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Alkaline and ultrasonic dissolution of biological materials for trace silicon determination

机译:碱性和超声波溶解生物材料以确定痕量硅

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摘要

A simple method for trace elemental determination in biological tissue has been developed. Novel nanomaterials with biomedical applications necessitate the determination of the in vivo fate of the materials to understand their toxicological profile. Hollow iron-doped calcined silica nanoshells have been used as a model to demonstrate that potassium hydroxide and bath sonication at 50 °C can extract elements from alkaline-soluble nanomaterials. After alkali digestion, nitric acid is used to adjust the pH into a suitable range for analysis using techniques such as inductively coupled plasma optical emission spectrometry which require neutral or acidic analytes. In chicken liver phantoms injected with the nanoshells, 96% of the expected silicon concentration was detected. This value was in good agreement with the 94% detection efficiency of nanoshells dissolved in aqueous solution as a control for potential sample matrix interference. Nanoshell detection was further confirmed in a mouse 24 h after intravenous administration; the measured silica above baseline was 35 times greater or more than the standard deviations of the measurements. This method provides a simple and accurate means to quantify alkaline-soluble nanomaterials in biological tissue.
机译:已经开发出一种用于生物组织中痕量元素测定的简单方法。具有生物医学应用的新型纳米材料需要确定材料的体内命运以了解其毒理学特征。空心铁掺杂煅烧的二氧化硅纳米壳已被用作模型,以证明氢氧化钾和50 C的浴超声处理可以从碱溶性纳米材料中提取元素。碱消化后,使用硝酸将pH值调节到合适的范围,以便使用要求中性或酸性分析物的技术进行分析,例如感应耦合等离子体发射光谱法。在注射了纳米壳的鸡肝幻影中,检测到96%的预期硅浓度。该值与溶解在水溶液中的纳米壳作为潜在样品基质干扰的对照的94%的检测效率非常吻合。静脉内给药后24小时,小鼠中进一步证实了纳米壳检测;在基线以上测得的二氧化硅比测量的标准偏差大35倍以上。该方法提供了一种简单而准确的方法来定量生物组织中的碱溶性纳米材料。

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