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Diemert, A.

Publications and source records attributed to Diemert, A..

2 recordsLinked to original sources

High-Purity Enrichment of Extracellular Vesicles from Diverse Sources by Conventional and Image-Based Fluorescence Activated Cell Sorters for Robust Downstream Applications

Selective enrichment of extracellular vesicle (EV) subpopulations from the heterogeneous EV pool is essential for understanding their characteristic biological functions and exploiting their potential as diagnostic and prognostic biomarkers. However, isolation of specific EV-subsets remains challenging. Fluorescence-Activated Cell Sorting (FACS) has emerged as promising technique for EV subpopulations enrichment, despite limitations associated to their small size. Although FACS-based EV sorting has been reported, a broadly applicable and systematically validated workflow is still lacking. Here, we describe and validate an optimized workflow for the sorting and analysis of EVs derived from diverse species, tissues, blood and cell culture systems. Using two advanced flow cytometric cell sorters, the BD FACSAria Fusion, and the BD FACSDiscover S8, we systematically evaluated key technical parameters, including nozzle size, sample dilutions, and sorting mode. The optimized workflow enabled efficient enrichment of differently labelled EV populations of interest, achieving near-100% purity, including rare subsets representing less than 10% of the total EV pool, while maintaining compatibility with downstream analyses. Sorted EV populations were characterized by high-sensitivity imaging flow cytometry, transmission electron microscopy, and liquid chromatography-tandem mass spectrometry. This workflow provides a robust framework for EV subset isolation and characterization, supporting both fundamental EV research and translational biomarker applications.

cell biology↗

Limited protection against early-life cytomegalovirus infection results from deficiency of cytotoxic CD8T cells

Differential antiviral T cell immunity in early life impacts the clinical outcome of Cytomegalovirus (CMV) infection, but the underlying mechanisms are not well understood. Here, we found delayed enrichment of early-life murine CMV-specific CD8 T cells due to a general deficiency of {beta} T cells. Adoptive transfer of naive adult T cells into neonates did not protect due to a blockade of CD8 but not of CD4 effector T cell differentiation. Early-life deficiency of critical signal 3 cytokines during T cell priming resulted in the appearance of non-cytotoxic CD8 effector T cells whereas the effector phase of adult-primed T cells was not disrupted in neonates. Accordingly, we found an overall low number of antiviral human CD8 T cells in newborns with congenital CMV. Together, this study suggests defective CD8 T cell immunity as an important factor explaining the higher risk for CMV disease in the early-life phase.

immunology↗