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首页> 外文期刊>Analytical and bioanalytical chemistry >The interaction of an amino-modified ZrO2 nanomaterial with macrophages-an in situ investigation by Raman microspectroscopy
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The interaction of an amino-modified ZrO2 nanomaterial with macrophages-an in situ investigation by Raman microspectroscopy

机译:氨基修饰的ZrO2纳米材料与巨噬细胞的相互作用-拉曼光谱原位研究

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摘要

Metal oxide nanoparticles (NP) are applied in the fields of biomedicine, pharmaceutics, and in consumer products as textiles, cosmetics, paints, or fuels. In this context, the functionalization of the NP surface is a common method to modify and modulate the product performance. A chemical surface modification of NP such as an amino-functionalization can be used to achieve a positively charged and hydrophobic surface. Surface functionalization is known to affect the interaction of nanomaterials (NM) with cellular macromolecules and the responses of tissues or cells, like the uptake of particles by phagocytic cells. Therefore, it is important to assess the possible risk of those modified NP for human health and environment. By applying Raman microspectroscopy, we verified in situ the interaction of amino-modified ZrO2 NP with cultivated macrophages. The results demonstrated strong adhesion properties of the NP to the cell membrane and internalization into the cells. The intracellular localization of the NP was visualized via Raman depth scans of single cells. After the cells were treated with sodium azide (NaN3) and 2-deoxy-glucose to inhibit the phagocytic activity, NP were still detected inside cells to comparable percentages. The observed tendency of amino-modified ZrO2 NP to interact with the cultivated macrophages may influence membrane integrity and cellular functions of alveolar macrophages in the respiratory system.
机译:金属氧化物纳米颗粒(NP)应用于生物医学,制药和消费产品,如纺织品,化妆品,油漆或燃料。在这种情况下,NP表面的功能化是修改和调节产品性能的常用方法。 NP的化学表面修饰(例如氨基官能化)可用于获得带正电荷且疏水的表面。已知表面功能化会影响纳米材料(NM)与细胞大分子的相互作用以及组织或细胞的反应,例如吞噬细胞对颗粒的吸收。因此,重要的是评估这些修饰的NP对人类健康和环境的可能风险。通过应用拉曼光谱,我们原位验证了氨基修饰的ZrO2 NP与培养的巨噬细胞的相互作用。结果证明了NP对细胞膜的强粘附特性和内在化进入细胞。 NP的细胞内定位通过单个细胞的拉曼深度扫描可视化。用叠氮化钠(NaN3)和2-脱氧葡萄糖处理细胞以抑制吞噬活性后,仍在细胞内检测到NP的百分比相当。观察到的氨基修饰的ZrO2 NP与培养的巨噬细胞相互作用的趋势可能会影响呼吸系统中肺泡巨噬细胞的膜完整性和细胞功能。

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