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Regenerative Potential of Autologously Processed White Adipose Tissue for Peripheral Nerve Regeneration: Evaluation of Growth Factor Profiles and Electrical Stimulation
Egger, Tobias, Eigenberger, Andreas
, Felthaus, Oliver
, Ruewe, Marc
, Sturz, Luis, Festbaum, Christian, Oliinyk, Dmytro, Siegmund, Andreas, Schimanski, Tom, Rosengarth, Katharina, Deuter, Daniel
, Kreiner, Philipp, Prantl, Lukas
und Eisenmann, Silvan M.
(2026)
Regenerative Potential of Autologously Processed White Adipose Tissue for Peripheral Nerve Regeneration: Evaluation of Growth Factor Profiles and Electrical Stimulation.
Cells 15 (14), S. 1250.
Veröffentlichungsdatum dieses Volltextes: 16 Jul 2026 13:32
Artikel
DOI zum Zitieren dieses Dokuments: 10.5283/epub.79814
Zusammenfassung
Peripheral nerve injuries (PNI) present a major clinical and socioeconomic challenge due to limited regenerative capacity. Adipose-derived stem cells (ADSCs) within the stromal vascular fraction (SVF) of white adipose tissue offer a promising autologous source for regenerative support. This study evaluated the impact of mechanical processing CELT (Cell-Enriched Lipotransfer) and CELTPLUS and ...
Peripheral nerve injuries (PNI) present a major clinical and socioeconomic challenge due to limited regenerative capacity. Adipose-derived stem cells (ADSCs) within the stromal vascular fraction (SVF) of white adipose tissue offer a promising autologous source for regenerative support. This study evaluated the impact of mechanical processing CELT (Cell-Enriched Lipotransfer) and CELTPLUS and electrical stimulation on the regenerative secretome of human lipoaspirates. qPCR analysis revealed that CELTPLUS processing, which incorporates mechanical intersyringe shifting, significantly doubled the gene expression of nerve growth factor (NGF) (p = 0.015), vascular endothelial growth factor (VEGF) (p = 0.02), and brain-derived neurotrophic factor (BDNF) (p = 0.04) compared to CELT-processed lipoaspirate. Protein analysis via ELISA confirmed a time-dependent secretion of NGF and VEGF over 96 h. Furthermore, 24 h electrical stimulation (2 V) significantly enhanced NGF protein release (p < 0.001). These findings demonstrate that standardized mechanical processing effectively enriches regenerative cell populations and amplifies their neurogenic and angiogenic potential. The additional modulation of growth factor secretion via electrical stimulation highlights the potential of processed adipose tissue as a functional, autologous transplant for enhanced nerve reconstruction.
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| Dokumentenart | Artikel | ||||
| Titel eines Journals oder einer Zeitschrift | Cells | ||||
| Verlag: | MDPI | ||||
|---|---|---|---|---|---|
| Open Access Art: | Gold (mit APC - bezahlt UR) | ||||
| Band: | 15 | ||||
| Nummer des Zeitschriftenheftes oder des Kapitels: | 14 | ||||
| Seitenbereich: | S. 1250 | ||||
| Datum | 10 Juli 2026 | ||||
| Institutionen | Medizin > Zentren des Universitätsklinikums Regensburg > Zentrum für Plastische-, Hand- und Wiederherstellungschirurgie | ||||
| Identifikationsnummer |
| ||||
| Stichwörter / Keywords | adipose-tissue-derived stem cells; nerve regeneration; neurotrophic factors; electrical stimulation | ||||
| Dewey-Dezimal-Klassifikation | 600 Technik, Medizin, angewandte Wissenschaften > 610 Medizin | ||||
| Status | Veröffentlicht | ||||
| Begutachtet | Ja, diese Version wurde begutachtet | ||||
| An der Universität Regensburg entstanden | Ja | ||||
| URN der UB Regensburg | urn:nbn:de:bvb:355-epub-798145 | ||||
| Dokumenten-ID | 79814 |
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