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Silver Nanoparticle-Directed Mast Cell Degranulation Is Mediated through Calcium and PI3K Signaling Independent of the High Affinity IgE Receptor

机译:通过钙和PI3K信号介导银纳米粒子定向的肥大细胞脱粒,独立于高亲和力IgE受体。

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摘要

Engineered nanomaterial (ENM)-mediated toxicity often involves triggering immune responses. Mast cells can regulate both innate and adaptive immune responses and are key effectors in allergic diseases and inflammation. Silver nanoparticles (AgNPs) are one of the most prevalent nanomaterials used in consumer products due to their antimicrobial properties. We have previously shown that AgNPs induce mast cell degranulation that was dependent on nanoparticle physicochemical properties. Furthermore, we identified a role for scavenger receptor B1 (SR-B1) in AgNP-mediated mast cell degranulation. However, it is completely unknown how SR-B1 mediates mast cell degranulation and the intracellular signaling pathways involved. In the current study, we hypothesized that SR-B1 interaction with AgNPs directs mast cell degranulation through activation of signal transduction pathways that culminate in an increase in intracellular calcium signal leading to mast cell degranulation. For these studies, we utilized bone marrow-derived mast cells (BMMC) isolated from C57Bl/6 mice and RBL-2H3 cells (rat basophilic leukemia cell line). Our data support our hypothesis and show that AgNP-directed mast cell degranulation involves activation of PI3K, PLCγ and an increase in intracellular calcium levels. Moreover, we found that influx of extracellular calcium is required for the cells to degranulate in response to AgNP exposure and is mediated at least partially via the CRAC channels. Taken together, our results provide new insights into AgNP-induced mast cell activation that are key for designing novel ENMs that are devoid of immune system activation.
机译:工程纳米材料(ENM)介导的毒性通常涉及触发免疫反应。肥大细胞可以调节先天和适应性免疫应答,并且是变态反应性疾病和炎症的关键效应器。银纳米颗粒(AgNPs)由于其抗菌特性,是消费产品中使用最广泛的纳米材料之一。先前我们已经表明,AgNPs诱导肥大细胞脱粒,这取决于纳米颗粒的理化性质。此外,我们确定了清除剂受体B1(SR-B1)在AgNP介导的肥大细胞脱粒中的作用。然而,完全未知SR-B1如何介导肥大细胞脱粒和涉及的细胞内信号通路。在当前的研究中,我们假设SR-B1与AgNPs的相互作用通过激活信号转导途径指导肥大细胞脱粒,最终导致细胞内钙信号增加导致肥大细胞脱粒。对于这些研究,我们利用了从C57Bl / 6小鼠和RBL-2H3细胞(大鼠嗜碱性白血病细胞系)分离的骨髓源肥大细胞(BMMC)。我们的数据支持我们的假设,并表明AgNP指导的肥大细胞脱粒涉及PI3K,PLCγ的激活和细胞内钙水平的升高。此外,我们发现细胞外钙的流入是细胞响应AgNP暴露而脱粒所必需的,并且至少部分通过CRAC通道介导。综上所述,我们的结果为AgNP诱导的肥大细胞激活提供了新的见解,这对于设计没有免疫系统激活的新型ENM至关重要。

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