Journal: Small (Weinheim an Der Bergstrasse, Germany)
Article Title: Selective Lipoprotein Removal Enables High‐Purity EV Isolation from Plasma via Aptamer‐Based Mesh Filtration
doi: 10.1002/smll.202514724
Figure Lengend Snippet: Specificity and performance validation of the ApoFilter system for extracellular vesicle isolation from complex human plasma. (a) Schematic illustration of the ApoFilter workflow, depicting sequential gravity‐driven capture of (V)LDL and HDL and collection of EV‐enriched permeate; (b,c) SEM and TEM imaging analyses, revealing nanoscale aggregation states and morphological heterogeneity of plasma‐derived lipoproteins, highlighting their relevance for downstream fluorescence‐based assays; (d) Optimization of dispersion conditions, showing that extended incubation induces lipoprotein aggregation, while brief sonication restores expected nanoparticle size distributions; (e) Fluorescence‐NTA analysis of plasma spiked with Alexa Fluor–labeled anti‐ApoB100 and anti‐ApoA1 antibodies confirms near‐complete removal of fluorescently labeled lipoproteins following ApoFilter processing, with dotted traces indicating the permeate fractions; (f) ELISA quantification of ApoA1 and ApoB100, demonstrating efficient depletion of HDL and (V)LDL, with preservation of EV markers (CD9, CD63, CD81) and albumin recovery.
Article Snippet: Aptamers targeting ApoB‐100 and ApoA‐1 were synthesized with a 3′‐terminal C6‐NH 2 modification (Bioneer, Daejeon, Korea).
Techniques: Biomarker Discovery, Isolation, Clinical Proteomics, Imaging, Derivative Assay, Fluorescence, Dispersion, Incubation, Sonication, Labeling, Enzyme-linked Immunosorbent Assay, Preserving