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抑郁、压力、癫痫与成人神经发生。

Depression, stress, epilepsy and adult neurogenesis.

机构信息

Department of Anesthesia, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.

出版信息

Exp Neurol. 2012 Jan;233(1):22-32. doi: 10.1016/j.expneurol.2011.05.023. Epub 2011 Jun 12.

Abstract

Epilepsy and depression share an unusually high coincidence suggestive of a common etiology. Disrupted production of adult-born hippocampal granule cells in both disorders may contribute to this high coincidence. Chronic stress and depression are associated with decreased granule cell neurogenesis. Epilepsy is associated with increased production - but aberrant integration - of new cells early in the disease and decreased production late in the disease. In both cases, the literature suggests these changes in neurogenesis play important roles in their respective diseases. Aberrant integration of adult-generated cells during the development of epilepsy may impair the ability of the dentate gyrus to prevent excess excitatory activity from reaching hippocampal pyramidal cells, thereby promoting seizures. Effective treatment of a subset of depressive symptoms, on the other hand, may require increased granule cell neurogenesis, indicating that adult-generated granule cells can modulate mood and affect. Given the robust changes in adult neurogenesis evident in both disorders, competing effects on brain structure are likely. Changes in relative risk, disease course or response to treatment seem probable, but complex and changing patterns of neurogenesis in both conditions will require sophisticated experimental designs to test these ideas. Despite the challenges, this area of research is critical for understanding and improving treatment for patients suffering from these disorders.

摘要

癫痫和抑郁症的发生率非常高,这表明它们可能具有共同的病因。这两种疾病中成年海马颗粒细胞的产生受到破坏,可能是导致这种高发生率的原因之一。慢性应激和抑郁症与颗粒细胞神经发生减少有关。癫痫与疾病早期新生细胞产生增加但整合异常有关,而疾病晚期新生细胞产生减少。在这两种情况下,文献表明神经发生的这些变化在各自的疾病中发挥着重要作用。癫痫发展过程中,成年产生的细胞整合异常可能会损害齿状回阻止过多兴奋性活动到达海马锥体细胞的能力,从而促进癫痫发作。另一方面,有效治疗抑郁症状的一部分可能需要增加颗粒细胞神经发生,这表明成年产生的颗粒细胞可以调节情绪并产生影响。鉴于这两种疾病中明显存在的成年神经发生的强烈变化,对大脑结构的竞争影响可能是存在的。相对风险、疾病进程或对治疗的反应的变化似乎是可能的,但这两种情况下神经发生的复杂和变化的模式需要复杂的实验设计来验证这些想法。尽管存在挑战,但这一研究领域对于理解和改善这些疾病患者的治疗至关重要。

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