空心有机硅珠的可追溯表征,作为利用光学技术测量细胞外囊泡的潜在参考材料。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jérôme Deumer, Robin Schürmann, Anikó Gaál, Zoltán Varga, Britta Bettin, Edwin van der Pol, Rienk Nieuwland, David Ojeda, Aneta Sikora, Dorota Bartczak, Heidi Goenaga-Infante, Johanna Noireaux, Mahrad Khakpour, Virpi Korpelainen, Christian Gollwitzer
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引用次数: 0

摘要

细胞类型特异性胞外囊泡(EVs)的浓度是一种很有前景的多种疾病生物标志物。然而,在临床实践中,通过流式细胞术(FCM)或粒子追踪分析(PTA)等光学技术测量的EVs浓度是不可比的。为了进行可靠、可比的浓度测量,需要合适的参考材料(RM)和可追溯的 SI(国际单位制)方法。空心有机硅珠(HOBs)的形状、低折射率和数量浓度与目前光学仪器可检测的相应大小范围的 EVs 相当,因此是基于光散射测量 EVs 浓度的有希望的候选参考物质。在这里,我们介绍了通过小角 X 射线散射(SAXS)和原子力显微镜(AFM)测量四种 HOB 的粒度分布(粒度范围在 200 纳米到 500 纳米之间)以及通过单颗粒电感耦合等离子体质谱(spICP-MS)测量其数量浓度的可追溯方法。根据尺寸和形状结果,还获得了可溯源的参考值,从而通过 FCM 进一步确定了 HOB 样品外壳的折射率。此外,HOB 的估计折射率与相应尺寸的 EV 的折射率基本吻合。由于 HOB 样品的尺寸分布较窄、形状相似且折射率较低,因此研究的所有 HOB 样品都适合在所使用的光子波长范围内通过光学方法校准测量的样品体积,从而校准所示尺寸范围内的 EV 数量浓度测量值。通过 PTA 和两个独立的流式细胞仪测量得到的数量浓度值与两个独立的 spICP-MS 测量得到的浓度参考值在计算的不确定性范围内一致,这一点得到了证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Traceable characterization of hollow organosilica beads as potential reference materials for extracellular vesicle measurements with optical techniques.

Traceable characterization of hollow organosilica beads as potential reference materials for extracellular vesicle measurements with optical techniques.

The concentration of cell-type specific extracellular vesicles (EVs) is a promising biomarker for various diseases. However, concentrations of EVs measured by optical techniques such as flow cytometry (FCM) or particle tracking analysis (PTA)  in clinical practice are incomparable. To allow reliable and comparable concentration measurements suitable reference materials (RMs) and SI-traceable (SI-International system of units) methods are required. Hollow organosilica beads (HOBs) are promising RM candidates for concentration measurements of EVs based on light scattering, as the shape, low refractive index, and number concentration of HOBs are comparable to EVs of the respective size range that can be detected with current optical instrumentation. Here, we present traceable methods for measuring the particle size distribution of four HOB types in the size range between 200 and 500 nm by small-angle X-ray scattering (SAXS) and atomic force microscopy (AFM), as well as the number concentration by single-particle inductively coupled plasma mass spectrometry (spICP-MS). Based on the size and shape results, traceable reference values were obtained to additionally determine the refractive index of the shell of the HOB samples by FCM. Furthermore, the estimated refractive indexes of the HOBs plausibly agree with the refractive indexes of EVs of corresponding size. Due to their narrow size distribution and their similar shape, and low refractive index, all HOB samples studied are suitable RM candidates for calibration of the measured sample volume by optical methods within the photon wavelength range used, and thus for calibration of number concentration measurements of EVs in the size range indicated. This was confirmed as the number concentration values obtained by PTA and two independent flow cytometric measurements agreed with the concentration reference values obtained by two independent spICP-MS measurements within the calculated uncertainty limits.

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