生酮饮食的嘌呤和抗癫痫作用。

Susan A Masino, Masahito Kawamura, David N Ruskin, Jeremy Gawryluk, Xuesong Chen, Jonathan D Geiger
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引用次数: 8

摘要

生酮饮食脂肪含量高,碳水化合物含量低,是抗癫痫药物的一种行之有效的治疗方法。生酮饮食用于管理各种难以治疗或难治性癫痫,特别是儿童难治性癫痫。然而,研究表明,这种饮食疗法可以减少所有年龄段人群的癫痫发作,生酮饮食也被应用于其他常见的疾病,如糖尿病。尽管近90年来,生酮饮食被有效地用于治疗癫痫,但其减少癫痫发作的机制仍不清楚。一个受到越来越多关注的机制是基于生酮饮食增加脑能量分子ATP的发现,也可能增加相关内源性抑制性神经调节剂腺苷的水平和作用。ATP和腺苷都被认为是癫痫发作的重要调节剂;癫痫发作增加这些嘌呤的作用,这些嘌呤调节大脑中的癫痫活动,腺苷受体拮抗剂具有促惊厥作用,并且腺苷能机制先前已被批准的抗癫痫治疗药物的作用所涉及。在这里,我们将回顾最近的文献和描述研究结果,阐明生酮饮食与嘌呤、ATP和腺苷之间的机制关系。这些新出现的机制为癫痫发作和其他神经系统疾病的有效治疗管理带来了巨大的希望。
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Purines and the Anti-Epileptic Actions of Ketogenic Diets.

Ketogenic diets are high in fat and low in carbohydrates and represent a well-established and effective treatment alternative to anti-epileptic drugs. Ketogenic diets are used for the management of a variety of difficult-to-treat or intractable seizure disorders, especially pediatric refractory epilepsy. However, it has been shown that this dietary therapy can reduce seizures in people of all ages, and ketogenic diets are being applied to other prevalent medical conditions such as diabetes. Although used effectively to treat epilepsy for nearly 90 years, the mechanism(s) by which ketogenic diets work to reduce seizures remain ill-understood. One mechanism receiving increased attention is based on findings that ketogenic diets increase the brain energy molecule ATP, and may also increase the levels and actions of the related endogenous inhibitory neuromodulator adenosine. ATP and adenosine have both been identified as important modulators of seizures; seizures increase the actions of these purines, these purines regulate epileptic activity in brain, adenosine receptor antagonists are pro-convulsant, and adenosinergic mechanisms have been implicated previously in the actions of approved anti-epileptic therapeutics. Here we will review recent literature and describe findings that shed light on mechanistic relationships between ketogenic diets and the purines ATP and adenosine. These emerging mechanisms hold great promise for the effective therapeutic management of epileptic seizures and other neurological conditions.

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