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组织蛋白酶 B 在慢性系统性暴露于牙龈卟啉单胞菌脂多糖后诱导小鼠出现类似阿尔茨海默病的表型中发挥关键作用。

Cathepsin B plays a critical role in inducing Alzheimer's disease-like phenotypes following chronic systemic exposure to lipopolysaccharide from Porphyromonas gingivalis in mice.

机构信息

Department of Aging Science and Pharmacology, Kyushu University, Japan; OBT Research Center, Faculty of Dental Science, Kyushu University, Japan.

Department of Aging Science and Pharmacology, Kyushu University, Japan.

出版信息

Brain Behav Immun. 2017 Oct;65:350-361. doi: 10.1016/j.bbi.2017.06.002. Epub 2017 Jun 10.

Abstract

A number of clinical and experimental studies have revealed a strong association between periodontitis and accelerated cognitive decline in Alzheimer's disease (AD); however, the mechanism of the association is unknown. In the present study, we tested the hypothesis that cathepsin (Cat) B plays a critical role in the initiation of neuroinflammation and neural dysfunction following chronic systemic exposure to lipopolysaccharide from Porphyromonas gingivalis (PgLPS) in mice (1mg/kg, daily, intraperitoneally). Young (2months old) and middle-aged (12months old) wild-type (WT; C57BL/6N) or CatB-deficient (CatB) mice were exposed to PgLPS daily for 5 consecutive weeks. The learning and memory function were assessed using the passive avoidance test, and the expression of amyloid precursor protein (APP), CatB, TLR2 and IL-1β was analyzed in brain tissues by immunohistochemistry and Western blotting. We found that chronic systemic exposure to PgLPS for five consecutive weeks induced learning and memory deficits with the intracellular accumulation of Aβ in neurons in the middle-aged WT mice, but not in young WT or middle-aged CatB mice. PgLPS significantly increased the expression of CatB in both microglia and neurons in middle-aged WT mice, while increased expression of mature IL-1β and TLR2 was restricted to microglia in the hippocampus of middle-aged WT mice, but not in that of the middle-aged CatB ones. In in vitro studies, PgLPS (1µg/ml) stimulation upregulated the mean mRNA expression of IL-1β, TLR2 and downregulated the protein levels of IκBα in the cultured MG6 microglia as well as in the primary microglia from WT mice, which were significantly inhibited by the CatB-specific inhibitor CA-074Me as well as by the primary microglia from CatB mice. Furthermore, the mean mRNA expression of APP and CatB were significantly increased in the primary cultured hippocampal neurons after treatment with conditioned medium from PgLPS-treated WT primary microglia, but not after treatment with conditioned medium neutralized with anti-IL-1beta, and not after treatment with conditioned medium from PgLPS-treated CatB primary microglia or with PgLPS directly. Taken together, these findings indicate that chronic systemic exposure to PgLPS induces AD-like phenotypes, including microglia-mediated neuroinflammation, intracellular Aβ accumulation in neurons and impairment of the learning and memory functions in the middle-aged mice in a CatB-dependent manner. We propose that CatB may be a therapeutic target for preventing periodontitis-associated cognitive decline in AD.

摘要

一些临床和实验研究表明,牙周炎与阿尔茨海默病(AD)认知能力加速下降之间存在很强的关联;然而,其关联机制尚不清楚。在本研究中,我们假设组织蛋白酶(Cat)B 在慢性系统性暴露于牙龈卟啉单胞菌(P.gingivalis,PgLPS)脂多糖后引发神经炎症和神经功能障碍中起关键作用(1mg/kg,每天,腹腔内)。年轻(2 个月大)和中年(12 个月大)野生型(WT;C57BL/6N)或 CatB 缺陷(CatB)小鼠连续 5 周每天接受 PgLPS 暴露。使用被动回避测试评估学习和记忆功能,通过免疫组织化学和 Western blot 分析脑组织中淀粉样前体蛋白(APP)、CatB、TLR2 和 IL-1β的表达。我们发现,连续 5 周慢性系统性暴露于 PgLPS 会导致中年 WT 小鼠神经元内 Aβ的细胞内积累,导致学习和记忆障碍,但年轻 WT 或中年 CatB 小鼠则不会。PgLPS 显著增加了中年 WT 小鼠小胶质细胞和神经元中 CatB 的表达,而成熟的 IL-1β和 TLR2 的表达增加仅限于中年 WT 小鼠海马中的小胶质细胞,而不是中年 CatB 小鼠的小胶质细胞。在体外研究中,PgLPS(1µg/ml)刺激可上调培养的 MG6 小胶质细胞和 WT 小鼠原代小胶质细胞中 IL-1β、TLR2 的平均 mRNA 表达,并下调 IκBα 的蛋白水平,而 CatB 特异性抑制剂 CA-074Me 以及来自 CatB 小鼠的原代小胶质细胞可显著抑制这些作用。此外,用来自 PgLPS 处理的 WT 原代小胶质细胞的条件培养基处理后,原代培养的海马神经元中的 APP 和 CatB 的平均 mRNA 表达显著增加,但用中和抗 IL-1β的条件培养基处理后则不会增加,也不会用来自 PgLPS 处理的 CatB 原代小胶质细胞或 PgLPS 直接处理后增加。综上所述,这些发现表明,慢性系统性暴露于 PgLPS 会导致 AD 样表型,包括小胶质细胞介导的神经炎症、神经元内 Aβ 积累以及中年小鼠学习和记忆功能受损,这是一种依赖于 CatB 的方式。我们提出,CatB 可能是预防牙周炎相关 AD 认知能力下降的治疗靶点。

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