School of Integrated Circuits, Shandong University, Jinan 250101, China.
Institute of Biomedical Engineering, School of Control Science and Engineering, Shandong University, Jinan 250061, China.
Anal Chem. 2024 Apr 23;96(16):6321-6328. doi: 10.1021/acs.analchem.3c05889. Epub 2024 Apr 10.
Small extracellular vesicles (sEVs) are heterogeneous biological nanoparticles (NPs) with wide biomedicine applications. Tracking individual nanoscale sEVs can reveal information that conventional microscopic methods may lack, especially in cellular microenvironments. This usually requires biolabeling to identify single sEVs. Here, we developed a light scattering imaging method based on dark-field technology for label-free nanoparticle diffusion analysis (NDA). Compared with nanoparticle tracking analysis (NTA), our method was shown to determine the diffusion probabilities of a single NP. It was demonstrated that accurate size determination of NPs of 41 and 120 nm in diameter is achieved by purified Brownian motion (pBM), without or within the cell microenvironments. Our pBM method was also shown to obtain a consistent size estimation of the normal and cancerous plasma-derived sEVs without and within cell microenvironments, while cancerous plasma-derived sEVs are statistically smaller than normal ones. Moreover, we showed that the velocity and diffusion coefficient are key parameters for determining the diffusion types of the NPs and sEVs in a cancerous cell microenvironment. Our light scattering-based NDA and pBM methods can be used for size determination of NPs, even in cell microenvironments, and also provide a tool that may be used to analyze sEVs for many biomedical applications.
小细胞外囊泡 (sEVs) 是具有广泛生物医学应用的异质生物纳米颗粒 (NPs)。跟踪单个纳米级 sEVs 可以揭示常规显微镜方法可能缺乏的信息,特别是在细胞微环境中。这通常需要生物标记来识别单个 sEVs。在这里,我们开发了一种基于暗场技术的无标记纳米颗粒扩散分析 (NDA) 的光散射成像方法。与纳米颗粒跟踪分析 (NTA) 相比,我们的方法被证明可以确定单个 NP 的扩散概率。结果表明,通过纯化的布朗运动 (pBM) 可以准确确定直径为 41 和 120nm 的 NPs 的尺寸,而无需或在细胞微环境中。我们的 pBM 方法还表明,在无需或在细胞微环境中,可以获得正常和癌变血浆衍生 sEVs 的一致尺寸估计,而癌变血浆衍生 sEVs 的尺寸统计上小于正常 sEVs。此外,我们表明速度和扩散系数是确定 NPs 和 sEVs 在癌细胞微环境中扩散类型的关键参数。我们基于光散射的 NDA 和 pBM 方法可用于 NPs 的尺寸确定,即使在细胞微环境中也是如此,并且还提供了一种可用于分析许多生物医学应用的 sEVs 的工具。