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脑周细胞衰老减弱体外血脑屏障功能:连续传代和分离老龄大鼠脑周细胞的比较。

Senescence in brain pericytes attenuates blood-brain barrier function in vitro: A comparison of serially passaged and isolated pericytes from aged rat brains.

机构信息

Department of Pharmaceutical Care and Health Sciences, Faculty of Pharmaceutical Sciences, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka 814-0180, Japan.

Department of Pharmaceutical Care and Health Sciences, Faculty of Pharmaceutical Sciences, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka 814-0180, Japan.

出版信息

Biochem Biophys Res Commun. 2023 Feb 19;645:154-163. doi: 10.1016/j.bbrc.2023.01.037. Epub 2023 Jan 13.

Abstract

Aging is associated with the dysfunction of the blood-brain barrier (BBB), which comprises brain microvessel endothelial cells (BMECs), astrocytes, and pericytes. Pericytes are present at intervals along the walls of the brain capillaries and play a key role in maintaining BBB integrity. Accumulation of senescent cells and the senescence-associated secretory phenotype (SASP) in the brain facilitate the development of age-related neurodegenerative diseases with BBB dysfunction. However, the ability of pericytes to support BBB integrity and their correlation with cellular senescence or aging remain unknown. Here, we investigated cellular senescence in pericytes focusing on its impact on BBB function using BBB models comprising intact BMECs co-cultured with senescent pericytes, which were obtained through a serial passage or isolated from 18-month-old rats. To assess BBB function, transendothelial electrical resistance (TEER) and permeability of sodium fluorescein (Na-F) were studied. Both serially passaged pericytes (in passage 4, 7, and 10) and aged pericytes isolated from 18-month-old rats showed decreased TEER and enhanced permeability of BMECs to Na-F compared to that of normal pericytes (passage 2 or young). Furthermore, serially passaged and aged pericytes showed characteristic features of cellular senescence, including increased β-galactosidase activity, cell cycle arrest, enhanced expression of mRNA, and SASP factors. However, the senescence-induced mRNA expression profile of pericyte markers varied between serially passaged and aged pericytes. Hence, in vitro serial passages and isolation from naturally aged rodents differently influenced genetic and biochemical features of senescent brain pericytes. We conclude that senescent brain pericytes can induce BBB dysfunction and those isolated from aged rodents retain the senescence-specific properties. Our findings provide an alternative tool to investigate the senescence in brain pericytes in vitro.

摘要

衰老是与血脑屏障 (BBB) 的功能障碍相关的,血脑屏障由脑微血管内皮细胞 (BMECs)、星形胶质细胞和周细胞组成。周细胞存在于脑毛细血管壁的间隔处,并在维持 BBB 完整性方面发挥关键作用。脑内衰老细胞的积累和衰老相关分泌表型 (SASP) 促进了与 BBB 功能障碍相关的年龄相关性神经退行性疾病的发展。然而,周细胞维持 BBB 完整性的能力及其与细胞衰老或老化的相关性仍不清楚。在这里,我们研究了周细胞中的细胞衰老,重点关注其对 BBB 功能的影响,使用包含与衰老周细胞共培养的完整 BMEC 的 BBB 模型,这些衰老周细胞是通过连续传代或从 18 月龄大鼠中分离获得的。为了评估 BBB 功能,研究了跨内皮电阻 (TEER) 和钠荧光素 (Na-F) 的通透性。与正常周细胞 (传代 2 或年轻) 相比,连续传代的周细胞 (传代 4、7 和 10) 和从 18 月龄大鼠中分离的衰老周细胞的 TEER 降低,且 BMEC 对 Na-F 的通透性增强。此外,连续传代和衰老的周细胞表现出细胞衰老的特征性特征,包括β-半乳糖苷酶活性增加、细胞周期停滞、mRNA 表达增强和 SASP 因子。然而,连续传代和衰老的周细胞中周细胞标志物的衰老诱导 mRNA 表达谱不同。因此,体外连续传代和从自然衰老的啮齿动物中分离对衰老脑周细胞的遗传和生化特征有不同的影响。我们得出结论,衰老的脑周细胞可诱导 BBB 功能障碍,并且从老年啮齿动物中分离出的细胞保留了衰老特异性特性。我们的研究结果为体外研究脑周细胞衰老提供了替代工具。

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