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使用 1-C 高极化丙酮酸交错谱和非特异性成像评估的肾功能和代谢的性别差异。

Sex Differences in Kidney Function and Metabolism Assessed Using Hyperpolarized [1-C]Pyruvate Interleaved Spectroscopy and Nonspecific Imaging.

机构信息

MR Research Centre, Department of Clinical Medicine, Aarhus University, Aarhus, Denmark; and.

The First Affiliated Hospital of Zhengzhou University, Zhengzhou University, Henan, China.

出版信息

Tomography. 2020 Mar;6(1):5-13. doi: 10.18383/j.tom.2020.00022.

Abstract

Metabolic sex differences have recently been shown to be particularly important in tailoring treatment strategies. Sex has a major effect on fat turnover rates and plasma lipid delivery in the body. Differences in kidney structure and transporters between male and female animals have been found. Here we investigated sex-specific renal pyruvate metabolic flux and whole-kidney functional status in age-matched healthy Wistar rats. Blood oxygenation level-dependent and dynamic contrast-enhanced (DCE) magnetic resonance imaging (MRI) were used to assess functional status. Hyperpolarized [1-C]pyruvate was used to assess the metabolic differences between male and female rats. Female rats had a 41% ± 3% and 41% ± 5% lower absolute body and kidney weight, respectively, than age-matched male rats. No difference was seen between age-matched male and female rats in the kidney-to-body weight ratio. A 56% ± 11% lower lactate production per mL/100 mL/min was found in female rats than in age-matched male rats measured by hyperpolarized magnetic resonance and DCE MRI. Female rats had a 33% ± 11% higher glomerular filtration rate than age-matched male rats measured by DCE MRI. A similar renal oxygen tension (T2*) was found between age-matched male and female rats as shown by blood oxygenation level-dependent MRI. The results were largely independent of the pyruvate volume and the difference in body weight. This study shows an existing metabolic difference between kidneys in age-matched male and female rats, which indicates that sex differences need to be considered when performing animal experiments.

摘要

代谢性别差异最近被证明在制定治疗策略方面尤为重要。性别对体内脂肪周转率和血浆脂质输送有重大影响。已经发现雄性和雌性动物的肾脏结构和转运体存在差异。在这里,我们研究了年龄匹配的健康 Wistar 大鼠的肾脏丙酮酸代谢通量和整体肾脏功能状态的性别特异性。血氧水平依赖和动态对比增强(DCE)磁共振成像(MRI)用于评估功能状态。使用超极化 [1-C]丙酮酸评估雄性和雌性大鼠之间的代谢差异。雌性大鼠的绝对体重和肾脏重量分别比年龄匹配的雄性大鼠低 41%±3%和 41%±5%。年龄匹配的雄性和雌性大鼠的肾脏与体重比没有差异。通过超极化磁共振和 DCE MRI 测量,雌性大鼠的乳酸生成量比年龄匹配的雄性大鼠低 56%±11%/每 100ml/min。通过 DCE MRI 测量,雌性大鼠的肾小球滤过率比年龄匹配的雄性大鼠高 33%±11%。如血氧水平依赖 MRI 所示,年龄匹配的雄性和雌性大鼠的肾脏氧分压(T2*)相似。结果在很大程度上独立于丙酮酸体积和体重差异。这项研究表明,年龄匹配的雄性和雌性大鼠的肾脏之间存在代谢差异,这表明在进行动物实验时需要考虑性别差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79ca/7138520/7d156cbd77b6/GP-TOMJ200022F001.jpg

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