Majzoub Ramsey N, Ewert Kai K, Safinya Cyrus R
Physics Department, University of California at Santa Barbara, Santa Barbara, CA, 93117, USA.
Materials Department, University of California at Santa Barbara, Santa Barbara, CA, 93117, USA.
Methods Mol Biol. 2016;1445:77-108. doi: 10.1007/978-1-4939-3718-9_6.
Current activity in developing synthetic carriers of nucleic acids (NA) and small molecule drugs for therapeutic applications is unprecedented. One promising class of synthetic vectors for the delivery of therapeutic NA is PEGylated cationic liposome (CL)-NA nanoparticles (NPs). Chemically modified PEG-lipids can be used to surface-functionalize lipid-NA nanoparticles, allowing researchers to design active nanoparticles that can overcome the various intracellular and extracellular barriers to efficient delivery. Optimization of these functionalized vectors requires a comprehensive understanding of their intracellular pathways. In this chapter we present two distinct methods for investigating the intracellular activity of PEGylated CL-NA NPs using quantitative analysis with fluorescence microscopy.The first method, spatial localization, describes how to prepare fluorescently labeled CL-NA NPs, perform fluorescence microscopy and properly analyze the data to measure the intracellular distribution of nanoparticles and fluorescent signal. We provide software which allows data from multiple cells to be averaged together and yield statistically significant results. The second method, fluorescence colocalization, describes how to label endocytic organelles via Rab-GFPs and generate micrographs for software-assisted NP-endocytic marker colocalization measurements. These tools will allow researchers to study the endosomal trafficking of CL-NA NPs which can guide their design and improve their efficiency.
目前在开发用于治疗应用的核酸(NA)和小分子药物的合成载体方面的活动是前所未有的。一类有前景的用于递送治疗性NA的合成载体是聚乙二醇化阳离子脂质体(CL)-NA纳米颗粒(NP)。化学修饰的聚乙二醇脂质可用于脂质-NA纳米颗粒的表面功能化,使研究人员能够设计出能克服各种细胞内和细胞外障碍以实现高效递送的活性纳米颗粒。对这些功能化载体的优化需要全面了解它们的细胞内途径。在本章中,我们介绍两种不同的方法,通过荧光显微镜定量分析来研究聚乙二醇化CL-NA NP的细胞内活性。第一种方法,空间定位,描述了如何制备荧光标记的CL-NA NP,进行荧光显微镜检查并正确分析数据以测量纳米颗粒的细胞内分布和荧光信号。我们提供的软件可将来自多个细胞的数据进行平均并产生具有统计学意义的结果。第二种方法,荧光共定位,描述了如何通过Rab-GFP标记内吞细胞器并生成显微照片以进行软件辅助的NP-内吞标记共定位测量。这些工具将使研究人员能够研究CL-NA NP的内体运输,这可以指导其设计并提高其效率。