Page 55 - Read Online
P. 55
Page 12 of 13 Chi et al. Plast Aesthet Res 2023;10:56 https://dx.doi.org/10.20517/2347-9264.2023.48
39. Jones JW, Gruber SA, Barker JH, Breidenbach WC. Successful hand transplantation. One-year follow-up. Louisville hand transplant
team. N Engl J Med 2000;343:468-73. DOI PubMed
40. Owen ER, Dubernard JM, Lanzetta M, et al. Peripheral nerve regeneration in human hand transplantation. Transplant Proc
2001;33:1720-1. DOI
41. Mackinnon SE, Doolabh VB, Novak CB, Trulock EP. Clinical outcome following nerve allograft transplantation. Plast Reconstr Surg
2001;107:1419-29. DOI PubMed
42. Phan DQ, Schuind F. Tolerance and effects of FK506 (tacrolimus) on nerve regeneration: a pilot study. J Hand Surg Eur Vol
2012;37:537-43. DOI PubMed
43. Sobol JB, Lowe III JB, Yang RK, Sen SK, Hunter DA, Mackinnon SE. Effects of delaying FK506 administration on neuroregeneration
in a rodent model. J Reconstr Microsurg 2003;19:113-8. DOI
44. Brenner MJ, Fox IK, Kawamura DH, et al. Delayed nerve repair is associated with diminished neuroenhancement by FK506.
Laryngoscope 2009;114:570-6. DOI
45. Daeschler SC, Feinberg K, Harhaus L, Kneser U, Gordon T, Borschel GH. Advancing Nerve Regeneration: Translational Perspectives
of Tacrolimus (FK506). Int J Mol Sci 2023;24:12771. DOI PubMed PMC
46. Diaz LM, Steele MH, Guerra AB, et al. The role of topically administered FK506 (tacrolimus) at the time of facial nerve repair using
entubulation neurorrhaphy in a rabbit model. Ann Plast Surg 2004;52:407-13. DOI
47. Tajdaran K, Chan K, Shoichet MS, Gordon T, Borschel GH. Local delivery of FK506 to injured peripheral nerve enhances axon
regeneration after surgical nerve repair in rats. Acta Biomater 2019;96:211-21. DOI PubMed
48. Labroo P, Hilgart D, Davis B, et al. Drug-delivering nerve conduit improves regeneration in a critical-sized gap. Biotechnol Bioeng
2019;116:143-54. DOI PubMed
49. Zhao J, Zheng X, Fu C, Qu W, Wei G, Zhang W. FK506-loaded chitosan conduit promotes the regeneration of injured sciatic nerves in
the rat through the upregulation of brain-derived neurotrophic factor and TrkB. J Neurol Sci 2014;344:20-6. DOI
50. Ingvar S. Reaction of cells to the galvanic current in tissue cultures. Experimental Biology and Medicine 1920;17:198-9. DOI
51. Hoffman H. Acceleration and retardation of the process of axon-sprouting in partially devervated muscles. Aust J Exp Biol Med Sci
1952;30:541-66. DOI PubMed
52. Hyden H. Protein and nucleotide metabolism in the nerve cell under different functional conditions. Symp Soc Exp Biol 1947;1:152-62.
PubMed
53. Hinkle L, McCaig CD, Robinson KR. The direction of growth of differentiating neurones and myoblasts from frog embryos in an
applied electric field. J Physiol 1981;314:121-35. DOI PubMed PMC
54. McCaig CD. Nerve branching is induced and oriented by a small applied electric field. J Cell Sci 1990;95:605-15. DOI
55. Zuo KJ, Gordon T, Chan KM, Borschel GH. Electrical stimulation to enhance peripheral nerve regeneration: update in molecular
investigations and clinical translation. Exp Neurol 2020;332:113397. DOI PubMed
56. Nix WA, Hopf HC. Electrical stimulation of regenerating nerve and its effect on motor recovery. Brain Res 1983;272:21-5. DOI
PubMed
57. Pockett S, Gavin RM. Acceleration of peripheral nerve regeneration after crush injury in rat. Neurosci Lett 1985;59:221-4. DOI
PubMed
58. Wilson DH, Jagadeesh P. Experimental regeneration in peripheral nerves and the spinal cord in laboratory animals exposed to a pulsed
electromagnetic field. Paraplegia 1976;14:12-20. DOI PubMed
59. Borgens RB, Blight AR, Murphy DJ, Stewart L. Transected dorsal column axons within the guinea pig spinal cord regenerate in the
presence of an applied electric field. J Comp Neurol 1986;250:168-80. DOI
60. Borgens RB, Toombs JP, Breur G, et al. An imposed oscillating electrical field improves the recovery of function in neurologically
complete paraplegic dogs. J Neurotrauma 2009;16:639-57. DOI
61. Al-Majed AA, Neumann CM, Brushart TM, Gordon T. Brief electrical stimulation promotes the speed and accuracy of motor axonal
regeneration. J Neurosci 2000;20:2602-8. DOI PubMed PMC
62. Al-Majed AA, Tam SL, Gordon T. Electrical stimulation accelerates and enhances expression of regeneration-associated genes in
regenerating rat femoral motoneurons. Cell Mol Neurobiol 2004;24:379-402. DOI PubMed
63. Han PJ, Shukla S, Subramanian PS, Hoffman PN. Cyclic AMP elevates tubulin expression without increasing intrinsic axon growth
capacity. Exp Neurol 2004;189:293-302. DOI PubMed
64. Sit ST, Manser E. Rho GTPases and their role in organizing the actin cytoskeleton. J Cell Sci 2011;124:679-83. DOI PubMed
65. Huang J, Ye Z, Hu X, Lu L, Luo Z. Electrical stimulation induces calcium-dependent release of NGF from cultured Schwann cells.
Glia 2010;58:622-31. DOI PubMed
66. Wan L, Xia R, Ding W. Short-term low-frequency electrical stimulation enhanced remyelination of injured peripheral nerves by
inducing the promyelination effect of brain-derived neurotrophic factor on Schwann cell polarization. J Neurosci Res 2010;88:2578-
87. DOI PubMed
67. de Albornoz P, Delgado PJ, Forriol F, Maffulli N. Non-surgical therapies for peripheral nerve injury. Br Med Bull 2011;100:73-100.
DOI PubMed
68. Elzinga K, Tyreman N, Ladak A, Savaryn B, Olson J, Gordon T. Brief electrical stimulation improves nerve regeneration after delayed
repair in Sprague Dawley rats. Exp Neurol 2015;269:142-53. DOI PubMed
69. Roh J, Schellhardt L, Keane GC, et al. Short-duration, pulsatile, electrical stimulation therapy accelerates axon regeneration and