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Targeting phosphodiesterase 4 as a potential therapeutic strategy for enhancing neuroplasticity following ischemic stroke

机译:靶向磷酸二酯酶4作为增强缺血性中风后神经可塑性的潜在治疗策略

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Sensorimotor recovery following ischemic stroke is highly related with structural modification and functional reorganization of residual brain tissues. Manipulations, such as treatment with small molecules, have been shown to enhance the synaptic plasticity and contribute to the recovery. Activation of the cAMP/CREB pathway is one of the pivotal approaches stimulating neuroplasticity. Phosphodiesterase 4 (PDE4) is a major enzyme controlling the hydrolysis of cAMP in the brain. Accumulating evidences have shown that inhibition of PDE4 is beneficial for the functional recovery after cerebral ischemia; i. subtype D of PDE4 (PDE4D) is viewed as a risk factor for ischemic stroke; ii. inhibition of PDE4 enhances neurological behaviors, such as learning and memory, after stroke in rodents; iii.PDE4 inhibition increases dendritic density, synaptic plasticity and neurogenesis; iv. activation of cAMP/CREB signaling by PDE4 inhibition causes an endogenous increase of BDNF, which is a potent modulator of neuroplasticity; v. PDE4 inhibition is believed to restrict neuroinflammation during ischemic stroke. Cumulatively, these findings provide a link between PDE4 inhibition and neuroplasticity after cerebral ischemia. Here, we summarized the possible roles of PDE4 inhibition in the recovery of cerebral stroke with an emphasis on neuroplasticity. We also made some recommendations for future research.
机译:缺血性中风后的感觉运动恢复与残余脑组织的结构修饰和功能重组高度相关。诸如小分子处理之类的操作已显示出增强突触可塑性并有助于恢复的作用。 cAMP / CREB途径的激活是刺激神经可塑性的关键方法之一。磷酸二酯酶4(PDE4)是控制脑中cAMP水解的主要酶。越来越多的证据表明,抑制PDE4对脑缺血后的功能恢复有益。一世。 PDE4的D型亚型(PDE4D)被视为缺血性中风的危险因素; ii。抑制PDE4可增强啮齿动物中风后的神经行为,例如学习和记忆; iii。PDE4抑制作用可增加树突密度,突触可塑性和神经发生; iv。通过PDE4抑制激活cAMP / CREB信号导致内源性BDNF的增加,而BDNF是神经可塑性的有效调节剂。 v。PDE4抑制被认为可以限制缺血性中风期间的神经炎症。累积地,这些发现提供了PDE4抑制与脑缺血后神经可塑性之间的联系。在这里,我们总结了PDE4抑制在脑卒中恢复中的可能作用,重点是神经可塑性。我们还为以后的研究提出了一些建议。

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