Department of Neurology, Affiliated Hospital of Guilin Medical University, Guilin 541001, China.
Department of Cardiology, The 924th Hospital of Chinese People's Liberation Army Joint Service Support Force, Guilin, China.
Exp Neurol. 2024 Aug;378:114819. doi: 10.1016/j.expneurol.2024.114819. Epub 2024 May 17.
Both glymphatic system dysfunction and inflammatory response aggravate neurological dysfunction after subarachnoid hemorrhage (SAH). Studies have shown that β-hydroxybutyrate (BHB) may mitigate painful diabetic neuropathy (PDN) by upregulating SNTA1 expression and reinstating AQP4 polarity. However, the potential of BHB to ameliorate glymphatic system function and inflammatory response in SAH mice remains uncertain.
The SAH models were constructed by injection of arterial blood into cisterna Magana. Three groups of C57 mice were randomly assigned: Sham, SAH, and BHB. All mice were subjected to neurological function assessment, western blot, immunofluorescence double staining, and RNA-seq. Glymphatic system function was examined with tracer and immunofluorescence double staining, and the differential genes were examined with RNA-seq. In addition, the expression of related inflammation was detected.
Compared with the SAH group, BHB reinstated AQP4 polarization by upregulating SNTA1 protein to enhance the glymphatic system. According to RNA-seq, the different genes were primarily connected to microglia activation, astrocytes, and inflammation. Western blot and immunofluorescence further confirmed that the related inflammatory protein expression levels were upregulated. BHB attenuated neuroinflammation after SAH. Ultimately, it can mitigate the neurological deficits in SAH mice.
The study reveals a novel mechanism that BHB treatment mitigates neurologic impairment in SAH mice. We propose that BHB may play a neuroprotective effect by enhancing glymphatic system function and attenuating neuroinflammatory subarachnoid hemorrhage.
糖质分解系机能不全和炎症反应加剧蛛网膜下腔出血(SAH)后的神经功能障碍。有研究表明,β-羟丁酸(BHB)通过上调 SNTA1 表达和恢复 AQP4 极性,可能减轻痛性糖尿病神经病变(PDN)。然而,BHB 改善 SAH 小鼠糖质分解系功能和炎症反应的潜力尚不确定。
通过向 Magana 池内注入动脉血构建 SAH 模型。将三组 C57 小鼠随机分为:假手术组、SAH 组和 BHB 组。所有小鼠均进行神经功能评估、western blot、免疫荧光双重染色和 RNA-seq。通过示踪剂和免疫荧光双重染色检查糖质分解系功能,通过 RNA-seq 检查差异基因。此外,还检测了相关炎症的表达。
与 SAH 组相比,BHB 通过上调 SNTA1 蛋白来恢复 AQP4 极性,从而增强糖质分解系。根据 RNA-seq,差异基因主要与小胶质细胞激活、星形胶质细胞和炎症有关。western blot 和免疫荧光进一步证实,相关炎症蛋白的表达水平上调。BHB 减轻了 SAH 后的神经炎症,最终减轻了 SAH 小鼠的神经功能缺损。
该研究揭示了 BHB 治疗减轻 SAH 小鼠神经损伤的新机制。我们提出 BHB 通过增强糖质分解系功能和减轻神经炎症,发挥神经保护作用。