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大麻二酚酸可挽救阿尔茨海默病模型中海马长时程增强的缺陷:一项电生理学和蛋白质组学分析。

Cannabidiolic Acid Rescues Deficits in Hippocampal Long-Term Potentiation in Models of Alzheimer's Disease: An Electrophysiological and Proteomic Analysis.

作者信息

Gil Beatriz, Sullivan Mairéad, Scaife Caitriona, Glennon Jeffrey C, Herron Caroline

机构信息

School of Biomolecular and Biomedical Sciences, University College Dublin, Conway Institute, Dublin 4, Ireland.

School of Medicine and Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Conway Institute, Dublin 4, Ireland.

出版信息

Int J Mol Sci. 2025 May 21;26(10):4944. doi: 10.3390/ijms26104944.

Abstract

In this study, we have examined the neuroprotective effects of cannabidiolic acid (CBDA) in models of Alzheimer's disease (AD). We used in vitro electrophysiological recording in hippocampal slices and performed proteomic analysis of cortical tissue from APP/PS1dE9 (APP/PS1) mice. In wild-type (WT) slices from C57BL6 mice, acute treatment with CBDA (10 μM) did not alter levels of hippocampal long-term potentiation (LTP); however, it did reverse the attenuation of LTP produced by acute beta amyloid peptide (Aβ). We also examined the effects of CBDA or vehicle in APP/PS1 mice and WT littermates over a 5-week period at 8 months. LTP levels recorded in slices from WT mice treated with CBDA at 1, 10, or 30 mg/kg (IP) or vehicle were similar. LTP was attenuated in slices from vehicle-treated APP/PS1 compared to vehicle-treated WT mice, while treatment of APP/PS1 mice with all doses of CBDA reversed the deficits in LTP. There was also a deficit in paired-pulse facilitation (PPF) in vehicle-treated APP/PS1 compared to WT, indicating altered synaptic function and transmitter release; this was reversed in slices from CBDA-treated APP/PS1 mice. Levels of cortical soluble Aβ were similar across CBDA- and vehicle-treated groups; however, the level of aggregated Aβ was decreased in the CBDA-treated group. Proteomic analysis of cortical tissue from APP/PS1 cortex compared to WT revealed alterations in protein expression, with pathway enrichment analyses suggesting implicated canonical pathways, including mitochondrial dysfunction, protein sorting, and synaptogenesis; all were significantly improved by CBDA treatment. These changes likely facilitate the improvement in synaptic transmission and LTP we observed following CBDA treatment in APP/PS1 mice. This research suggests that CBDA should be considered a novel therapy for AD.

摘要

在本研究中,我们检测了大麻二酚酸(CBDA)在阿尔茨海默病(AD)模型中的神经保护作用。我们使用海马脑片进行体外电生理记录,并对APP/PS1dE9(APP/PS1)小鼠的皮质组织进行蛋白质组学分析。在C57BL6小鼠的野生型(WT)脑片中,用CBDA(10 μM)急性处理并未改变海马长时程增强(LTP)水平;然而,它确实逆转了急性β淀粉样肽(Aβ)所导致的LTP衰减。我们还在8个月大的APP/PS1小鼠和WT同窝小鼠中检测了CBDA或赋形剂在5周内的作用。用1、10或30 mg/kg(腹腔注射)CBDA或赋形剂处理的WT小鼠脑片中记录的LTP水平相似。与赋形剂处理的WT小鼠相比,赋形剂处理的APP/PS1小鼠脑片中LTP减弱,而用所有剂量的CBDA处理APP/PS1小鼠可逆转LTP缺陷。与WT相比,赋形剂处理的APP/PS1小鼠中配对脉冲易化(PPF)也存在缺陷,表明突触功能和递质释放发生改变;这在CBDA处理的APP/PS1小鼠脑片中得到逆转。CBDA处理组和赋形剂处理组的皮质可溶性Aβ水平相似;然而,CBDA处理组中聚集的Aβ水平降低。与WT相比,APP/PS1皮质的皮质组织蛋白质组学分析显示蛋白质表达发生改变,通路富集分析表明涉及的典型通路包括线粒体功能障碍、蛋白质分选和突触发生;CBDA处理均使其显著改善。这些变化可能有助于我们在APP/PS1小鼠中观察到的CBDA处理后突触传递和LTP的改善。这项研究表明,CBDA应被视为AD的一种新型治疗方法。

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