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Titel: Most L1CAM is not associated with extracellular vesicles in human biofluids and iPSC-derived neurons
Autor(en): Kadam, Vaibhavi
Wacker, Madeleine
Oeckl, PatrickIn der Gemeinsamen Normdatei der DNB nachschlagen
Korneck, Milena
Dannenmann, BenjaminIn der Gemeinsamen Normdatei der DNB nachschlagen
Skokowa, JuliaIn der Gemeinsamen Normdatei der DNB nachschlagen
Hauser, StefanIn der Gemeinsamen Normdatei der DNB nachschlagen
Otto, MarkusIn der Gemeinsamen Normdatei der DNB nachschlagen
Synofzik, MatthisIn der Gemeinsamen Normdatei der DNB nachschlagen
Mengel, DavidIn der Gemeinsamen Normdatei der DNB nachschlagen
Erscheinungsdatum: 2025
Art: Artikel
Sprache: Englisch
Zusammenfassung: Transmembrane L1 cell adhesion molecule (L1CAM) is widely used as a marker to enrich for neuron-derived extracellular vesicles (EVs), especially in plasma. However, this approach lacks sufficient robust validation. This study aimed to assess whether human biofluids are indeed enriched for EVs, particularly neuron-derived EVs, by L1CAM immunoaffinity, utilizing multiple sources (plasma, CSF, conditioned media from iPSC-derived neurons [iNCM]) and different methods (mass spectrometry [MS], nanoparticle tracking analysis [NTA]). Following a systematic multi-step validation approach, we confirmed isolation of generic EV populations using size-exclusion chromatography (SEC) and polymer-aided precipitation (PPT)—two most commonly applied EV isolation methods—from all sources. Neurofilament light (NfL) was detected in both CSF and blood-derived EVs, indicating their neuronal origin. However, L1CAM immunoprecipitation did not yield enrichment of L1CAM in EV fractions. Instead, it was predominantly found in its free-floating form. Additionally, MS-based proteomic analysis of CSF-derived EVs also did not show L1CAM enrichment. Our study validates EV isolation from diverse biofluid sources by several isolation approaches and confirms that some EV subpopulations in human biofluids are of neuronal origin. Thorough testing across multiple sources by different orthogonal methods, however, does not support L1CAM as a marker to reliably enrich for a specific subpopulation of EVs, particularly of neuronal origin.
URI: https://opendata.uni-halle.de//handle/1981185920/123040
http://dx.doi.org/10.25673/121087
Open-Access: Open-Access-Publikation
Nutzungslizenz: (CC BY 4.0) Creative Commons Namensnennung 4.0 International(CC BY 4.0) Creative Commons Namensnennung 4.0 International
Journal Titel: Molecular neurobiology
Verlag: Humana Press
Verlagsort: Totowa, NJ
Band: 62
Heft: 8
Originalveröffentlichung: 10.1007/s12035-025-04909-2
Seitenanfang: 10427
Seitenende: 10442
Enthalten in den Sammlungen:Open Access Publikationen der MLU

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