Femke Mathot

8 Stem cells on nerve graft substitutes 139 REFERENCES 1. Lin MY, Manzano G, Gupta R. Nerve allografts and conduits in peripheral nerve repair. Hand Clin 2013: 29: 331-48. 2. Moore AM, Kasukurthi R, Magill CK, et al. Limitations of conduits in peripheral nerve repairs. Hand (N Y) 2009: 4: 180-6. 3. Isaacs J, Browne T. Overcoming short gaps in peripheral nerve repair: conduits and human acellular nerve allograft. Hand (N Y) 2014: 9: 131-7. 4. Brooks DN, Weber RV, Chao JD, et al. Processed nerve allografts for peripheral nerve reconstruction: A multicenter study of utilization and outcomes in sensory, mixed, and motor nerve reconstructions. MICROSURGERY 2012: 32: 1-14. 5. Cho MS, Rinker BD, Weber RV, et al. Functional outcome following nerve repair in the upper extremity using processed nerve allograft. J Hand Surg Am 2012: 37: 2340-9. 6. Karabekmez FE, Duymaz A, Moran SL. Early clinical outcomes with the use of decellularized nerve allograft for repair of sensory defects within the hand. Hand (N Y) 2009: 4: 245-9. 7. Rbia N, Shin AY. The Role of Nerve Graft Substitutes in Motor and Mixed Motor/Sensory Peripheral Nerve Injuries. J Hand Surg Am 2017: 42: 367-77. 8. Rinker B, Zoldos J, Weber RV, et al. Use of Processed Nerve Allografts to Repair Nerve Injuries Greater Than 25 mm in the Hand. Ann Plast Surg 2017: 78: S292-s95. 9. Whitlock EL, Tuffaha SH, Luciano JP, et al. Processed allografts and type I collagen conduits for repair of peripheral nerve gaps. Muscle Nerve 2009: 39: 787-99. 10. Pfister LA, Papaloizos M, Merkle HP, Gander B. Nerve conduits and growth factor delivery in peripheral nerve repair. J Peripher Nerv Syst 2007: 12: 65-82. 11. Cui Y, Yao Y, Zhao Y, et al. Functional collagen conduits combined with human mesenchymal stem cells promote regeneration after sciatic nerve transection in dogs. J Tissue Eng Regen Med 2018: 12: 1285-96. 12. Hsueh YY, Chang YJ, Huang TC, et al. Functional recoveries of sciatic nerve regeneration by combining chitosan-coated conduit and neurosphere cells induced from adipose-derived stem cells. Biomaterials 2014: 35: 2234-44. 13. Ao Q, Fung CK, Tsui AY, et al. The regeneration of transected sciatic nerves of adult rats using chitosan nerve conduits seeded with bone marrow stromal cell-derived Schwann cells. Biomaterials 2011: 32: 787-96. 14. di Summa PG, Kingham PJ, Campisi CC, Raffoul W, Kalbermatten DF. Collagen (NeuraGen(R)) nerve conduits and stem cells for peripheral nerve gap repair. Neurosci Lett 2014: 572: 26-31. 15. Brenner MJ, Lowe JB, 3rd, Fox IK, et al. Effects of Schwann cells and donor antigen on long- nerve allograft regeneration. Microsurgery 2005: 25: 61-70. 16. Ogden MA, Feng FY, Myckatyn TM, et al. Safe injection of cultured schwann cells into peripheral nerve allografts. Microsurgery 2000: 20: 314-23. 17. Hess JR, Brenner MJ, Fox IK, et al. Use of cold-preserved allografts seeded with autologous Schwann cells in the treatment of a long-gap peripheral nerve injury. Plast Reconstr Surg 2007: 119: 246-59. 18. Wang Y, Zhao Z, Ren Z, et al. Recellularized nerve allografts with differentiated mesenchymal stem cells promote peripheral nerve regeneration. Neurosci Lett 2012: 514: 96-101. 19. Rbia N, Bulstra LF, Lewallen EA, et al. Seeding decellularized nerve allografts with adipose- derived mesenchymal stromal cells: An in vitro analysis of the gene expression and growth factors produced. J Plast Reconstr Aesthet Surg 2019: 72: 1316-25. 20. Mathot F, Rbia N, Thaler R, et al. Gene expression profiles of differentiated and undifferentiated adipose derived mesenchymal stem cells dynamically seeded onto a processed nerve allograft. Gene 2020: 724: 144151. 21. Onishi K, Jones DL, Riester SM, et al. Human Adipose-Derived Mesenchymal Stromal/Stem Cells Remain Viable and Metabolically Active Following Needle Passage. Pm r 2016: 8: 844-54.

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