Clusterin attenuates blood-brain barrier damage and cognitive impairment by inhibiting astrocyte aging in mice with sepsis-associated encephalopathy.

IF 1.6 4区 医学 Q4 NEUROSCIENCES Neuroreport Pub Date : 2024-09-04 Epub Date: 2024-07-05 DOI:10.1097/WNR.0000000000002075
Ping Xiao, Yin Wen, Guoqiang Du, Ensi Luo, ZhiWei Su, Zhong Liao, Hongguang Ding, Weifeng Li
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Abstract

Sepsis-associated encephalopathy (SAE) is a severe complication of sepsis, however, its exact mechanism remains unknown. This study aimed to evaluate whether clusterin is essential to the development of SAE during the aging process of astrocytes. In the study, septic mice were established with cecal ligation and puncture (CLP) and lipopolysaccharides were applied to astrocytes in vitro. Evan's blue dye was used in vivo to show blood-brain barrier (BBB) permeability. A morris water maze test was conducted to assess cognitive functions of the mice. Clusterin-knockout mice were used to examine the effect of clusterin on sepsis. The astrocytes were transfected with lentivirus expressing clusterin cDNA for clusterin overexpression or pYr-LV-clusterin small hairpin RNA for clusterin knockdown in vitro . The expression of clusterin, p-p53, p21, GDNF, and iNOS was detected. he CLP mice exhibited a higher clusterin expression in hippocampus tissue, aging astrocytes, lower GDNF expression and higher iNOS expression, accompanied with BBB damage and cognitive deficiency. Following clusterin knockout, this pathological process was further enhanced. In vitro , following lipopolysaccharides treatment, astrocytes exhibited increased clusterin, p-p53, p21, iNOS and decreased GDNF. Following clusterin knockdown, the cells exhibited a further increase in p-p53, p21, and iNOS and decrease in GDNF. Clusterin overexpression, however, helped inhibit astrocytes aging and neuroinflammation evidenced by decreased p-p53, p21, iNOS and increased GDNF. The present study has revealed that clusterin may exert its neuroprotective effect by preventing aging in astrocytes, suppressing the secretion of iNOS and promoting GNDF release.

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群集素通过抑制脓毒症相关脑病小鼠星形胶质细胞的老化,减轻血脑屏障损伤和认知障碍。
败血症相关脑病(SAE)是败血症的一种严重并发症,但其确切机制仍不清楚。本研究旨在评估星形胶质细胞衰老过程中簇素对 SAE 的发生是否至关重要。在研究中,通过盲肠结扎和穿刺(CLP)建立败血症小鼠,并在体外对星形胶质细胞施加脂多糖。在体内使用伊文蓝染料显示血脑屏障(BBB)的通透性。进行莫里斯水迷宫测试以评估小鼠的认知功能。使用集束素基因敲除小鼠来研究集束素对败血症的影响。在体外用表达集束素cDNA的慢病毒转染星形胶质细胞以过表达集束素,或用pYr-LV-集束素小发夹RNA转染星形胶质细胞以敲除集束素。CLP小鼠的海马组织中集束素表达较高,星形胶质细胞老化,GDNF表达较低,iNOS表达较高,同时伴有BBB损伤和认知缺陷。集束素基因敲除后,这一病理过程进一步加剧。在体外,脂多糖处理后,星形胶质细胞表现出集束素、p-p53、p21、iNOS 的增加和 GDNF 的减少。在敲除集束素后,细胞的 p-p53、p21 和 iNOS 进一步增加,GDNF 减少。然而,过表达集束素有助于抑制星形胶质细胞的老化和神经炎症,p-p53、p21、iNOS 的减少和 GDNF 的增加就是证明。本研究揭示了群集素可能通过防止星形胶质细胞老化、抑制 iNOS 的分泌和促进 GNDF 的释放来发挥其神经保护作用。
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来源期刊
Neuroreport
Neuroreport 医学-神经科学
CiteScore
3.20
自引率
0.00%
发文量
150
审稿时长
1 months
期刊介绍: NeuroReport is a channel for rapid communication of new findings in neuroscience. It is a forum for the publication of short but complete reports of important studies that require very fast publication. Papers are accepted on the basis of the novelty of their finding, on their significance for neuroscience and on a clear need for rapid publication. Preliminary communications are not suitable for the Journal. Submitted articles undergo a preliminary review by the editor. Some articles may be returned to authors without further consideration. Those being considered for publication will undergo further assessment and peer-review by the editors and those invited to do so from a reviewer pool. The core interest of the Journal is on studies that cast light on how the brain (and the whole of the nervous system) works. We aim to give authors a decision on their submission within 2-5 weeks, and all accepted articles appear in the next issue to press.
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