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阿片受体激动剂 ADORA2B 在咪达唑仑诱导认知功能障碍中的作用。

A Role for the Adenosine ADORA2B Receptor in Midazolam Induced Cognitive Dysfunction.

机构信息

Department of Anesthesiology, University of Colorado School of Medicine, Aurora, CO 80045, United States.

出版信息

Curr Pharm Des. 2020;26(34):4330-4337. doi: 10.2174/1381612826666200415171622.

Abstract

BACKGROUND

We recently reported a role for the circadian rhythm protein Period 2 (PER2) in midazolam induced cognitive dysfunction. Based on previous studies showing a critical role for the adenosine A2B receptor (ADORA2B) in PER2 regulation, we hypothesized that hippocampal ADORA2B is crucial for cognitive function.

METHODS

Midazolam treated C57BL/6J mice were analyzed for Adora2b hippocampal mRNA expression levels, and spontaneous T-maze alternation was determined in Adora2b-/- mice. Using the specific ADORA2B agonist BAY-60-6583 in midazolam treated C57BL/6J mice, we analyzed hippocampal Per2 mRNA expression levels and spontaneous T-maze alternation. Finally, Adora2b-/- mice were assessed for mRNA expression of markers for inflammation or cognitive function in the hippocampus.

RESULTS

Midazolam treatment significantly downregulated Adora2b or Per2 mRNA in the hippocampus of C57BL/6J mice, and hippocampal PER2 protein expression or T-maze alternation was significantly reduced in Adora2b-/- mice. ADORA2B agonist BAY-60-6583 restored midazolam mediated reduction in spontaneous alternation in C57BL/6J mice. Analysis of hippocampal Tnf-α or Il-6 mRNA levels in Adora2b-/- mice did not reveal an inflammatory phenotype. However, C-fos, a critical component of hippocampus-dependent learning and memory, was significantly downregulated in the hippocampus of Adora2b-/- mice.

CONCLUSION

These results suggest a role of ADORA2B in midazolam induced cognitive dysfunction. Further, our data demonstrate that BAY-60-6583 treatment restores midazolam induced cognitive dysfunction, possibly via increases of Per2. Additional mechanistic studies hint towards C-FOS as another potential underlying mechanism of memory impairment in Adora2b-/- mice. These findings suggest the ADORA2B agonist as a potential therapy in patients with midazolam induced cognitive dysfunction.

摘要

背景

我们最近报道了生物钟蛋白 PER2(Period 2)在咪达唑仑诱导的认知功能障碍中的作用。基于先前的研究表明,腺苷 A2B 受体(ADORA2B)在 PER2 调节中起着关键作用,我们假设海马 ADORA2B 对于认知功能至关重要。

方法

分析咪达唑仑处理的 C57BL/6J 小鼠中海马 ADORA2b 基因的 mRNA 表达水平,并在 ADORA2b-/- 小鼠中测定自发 T 迷宫交替。在咪达唑仑处理的 C57BL/6J 小鼠中使用特定的 ADORA2B 激动剂 BAY-60-6583,分析海马 PER2 mRNA 表达水平和自发 T 迷宫交替。最后,评估 ADORA2b-/- 小鼠海马中炎症或认知功能的标志物的 mRNA 表达。

结果

咪达唑仑处理显著下调 C57BL/6J 小鼠海马中的 Adora2b 或 Per2 mRNA,并且 ADORA2b-/- 小鼠的海马 PER2 蛋白表达或 T 迷宫交替明显减少。ADORA2B 激动剂 BAY-60-6583 恢复了 C57BL/6J 小鼠中咪达唑仑介导的自发交替减少。在 ADORA2b-/- 小鼠中分析海马 Tnf-α 或 Il-6 mRNA 水平并未显示出炎症表型。然而,海马中 C-fos 的表达,作为海马依赖性学习和记忆的关键组成部分,在 ADORA2b-/- 小鼠中显著下调。

结论

这些结果表明 ADORA2B 在咪达唑仑诱导的认知功能障碍中起作用。此外,我们的数据表明 BAY-60-6583 治疗恢复了咪达唑仑诱导的认知功能障碍,可能是通过增加 Per2 实现的。其他机制研究提示 C-FOS 可能是 ADORA2b-/- 小鼠记忆障碍的另一个潜在机制。这些发现表明 ADORA2B 激动剂可能是咪达唑仑诱导的认知功能障碍患者的潜在治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3196/7572481/f03abec3a0a8/nihms-1585404-f0001.jpg

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