Li Wen-Guang, Li Lan-Xin, Song Rong-Xin, Wang Xu-Peng, Jia Shi-Yan, Ma Xiao-Yi, Zhang Jing-Yu, Yin Gang-Feng, Li Xiao-Ming, Zhang Li-Min
Hebei Province Key Laboratory of Integrated Traditional and Western Medicine in Neurological Rehabilitation, Cangzhou, 061000, China.
Graduate School, Hebei Medical University, Shijiazhuang, 050011, China.
Neurosci Bull. 2025 Apr 25. doi: 10.1007/s12264-025-01404-5.
Hemorrhagic shock is a common clinical emergency that can aggravate cell injury after resuscitation. Astrocytes are crucial for the survival of neurons because they regulate the surrounding ionic microenvironment of neurons. Although hemorrhagic shock and resuscitation (HSR) injury can impair cognition, it remains unclear how this insult directly affects astrocytes. In this study, we established an HSR model by bleeding and re-transfusion in mice. The social interaction test and new object recognition test were applied to evaluate post-operative cognitive changes, and the results suggest that mice experience cognitive impairment following exposure to HSR. In the HSR group, the power spectral density of β and γ oscillations decreased, and the coupling of the θ oscillation phase and γ oscillation amplitude was abnormal, which indicated abnormal neuronal oscillation and cognitive impairment after HSR exposure. In brief, cognitive impairment in mice is strongly correlated with Ca signal strength in lateral septum astrocytes following HSR.
失血性休克是一种常见的临床急症,可加重复苏后的细胞损伤。星形胶质细胞对神经元的存活至关重要,因为它们调节神经元周围的离子微环境。尽管失血性休克和复苏(HSR)损伤会损害认知,但这种损伤如何直接影响星形胶质细胞仍不清楚。在本研究中,我们通过对小鼠进行放血和再输血建立了HSR模型。应用社会互动测试和新物体识别测试来评估术后的认知变化,结果表明小鼠在经历HSR后出现认知障碍。在HSR组中,β和γ振荡的功率谱密度降低,θ振荡相位与γ振荡幅度的耦合异常,这表明HSR暴露后神经元振荡异常和认知障碍。简而言之,小鼠的认知障碍与HSR后外侧隔区星形胶质细胞中的钙信号强度密切相关。