NLRP3 and AIM2 inflammasomes expression is modified by LPS and titanium ions increasing the release of active IL-1β in alveolar bone-derived MSCs.

IF 5.4 2区 医学 Q1 CELL & TISSUE ENGINEERING
Ana Belén Carrillo-Gálvez, Federico Zurita, José Antonio Guerra-Valverde, Araceli Aguilar-González, Darío Abril-García, Miguel Padial-Molina, Allinson Olaechea, Natividad Martín-Morales, Francisco Martín, Francisco O'Valle, Pablo Galindo- Moreno
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Abstract

Periodontitis and peri-implantitis are inflammatory diseases of infectious etiology that lead to the destruction of the supporting tissues located around teeth or implants. Although both pathologies share several characteristics, it is also known that they show important differences which could be due to the release of particles and metal ions from the implant surface. The activation of the inflammasome pathway is one of the main triggers of the inflammatory process. The inflammatory process in patients who suffer periodontitis or peri-implantitis has been mainly studied on cells of the immune system; however, it is also important to consider other cell types with high relevance in the regulation of the inflammatory response. In that context, mesenchymal stromal cells (MSCs) play an essential role in the regulation of inflammation due to their ability to modulate the immune response. This study shows that the induction of NLRP3 and absent in melanoma 2 (AIM2) inflammasome pathways mediated by bacterial components increases the secretion of active IL-1β and the pyroptotic process on human alveolar bone-derived mesenchymal stromal cells (hABSCs). Interestingly, when bacterial components are combined with titanium ions, NLRP3 expression is further increased while AIM2 expression is reduced. Furthermore, decrease of NLRP3 or AIM2 expression in hABSCs partially reverses the negative effect observed on the progression of the inflammatory process as well as on cell survival. In summary, our data suggest that the progression of the inflammatory process in peri-implantitis could be more acute due to the combined action of organic and inorganic components.

肺泡骨源性间充质干细胞中的 NLRP3 和 AIM2 炎症小体的表达受 LPS 和钛离子的影响,从而增加了活性 IL-1β 的释放。
牙周炎和种植体周围炎都是感染性炎症,会导致牙齿或种植体周围的支持组织遭到破坏。虽然这两种病症都有一些共同的特征,但它们之间也有很大的不同,这可能是由于种植体表面释放的微粒和金属离子造成的。炎性体途径的激活是炎症过程的主要诱因之一。对牙周炎或种植体周围炎患者的炎症过程的研究主要集中在免疫系统细胞上,但也必须考虑与炎症反应调节高度相关的其他细胞类型。在这方面,间充质基质细胞(MSCs)因其调节免疫反应的能力而在炎症调控中发挥着重要作用。本研究表明,细菌成分介导的 NLRP3 和黑色素瘤 2(AIM2)炎性体通路的诱导增加了活性 IL-1β 的分泌和人肺泡骨源性间充质基质细胞(hABSCs)的热休克过程。有趣的是,当细菌成分与钛离子结合时,NLRP3 的表达会进一步增加,而 AIM2 的表达则会减少。此外,降低 NLRP3 或 AIM2 在 hABSCs 中的表达可部分逆转对炎症过程进展和细胞存活的负面影响。总之,我们的数据表明,在有机和无机成分的共同作用下,种植体周围炎的炎症过程可能会更加剧烈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Stem Cells Translational Medicine
Stem Cells Translational Medicine CELL & TISSUE ENGINEERING-
CiteScore
12.90
自引率
3.30%
发文量
140
审稿时长
6-12 weeks
期刊介绍: STEM CELLS Translational Medicine is a monthly, peer-reviewed, largely online, open access journal. STEM CELLS Translational Medicine works to advance the utilization of cells for clinical therapy. By bridging stem cell molecular and biological research and helping speed translations of emerging lab discoveries into clinical trials, STEM CELLS Translational Medicine will help move applications of these critical investigations closer to accepted best patient practices and ultimately improve outcomes. The journal encourages original research articles and concise reviews describing laboratory investigations of stem cells, including their characterization and manipulation, and the translation of their clinical aspects of from the bench to patient care. STEM CELLS Translational Medicine covers all aspects of translational cell studies, including bench research, first-in-human case studies, and relevant clinical trials.
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