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雌雄激素调节血糖正常和胰岛素诱导低血糖大鼠腹内侧下丘脑核糖原含量的性别二态性。

Sex-dimorphic aromatase regulation of ventromedial hypothalamic nucleus glycogen content in euglycemic and insulin-induced hypoglycemic rats.

机构信息

School of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana Monroe, Monroe, LA, 71201, United States.

School of Basic Pharmaceutical and Toxicological Sciences, College of Pharmacy, University of Louisiana Monroe, Monroe, LA, 71201, United States.

出版信息

Neurosci Lett. 2020 Oct 15;737:135284. doi: 10.1016/j.neulet.2020.135284. Epub 2020 Aug 25.

Abstract

Estrogen receptors control hypothalamic astrocyte glycogen accumulation in vitro. Glycogen metabolism impacts metabolic transmitter signaling in the ventromedial hypothalamic nucleus (VMN), a key glucoregulatory structure. Aromatase, the enzyme that converts testosterone to estradiol, is expressed at high levels in the VMN. Here, the aromatase inhibitor letrozole (Lz) was used alongside high-resolution microdissection/UPHLC-electrospray ionization-mass spectrometric methods to determine if neuroestradiol imposes sex-specific control of VMN glycogen content during glucostasis and/or glucoprivation. Testes-intact male and estradiol-replaced ovariectomized female rats were pretreated by lateral ventricular letrozole (Lz) infusion prior to subcutaneous insulin (INS) injection. Vehicle-treated female controls exhibited higher VMN glycogen content compared to males. Lz increased VMN glycogen levels in males, not females. INS-induced hypoglycemia (IIH) elevated (males) or diminished (females) rostral VMN glycogen accumulation. Induction of IIH in Lz-pretreated animals reduced male VMN glycogen mass, but augmented content in females. Data provide novel evidence for regional variation, in both sexes, in glycogen reactivity to IIH. Results highlight sex-dimorphic neuroestradiol regulation of VMN glycogen amassment during glucostasis, e.g. inhibitory in males versus insignificant in females. Locally-generated estradiol is evidently involved in hypoglycemic enhancement of male VMN glycogen, but conversely limits glycogen content in hypoglycemic females. Further research is needed to characterize mechanisms that underlie the directional shift in aromatase regulation of VMN glycogen in eu- versus hypoglycemic male rats and gain in negative impact in hypoglycemic females.

摘要

雌激素受体控制体外下丘脑星形胶质细胞糖原积累。糖代谢影响腹内侧下丘脑核(VMN)中的代谢递质信号,VMN 是关键的糖调节结构。芳香酶是将睾丸酮转化为雌二醇的酶,在 VMN 中高表达。在这里,使用芳香酶抑制剂来曲唑(Lz)与高分辨率微解剖/ UPHLC-电喷雾电离-质谱联用方法一起,确定神经雌二醇是否在葡萄糖稳态和/或葡萄糖剥夺期间对 VMN 糖原含量施加性别特异性控制。在接受侧脑室 Lz 输注预处理后,将完整睾丸的雄性和用雌二醇替代卵巢的雌性去卵巢大鼠接受皮下胰岛素(INS)注射。与雄性相比,用载体处理的雌性对照显示 VMN 糖原含量更高。Lz 增加了雄性的 VMN 糖原水平,但没有增加雌性的 VMN 糖原水平。胰岛素诱导的低血糖(IIH)增加(雄性)或减少(雌性)VMN 前部糖原积累。在 Lz 预处理动物中诱导 IIH 会降低雄性 VMN 糖原质量,但会增加雌性的 VMN 糖原含量。数据为 IIH 对 VMN 糖原反应的性别差异提供了新的证据。结果强调了在葡萄糖稳态期间,VMN 糖原堆积的性别二态性神经雌二醇调节,例如在雄性中具有抑制作用,而在雌性中则没有显著作用。局部产生的雌二醇显然参与了雄性 VMN 糖原对低血糖的增强作用,但相反,它限制了低血糖雌性的 VMN 糖原含量。需要进一步研究来描述基础机制,这些机制解释了在葡萄糖稳态的雄性大鼠和低血糖的雌性大鼠中 VMN 糖原的芳香酶调节从正向到负向的方向转变。

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