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Items: 19


Macromolecularly crowded in vitro microenvironments accelerate the production of extracellular matrix-rich supramolecular assemblies.

Kumar P, Satyam A, Fan X, Collin E, Rochev Y, Rodriguez BJ, Gorelov A, Dillon S, Joshi L, Raghunath M, Pandit A, Zeugolis DI.

Sci Rep. 2015 Mar 4;5:8729. doi: 10.1038/srep08729.


Keratocytes derived from spheroid culture of corneal stromal cells resemble tissue resident keratocytes.

Byun YS, Tibrewal S, Kim E, Yco L, Sarkar J, Ivanir Y, Liu CY, Sano CM, Jain S.

PLoS One. 2014 Nov 10;9(11):e112781. doi: 10.1371/journal.pone.0112781. eCollection 2014.


Spatial distribution of niche and stem cells in ex vivo human limbal cultures.

Mariappan I, Kacham S, Purushotham J, Maddileti S, Siamwala J, Sangwan VS.

Stem Cells Transl Med. 2014 Nov;3(11):1331-41. doi: 10.5966/sctm.2014-0120. Epub 2014 Sep 17.


Effect of acacia honey on cultured rabbit corneal keratocytes.

Ker-Woon C, Abd Ghafar N, Hui CK, Mohd Yusof YA.

BMC Cell Biol. 2014 May 26;15:19. doi: 10.1186/1471-2121-15-19.


Transforming growth factor β and platelet-derived growth factor modulation of myofibroblast development from corneal fibroblasts in vitro.

Singh V, Barbosa FL, Torricelli AA, Santhiago MR, Wilson SE.

Exp Eye Res. 2014 Mar;120:152-60. doi: 10.1016/j.exer.2014.01.003. Epub 2014 Jan 12.


Using bovine pituitary extract to increase proliferation of keratocytes and maintain their phenotype in vitro.

Xu ZZ, Li ZJ, Du LX, Li J, Wang LY.

Int J Ophthalmol. 2013 Dec 18;6(6):758-65. doi: 10.3980/j.issn.2222-3959.2013.06.04. eCollection 2013.


Establishment of an untransfected human corneal stromal cell line and its biocompatibility to acellular porcine corneal stroma.

Fan TJ, Hu XZ, Zhao J, Niu Y, Zhao WZ, Yu MM, Ge Y.

Int J Ophthalmol. 2012;5(3):286-92. doi: 10.3980/j.issn.2222-3959.2012.03.07. Epub 2012 Jun 18.


Concise review: Stem cells in the corneal stroma.

Pinnamaneni N, Funderburgh JL.

Stem Cells. 2012 Jun;30(6):1059-63. doi: 10.1002/stem.1100. Review.


Nanoscale modification of porous gelatin scaffolds with chondroitin sulfate for corneal stromal tissue engineering.

Lai JY, Li YT, Cho CH, Yu TC.

Int J Nanomedicine. 2012;7:1101-14. doi: 10.2147/IJN.S28753. Epub 2012 Feb 23.


Sphere formation from corneal keratocytes and phenotype specific markers.

Scott SG, Jun AS, Chakravarti S.

Exp Eye Res. 2011 Dec;93(6):898-905. doi: 10.1016/j.exer.2011.10.004. Epub 2011 Oct 21.


ICAM-1 mediates surface contact between neutrophils and keratocytes following corneal epithelial abrasion in the mouse.

Gagen D, Laubinger S, Li Z, Petrescu MS, Brown ES, Smith CW, Burns AR.

Exp Eye Res. 2010 Nov;91(5):676-84. doi: 10.1016/j.exer.2010.08.007. Epub 2010 Aug 14.


The molecular basis of corneal transparency.

Hassell JR, Birk DE.

Exp Eye Res. 2010 Sep;91(3):326-35. doi: 10.1016/j.exer.2010.06.021. Epub 2010 Jul 3. Review.


Nanoscale topography-induced modulation of fundamental cell behaviors of rabbit corneal keratocytes, fibroblasts, and myofibroblasts.

Pot SA, Liliensiek SJ, Myrna KE, Bentley E, Jester JV, Nealey PF, Murphy CJ.

Invest Ophthalmol Vis Sci. 2010 Mar;51(3):1373-81. doi: 10.1167/iovs.09-4074. Epub 2009 Oct 29.


Human sclera maintains common characteristics with cartilage throughout evolution.

Seko Y, Azuma N, Takahashi Y, Makino H, Morito T, Muneta T, Matsumoto K, Saito H, Sekiya I, Umezawa A.

PLoS One. 2008;3(11):e3709. doi: 10.1371/journal.pone.0003709. Epub 2008 Nov 12.


Keratocyte phenotype is enhanced in the absence of attachment to the substratum.

Funderburgh ML, Mann MM, Funderburgh JL.

Mol Vis. 2008 Feb 9;14:308-17.


Secretion and organization of a cornea-like tissue in vitro by stem cells from human corneal stroma.

Du Y, Sundarraj N, Funderburgh ML, Harvey SA, Birk DE, Funderburgh JL.

Invest Ophthalmol Vis Sci. 2007 Nov;48(11):5038-45.


Characterization of free-floating spheres from human trabecular meshwork (HTM) cell culture in vitro.

Gonzalez P, Epstein DL, Luna C, Liton PB.

Exp Eye Res. 2006 Jun;82(6):959-67. Epub 2005 Nov 28.

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