay at each time point to estimate the circulating half-life of mouse leptin.

RESULTS

Under the physiological circumstances tested, the half-life of mouse leptin was 40.2 (±2.2) min. Circulating leptin concentrations up to 1 h following exogenous leptin administration were 170-fold higher than endogenous levels at fasting.

CONCLUSIONS

The half-life of mouse leptin was determined to be 40.2 min. These results should be useful in planning and interpreting experiments employing exogenous leptin. The unphysiological elevations in circulating leptin resulting from widely used dosing regimens for exogenous leptin are likely to confound inferences regarding some aspects of the hormone's clinical biology.

摘要

背景

脂肪因子瘦素是体重稳态的主要组成部分。已有众多研究将重组小鼠瘦素作为实验试剂使用;然而,对外源性给予重组小鼠瘦素后循环中瘦素的半衰期尚未进行仔细评估。

方法

对10周龄禁食的非肥胖雄性小鼠给予外源性瘦素(每千克体重3毫克瘦素),并在7个时间点连续采集血浆;通过酶联免疫吸附测定法在每个时间点测量血浆瘦素浓度,以估计小鼠瘦素的循环半衰期。

结果

在所测试的生理情况下,小鼠瘦素的半衰期为40.2(±2.2)分钟。外源性给予瘦素后1小时内的循环瘦素浓度比禁食时的内源性水平高170倍。

结论

小鼠瘦素的半衰期确定为40.2分钟。这些结果对于规划和解释使用外源性瘦素的实验应是有用的。外源性瘦素广泛使用的给药方案导致的循环瘦素非生理性升高可能会混淆关于该激素临床生物学某些方面的推断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02ee/5340585/dd6bb4034396/nihms836477f1.jpg

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