Voevodsky Institute of Chemical Kinetics and Combustion, Novosibirsk, Russian Federation.
State Research Institute of Circulation Pathology, Novosibirsk, Russian Federation.
Cytometry A. 2023 Sep;103(9):736-743. doi: 10.1002/cyto.a.24769. Epub 2023 Jun 12.
Ultraviolet lasers are commonly used in flow cytometry to excite fluorochrome molecules with subsequent measurement of the specific fluorescence of individual cells. In this study, the performance of the ultraviolet light scattering (UVLS) in the analysis of individual particles with flow cytometry has been demonstrated for the first time. The main advantage of the UVLS relates to the improvement of the analysis of submicron particles due to the strong dependence of the scattering efficiency on the wavelength of the incident light. In this work, submicron particles were analyzed using a scanning flow cytometer (SFC) that allows measurements of light scattering in an angle-resolved regime. The measured light-scattering profiles of individual particles were utilized in solution of the inverse light-scattering problem to retrieve the particle characteristics using a global optimization. The standard polystyrene microspheres were successfully characterized from the analysis of UVLS which provided the size and refractive index (RI) of individual beads. We believe that the main application of UVLS relates to the analysis of microparticles in a serum, in particular in the analysis of chylomicrons (CMs). We have demonstrated the performance of the UVLS SFC in the analysis of CMs of a donor. The RI versus size scatterplot of CMs was successfully retrieved from the analysis. The current set-up of the SFC has allowed us to characterize individual CMs starting from the size of 160 nm that provides determination of the CM concentration in a serum with flow cytometry. This feature of the UVLS should help with the analysis of lipid metabolism measuring RI and size map evolution after lipase action.
紫外线激光器常用于流式细胞术,以激发荧光染料分子,随后测量单个细胞的特定荧光。在这项研究中,首次展示了紫外线光散射(UVLS)在流式细胞术分析单个颗粒中的性能。UVLS 的主要优势在于由于散射效率对入射光波长的强烈依赖性,因此可以改善对亚微米颗粒的分析。在这项工作中,使用扫描流式细胞仪(SFC)分析了亚微米颗粒,该仪器允许在角度分辨模式下测量光散射。利用单个颗粒的测量光散射轮廓,通过全局优化解决逆光散射问题,以检索颗粒特征。成功地从 UVLS 分析中对标准聚苯乙烯微球进行了表征,该分析提供了单个珠子的尺寸和折射率(RI)。我们认为,UVLS 的主要应用涉及血清中小颗粒的分析,特别是乳糜微粒(CMs)的分析。我们已经证明了 UVLS SFC 在供体 CMs 分析中的性能。成功地从分析中检索到了 CMs 的 RI 与尺寸散射图。当前的 SFC 配置使我们能够从 160nm 的尺寸开始表征单个 CMs,从而可以通过流式细胞术确定血清中的 CM 浓度。UVLS 的这一特点应该有助于分析脂质代谢,测量脂肪酶作用后 RI 和尺寸图的演变。