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恩丙茶碱可保护运动神经元免受体外兴奋性毒性攻击。

Enprofylline protects motor neurons from in vitro excitotoxic challenge.

作者信息

Mojsilovic-Petrovic Jelena, Arneja Amrita, Kalb Robert G

机构信息

Children's Hospital of Philadelphia, Joseph Stokes Jr. Research Institute, PA 19104, USA.

出版信息

Neurodegener Dis. 2005;2(3-4):160-5. doi: 10.1159/000089621.

Abstract

BACKGROUND

The death of motor neurons in amyotrophic lateral sclerosis (ALS) is believed to result, in part, from unrestrained activation of glutamate receptors (excitotoxicity). In some in vitro models, excitotoxic death only occurs if motor neurons develop in the presence of the growth factor, brain-derived neurotrophic factor (BDNF).

OBJECTIVE

Since the increased vulnerability of motor neurons evoked by BDNF is mediated by activation of TrkB, we sought to identify pharmacological agents that can block this pathway. Adenosine receptors are known to transactivate Trk receptors, leading us to examine the effects of manipulating of adenosine receptor signaling on Trk signaling and excitotoxic sensitivity.

METHODS

Spinal cord cultures were treated with adenosine receptor agonists and antagonists. The biochemical effects on Trk signaling and excitotoxic motor neuron death were examined.

RESULTS

We show here that adenosine A(2a) antagonists can reduce activation of Trk receptors and are neuroprotective. Conversely, activating adenosine A(2a) receptors in the absence of BDNF signaling makes motor neurons vulnerable to excitotoxic challenge.

CONCLUSION

Selective, high-affinity adenosine A(2a) antagonists merit consideration as therapeutic agents for the treatment of ALS.

摘要

背景

肌萎缩侧索硬化症(ALS)中运动神经元的死亡被认为部分是由于谷氨酸受体的无节制激活(兴奋毒性)所致。在一些体外模型中,只有当运动神经元在生长因子脑源性神经营养因子(BDNF)存在的情况下发育时,才会发生兴奋毒性死亡。

目的

由于BDNF诱发的运动神经元易损性增加是由TrkB的激活介导的,我们试图确定能够阻断该途径的药物。已知腺苷受体可反式激活Trk受体,这促使我们研究操纵腺苷受体信号传导对Trk信号传导和兴奋毒性敏感性的影响。

方法

用腺苷受体激动剂和拮抗剂处理脊髓培养物。检测对Trk信号传导和兴奋毒性运动神经元死亡的生化影响。

结果

我们在此表明,腺苷A2a拮抗剂可减少Trk受体的激活并具有神经保护作用。相反,在不存在BDNF信号传导的情况下激活腺苷A2a受体可使运动神经元易受兴奋毒性攻击。

结论

选择性、高亲和力的腺苷A2a拮抗剂值得作为治疗ALS的治疗药物加以考虑。

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