Myeloid Cell mPGES-1 Deletion Attenuates Calcium Phosphate-induced Abdominal Aortic Aneurysm in Male Mice.

IF 4.5 2区 医学 Q2 CELL BIOLOGY
Inflammation Pub Date : 2025-02-01 Epub Date: 2024-06-12 DOI:10.1007/s10753-024-02055-w
Meina Guo, Shuang Ji, Hui Wang, Jiayang Zhang, Jingwen Zhu, Guangrui Yang, Lihong Chen
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引用次数: 0

Abstract

Microsomal PGE2 synthase (mPGES)-1 is the key enzyme responsible for synthesizing inflammatory prostaglandin E2 (PGE2). Our previous studies have shown that deletion mPGES-1 in myeloid cells hinders atherogenesis, suppresses vascular proliferative response to injury and enhances survival after myocardial infarction. Here we aimed to further explore the influence of myeloid cell mPGES-1 deletion in abdominal aortic aneurysm (AAA) formation. The AAA was triggered by applying 0.5 M calcium phosphate (CaPO4) to the infrarenal aorta of both myeloid mPGES-1 knockout (Mac-mPGES-1-KO) and their littermate control Mac-mPGES-1-WT mice. AAA induction was assessed by calculating the expansion of the infrarenal aortic diameter 4 weeks after CaPO4 application. The maximum diameters of the aortas were measured by morphometry and the mean maximal diameters were calculated. Paraffin sections of the infrarenal aortas were examined for morphological analysis and immunohistochemical staining. The results showed that myeloid cell mPGES-1 deletion significantly mitigated AAA formation, including reducing expansion of the infrarenal aorta, preventing elastic lamellar degradation, and decreasing aortic calcium deposition. Immunohistochemical staining further indicated that macrophage infiltration and matrix metalloproteinase 2 (MMP2) expression was attenuated in the Mac-mPGES-1-KO aortas. Consistently, in vitro experiments showed that expression of pro-inflammatory cytokines and MMPs was significantly reduced when mPGES-1 was lacking in the primary cultured peritoneal macrophages. These data altogether demonstrated that deletion of mPGES-1 in myeloid cells may attenuate AAA formation and targeting myeloid cell mPGES-1 could potentially offer an effective strategy for the treatment and prevention of vascular inflammatory diseases.

Abstract Image

髓系细胞 mPGES-1 缺失可减轻磷酸钙诱发的雄性小鼠腹主动脉瘤
微粒体前列腺素 E2 合成酶(mPGES)-1 是合成炎症性前列腺素 E2(PGE2)的关键酶。我们之前的研究表明,在骨髓细胞中缺失 mPGES-1 会阻碍动脉粥样硬化的发生,抑制血管对损伤的增殖反应,并提高心肌梗死后的存活率。在此,我们旨在进一步探讨髓系细胞mPGES-1缺失对腹主动脉瘤(AAA)形成的影响。在髓细胞mPGES-1基因敲除(Mac-mPGES-1-KO)小鼠及其同系对照Mac-mPGES-1-WT小鼠的肾下主动脉上施加0.5 M磷酸钙(CaPO4),诱发AAA。通过计算施用 CaPO4 4 周后肾下主动脉直径的扩张情况来评估 AAA 的诱导情况。通过形态测量法测量主动脉的最大直径,并计算最大直径的平均值。对肾下主动脉石蜡切片进行形态学分析和免疫组化染色。结果显示,髓系细胞mPGES-1缺失能显著缓解AAA的形成,包括减少肾下主动脉的扩张、防止弹性层降解和减少主动脉钙沉积。免疫组化染色进一步表明,巨噬细胞浸润和基质金属蛋白酶 2(MMP2)的表达在 Mac-mPGES-1-KO 主动脉中有所减少。同样,体外实验表明,原代培养的腹腔巨噬细胞中缺乏 mPGES-1 时,促炎细胞因子和 MMPs 的表达明显减少。这些数据共同表明,在骨髓细胞中缺失mPGES-1可减轻AAA的形成,而靶向骨髓细胞mPGES-1有可能为治疗和预防血管炎症性疾病提供一种有效的策略。
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来源期刊
Inflammation
Inflammation 医学-免疫学
CiteScore
9.70
自引率
0.00%
发文量
168
审稿时长
3.0 months
期刊介绍: Inflammation publishes the latest international advances in experimental and clinical research on the physiology, biochemistry, cell biology, and pharmacology of inflammation. Contributions include full-length scientific reports, short definitive articles, and papers from meetings and symposia proceedings. The journal''s coverage includes acute and chronic inflammation; mediators of inflammation; mechanisms of tissue injury and cytotoxicity; pharmacology of inflammation; and clinical studies of inflammation and its modification.
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