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Ocular Surface/Cornea

Effect of Amniotic Membrane Suspension (AMS) and Amniotic Membrane Homogenate (AMH) on Human Corneal Epithelial Cell Viability, Migration and Proliferation In Vitro

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Pages 351-357 | Received 03 Sep 2015, Accepted 16 May 2016, Published online: 15 Jul 2016

References

  • de Rötth A. Plastic repair of conjunctival defects with fetal membranes. Arch Ophthalmol 1940;23:522–525.
  • Sorsby A, Symons HM. Amniotic membrane grafts in caustic burns of the eye (burns of the second degree). Br J Ophthalmol 1946;30:337–345.
  • Kim JC, Tseng SC. Transplantation of preserved human amniotic membrane for surface reconstruction in severely damaged rabbit corneas. Cornea 1995;14:473–484.
  • Seitz B, Resch MD, Schlötzer-Schrehardt U, Hofmann-Rummelt C, Sauer R, Kruse FE. Histopathology and ultrastructure of human corneas after amniotic membrane transplantation. Arch Ophthalmol 2006;124:1487–1490.
  • Jiang A, Li C, Gao Y, Zhang M, Hu J, Kuang W, et al. In vivo and in vitro inhibitory effect of amniotic extraction on neovascularization. Cornea 2006;25(Suppl 1):S36–S40.
  • Liang L, Li W, Ling S, Sheha H, Qiu W, Li C, et al. Amniotic membrane extraction solution for ocular chemical burns. Clin Experiment Ophthalmol 2009;37:855–863.
  • Choi JA, Jin HJ, Jung S, Yang E, Choi JS, Chung SH, et al. Effects of amniotic membrane suspension in human corneal wound healing in vitro. Mol Vis 2009;15:2230–2238.
  • Kobayashi N, Kabuyama Y, Sasaki S, Kato K, Homma Y. Suppression of corneal neovascularization by culture supernatant of human amniotic cells. Cornea 2002;21:62–67.
  • Kamiya K, Wang M, Uchida S, Amano S, Oshika T, Sakuragawa N, et al. Topical application of culture supernatant from human amniotic epithelial cells suppresses inflammatory reactions in cornea. Exp Eye Res 2005;80:671–679.
  • Wichayacoop T, Briksawan P, Tuntivanich P, Yibchok-Anun S. Anti-inflammatory effects of topical supernatant from human amniotic membrane cell culture on canine deep corneal ulcer after human amniotic membrane transplantation. Vet Ophthalmol 2009;12:28–35.
  • Bonci P, Bonci P, Lia A. Suspension made with amniotic membrane: clinical trial. Eur J Ophthalmol 2005;15:441–445.
  • Kordić R, Suić SP, Jandroković S, Kalauz M, Kuzman T, Skegro I, et al. Application of the amniotic membrane extract (AMX) for the persistent epithelial defect (PED) of the cornea. Coll Antropol 2013;37(Suppl 1):161–164.
  • Guo Q, Hao J, Yang Q, Guan L, Ouyang S, Wang J. A comparison of the effectiveness between amniotic membrane homogenate and transplanted amniotic membrane in healing corneal damage in a rabbit model. Acta Ophthalmol 2011;89:e315–e319.
  • Raeder S, Utheim TP, Messelt E, Lyberg T. The impact of de-epithelialization of the amniotic membrane matrix on morphology of cultured human limbal epithelial cells subject to eye bank storage. Cornea 2010;29:439–445.
  • Shortt AJ, Secker GA, Lomas RJ, Wilshaw SP, Kearney JN, Tuft SJ, et al. The effect of amniotic membrane preparation method on its ability to serve as a substrate for the ex-vivo expansion of limbal epithelial cells. Biomaterials 2009;30:1056–1065.
  • Chen B, Mi S, Wright B, Connon CJ. Differentiation status of limbal epithelial cells cultured on intact and denuded amniotic membrane before and after air-lifting. Tissue Eng Part A 2010;16:2721–2729.
  • Koizumi N, Rigby H, Fullwood NJ, Kawasaki S, Tanioka H, Koizumi K, et al. Comparison of intact and denuded amniotic membrane as a substrate for cell-suspension culture of human limbal epithelial cells. Graefes Arch Clin Exp Ophthalmol 2007;245:123–134.
  • Ahmadiankia N, Ebrahimi M, Hosseini A, Baharvand H. Effects of different extracellular matrices and co-cultures on human limbal stem cell expansion in vitro. Cell Biol Int 2009;33:978–987.
  • Galindo EE, Theiss C, Pauklin M, Wettey FR, Steuhl KP, Meller D. Correlation of cell cycle kinetics with p63 expression in human limbal epithelial cells expanded on intact human amniotic membrane. Ophthalmic Res 2009;41:83–90.
  • Yam HF, Pang CP, Fan DS, Fan BJ, Yu EY, Lam DS. Growth factor changes in ex vivo expansion of human limbal epithelial cells on human amniotic membrane. Cornea 2002;21:101–105.
  • Lee JH, Ryu IH, Kim EK, Lee JE, Hong S, Lee HK. Induced expression of insulin-like growth factor-1 by amniotic membrane-conditioned medium in cultured human corneal epithelial cells. Invest Ophthalmol Vis Sci 2006;47:864–872.
  • Ma DH, Lai JY, Yu ST, Liu JY, Yang U, Chen HC, et al. Up-regulation of heat shock protein 70-1 (Hsp70-1) in human limbo-corneal epithelial cells cultivated on amniotic membrane: a proteomic study. J Cell Physiol 2012;227:2030–2039.
  • Konomi K, Satake Y, Shimmura S, Tsubota K, Shimazaki J. Long-term results of amniotic membrane transplantation for partial limbal deficiency. Cornea 2013;32:1110–1115.
  • Berguiga M, Mameletzi E, Nicolas M, Rivier D, Majo F. Long-term follow-up of multilayer amniotic membrane transplantation (MLAMT) for non-traumatic corneal perforations or deep ulcers with descemetocele. Klin Monbl Augenheilkd 2013;230:413–418.
  • Gris O, López-Navidad A, Caballero F, del Campo Z, Adán A. Amniotic membrane transplantation for ocular surface pathology: long-term results. Transplant Proc 2003;35:2031–2035.
  • Shahriari HA, Tokhmehchi F, Reza M, Hashemi NF. Comparison of the effect of amniotic membrane suspension and autologous serum on alkaline corneal epithelial wound healing in the rabbit model. Cornea 2008;27:1148–1150.
  • Koizumi NJ, Inatomi TJ, Sotozono CJ, Fullwood NJ, Quantock AJ, Kinoshita S. Growth factor mRNA and protein in preserved human amniotic membrane. Curr Eye Res 2000;20:173–177.
  • Sakuragawa N, Elwan MA, Uchida S, Fujii T, Kawashima K. Non-neuronal neurotransmitters and neurotrophic factors in amniotic epithelial cells: expression and function in humans and monkey. Jpn J Pharmacol 2001;85:20–23.
  • Uchida S, Suzuki Y, Araie M, Kashiwagi K, Otori Y, Sakuragawa N. Factors secreted by human amniotic epithelial cells promote the survival of rat retinal ganglion cells. Neurosci Lett 2003;341:1–4.
  • Shao C, Sima J, Zhang SX, Jin J, Reinach P, Wang Z, et al. Suppression of corneal neovascularization by PEDF release from human amniotic membranes. Invest Ophthalmol Vis Sci 2004;45:1758–1762.
  • Zhang T, Yam GH, Riau AK, Poh R, Allen JC, Peh GS, et al. The effect of amniotic membrane de-epithelialization method on its biological properties and ability to promote limbal epithelial cell culture. Invest Ophthalmol Vis Sci 2013;54:3072–3081.
  • Zelenka PS, Arpitha P. Coordinating cell proliferation and migration in the lens and cornea. Semin Cell Dev Biol 2008;19:113–124.
  • Tan Y, Qiu F, Qu YL, Li C, Shao Y, Xiao Q, et al. Amniotic membrane inhibits squamous metaplasia of human conjunctival epithelium. Am J Physiol Cell Physiol 2011;301:C115–125.
  • Shao C, Sima J, Zhang SX, Jin J, Reinach P, Wang Z, et al. Suppression of corneal neovascularization by PEDF release from human amniotic membranes. Invest Ophthalmol Vis Sci 2004;45:1758–1762.
  • Li H, Niederkorn JY, Neelam S, Mayhew E, Word RA, McCulley JP, et al. Immunosuppressive factors secreted by human amniotic epithelial cells. Invest Ophthalmol Vis Sci 2005;46:900–907.
  • Wolbank S, Peterbauer A, Fahrner M, Hennerbichler S, van Griensven M, Stadler G, et al. Dose-dependent immunomodulatory effect of human stem cells from amniotic membrane: a comparison with human mesenchymal stem cells from adipose tissue. Tissue Eng 2007;13:1173–1183.
  • Jiao H, Guan F, Yang B, Li J, Song L, Hu X, et al. Human amniotic membrane derived-mesenchymal stem cells induce C6 glioma apoptosis in vivo through the Bcl-2/caspase pathways. Mol Biol Rep 2012;39:467–473.
  • Kang NH, Yi BR, Lim SY, Hwang KA, Baek YS, Kang KS, et al. Human amniotic membrane-derived epithelial stem cells display anticancer activity in BALB/c female nude mice bearing disseminated breast cancer xenografts. Int J Oncol 2012;40:2022–2028.
  • Mamede AC, Laranjo M, Carvalho MJ, Abrantes AM, Pires AS, Brito AF, et al. Effect of amniotic membrane proteins in human cancer cell lines: an exploratory study. J Membr Biol 2014;247:357–360.
  • Magatti M, De Munari S, Vertua E, Parolini O. Amniotic membrane-derived cells inhibit proliferation of cancer cell lines by inducing cell cycle arrest. J Cell Mol Med 2012;16:2208–2218.

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