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Metal Nanoparticles Released from Dental Implant Surfaces: Potential Contribution to Chronic Inflammation and Peri-Implant Bone Loss

机译:从牙种植体表面释放的金属纳米颗粒:潜在的慢性炎症和种植体周围骨丢失的贡献。

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摘要

Peri-implantitis is an inflammatory disease affecting tissues surrounding dental implants. Although it represents a common complication of dental implant treatments, the underlying mechanisms have not yet been fully described. The aim of this study is to identify the role of titanium nanoparticles released form the implants on the chronic inflammation and bone lysis in the surrounding tissue. We analyzed the in vitro effect of titanium (Ti) particle exposure on mesenchymal stem cells (MSCs) and fibroblasts (FU), evaluating cell proliferation by MTT test and the generation of reactive oxygen species (ROS). Subsequently, in vivo analysis of peri-implant Ti particle distribution, histological, and molecular analyses were performed. Ti particles led to a time-dependent decrease in cell viability and increase in ROS production in both MSCs and FU. Tissue analyses revealed presence of oxidative stress, high extracellular and intracellular Ti levels and imbalanced bone turnover. High expression of ZFP467 and the presence of adipose-like tissue suggested dysregulation of the MSC population; alterations in vessel morphology were identified. The results suggest that Ti particles may induce the production of high ROS levels, recruiting abnormal quantity of neutrophils able to produce high level of metalloproteinase. This induces the degradation of collagen fibers. These events may influence MSC commitment, with an imbalance of bone regeneration.
机译:种植体周围炎是一种炎症性疾病,会影响牙齿植入物周围的组织。尽管它代表了牙种植体治疗的常见并发症,但其潜在机制尚未得到充分描述。这项研究的目的是确定从植入物中释放的钛纳米颗粒对周围组织的慢性炎症和骨溶解的作用。我们分析了钛(Ti)颗粒暴露对间充质干细胞(MSCs)和成纤维细胞(FU)的体外影响,通过MTT测试评估细胞增殖和活性氧(ROS)的产生。随后,进行了植入物周围钛颗粒分布的体内分析,组织学和分子分析。 Ti颗粒导致MSCs和FU中细胞活力的时间依赖性降低和ROS产生的增加。组织分析显示存在氧化应激,高的细胞外和细胞内Ti水平以及不平衡的骨转换。 ZFP467的高表达和脂肪样组织的存在表明MSC群体失调。确定了血管形态的变化。结果表明,Ti颗粒可能诱导产生高水平的ROS,募集异常数量的嗜中性粒细胞,能够产生高水平的金属蛋白酶。这引起胶原纤维的降解。这些事件可能会影响MSC承诺,并导致骨骼再生失衡。

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