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在大鼠模型中,联合力和旋转对单次或重复脑震荡的急性神经化学反应进行的活体脑微透析的不间断测量。

Uninterrupted in vivo cerebral microdialysis measures of the acute neurochemical response to a single or repeated concussion in a rat model combining force and rotation.

机构信息

Research Center, Hôpital du Sacré-Cœur de Montréal, 5400 Gouin Ouest Blvd, Montreal, Quebec H4J 1C5, Canada.

Research Center, Douglas Institute, 6875 LaSalle Blvd, Montreal, Quebec H4H 1R3, Canada.

出版信息

Brain Res. 2024 Sep 1;1838:148998. doi: 10.1016/j.brainres.2024.148998. Epub 2024 May 14.

DOI:10.1016/j.brainres.2024.148998
PMID:38754802
Abstract

Altered extracellular amino acid concentrations following concussion or mild traumatic brain injury can result in delayed neuronal damage through overactivation of NMDA glutamatergic receptors. However, the consequences of repeated concussions prior to complete recovery are not well understood. In this study, we utilized in vivo cerebral microdialysis and a weight-drop model to investigate the acute neurochemical response to single and repeated concussions in adult rats that were fully conscious. A microdialysis probe was inserted into the hippocampus and remained in place during impact. Primary outcomes included concentrations of glutamate, GABA, taurine, glycine, glutamine, and serine, while secondary outcomes were righting times and excitotoxic indices. Compared to sham injury, the first concussion resulted in significant increases in glutamate, GABA, taurine, and glycine levels, longer righting times, and higher excitotoxic indices. Following the second concussion, righting times were significantly longer, suggesting cumulative effects of repeated concussion while only partial increases were observed in glutamate and taurine levels. GABA and glycine levels, and excitotoxic indices were comparable to sham injury. These findings suggest that single and repeated concussions may induce acute increases in several amino acids, while repeated concussions could exacerbate neurological symptoms despite less pronounced neurochemical changes.

摘要

脑震荡或轻度创伤性脑损伤后细胞外氨基酸浓度的改变会通过 NMDA 谷氨酸能受体的过度激活导致神经元延迟性损伤。然而,尚未完全了解在完全恢复之前反复脑震荡的后果。在这项研究中,我们利用体内脑微透析和重物坠落模型来研究完全清醒的成年大鼠单次和重复脑震荡的急性神经化学反应。微透析探针插入海马体,并在撞击过程中保持在原位。主要结果包括谷氨酸、GABA、牛磺酸、甘氨酸、谷氨酰胺和丝氨酸的浓度,而次要结果是翻正时间和兴奋性毒性指数。与假损伤相比,第一次脑震荡导致谷氨酸、GABA、牛磺酸和甘氨酸水平显著升高,翻正时间延长,兴奋性毒性指数升高。第二次脑震荡后,翻正时间明显延长,提示重复脑震荡的累积效应,而谷氨酸和牛磺酸水平仅略有增加。GABA 和甘氨酸水平以及兴奋性毒性指数与假损伤相当。这些发现表明,单次和重复脑震荡可能会引起几种氨基酸的急性增加,而尽管神经化学变化不明显,但重复脑震荡可能会加重神经症状。

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