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大肠杆菌脂多糖诱导的钙信号调节牙周膜成纤维细胞中缺氧诱导因子 1α 的表达,这种调节方式不依赖于缺氧。

E. Coli LPS-induced calcium signaling regulates the expression of hypoxia-inducible factor 1α in periodontal ligament fibroblasts in a non-hypoxia-dependent manner.

机构信息

Department of Orthodontics, Stomatological Hospital, School of Stomatology, Southern Medical University, China.

Department of Pediatric Dentistry, School and Hospital of Stomatology, Guangdong Engineering Research Center of Oral Restoration and Reconstruction & Guangzhou Key Laboratory of Basic and Applied Research of Oral Regenerative Medicine, Guangzhou Medical University, China.

出版信息

Int Immunopharmacol. 2024 Feb 15;128:111418. doi: 10.1016/j.intimp.2023.111418. Epub 2024 Jan 3.

Abstract

Periodontitis, an inflammatory disease, can cause significant damage to the oral tissues which support the teeth. During the early development of periodontitis, periodontal ligament fibroblasts (PDLFs) undergo metabolic reprogramming regulated by hypoxia-inducible factor 1α (HIF-1α), which is strongly linked to the progression of inflammation. However, the precise mechanisms by which PDLFs regulate HIF-1α and its associated metabolic reprogramming during early inflammation remain unclear. This study illustrated that brief and low-dose exposure to Escherichia coli (E. coli) lipopolysaccharide (LPS) can serve as a non-hypoxic stimulus, effectively replicating early periodontal inflammatory reactions. This is evidenced by the upregulation of HIF-1α expression and the activation of HIF-1α-mediated crucial glycolytic enzymes, namely lactate dehydrogenase a, pyruvate kinase, and hexokinase 2, concomitant with an augmentation in the inflammatory response within PDLFs. We observed that the effects mentioned and their impact on macrophage polarization were notably attenuated when intracellular and extracellular stores of Ca were depleted using BAPTA-AM and Ca-free medium, respectively. Mechanistically, our findings demonstrated that the transcriptional process of HIF-1α is regulated by Ca during E. coli LPS stimulation, mediated through the signal transducer and activator of transcription 3 (STAT3) pathway. Additionally, we observed that the stabilization of intracellular HIF-1α proteins occurs via the endothelin (ET)-1-endothelin A receptor pathway, independent of hypoxia. Taken together, our research outcomes underscore the pivotal involvement of Ca in the onset of early periodontitis by modulating HIF-1α and glycolysis, thereby presenting novel avenues for early therapeutic interventions.

摘要

牙周炎是一种炎症性疾病,可导致支持牙齿的口腔组织发生重大损伤。在牙周炎的早期发展过程中,牙周韧带成纤维细胞(PDLFs)经历由缺氧诱导因子 1α(HIF-1α)调节的代谢重编程,这与炎症的进展密切相关。然而,PDLFs 在早期炎症过程中调节 HIF-1α及其相关代谢重编程的确切机制尚不清楚。本研究表明,短暂和低剂量暴露于大肠杆菌(E. coli)脂多糖(LPS)可以作为非缺氧刺激物,有效地复制早期牙周炎症反应。这表现在 HIF-1α表达的上调和 HIF-1α介导的关键糖酵解酶(即乳酸脱氢酶 a、丙酮酸激酶和己糖激酶 2)的激活,同时伴随着 PDLFs 中炎症反应的增强。我们观察到,当使用 BAPTA-AM 和无钙培养基耗尽细胞内和细胞外钙库时,上述作用及其对巨噬细胞极化的影响明显减弱。从机制上讲,我们的研究结果表明,在大肠杆菌 LPS 刺激下,HIF-1α 的转录过程受 Ca 调节,通过信号转导和转录激活因子 3(STAT3)途径介导。此外,我们观察到细胞内 HIF-1α 蛋白的稳定是通过内皮素(ET)-1-内皮素 A 受体途径发生的,与缺氧无关。总之,我们的研究结果强调了 Ca 通过调节 HIF-1α 和糖酵解在早期牙周炎发病中的关键作用,为早期治疗干预提供了新的途径。

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