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MTS-瘦素和抵抗素处理的绵羊脉络丛、弓状核和垂体前叶中瘦素受体短型表达及VEGF系统的季节性和营养变化

Seasonal and nutritional changes in the short form of the leptin receptor expression and VEGF system in the choroid plexus, arcuate nucleus, and anterior pituitary in MTS-leptin and resistin-treated sheep.

作者信息

Zieba Dorota Anna, Biernat Weronika, Szczesna Malgorzata, Kirsz Katarzyna, Misztal Tomasz

机构信息

Laboratory of Biotechnology and Genomics, Department of Nutrition, Animal Biotechnology, and Fisheries, Agricultural University of Krakow, Kraków, Poland.

Department of Animal Physiology, The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, Jabłonna, Poland.

出版信息

Front Neurosci. 2023 Nov 28;17:1291997. doi: 10.3389/fnins.2023.1291997. eCollection 2023.

Abstract

The short form of the leptin receptor (LeptRa) plays a key role in the transport of leptin to the central nervous system (CNS). Here, MTS-leptin and recombinant ovine (ro) leptin-mediated expression of LeptRa and VEGFA and VEGFR2 concentration in selected hypothalamic nuclei, choroid plexus (ChP), and anterior pituitary (AP) were analyzed considering the photoperiod and acute-fasting (experiment 1), and nutritional status (experiment 2) of ewes. In experiment 1, 60 sheep were fed normally or fasted for 72 h and received one injection of saline, MTS-leptin, or roleptin 1 h prior to euthanasia. LeptRa mRNA transcript levels and VEGF system protein concentrations were detected in the ARC, ChP predominantly in the SD, and AP for the LD without detection of LeptRa in the POA and VMH/DMH. In experiment 2, an altered diet for 5 months created lean or fat sheep. Twenty sheep were divided into four groups: the lean and fat groups were given saline, while the lean-R and fat-R groups received resistin 1 h prior to euthanasia. Changes in adiposity influenced the lowering effect of resistin on the expression of LeptRa and VEGF system protein concentrations. Overall, both photoperiodic and nutritional signals influence the effects of MTS-leptin/roleptin and resistin-mediated leptin transport to the CNS via LeptRa. Resistin seems to be another adipokine involved in the adaptive/pathological phenomenon of leptin resistance in sheep.

摘要

瘦素受体的短形式(LeptRa)在瘦素向中枢神经系统(CNS)的转运中起关键作用。在此,考虑到母羊的光照周期和急性禁食(实验1)以及营养状况(实验2),分析了MTS-瘦素和重组羊(ro)瘦素介导的LeptRa表达以及选定下丘脑核、脉络丛(ChP)和垂体前叶(AP)中VEGFA和VEGFR2的浓度。在实验1中,60只绵羊正常饲养或禁食72小时,并在安乐死1小时前接受一次生理盐水、MTS-瘦素或重组羊瘦素注射。在弓状核(ARC)、主要在短日照(SD)下的脉络丛以及长日照(LD)下的垂体前叶中检测到LeptRa mRNA转录水平和VEGF系统蛋白浓度,而在视前区(POA)和腹内侧下丘脑/背内侧下丘脑(VMH/DMH)中未检测到LeptRa。在实验2中,5个月的饮食改变造就了瘦羊或肥羊。20只绵羊分为四组:瘦羊组和肥羊组给予生理盐水,而瘦羊-R组和肥羊-R组在安乐死1小时前接受抵抗素。肥胖程度的变化影响了抵抗素对LeptRa表达和VEGF系统蛋白浓度的降低作用。总体而言,光照周期和营养信号均通过LeptRa影响MTS-瘦素/重组羊瘦素和抵抗素介导的瘦素向中枢神经系统的转运。抵抗素似乎是另一种参与绵羊瘦素抵抗适应性/病理现象的脂肪因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e271/10713819/ba666411f2de/fnins-17-1291997-g001.jpg

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