Komórki macierzyste i czynniki wpływające na regeneracje funkcji nerwu twarzowego

GLOSA LUB KOMENTARZ PRAWNICZY

Komórki macierzyste i czynniki wpływające na regeneracje funkcji nerwu twarzowego

Kamil H. Nelke 1 , Klaudiusz Łuczak 2 , Wojciech Pawlak 2 , Lidia Łysenko 3 , Hanna Gerber 2

1. Department of Dental Anatomy, Medical University, Poland
2. Department of Maxillo-Facial Surgery, Wrocław Medical University, Poland
3. Department of Anesthesiology and Intensive Care Unit, Wrocław Medical University, Poland

Opublikowany: 2015-09-07
GICID: 01.3001.0009.6570
Dostępne wersje językowe: pl en
Wydanie: Postepy Hig Med Dosw 2015; 69 : 996-1002

 

Abstrakt

Przypisy

  • 1. Aggarwal S.K., Gupta A.K., Modi M., Gupta R., Marwaha N.: Safetyprofile of bone marrow mononuclear stem cells in the rehabilitationof patients with posttraumatic facial nerve paralysis-a novel modality(phase one trial). J. Neurol. Surg. B. Skull Base, 2012; 73: 245-252
    Google Scholar
  • 1. Aggarwal S.K., Gupta A.K., Modi M., Gupta R., Marwaha N.: Safetyprofile of bone marrow mononuclear stem cells in the rehabilitationof patients with posttraumatic facial nerve paralysis-a novel modality(phase one trial). J. Neurol. Surg. B. Skull Base, 2012; 73: 245-252
    Google Scholar
  • 2. Caylan R., Bektas D., Dikmen T., Bektas O., Omay S.B., Ovali E.: Mesenchymalstem cells in iatrogenic facial nerve paralysis: a possiblerole in the future. Eur. Arch. Otorhinolaryngol., 2006; 263: 963-967
    Google Scholar
  • 2. Caylan R., Bektas D., Dikmen T., Bektas O., Omay S.B., Ovali E.: Mesenchymalstem cells in iatrogenic facial nerve paralysis: a possiblerole in the future. Eur. Arch. Otorhinolaryngol., 2006; 263: 963-967
    Google Scholar
  • 3. Chan K.M., Gordon T., Zochodne D.W., Power H.A.: Improving peripheralnerve regeneration: from molecular mechanisms to potentialtherapeutic targets. Exp. Neurol., 2014; 261: 826-835
    Google Scholar
  • 3. Chan K.M., Gordon T., Zochodne D.W., Power H.A.: Improving peripheralnerve regeneration: from molecular mechanisms to potentialtherapeutic targets. Exp. Neurol., 2014; 261: 826-835
    Google Scholar
  • 4. Cho H.H., Jang S., Lee S.C., Jeong H.S., Park J.S., Han J.Y., Lee K.H.,Cho Y.B.: Effect of neural-induced mesenchymal stem cells and platelet-richplasma on facial nerve regeneration in an acute nerveinjury model. Laryngoscope, 2010; 120: 907-913
    Google Scholar
  • 4. Cho H.H., Jang S., Lee S.C., Jeong H.S., Park J.S., Han J.Y., Lee K.H.,Cho Y.B.: Effect of neural-induced mesenchymal stem cells and platelet-richplasma on facial nerve regeneration in an acute nerveinjury model. Laryngoscope, 2010; 120: 907-913
    Google Scholar
  • 5. Costa H.J., Ferreira Bento R., Salomone R., Azzi-Nogueira D., ZanattaD.B., Paulino Costa M., da Silva C.F., Strauss B.E., Haddad L.A.:Mesenchymal bone marrow stem cells within polyglycolic acid tubeobserved in vivo after six weeks enhance facial nerve regeneration.Brain Res., 2013; 1510: 10-21
    Google Scholar
  • 5. Costa H.J., Ferreira Bento R., Salomone R., Azzi-Nogueira D., ZanattaD.B., Paulino Costa M., da Silva C.F., Strauss B.E., Haddad L.A.:Mesenchymal bone marrow stem cells within polyglycolic acid tubeobserved in vivo after six weeks enhance facial nerve regeneration.Brain Res., 2013; 1510: 10-21
    Google Scholar
  • 6. Deboy C.A., Xin J., Byram S.C., Serpe C.J., Sanders V.M., JonesK.J.: Immune-mediated neuroprotection of axotomized mouse facialmotoneurons is dependent on the IL-4/STAT6 signaling pathway inCD4+ T cells. Exp. Neurol., 2006; 201: 212-224
    Google Scholar
  • 6. Deboy C.A., Xin J., Byram S.C., Serpe C.J., Sanders V.M., JonesK.J.: Immune-mediated neuroprotection of axotomized mouse facialmotoneurons is dependent on the IL-4/STAT6 signaling pathway inCD4+ T cells. Exp. Neurol., 2006; 201: 212-224
    Google Scholar
  • 7. Galiano M., Liu Z.Q., Kalla R., Bohatschek M., Koppius A.,Gschwendtner A., Xu S., Werner A., Kloss C.U., Jones L.L., BluethmannH., Raivich G.: Interleukin-6 (IL6) and cellular response tofacial nerve injury: effects on lymphocyte recruitment, early microglialactivation and axonal outgrowth in IL-6-deficient mice. Eur. J.Neurosci., 2001; 14: 327-341
    Google Scholar
  • 7. Galiano M., Liu Z.Q., Kalla R., Bohatschek M., Koppius A.,Gschwendtner A., Xu S., Werner A., Kloss C.U., Jones L.L., BluethmannH., Raivich G.: Interleukin-6 (IL6) and cellular response tofacial nerve injury: effects on lymphocyte recruitment, early microglialactivation and axonal outgrowth in IL-6-deficient mice. Eur. J.Neurosci., 2001; 14: 327-341
    Google Scholar
  • 8. Ghoreishian M., Rezaei M., Beni B.H., Javanmard S.H., Attar B.M.,Zalzali H.: Facial nerve repair with Gore-Tex tube and adipose-derivedstem cells: an animal study in dogs. J. Oral Maxillofac. Surg.,2013; 71: 577-587
    Google Scholar
  • 8. Ghoreishian M., Rezaei M., Beni B.H., Javanmard S.H., Attar B.M.,Zalzali H.: Facial nerve repair with Gore-Tex tube and adipose-derivedstem cells: an animal study in dogs. J. Oral Maxillofac. Surg.,2013; 71: 577-587
    Google Scholar
  • 9. Grosheva M., Guntinas-Lichius O., Arnhold S., Skouras E., KuertenS., Streppel M., Angelova S.K., Wewetzer K., Radtke C., DunlopS.A., Angelov D.N.: Bone marrow-derived mesenchymal stem celltransplantation does not improve quality of muscle reinnervationor recovery of motor function after facial nerve transection in rats.Biol. Chem., 2008; 389: 873-888
    Google Scholar
  • 9. Grosheva M., Guntinas-Lichius O., Arnhold S., Skouras E., KuertenS., Streppel M., Angelova S.K., Wewetzer K., Radtke C., DunlopS.A., Angelov D.N.: Bone marrow-derived mesenchymal stem celltransplantation does not improve quality of muscle reinnervationor recovery of motor function after facial nerve transection in rats.Biol. Chem., 2008; 389: 873-888
    Google Scholar
  • 10. Guo B.F., Dong M.M.: Application of neural stem cells in tissue–engineered artificial nerve. Otolaryngol. Head Neck Surg., 2009;140: 159-164
    Google Scholar
  • 10. Guo B.F., Dong M.M.: Application of neural stem cells in tissue–engineered artificial nerve. Otolaryngol. Head Neck Surg., 2009;140: 159-164
    Google Scholar
  • 11. Huang T., He D., Kleiner G., Kuluz J.: Neuron-like differentiationof adipose-derived stem cells from infant piglets in vitro. J. SpinalCord Med., 2007; 30 (Suppl. 1): S35-S40
    Google Scholar
  • 11. Huang T., He D., Kleiner G., Kuluz J.: Neuron-like differentiationof adipose-derived stem cells from infant piglets in vitro. J. SpinalCord Med., 2007; 30 (Suppl. 1): S35-S40
    Google Scholar
  • 12. Ladeby R., Wirenfeldt M., Dalmau I., Gregersen R., García-OvejeroD., Babcock A., Owens T., Finsen B.: Proliferating resident microgliaexpress the stem cell antigen CD34 in response to acute neural injury.Glia, 2005; 50: 121-131
    Google Scholar
  • 12. Ladeby R., Wirenfeldt M., Dalmau I., Gregersen R., García-OvejeroD., Babcock A., Owens T., Finsen B.: Proliferating resident microgliaexpress the stem cell antigen CD34 in response to acute neural injury.Glia, 2005; 50: 121-131
    Google Scholar
  • 13. Li S., WangX.,, Gu Y., Chen C., Wang Y., Liu J., HuW., Yu B., WangY., Ding F., Liu Y., Gu X.: Let-7 microRNAs regenerate peripheralnerve regeneration by targeting nerve growth factor. Mol. Ther.,2015; 23: 423-433
    Google Scholar
  • 13. Li S., WangX.,, Gu Y., Chen C., Wang Y., Liu J., HuW., Yu B., WangY., Ding F., Liu Y., Gu X.: Let-7 microRNAs regenerate peripheralnerve regeneration by targeting nerve growth factor. Mol. Ther.,2015; 23: 423-433
    Google Scholar
  • 14. Mao Y., Fan Z., Han Y., Liu W., Xu L., Jiang Z., Li J., Wang H.: Thealterations of inducible nitric oxide synthase in the mouse brainstemduring herpes simplex virus type 1-induced facial palsy. Neurol.Res., 2012; 34: 304-313
    Google Scholar
  • 14. Mao Y., Fan Z., Han Y., Liu W., Xu L., Jiang Z., Li J., Wang H.: Thealterations of inducible nitric oxide synthase in the mouse brainstemduring herpes simplex virus type 1-induced facial palsy. Neurol.Res., 2012; 34: 304-313
    Google Scholar
  • 15. Mendonça J.J., Juiz-Lopez P.: Regenerative facial reconstructionof terminal stage osteoradionecrosis and other advanced craniofacialdiseases with adult cultured stem and progenitor cells. Plast.Reconstr. Surg., 2010; 126: 1699-1709
    Google Scholar
  • 15. Mendonça J.J., Juiz-Lopez P.: Regenerative facial reconstructionof terminal stage osteoradionecrosis and other advanced craniofacialdiseases with adult cultured stem and progenitor cells. Plast.Reconstr. Surg., 2010; 126: 1699-1709
    Google Scholar
  • 16. Salomone R., Bento R.F., Costa H.J., Azzi-Nogueira D., OvandoP.C., Da-Silva C.F., Zanatta D.B., Strauss B.E., Haddad L.A.: Bone marrowstem cells in facial nerve regeneration from isolated stumps.Muscle Nerve, 2013; 48: 423-429
    Google Scholar
  • 16. Salomone R., Bento R.F., Costa H.J., Azzi-Nogueira D., OvandoP.C., Da-Silva C.F., Zanatta D.B., Strauss B.E., Haddad L.A.: Bone marrowstem cells in facial nerve regeneration from isolated stumps.Muscle Nerve, 2013; 48: 423-429
    Google Scholar
  • 17. Sardesai M.G., Moe K.: Recent progress in facial paralysis: advancesand obstacles. Curr. Opin. Otolaryngol. Head Neck Surg.,2010; 18: 266-271
    Google Scholar
  • 17. Sardesai M.G., Moe K.: Recent progress in facial paralysis: advancesand obstacles. Curr. Opin. Otolaryngol. Head Neck Surg.,2010; 18: 266-271
    Google Scholar
  • 18. Sasaki R., Aoki S., Yamato M., Uchiyama H., Wada K., OgiuchiH., Okano T., Ando T.: PLGA artificial nerve conduits with dentalpulp cells promote facial nerve regeneration. J. Tissue Eng. Regen.Med., 2011; 5: 823-830
    Google Scholar
  • 18. Sasaki R., Aoki S., Yamato M., Uchiyama H., Wada K., OgiuchiH., Okano T., Ando T.: PLGA artificial nerve conduits with dentalpulp cells promote facial nerve regeneration. J. Tissue Eng. Regen.Med., 2011; 5: 823-830
    Google Scholar
  • 19. Satar B., Hidir Y., Serdar M.A., Kucuktag Z., Ural A.U., Avcu F.,Safali M., Oguztuzun S.: Protein profiling of anastomosed facial nervetreated with mesenchymal stromal cells. Cytotherapy, 2012;14: 522-528
    Google Scholar
  • 19. Satar B., Hidir Y., Serdar M.A., Kucuktag Z., Ural A.U., Avcu F.,Safali M., Oguztuzun S.: Protein profiling of anastomosed facial nervetreated with mesenchymal stromal cells. Cytotherapy, 2012;14: 522-528
    Google Scholar
  • 20. Satar B., Karahatay S., Kurt B., Ural A.U., Safali M., Avcu F., OztasE., Kucuktag Z.: Repair of transected facial nerve with mesenchymalstromal cells: histopathologic evidence of superior outcome. Laryngoscope,2009; 119: 2221-2225
    Google Scholar
  • 20. Satar B., Karahatay S., Kurt B., Ural A.U., Safali M., Avcu F., OztasE., Kucuktag Z.: Repair of transected facial nerve with mesenchymalstromal cells: histopathologic evidence of superior outcome. Laryngoscope,2009; 119: 2221-2225
    Google Scholar
  • 21. Shi Y., Zhou L., Tian J., Wang Y.: Transplanting neural stemcells in nerve conduit to promote rats facial nerve regeneration.Lin Chung Er Bi Yan Hou Tou Jing Wai Ke Za Zhi, 2012; 26: 1040-1042
    Google Scholar
  • 21. Shi Y., Zhou L., Tian J., Wang Y.: Transplanting neural stemcells in nerve conduit to promote rats facial nerve regeneration.Lin Chung Er Bi Yan Hou Tou Jing Wai Ke Za Zhi, 2012; 26: 1040-1042
    Google Scholar
  • 22. Shi Y., Zhou L., Tian J., Wang Y.: Transplantation of neural stemcells overexpressing glia-derived neurotrophic factor promotes facialnerve regeneration. Acta Otolaryngol., 2009; 129: 906-914
    Google Scholar
  • 22. Shi Y., Zhou L., Tian J., Wang Y.: Transplantation of neural stemcells overexpressing glia-derived neurotrophic factor promotes facialnerve regeneration. Acta Otolaryngol., 2009; 129: 906-914
    Google Scholar
  • 23. Sun F., Zhou K., Mi W.J., Qiu J.H.: Combined use of decellularizedallogeneic artery conduits with autologous transdifferentiatedadipose-derived stem cells for facial nerve regeneration in rats.Biomaterials, 2011; 32: 8118-8128
    Google Scholar
  • 23. Sun F., Zhou K., Mi W.J., Qiu J.H.: Combined use of decellularizedallogeneic artery conduits with autologous transdifferentiatedadipose-derived stem cells for facial nerve regeneration in rats.Biomaterials, 2011; 32: 8118-8128
    Google Scholar
  • 24. Sun F., Zhou K., Mi W.J., Qiu J.H.: Repair of facial nerve defectswith decellularized artery allografts containing autologous adipose–derived stem cells in a rat model. Neurosci. Lett., 2011; 499: 104-108
    Google Scholar
  • 24. Sun F., Zhou K., Mi W.J., Qiu J.H.: Repair of facial nerve defectswith decellularized artery allografts containing autologous adipose–derived stem cells in a rat model. Neurosci. Lett., 2011; 499: 104-108
    Google Scholar
  • 25. Wang X., Luo E., Li Y., Hu J.: Schwann-like mesenchymal stemcells within vein graft facilitate facial nerve regeneration and remyelination.Brain Res., 2011; 1383: 71-80
    Google Scholar
  • 25. Wang X., Luo E., Li Y., Hu J.: Schwann-like mesenchymal stemcells within vein graft facilitate facial nerve regeneration and remyelination.Brain Res., 2011; 1383: 71-80
    Google Scholar
  • 26. Wang Y.L., Wang D.Z., Nie X., Lei D.L., Liu Y.P., Zhang Y.J., SuwaF., Tamada Y., Fang Y.R., Jin Y.: The role of bone morphogenetic protein-2in vivo in regeneration of peripheral nerves. Br. J. Oral Maxillofac.Surg., 2007; 45: 197-202
    Google Scholar
  • 26. Wang Y.L., Wang D.Z., Nie X., Lei D.L., Liu Y.P., Zhang Y.J., SuwaF., Tamada Y., Fang Y.R., Jin Y.: The role of bone morphogenetic protein-2in vivo in regeneration of peripheral nerves. Br. J. Oral Maxillofac.Surg., 2007; 45: 197-202
    Google Scholar
  • 27. Wen X., Liu L., Deng M., Zhang L., Liu R., Xing Y., Zhou X., NieX.: Characterization of p75+ ectomesenchymal stem cells from ratembryonic facial process tissue. Biochem. Biophys. Res. Commun.,2012; 427: 5-10
    Google Scholar
  • 27. Wen X., Liu L., Deng M., Zhang L., Liu R., Xing Y., Zhou X., NieX.: Characterization of p75+ ectomesenchymal stem cells from ratembryonic facial process tissue. Biochem. Biophys. Res. Commun.,2012; 427: 5-10
    Google Scholar
  • 28. Zhang H., Wei Y.T., Tsang K.S., Sun C.R., Li J., Huang H., Cui F.Z.,An Y.H.: Implantation of neural stem cells embedded in hyaluronicacid and collagen composite conduit promotes regeneration in a rabbitfacial nerve injury model. J. Transl. Med., 2008; 6: 67
    Google Scholar
  • 28. Zhang H., Wei Y.T., Tsang K.S., Sun C.R., Li J., Huang H., Cui F.Z.,An Y.H.: Implantation of neural stem cells embedded in hyaluronicacid and collagen composite conduit promotes regeneration in a rabbitfacial nerve injury model. J. Transl. Med., 2008; 6: 67
    Google Scholar

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