Unidad de Investigación Neurovascular, Departamento de Farmacología, Facultad de Medicina, Universidad Complutense, Avda Complutense s/n, 28040 Madrid, Spain.
Stroke. 2011 Jan;42(1 Suppl):S33-5. doi: 10.1161/STROKEAHA.110.597435. Epub 2010 Dec 16.
In this work, we review recent data on the actions of citicoline, citicoline is a drug with demonstrated neuroprotective properties in both animals and humans. Summary of Review- For neuroprotection, mechanisms involved are the improvement of cellular functions aimed to control excitotoxicity and to maintain cellular adenosine 5'-triphosphate levels by preserving membrane function and integrity at different levels. Importantly, these actions are theoretically achieved without interfering with possible underlying mechanisms for neurorepair. Furthermore, citicoline stimulates neuronal plasticity and improves sensorimotor recovery in the chronic phase of experimental stroke.
Although the mechanisms of some of these actions remain to be elucidated, so far citicoline appears as a drug with the ability to promote "safe" neuroprotection capable of enhancing endogenous protective pathways at the same time as preparing the scenario for plasticity.
在这项工作中,我们回顾了胞磷胆碱的作用的最新数据,胞磷胆碱是一种在动物和人类中均具有神经保护作用的药物。综述摘要- 对于神经保护,所涉及的机制是改善细胞功能,旨在通过在不同水平上保持膜功能和完整性来控制兴奋性毒性和维持细胞腺苷 5'-三磷酸水平。重要的是,这些作用是在不干扰潜在神经修复机制的理论上实现的。此外,胞磷胆碱还可刺激神经元可塑性,并改善实验性中风慢性期的感觉运动恢复。
尽管其中一些作用的机制仍有待阐明,但迄今为止,胞磷胆碱似乎是一种具有促进“安全”神经保护能力的药物,能够增强内源性保护途径,同时为可塑性做好准备。