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Porphyromonas gingivalis GroEL Accelerates Abdominal Aortic Aneurysm Formation by Induction of M1 Polarization in Macrophages

牙龈卟啉单胞菌 格罗尔 弹性蛋白 牙周病原体 炎症 热休克蛋白 促炎细胞因子 巨噬细胞极化 生物 免疫学 微生物学 化学 巨噬细胞 医学 病理 体外 牙周炎 内科学 生物化学 大肠杆菌 基因
作者
Yi Lin,Yi‐Ting Tsai,Ming‐Jen Cheng,Chun Ming Shih,Chun‐Yao Huang,Chien‐Sung Tsai,Shih-Ying Sung,Ze‐Hao Lai,Chen‐Wei Liu,Feng‐Yen Lin
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:26 (16): 7781-7781
标识
DOI:10.3390/ijms26167781
摘要

Abdominal aortic aneurysm (AAA) is a life-threatening vascular disease characterized by chronic inflammation, extracellular matrix degradation, and smooth muscle cell apoptosis. Porphyromonas gingivalis (P. gingivalis), a key periodontal pathogen, has been implicated in the progression of cardiovascular diseases, including AAA, but the underlying mechanisms remain unclear. In this study, we investigated the role of GroEL, a bacterial heat shock protein 60 homolog derived from P. gingivalis, in AAA development. We employed a CaCl2-induced AAA mouse model to evaluate the in vivo effects of GroEL. Mice received periaortic CaCl2 application followed by intravenous injections of recombinant GroEL. Histological analyses were performed to assess aneurysmal dilation, elastin degradation, and inflammatory cell infiltration. Flow cytometry and immunohistochemistry were used to determine macrophage phenotypes, while cytokine profiles were quantified via ELISA. In vitro, THP-1 monocytes were treated with GroEL to evaluate its impact on macrophage polarization and cytokine expression. Our results showed that GroEL administration significantly enhanced aortic diameter expansion and elastin breakdown, accompanied by increased infiltration of M1-like macrophages and elevated levels of pro-inflammatory cytokines such as TNF-α and IL-6. In vitro findings confirmed that GroEL promotes M1 polarization and inhibits M2 marker expression in THP-1-derived macrophages. These findings suggest that P. gingivalis-derived GroEL plays a pathogenic role in AAA by modulating macrophage polarization toward a pro-inflammatory phenotype. Targeting microbial components such as GroEL may offer new therapeutic strategies for AAA management.
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