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Translational treatment paradigm for managing non-unions secondary to radiation injury utilizing adipose derived stem cells and angiogenic therapy
Journal article   Peer reviewed

Translational treatment paradigm for managing non-unions secondary to radiation injury utilizing adipose derived stem cells and angiogenic therapy

Alexis Donneys, Jordan T Blough, Noah S Nelson, Joseph E Perosky, Sagar S Deshpande, Stephen Y Kang, Peter A Felice, Christian Figueredo, Jonathan R Peterson, Kenneth M Kozloff, …
Head & neck, Vol.38 Suppl 1(S1), pp.E837-E843
04/2016
PMID: 25917284

Abstract

Adipose Tissue - cytology Animals Debridement Deferoxamine - pharmacology Fractures, Ununited Mandible - radiation effects Mandible - surgery Radiation Injuries - therapy Rats Rats, Sprague-Dawley Stem Cell Transplantation Stem Cells - cytology
Bony non-unions arising in the aftermath of collateral radiation injury are commonly managed with vascularized free tissue transfers. Unfortunately, these procedures are invasive and fraught with attendant morbidities. This study investigated a novel, alternative treatment paradigm utilizing adipose-derived stem cells (ASCs) combined with angiogenic deferoxamine (DFO) in the rat mandible. Rats were exposed to a bioequivalent dose of radiation and mandibular osteotomy. Those exhibiting non-unions were subsequently treated with surgical debridement alone or debridement plus combination therapy. Radiographic and biomechanical outcomes were assessed after healing. Significant increases in biomechanical strength and radiographic metrics were observed in response to combination therapy (p < .05). Importantly, combined therapy enabled a 65% reduction in persisting non-unions when compared to debridement alone. We support the continued investigation of this promising combination therapy in its potential translation for the management of radiation-induced bony pathology. © 2015 Wiley Periodicals, Inc. Head Neck 38: E837-E843, 2016.

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