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带电金原子的体外释放:对在金属金表面生长的巨噬细胞释放的金离子进行的自动金相追踪。

In vitro liberation of charged gold atoms: autometallographic tracing of gold ions released by macrophages grown on metallic gold surfaces.

作者信息

Larsen Agnete, Stoltenberg Meredin, Danscher Gorm

机构信息

Neurobiology, Institute of Anatomy, University of Aarhus, 8000 Aarhus C, Denmark.

出版信息

Histochem Cell Biol. 2007 Jul;128(1):1-6. doi: 10.1007/s00418-007-0295-5. Epub 2007 Jun 5.

Abstract

The present study demonstrates that cultured macrophages are able to liberate gold ions from metallic gold surfaces, a process suggested to be called "dissolucytosis", in a way analogous to the release taking place when metallic implants are placed in a body. Using the ultra-sensitive autometallographic (AMG) technique, we demonstrate that murine macrophages grown on a surface of metallic gold liberate gold ions. Ultra-structural AMG reveals that the gold ions are located in an ultra-thin membrane-like structure, "the dissolution membrane", intervened between the macrophages and the metal surface. The presence of AMG silver enhanced gold nanoparticles in the dissolution membrane proves that the release of charged gold atoms takes place extracellularly. The dissolution membrane is most likely secreted and chemically controlled by the "dissolucytes", here macrophages, and the membrane is essential for the dissolution of metal implants and particles, which cannot be phagocytosed. Our findings support the notion that whenever a metallic gold surface is attacked by dissolucytes, gold ions are liberated and taken up by surrounding cells. As gold ions can suppress the inflammatory process, it is reasonable to expect that when dissolucytosis takes place in the living organism the liberated gold ions will cause local immunosuppression.

摘要

本研究表明,培养的巨噬细胞能够从金属金表面释放金离子,这一过程被建议称为“溶解胞吞作用”,其方式类似于金属植入物置于体内时发生的释放过程。使用超灵敏的自动金相(AMG)技术,我们证明在金属金表面生长的小鼠巨噬细胞会释放金离子。超微结构AMG显示,金离子位于巨噬细胞与金属表面之间的一种超薄的膜状结构“溶解膜”中。溶解膜中存在AMG银增强的金纳米颗粒,证明带电金原子的释放发生在细胞外。溶解膜很可能由“溶解细胞”(此处为巨噬细胞)分泌并受到化学控制,并且该膜对于无法被吞噬的金属植入物和颗粒的溶解至关重要。我们的研究结果支持这样一种观点,即每当金属金表面受到溶解细胞攻击时,金离子就会被释放并被周围细胞摄取。由于金离子可以抑制炎症过程,因此可以合理推测,当溶解胞吞作用在活生物体中发生时,释放的金离子将导致局部免疫抑制。

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