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响应阳性变构调节剂全身给药的 mGlu5 受体激活的多磷酸肌醇水解的非放射性评估。

Non-radioactive Assessment of mGlu5 Receptor-Activated Polyphosphoinositide Hydrolysis in Response to Systemic Administration of a Positive Allosteric Modulator.

作者信息

Zuena Anna R, Iacovelli Luisa, Orlando Rosamaria, Di Menna Luisa, Casolini Paola, Alemà Giovanni Sebastiano, Di Cicco Gabriele, Battaglia Giuseppe, Nicoletti Ferdinando

机构信息

Department of Physiology and Pharmacology "Vittorio Erspamer," Sapienza University, Rome, Italy.

IRCCS Neuromed, Pozzilli, Italy.

出版信息

Front Pharmacol. 2018 Jul 31;9:804. doi: 10.3389/fphar.2018.00804. eCollection 2018.

Abstract

mGlu5 receptor-mediated polyphosphoinositide (PI) hydrolysis is classically measured by determining the amount of radioactivity incorporated in inositolmonophosphate (InsP) after labeling of membrane phospholipids with radioactive inositol. Although this method is historically linked to the study of mGlu receptors, it is inappropriate for the assessment of mGlu5 receptor signaling . Using a new ELISA kit we showed that systemic treatment with the selective positive allosteric modulator (PAM) of mGlu5 receptors VU0360172 enhanced InsP formation in different brain regions of CD1 or C57Black mice. The action of VU0360172 was sensitive to the mGlu5 receptor, negative allosteric modulator (NAM), MTEP, and was abolished in mice lacking mGlu5 receptors. In addition, we could demonstrate that endogenous activation of mGlu5 receptors largely accounted for the basal PI hydrolysis particularly in the prefrontal cortex. This method offers opportunity for investigation of mGlu5 receptor signaling in physiology and pathology, and could be used for the functional screening of mGlu5 receptor PAMs in living animals.

摘要

代谢型谷氨酸受体5(mGlu5)介导的多磷酸肌醇(PI)水解传统上是通过在用放射性肌醇标记膜磷脂后,测定掺入肌醇单磷酸(InsP)中的放射性量来进行测量的。尽管这种方法在历史上与mGlu受体的研究相关,但它并不适合用于评估mGlu5受体信号传导。使用一种新的酶联免疫吸附测定(ELISA)试剂盒,我们发现用mGlu5受体的选择性正变构调节剂(PAM)VU0360172进行全身治疗可增强CD1或C57黑小鼠不同脑区的InsP形成。VU0360172的作用对mGlu5受体、负变构调节剂(NAM)MTEP敏感,并且在缺乏mGlu5受体的小鼠中被消除。此外,我们可以证明mGlu5受体的内源性激活在很大程度上导致了基础PI水解,特别是在前额叶皮质中。这种方法为研究mGlu5受体在生理和病理状态下的信号传导提供了机会,并且可用于在活体动物中对mGlu5受体PAM进行功能筛选。

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