RRID:SCR_018949

  • 文章类型: Journal Article
    腹下膜调节情绪,应激反应,以及空间和社会认知。在我们之前的研究中,我们已经表现出类似焦虑和抑郁的症状,腹侧锁骨下病变(VSL)大鼠的空间和社会认知缺陷,和光周期操作后的情感和认知行为的恢复(短光周期制度,SPR;6:18LD循环)。在本研究中,我们研究了VSL对睡眠-觉醒行为模式的影响以及SPR对睡眠-觉醒行为的影响.由于非快速眼动睡眠(NREMS)和快速眼动睡眠(REMS)的增加,接受VSL的成年雄性Wistar大鼠的觉醒持续时间减少,总睡眠时间增加。功率谱分析表明,NREMS期间的delta活动增加,而在所有警戒状态下的sigma波段功率降低。光是昼夜节律最强的夹带剂之一,它的操作可能会产生各种生理和功能后果。我们研究了21天暴露于SPR对VSL大鼠睡眠觉醒(S-W)行为的影响。我们观察到SPR暴露可以恢复VSL大鼠的S-W行为,导致唤醒持续时间增加,并且在唤醒和REMS期间θ功率显着增加。这项研究强调了腹下膜在维持正常睡眠-觉醒模式中的关键作用,并强调了光周期操作作为一种非药物治疗方法的有效性,用于逆转情绪和神经精神疾病如阿尔茨海默病的睡眠障碍。双相情感障碍,和重度抑郁症,这也涉及昼夜节律的改变。
    The ventral subiculum regulates emotion, stress responses, and spatial and social cognition. In our previous studies, we have demonstrated anxiety- and depression-like symptoms, deficits in spatial and social cognition in ventral subicular lesioned (VSL) rats, and restoration of affective and cognitive behaviors following photoperiod manipulation (short photoperiod regime, SPR; 6:18 LD cycle). In the present study, we have studied the impact of VSL on sleep-wake behavioral patterns and the effect of SPR on sleep-wakefulness behavior. Adult male Wistar rats subjected to VSL demonstrated decreased wake duration and enhanced total sleep time due to increased non-rapid eye movement sleep (NREMS) and rapid eye movement sleep (REMS). Power spectral analysis indicated increased delta activity during NREMS and decreased sigma band power during all vigilance states. Light is one of the strongest entrainers of the circadian rhythm, and its manipulation may have various physiological and functional consequences. We investigated the effect of 21-day exposure to SPR on sleep-wakefulness (S-W) behavior in VSL rats. We observed that SPR exposure restored S-W behavior in VSL rats, resulting in an increase in wake duration and a significant increase in theta power during wake and REMS. This study highlights the crucial role of the ventral subiculum in maintaining normal sleep-wakefulness patterns and highlights the effectiveness of photoperiod manipulation as a non-pharmacological treatment for reversing sleep disturbances reported in mood and neuropsychiatric disorders like Alzheimer\'s disease, bipolar disorder, and major depressive disorder, which also involve alterations in circadian rhythm.
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  • 文章类型: Journal Article
    淋巴系统是最近发现的神经胶质依赖性宏观间隙废物清除系统,可促进从中枢神经系统中有效消除可溶性蛋白质和代谢物。它的解剖学基础是星形胶质细胞和星形胶质细胞末端上的水通道蛋白4(AQP4)水通道。这项研究的目的是评估2型糖尿病引起的疼痛性糖尿病神经病(PDN)的雄性SD大鼠脊髓淋巴系统的可塑性。在具有低剂量链脲佐菌素的高脂肪和高糖饮食下对PDN大鼠进行建模。应用MRI观察造影剂的浸润和清除,以指示脊髓水平的淋巴系统的功能变异性。爪缩回阈值用于表示机械异常性疼痛。评估胶质纤维酸性蛋白(GFAP)阳性星形胶质细胞的数值变化,并通过免疫荧光测量AQP4蛋白的极性逆转。因此,死者造影剂渗透和清除,增强的机械性异常性疼痛,GFAP阳性星形胶质细胞数量增加,在PDN大鼠中发现AQP4蛋白的极性相反。上述分子水平变化可能导致PDN大鼠脊髓淋巴系统受损。这项研究揭示了PDN大鼠脊髓淋巴系统的分子和功能变化,首次表明脊髓淋巴系统受损与PDN大鼠之间可能存在相关性。
    The glymphatic system is a recently discovered glial-dependent macroscopic interstitial waste clearance system that promotes the efficient elimination of soluble proteins and metabolites from the central nervous system. Its anatomic foundation is the astrocytes and aquaporin-4 (AQP4) water channels on the endfeet of astrocytes. The aim of this study is to evaluate the plasticity of the spinal glymphatic system in male SD rats with painful diabetic neuropathy (PDN) induced by type 2 diabetes mellitus. PDN rats were modeled under a high-fat and high-glucose diet with a low dose of streptozotocin. MRI was applied to observe the infiltration and clearance of contrast to indicate the functional variability of the glymphatic system at the spinal cord level. The paw withdrawal threshold was used to represent mechanical allodynia. The numerical change of glial fibrillary acidic protein (GFAP) positive astrocytes was assessed and the polarity reversal of AQP4 protein was measured by immunofluorescence. As a result, deceased contrast infiltration and clearance, enhanced mechanical allodynia, increased number of GFAP positive astrocytes, and reversed polarity of AQP4 protein were found in the PDN rats. The above molecular level changes may contribute to the impairment of the spinal glymphatic system in PDN rats. This study revealed the molecular and functional variations of the spinal glymphatic system in PDN rats and for the first time indicated that there might be a correlation between the impaired spinal glymphatic system and PDN rats.
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