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Silver Wire Amplifies the Signaling Mechanism for IL-1beta Production More Than Silver Submicroparticles in Human Monocytic THP-1 Cells

机译:银线扩大了人类单核细胞THP-1细胞中IL-1beta产生的信号传导机制超过银亚微粒。

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摘要

Silver materials have been widely used in diverse fields. However, their toxicity and their mechanism, especially in different forms, have not been studied sufficiently. Thus, cytotoxicity, apoptosis, and interleukin-1beta (IL-1β) production were investigated using macrophage-like THP-1 cells in the presence of Ag microparticles (AgMPs, 2.7 µm), Ag submicroparticles (AgSMPs, 150 nm), and Ag wires (AgWs, 274 nm×5.3 µm). The levels of cytotoxicity, apoptosis, and IL-1β production by AgWs were higher than those by the other two AgSMPs and AgMPs. This trend was also observed with each step of the signaling mechanism for IL-1β production, which is a single pathway affiliated with ROS generation or lysosomal rupture or both, cathepsin B, caspase-1 (NALP3 inflammasome), and finally IL-1β production in THP-1 cells. All these results suggest that, for development of safe and effective silver materials, the shape or form of silver materials should be considered, especially for macrophage cell lines because epithelial cell lines are not overly sensitive to silver materials.
机译:银材料已广泛用于各个领域。但是,它们的毒性及其作用机理,尤其是以不同形式存在的机理,尚未得到足够的研究。因此,在银微粒(AgMPs,2.7 µm),银亚微粒(AgSMPs,150 nm)和银存在下,使用巨噬细胞样THP-1细胞研究了细胞毒性,凋亡和白介素-1β(IL-1β)的产生。导线(AgWs,274 nm×5.3 µm)。 AgWs的细胞毒性,凋亡和IL-1β产生的水平高于其他两种AgSMP和AgMP。在IL-1β产生的信号传导机制的每个步骤中也观察到这种趋势,这是与ROS产生或溶酶体破裂或组织蛋白酶B,胱天蛋白酶1(NALP3炎性小体)以及最终IL-1β产生相关的单一途径。在THP-1细胞中。所有这些结果表明,为了开发安全有效的银材料,应考虑银材料的形状或形式,特别是对于巨噬细胞系,因为上皮细胞系对银材料不太敏感。

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