Institute of Immunology, Christian-Albrechts-University of Kiel, Kiel, Germany.
Institute for Clinical Microbiology and Hygiene, University of Regensburg, Regensburg, Germany.
Traffic. 2019 Mar;20(3):246-258. doi: 10.1111/tra.12631. Epub 2019 Jan 15.
Homeostasis and the complex functions of organisms and cells rely on the sophisticated spatial and temporal regulation of signaling in different intra- and extracellular compartments and via different mediators. We here present a set of fast and easy to use protocols for the target-specific immunomagnetic enrichment of receptor containing endosomes (receptosomes), plasma membranes, lysosomes and exosomes. Isolation of subcellular organelles and exosomes is prerequisite for and will advance their detailed subsequent biochemical and functional analysis. Sequential application of the different subprotocols allows isolation of morphological and functional intact organelles from one pool of cells. The enrichment is based on a selective labelling using receptor ligands or antibodies together with superparamagnetic microbeads followed by separation in a patented matrix-free high-gradient magnetic purification device. This unique magnetic chamber is based on a focusing system outside of the empty separation column, generating an up to 3 T high-gradient magnetic field focused at the wall of the column.
内稳态和生物及细胞的复杂功能依赖于不同细胞内及细胞外隔室中信号传导的复杂时空调控,以及不同介质的参与。在此,我们提供了一套快速易用的方案,用于受体包含的内体(受容体)、质膜、溶酶体和外泌体的靶标特异性免疫磁珠富集。亚细胞细胞器和外泌体的分离是进行详细的后续生化和功能分析的前提条件,并且会推进该分析。不同亚方案的连续应用可从一个细胞池分离形态和功能完整的细胞器。该富集基于使用受体配体或抗体与超顺磁微珠的选择性标记,然后在专利无基质高梯度磁纯化设备中进行分离。这种独特的磁室基于分离柱外部的聚焦系统,在柱壁处产生高达 3T 的高梯度磁场聚焦。