肺部持久性,生物降解和石墨烯基材料的消除主要取决于大小,并由气泡细胞介导
Thomas Loret1,2,3, Luis Augusto Visani de Luna1,2,3, Matteo Andrea Lucherelli4
1Nanomedicine Lab 2.0, School of Biological Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester Academic Health Science Centre, Manchester, M13 9PT, UK.
Small (Weinheim an der Bergstrasse, Germany)
|June 2, 2023
概括
小型石墨烯基材料 (GBM) 从肺部清除的速度更快. 中性粒细胞增强GBM降解,而大型石墨烯氧化物板由于缓慢清除而导致肺损伤.
科学领域:
- 纳米医学是一种纳米医学.
- 肺部毒理学 肺部毒理学
- 材料科学 材料科学 材料科学
背景情况:
- 基于石墨烯的材料 (GBMs) 在肺纳米医学中显示出潜力.
- GBM 的物理化学性质及其肺相互作用需要进一步研究.
研究的目的:
- 研究不同GBM在小鼠肺中的生物反应,分布和持久性.
- 确定GBM的大小,厚度和表面化学如何影响其在肺系统中的命运.
主要方法:
- 在小鼠中,单个口腔喉吸收了四种不同的GBM.
- 在肺部追踪GBM长达28天.
- 分析肺部巨细胞和中性粒细胞的细胞吸收和降解.
主要成果:
- 没有GBM诱导强烈的肺免疫反应.
- 中性粒细胞有效地内化并降解了较小的GBM.
- 大型石墨烯氧化物板表现出阻碍降解和长期持久性,造成更多的肺损伤.
结论:
- 小的GBM尺寸促进了更快的降解和清除,使它们适合肺纳米医学.
- GBM的厚度会影响降解和肺清除;少层石墨烯 (FLG) 的排泄速度比氧化石墨烯 (GO) 快.
- 为生物医学应用设计更安全的GBM需要仔细考虑尺寸和厚度.
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