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Gamma oscillatory activity in vitro: a model system to assess pathophysiological mechanisms of comorbidity between autism and epilepsy

机译:体外伽马振荡活动:一个模型系统以评估自闭症和癫痫合并症的病理生理机制

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摘要

Autism spectrum disorder (ASD) and temporal lobe epilepsy exhibit remarkable comorbidity, but for reasons not clearly understood. To reveal a common pathophysiological mechanism, we here describe and characterize an in vitro epileptiform activity in the rat hippocampus that exhibits common features with in vivo activity in rodent ASD models. We discovered the development of this activity in the CA1 region of horizontal slices after prolonged interictal-like epileptiform activity in the CA3 region that was provoked by incubation in high potassium artificial cerebrospinal fluid. The CA1 epileptiform bursts were insensitive to blockers of glutamatergic transmission, and were carried by synaptic as well as extrasynaptic, tonically activated gamma-aminobutyric acid type A (GABA(A)) receptors. The bursts bear resemblance to in vivo gamma-oscillatory activity found in rat ASD models with respect to their gamma frequency spectrum, their origin (in the CA1), and their sensitivity to blockers of cation-chloride pumps (NKCC1 and KCC2), as well as to oxytocin. Considering this bursting activity as an in vitro model for studying comorbidity between epilepsy and ASD may help to disentangle the intricate interactions that underlie the comorbidity between both diseases and suggests that extrasynaptic tonic GABAergic transmission could represent a potential target for ASD.
机译:自闭症谱系障碍(ASD)和颞叶癫痫表现出显着的合并症,但原因尚不清楚。为了揭示常见的病理生理机制,我们在这里描述和表征了大鼠海马的体外癫痫样活动,该活动在啮齿动物ASD模型中表现出具有体内活动的共同特征。我们发现,在高钾人工脑脊髓液中孵育后,在CA3区出现了延长的发作期样癫痫样活动后,在水平切片的CA1区出现了这种活性。 CA1癫痫样爆发对谷氨酰胺能传递的阻滞剂不敏感,并且由突触以及突触外的,音调活化的A型γ-氨基丁酸(GABA(A))受体携带。就其伽马频谱,其起源(在CA1中)以及对阳离子氯化物泵的阻滞剂(NKCC1和KCC2)的敏感性而言,这些爆发与在大鼠ASD模型中发现的体内伽马振荡活性相似。至于催产素。将这种爆发性活动视为研究癫痫和ASD合并症的体外模型,可能有助于弄清构成这两种疾病合并症基础的复杂相互作用,并提示突触外强直GABA能传递可能代表ASD的潜在目标。

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