时间维度影响小鼠中风的严重程度和增强的免疫反应

IF 3.8 2区 医学 Q1 CLINICAL NEUROLOGY
Translational Stroke Research Pub Date : 2025-04-01 Epub Date: 2023-12-13 DOI:10.1007/s12975-023-01226-5
Pradip K Kamat, Mohammad Badruzzaman Khan, Shahneela Siddiqui, Dylan Williams, Evila da Silva Lopes Salles, Sahar Emami Naeini, Ali S Arbab, Daniel R Rudic, Babak Baban, Krishnan M Dhandapani, David C Hess
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引用次数: 0

摘要

缺血性中风由脑血流受阻引起,导致神经损伤和不良预后。来自居民和浸润免疫细胞的促炎症信号增强了脑损伤,恶化了中风后患者的预后。虽然中风的发生表现出与时间相关的模式,但昼夜节律紊乱是否会调节中风后的免疫仍不清楚。在这项研究中,我们假设中风发生的时间会对小鼠的免疫激活产生不同的影响。大脑中动脉闭塞(MCAO)后,昼夜节律基因 BMAL1、CLOCK、Cry1 和 Cry2 在 ZT06 升高,ZT06 和 ZT18 之间差异显著。相反,中风小鼠负性肢体昼夜节律时钟基因 Per1 的表达在 ZT06 和 ZT18 比假时下降。与这些昼夜节律基因表达变化相平行的是,我们观察到,与在 ZT12(MCAO-ZT12)、ZT18(MCAO-ZT18)或 ZT0(MCAO-ZT12)诱导中风时相比,在中风后 ZT06(MCAO-ZT6)进行手术时,TNF-α 的表达显著增加,而在中风后 48 小时,IL-10 的表达减少。同样,与 MCAO-ZT18 相比,在 MCAO-ZT06 的 48 小时内,观察到血液中促炎性单核细胞增加、抗炎性单核细胞减少、NLRP3 增加,而脑组织中 CD11b 和 Iba1 的表达也发生了变化。最后,我们发现 MCAO-ZT06 小鼠脾脏的重量和长度减少,而脾细胞中的 Tregs、Bregs 和单核细胞出现了显著的时间依赖性变化。综上所述,本研究表明缺血性脑卒中后循环和脾脏免疫反应表现出昼夜节律表达模式,这可能是导致脑卒中结果随时间变化的原因之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Time Dimension Influences Severity of Stroke and Heightened Immune Response in Mice.

Time Dimension Influences Severity of Stroke and Heightened Immune Response in Mice.

Ischemic stroke is caused by obstructed cerebral blood flow, which results in neurological injury and poor outcomes. Pro-inflammatory signaling from both residential and infiltrating immune cells potentiates cerebral injury and worsens patient outcomes after stroke. While the occurrence of a stroke exhibits a time-of-day-dependent pattern, it remains unclear whether disrupted circadian rhythms modulate post-stroke immunity. In this study, we hypothesized that stroke timing differentially affects immune activation in mice. Following middle cerebral artery occlusion (MCAO), circadian genes BMAL1, CLOCK, Cry1, and Cry2 elevated at ZT06, with a significant difference between ZT06 and ZT18. Conversely, expression of the negative limb circadian clock gene, Per1, decreased at ZT06 and ZT18 in stroke mice compared to sham. Paralleling these circadian gene expression changes, we observed a significant increase in TNF-α and a decrease in IL-10 expression at 48 h post-MCAO, when the procedure was performed at ZT06 (MCAO-ZT6), which corresponds to a deep sleep period, as compared to when the stroke was induced at ZT12 (MCAO-ZT12), ZT18 (MCAO-ZT18), or ZT0 (MCAO-ZT12). Similarly, increased pro-inflammatory, decreased anti-inflammatory monocytes, and increased NLRP3 were observed in blood, while changes in the expression of CD11b and Iba1 were noted within brain tissue at 48 h of MCAO-ZT06, as compared to MCAO-ZT18. Consistent with the increased immune response, infarct volume and sensorimotor deficits were greater in MCAO-ZT06 mice compared to MCAO-ZT18 mice at 48 h. Finally, we found reduced weight and length of the spleen while splenocytes showed significant time-dependent changes in Tregs, Bregs, and monocytes in MCAO-ZT06 mice. Taken together, this study demonstrates that circulating and splenic immune responses following ischemic stroke exhibit a circadian expression pattern which may contribute to time-of-day-dependent stroke outcomes.

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来源期刊
Translational Stroke Research
Translational Stroke Research CLINICAL NEUROLOGY-NEUROSCIENCES
CiteScore
13.80
自引率
4.30%
发文量
130
审稿时长
6-12 weeks
期刊介绍: Translational Stroke Research covers basic, translational, and clinical studies. The Journal emphasizes novel approaches to help both to understand clinical phenomenon through basic science tools, and to translate basic science discoveries into the development of new strategies for the prevention, assessment, treatment, and enhancement of central nervous system repair after stroke and other forms of neurotrauma. Translational Stroke Research focuses on translational research and is relevant to both basic scientists and physicians, including but not restricted to neuroscientists, vascular biologists, neurologists, neuroimagers, and neurosurgeons.
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