Page 78 - Read Online
P. 78

Mukhopadaya S, Rudra S, Patel G, Karumbaiah L, Bellamkonda R. Molecular   38.  Haastert K, Lipokatic E, Fischer M, Timmer M, Grothe C. Differentially
             sequelae of topographically guided peripheral nerve repair. Ann Biomed Eng   promoted peripheral nerve regeneration by grafted Schwann cells
             2014;42:1436‑55.                                     over‑expressing different FGF‑2 isoforms. Neurobiol Dis 2006;21:138‑53.
          15.  Tansey KE, Seifert JL, Botterman B, Delgado MR, Romero MI. Peripheral   39.  Tannemaat MR, Verhaagen J, Malessy M. The application of viral vectors
             nerve repair through multi‑luminal biosynthetic implants. Ann Biomed Eng   to enhance regeneration after peripheral nerve repair.  Neurol  Res
             2011;39:1815‑28.                                     2008;30:1039‑46.
          16.  FitzGerald JJ, Lago N, Benmerah S, Serra J, Watling CP, Cameron RE,   40.  Godinho MJ, Lip T, Pollett MA, Goodman D, Hodgetts SI, Sweetman I,
             Tarte E, Lacour SP, McMahon SB, Fawcett JW. A regenerative microchannel   Walters M, Verhaagen J, Plant GW, Harvey AR. Immunohistochemical,
             neural interface for recording from and stimulating peripheral axons in vivo.   ultrastructural and functional analysis of axonal regeneration through
             J Neural Eng 2012;9:016010.                          peripheral nerve grafts containing Schwann cells expressing BDNF, CNTF
          17.  Zheng L, Cui HF. Enhancement of nerve regeneration along a chitosan conduit   or NT3. Plos One 2013;8:e69987.
             combined with bone marrow mesenchymal stem cells.  J Mater Sci Mater Med   41.  Tohill M, Terenghi G. Stem‑cell plasticity and therapy for injuries of the
             2012;23:2291‑302.                                    peripheral nervous system. Biotechnol Appl Biochem 2004;40:17‑24.
          18.  Scott JB, Afshari M, Kotek R, Saul JM. The promotion of axon extension   42.  Keilhoff G, Goihl A, Stang F, Wolf G, Fansa H. Peripheral nerve tissue
             in vitro using polymer‑templated fibrin scaffolds. Biomaterials 2011;32:4830‑9.  engineering: autologous Schwann cells vs. transdifferentiated mesenchymal
          19.  Fitzgerald JJ, Lacour SP, McMahon SB, Fawcett JW. Microchannels as axonal   stem cells. Tissue Eng Part A 2006;12:1451‑65.
             amplifiers. IEEE Trans Biomed Eng 2008;55:1136‑46.  43.  Hu N, Wu H, Xue C, Gong Y, Wu J, Xiao Z, Yang Y, Ding F, Gu X. Long‑term
          20.  Lacour SP, Benmerah S, Tarte E, FitzGerald J, Serra J, McMahon S, Fawcett J,   outcome of the repair of 50 mm long median nerve defects in rhesus monkeys
             Graudejus O, Yu Z, Morrison B 3rd. Flexible and stretchable micro‑electrodes   with marrow mesenchymal stem cells‑containing, chitosan‑based tissue
             for in vitro and in vivo neural interfaces. Med Biol Eng Comput 2010;48:945‑54.  engineered nerve grafts. Biomaterials 2013;34:100‑11.
          21.  Yanagida H, Tanaka J, Maruo S. Immunocytochemical localization of a cell   44.  Ding  F, Wu  J, Yang  Y, Hu  W, Zhu  Q, Tang  X, Liu  J, Gu  X. Use of
             adhesion molecule, integrin alpha5beta1, in nerve growth cones.  J Orthop Sci   tissue‑engineered nerve grafts consisting of a chitosan/poly(lactic‑co‑glycolic
             1999;4:353‑60.                                       acid)‑based scaffold included with bone marrow mesenchymal cells for
          22.  Buettner HM, Pittman RN. Quantitative effects of laminin concentration on   bridging 50‑mm dog sciatic nerve gaps. Tissue Eng Part A 2010;16:3779‑90.
             neurite outgrowth in vitro. Dev Biol 1991;145:266‑76.  45.  Oliveira JT, Almeida FM, Biancalana A, Baptista AF, Tomaz MA, Melo PA,
          23.  Whitworth IH, Brown RA, Dore C, Green CJ, Terenghi G. Orientated   Martinez AM. Mesenchymal stem cells in a polycaprolactone conduit enhance
             mats of fibronectin as a conduit material for use in peripheral nerve repair.    median‑nerve regeneration, prevent decrease of creatine phosphokinase
             J Hand Surg Br 1995;20:429‑36.                       levels in muscle, and improve functional recovery in mice. Neuroscience
          24.  Tom VJ, Doller CM, Malouf AT, Silver J. Astrocyte‑associated fibronectin   2010;170:1295‑303.
             is critical for axonal regeneration in adult white matter.  J  Neurosci   46.  Zuk  PA,  Zhu  M,  Mizuno  H,  Huang  J,  Futrell  JW,  Katz  AJ,  Benhaim  P,
             2004;24:9282‑90.                                     Lorenz HP, Hedrick MH. Multilineage cells from human adipose tissue:
          25.  Woolford TJ, Toriumi DM. The enhancement of nerve regeneration using   implications for cell‑based therapies. Tissue Eng Part A 2001;7:211‑28.
             growth factors: a brief review.  J Long Term Eff Med Implants 1995;5:19‑26.  47.  Kingham PJ, Kalbermatten DF, Mahay D, Armstrong SJ, Wiberg M, Terenghi G.
          26.  Labrador RO, Buti M, Navarro X. Influence of collagen and laminin gels   Adipose‑derived stem cells differentiate into a Schwann cell phenotype and
             concentration on nerve regeneration after resection and tube repair.   promote neurite outgrowth in vitro. Exp Neurol 2007;207:267‑74.
             Exp Neurol 1998;149:243‑52.                      48.  Strem BM, Hicok KC, Zhu M, Wulur I, Alfonso Z, Schreiber RE, Fraser JK,
          27.  de Luca AC, Faroni A, Downes S, Terenghi G. Differentiated adipose‑derived   Hedrick MH. Multipotential differentiation of adipose tissue‑derived stem
             stem cells act synergistically with RGD‑modified surfaces to improve neurite   cells. Keio J Med 2005;54:132‑41.
             outgrowth in a co‑culture model.  J Tissue Eng Regen Med 2013;DOI: 10.1002/  49.  di Summa  PG, Kingham  PJ, Raffoul  W, Wiberg  M, Terenghi  G,
             term.1804.                                           Kalbermatten DF. Adipose‑derived stem cells enhance peripheral nerve
          28.  de Luca  AC, Stevens  JS, Schroeder  SL, Guilbaud  JB, Saiani  A,   regeneration. J Plast Reconstr Aesthet Surg 2010;63:1544‑52.
             Downes  S,  Terenghi  G.  Immobilization  of  cell‑binding  peptides  on   50.  Gimble  J,  Guilak  F.  Adipose‑derived  adult  stem  cells:  isolation,
             poly‑epsilon‑caprolactone film surface to biomimic the peripheral nervous   characterization, and differentiation potential. Cytotherapy 2003;5:362‑9.
             system. J Biomed Mater Res A 2013;101:491‑501.   51.  Xu  Y, Liu  L, Li  Y, Zhou  C, Xiong  F, Liu  Z, Gu  R, Hou  X, Zhang  C.
          29.  Wei YT, Tian WM, Yu X, Cui FZ, Hou SP, Xu QY. Hyaluronic acid hydrogels   Myelin‑forming ability of Schwann cell‑like cells induced from rat
             with IKVAV peptides for tissue repair and axonal regeneration in an injured   adipose‑derived stem cells in vitro. Brain Res 2008;1239:49‑55.
             rat brain. Biomed Mater 2007;2:S142‑6.           52.  Reid AJ, Sun M, Wiberg M, Downes S, Terenghi G, Kingham PJ. Nerve repair
          30.  Hosseinkhani H, Hiraoka Y, Li CH, Chen YR, Yu DS, Hong PD, Ou KL.   with adipose‑derived stem cells protects dorsal root ganglia neurons from
             Engineering three‑dimensional collagen‑IKVAV matrix to mimic neural   apoptosis. Neuroscience 2011;199:515‑22.
             microenvironment. ACS Chem Neurosci 2013;4:1229‑35.  53.  Hart AM, Terenghi G, Kellerth JO, Wiberg M. Sensory neuroprotection,
          31.  Masaeli  E,  Wieringa  PA,  Morshed  M,  Nasr‑Esfahani  MH,  Sadri  S,  van   mitochondrial preservation, and therapeutic potential of N‑acetyl‑cysteine
             Blitterswijk CA, Moroni L. Peptide functionalized polyhydroxyalkanoate   after nerve injury. Neuroscience 2004;125:91‑101.
             nanofibrous scaffolds enhance Schwann cells activity.  Nanomedicine   54.  Welin D, Novikova LN, Wiberg M, Kellerth JO, Novikov LN. Effects of
             2014;10:1559‑69.                                     N‑acetyl‑cysteine on the survival and regeneration of sural sensory neurons
          32.  Kalbermatten DF, Kingham PJ, Mahay D, Mantovani C, Pettersson J, Raffoul W,   in adult rats. Brain Res 2009;1287:58‑66.
             Balcin H, Pierer G, Terenghi G. Fibrin matrix for suspension of regenerative   55.  Reid AJ, Shawcross SG, Hamilton AE, Wiberg M, Terenghi G. N‑acetylcysteine
             cells in an artificial nerve conduit. J Plast Reconstr Aesthet Surg 2008;61:669‑75.  alters apoptotic gene expression in axotomised primary sensory afferent
          33.  Akassoglou K, Yu WM, Akpinar P, Strickland S. Fibrin inhibits peripheral   subpopulations. Neurosci Res 2009;65:148‑55.
             nerve remyelination by regulating Schwann cell differentiation. Neuron   56.  Erba  P, Mantovani  C, Kalbermatten  DF, Pierer  G, Terenghi  G,
             2002;33:861‑75.                                      Kingham  PJ. Regeneration potential and survival of transplanted
          34.  Jin J, Limburg S, Joshi SK, Landman R, Park M, Zhang Q, Kim HT, Kuo AC.   undifferentiated  adipose  tissue‑derived  stem  cells  in  peripheral  nerve
             Peripheral  nerve  repair  in  rats  using  composite  hydrogel‑filled  aligned   conduits.  J Plast Reconstr Aesthet Surg 2010;63:e811‑7.
             nanofiber conduits with incorporated nerve growth factor. Tissue Eng Part A   57.  Shen  CC,  Yang  YC,  Liu  BS.  Peripheral  nerve  repair  of  transplanted
             2013;19:2138‑46.                                     undifferentiated adipose tissue‑derived stem cells in a biodegradable
          35.  de Luca AC, Lacour SP, Raffoul W, di Summa PG. Extracellular matrix   reinforced nerve conduit. J Biomed Mater Res A 2012;100:48‑63.
             components in peripheral nerve repair: how to affect neural cellular response   58.  di Summa  PG, Kalbermatten  DF, Pralong  E, Raffoul  W, Kingham  PJ,
             and nerve regeneration? Neural Regen Res 2014;9:1943‑8.  Terenghi G. Long‑term in vivo regeneration of peripheral nerves through
          36.  di  Summa  PG,  Kalbermatten DF,  Raffoul  W,  Terenghi  G,  Kingham  PJ.   bioengineered nerve grafts. Neuroscience 2011;181:278‑91.
             Extracellular matrix molecules enhance the neurotrophic effect of Schwann   59.  Orbay  H,  Uysal  AC,  Hyakusoku  H,  Mizuno  H.  Differentiated  and
             cell‑like differentiated adipose‑derived stem cells and increase cell survival   undifferentiated adipose‑derived stem cells improve function in rats with
             under stress conditions. Tissue Eng Part A 2013;19:368‑79.  peripheral nerve gaps. J Plast Reconstr Aesthet Surg 2012;65:657‑64.
          37.  Berrocal YA, Almeida VW, Gupta R, Levi AD. Transplantation of Schwann   60.  Tang X, Xue C, Wang Y, Ding F, Yang Y, Gu X. Bridging peripheral nerve
             cells in a collagen tube for the repair of large, segmental peripheral nerve   defects with a tissue engineered nerve graft composed of an in vitro cultured
             defects in rats.  J Neurosurg 2013;119:720‑32.       nerve equivalent and a silk fibroin‑based scaffold. Biomaterials 2012;33:3860‑7.

           218                                                           Plast Aesthet Res || Vol 2 || Issue 4 || Jul 15, 2015
   73   74   75   76   77   78   79   80   81   82   83