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脉冲聚焦超声可减少癫痫模型大鼠海马体积丢失并改善其行为表现。

Pulsed Focused Ultrasound Reduces Hippocampal Volume Loss and Improves Behavioral Performance in the Kainic Acid Rat Model of Epilepsy.

机构信息

Department of Electrical Engineering, National Taiwan University, Taipei, Taiwan.

School of Veterinary Medicine, National Taiwan University, Taipei, Taiwan.

出版信息

Neurotherapeutics. 2023 Mar;20(2):502-517. doi: 10.1007/s13311-023-01363-7. Epub 2023 Mar 14.

Abstract

Focused ultrasound (FUS) has the potential to modulate regional brain excitability and possibly aid seizure control; however, effects on behavior of FUS used as a seizure therapy are unknown. This study explores behavioral effects and hippocampal restoration induced by pulsed FUS in a kainic acid (KA) animal model of temporal lobe epilepsy. Twenty-nine male Sprague-Dawley rats were observed for 20 weeks with anatomical magnetic resonance imaging (MRI) and behavioral performance evaluations, comprising measures of anxiety, limb usage, sociability, and memory. FUS targeted to the right hippocampus was given 9 and 14 weeks after KA was delivered to the right amygdala. Ultrasound pulsations were delivered with the acoustic settings of 0.25 of mechanical index, 0.5 W/cm of intensity spatial peak temporal average (I), 100 Hz of pulse repetition frequency, and 30% of duty cycle, during three consecutive pulse trains of 10 min separated by 5-min rests. Controls included normal animals with sham injections and KA-exposed animals without FUS exposure. Longitudinal MRI observations showed that FUS substantially protected hippocampal and striatal structures from KA-induced atrophy. KA alone increased anxiety, impaired contralateral limb usage, and reduced sociability and learning. Two courses of FUS sonications partially ameliorated these impairments by enhancing exploring and learning, balancing limb usage, and increasing social interaction. The histology results indicated that two sonications enhanced neuroprotection effect and decreased the inflammation markers induced by KA. This study supports existence of both neuroprotective and beneficial behavioral effects from low-intensity pulsed ultrasound in the KA animal model of epilepsy.

摘要

聚焦超声(FUS)有可能调节局部脑兴奋性,并可能有助于控制癫痫发作;然而,作为癫痫治疗使用的 FUS 对行为的影响尚不清楚。本研究探讨了脉冲 FUS 在海人酸(KA)颞叶癫痫动物模型中引起的行为效应和海马恢复。29 只雄性 Sprague-Dawley 大鼠接受了 20 周的观察,包括解剖磁共振成像(MRI)和行为表现评估,包括焦虑、肢体使用、社交性和记忆的测量。KA 注射到右侧杏仁核后 9 周和 14 周,将 FUS 靶向右侧海马。超声脉冲以 0.25 的机械指数、0.5 W/cm 的强度空间峰值时间平均(I)、100 Hz 的脉冲重复频率和 30%的占空比进行传递,持续 3 个连续的 10 分钟脉冲序列,每个序列之间休息 5 分钟。对照组包括接受假注射的正常动物和未接受 FUS 暴露的 KA 暴露动物。纵向 MRI 观察表明,FUS 可显著保护海马和纹状体结构免受 KA 诱导的萎缩。单独的 KA 增加了焦虑,损害了对侧肢体的使用,并降低了社交性和学习能力。两次 FUS 声处理部分改善了这些损伤,方法是增强探索和学习能力,平衡肢体使用,增加社交互动。组织学结果表明,两次声处理增强了神经保护作用,并降低了 KA 诱导的炎症标志物。本研究支持在癫痫的 KA 动物模型中,低强度脉冲超声具有神经保护和有益的行为效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd83/10121983/e2e36f30e6e2/13311_2023_1363_Fig1_HTML.jpg

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