The corneal fibrosis response to epithelial-stromal injury.
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Vivek Singh | Steven E. Wilson | A. Torricelli | Steven E Wilson | Vivek Singh | Andre A M Torricelli | Abirami Santhanam | Jiahui Wu | A. Santhanam | Jiahui Wu | S. Wilson
[1] E. Lazarides. Desmin and intermediate filaments in muscle cells. , 1980, Results and problems in cell differentiation.
[2] E. Lazarides. Intermediate filaments as mechanical integrators of cellular space , 1980, Nature.
[3] C. Kublin,et al. Proteoglycan changes during restoration of transparency in corneal scars. , 1983, Archives of biochemistry and biophysics.
[4] G. Majno,et al. The myofibroblast. Possible derivation from macrophages in xanthogranuloma. , 1989, The American Journal of dermatopathology.
[5] J. Verweij,et al. Mitomycin C. , 1990, Cancer chemotherapy and biological response modifiers.
[6] S. Ben‐Sasson,et al. Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation , 1992, The Journal of cell biology.
[7] W. Kao,et al. Expression of collagen I, smooth muscle alpha-actin, and vimentin during the healing of alkali-burned and lacerated corneas. , 1993, Investigative ophthalmology & visual science.
[8] J. Murphy-Ullrich,et al. Thrombospondin causes activation of latent transforming growth factor- beta secreted by endothelial cells by a novel mechanism [published erratum appears in J Cell Biol 1993 Sep;122(5):following 1143] , 1993, The Journal of cell biology.
[9] S. Wilson,et al. Epidermal growth factor, transforming growth factor alpha, transforming growth factor beta, acidic fibroblast growth factor, basic fibroblast growth factor, and interleukin-1 proteins in the cornea. , 1994, Experimental eye research.
[10] N. Vermeulen,et al. Cytotoxicity of mitomycin C and adriamycin in freshly isolated rat hepatocytes: the role of cytochrome P450. , 1994, Cancer research.
[11] M. Justice,et al. Sequence, molecular properties, and chromosomal mapping of mouse lumican. , 1995, Investigative ophthalmology & visual science.
[12] T. Dix,et al. Redox-mediated activation of latent transforming growth factor-beta 1. , 1996, Molecular endocrinology.
[13] T. T. Dinh,et al. Myofibroblasts differentiate from fibroblasts when plated at low density. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[14] S. Wilson,et al. Epithelial injury induces keratocyte apoptosis: hypothesized role for the interleukin-1 system in the modulation of corneal tissue organization and wound healing. , 1996, Experimental eye research.
[15] A. Nesburn,et al. Extracellular matrix alterations in human corneas with bullous keratopathy. , 1996, Investigative ophthalmology & visual science.
[16] M. Maldonado,et al. Direct objective quantification of corneal haze after excimer laser photorefractive keratectomy for high myopia. , 1996, Ophthalmology.
[17] A. Nesburn,et al. Abnormalities of the Extracellular Matrix in Keratoconus Corneas , 1997, Cornea.
[18] T. Tervo,et al. Platelet-derived growth factor-BB (PDGF-BB) in tear fluid: a potential modulator of corneal wound healing following photorefractive keratectomy. , 1997, Current eye research.
[19] R. Mohan,et al. Apoptosis in the cornea: further characterization of Fas/Fas ligand system. , 1997, Experimental eye research.
[20] W M Petroll,et al. Inhibition of Corneal Fibrosis by Topical Application of Blocking Antibodies to TGFβ in the Rabbit , 1997, Cornea.
[21] M. Wilson,et al. Topical mitomycin C for the treatment of conjunctival and corneal epithelial dysplasia and neoplasia. , 1997, American journal of ophthalmology.
[22] T. Fujita,et al. Pharmacokinetics of mitomycin C (MMC) after intraperitoneal administration of MMC-gelatin gel and its anti-tumor effects against sarcoma-180 bearing mice. , 1997, Journal of drug targeting.
[23] Jian-ping Gao,et al. Apoptosis in the Rabbit Cornea After Photorefractive Keratectomy , 1997, Cornea.
[24] T. Kivelä,et al. Structure, development and function of cytoskeletal elements in non-neuronal cells of the Human Eye , 1998, Progress in Retinal and Eye Research.
[25] N. Ehlers,et al. Chemotaxis of human keratocytes is increased by platelet-derived growth factor-BB, epidermal growth factor, transforming growth factor-alpha, acidic fibroblast growth factor, insulin-like growth factor-I, and transforming growth factor-beta. , 1998, Current eye research.
[26] Terry Magnuson,et al. Lumican Regulates Collagen Fibril Assembly: Skin Fragility and Corneal Opacity in the Absence of Lumican , 1998, The Journal of cell biology.
[27] G. Conrad,et al. Decorin and biglycan of normal and pathologic human corneas. , 1998, Investigative ophthalmology & visual science.
[28] S. Wilson. Everett Kinsey Lecture. Keratocyte apoptosis in refractive surgery. , 1998, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[29] S. Wilson,et al. Keratocyte apoptosis after corneal surgery. , 1998, Investigative ophthalmology & visual science.
[30] S. Wilson,et al. Keratocyte apoptosis: implications on corneal wound healing, tissue organization, and disease. , 1998, Investigative ophthalmology & visual science.
[31] W M Petroll,et al. Corneal haze development after PRK is regulated by volume of stromal tissue removal. , 1998, Cornea.
[32] N. Kaminski,et al. The integrin alpha v beta 6 binds and activates latent TGF beta 1: a mechanism for regulating pulmonary inflammation and fibrosis. , 1999, Cell.
[33] Fini Me. Keratocyte and fibroblast phenotypes in the repairing cornea. , 1999 .
[34] R. Mohan,et al. Stromal-epithelial interactions in the cornea , 1999, Progress in Retinal and Eye Research.
[35] T. Møller-Pedersen,et al. The cellular basis of corneal transparency: evidence for 'corneal crystallins'. , 1999, Journal of cell science.
[36] W. Kao,et al. Transforming growth factor(beta)-mediated corneal myofibroblast differentiation requires actin and fibronectin assembly. , 1999, Investigative ophthalmology & visual science.
[37] S. Wilson,et al. Role of apoptosis in wound healing in the cornea. , 2000, Cornea.
[38] P. Majmudar,et al. Mytomycin-C for post-PRK corneal haze. , 2000, Journal of cataract and refractive surgery.
[39] S. Masur,et al. TGF-beta receptor expression and smad2 localization are cell density dependent in fibroblasts. , 2000, Investigative ophthalmology & visual science.
[40] Renato Ambrósio,et al. The Corneal Wound Healing Response: Cytokine-mediated Interaction of the Epithelium, Stroma, and Inflammatory Cells , 2001, Progress in Retinal and Eye Research.
[41] S. Wilson,et al. Proinflammatory chemokine induction in keratocytes and inflammatory cell infiltration into the cornea. , 2001, Investigative ophthalmology & visual science.
[42] M. Roth,et al. Proteoglycan Expression during Transforming Growth Factor β-induced Keratocyte-Myofibroblast Transdifferentiation* , 2001, The Journal of Biological Chemistry.
[43] H. Hamberg‐Nyström,et al. Cellular proliferation and leukocyte infiltration in the rabbit cornea after photorefractive keratectomy. , 2001, Acta ophthalmologica Scandinavica.
[44] W. Petroll,et al. TGFβ Induced Myofibroblast Differentiation of Rabbit Keratocytes Requires Synergistic TGFβ, PDGF and Integrin Signaling , 2002 .
[45] K. Sung,et al. Apoptosis in keratocytes caused by mitomycin C. , 2003, Investigative ophthalmology & visual science.
[46] T. Hunt,et al. Multiple Organ Engraftment by Bone‐Marrow‐Derived Myofibroblasts and Fibroblasts in Bone‐Marrow‐Transplanted Mice , 2003, Stem cells.
[47] Renato Ambrósio,et al. Apoptosis, necrosis, proliferation, and myofibroblast generation in the stroma following LASIK and PRK. , 2003, Experimental eye research.
[48] M. Fini,et al. Molecular mechanisms controlling the fibrotic repair phenotype in cornea: implications for surgical outcomes. , 2003, Investigative ophthalmology & visual science.
[49] K. Musselmann,et al. Isolation of a putative keratocyte activating factor from the corneal stroma. , 2003, Experimental eye research.
[50] Y. M. Michelacci,et al. Collagens and proteoglycans of the corneal extracellular matrix. , 2003, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[51] D. Hwang,et al. Late-Onset Corneal Haze and Myopic Regression After Photorefractive Keratectomy (PRK) , 2004, Cornea.
[52] Chia-Yang Liu,et al. Roles of lumican and keratocan on corneal transparency , 2002, Glycoconjugate Journal.
[53] S. Phan,et al. Bone marrow-derived progenitor cells in pulmonary fibrosis. , 2004, The Journal of clinical investigation.
[54] R. Mohan,et al. RANK, RANKL, OPG, and M-CSF expression in stromal cells during corneal wound healing. , 2004, Investigative ophthalmology & visual science.
[55] M. Fini,et al. Uncoupling keratocyte loss of corneal crystallin from markers of fibrotic repair. , 2004, Investigative ophthalmology & visual science.
[56] A. Desmoulière,et al. Heterogeneity of myofibroblast phenotypic features: an example of fibroblastic cell plasticity , 2004, Virchows Archiv.
[57] S. Chakravarti. Functions of lumican and fibromodulin: Lessons from knockout mice , 2002, Glycoconjugate Journal.
[58] R. Demir,et al. Placental villous stroma as a model system for myofibroblast differentiation , 1996, Histochemistry and Cell Biology.
[59] B. Shen,et al. Antitumor antibiotics: bleomycin, enediynes, and mitomycin. , 2005, Chemical reviews.
[60] Shu-Wen Chang. Corneal keratocyte apoptosis following topical intraoperative mitomycin C in rabbits. , 2005, Journal of refractive surgery.
[61] R. Mohan,et al. Wound Healing in the Cornea: A Review of Refractive Surgery Complications and New Prospects for Therapy , 2005, Cornea.
[62] M. Fini,et al. How the Cornea Heals: Cornea-specific Repair Mechanisms Affecting Surgical Outcomes , 2005, Cornea.
[63] R. Mohan,et al. Stromal haze, myofibroblasts, and surface irregularity after PRK. , 2006, Experimental eye research.
[64] G. Wollensak,et al. Vimentin and cytokeratin pattern in granular corneal dystrophy , 1996, Graefe's Archive for Clinical and Experimental Ophthalmology.
[65] R. Mohan,et al. Effect of prophylactic and therapeutic mitomycin C on corneal apoptosis, cellular proliferation, haze, and long-term keratocyte density in rabbits. , 2006, Journal of refractive surgery.
[66] Paul G. Scott,et al. Structural correlations in the family of small leucine-rich repeat proteins and proteoglycans. , 2006 .
[67] I. Chervoneva,et al. Collagen fibril assembly during postnatal development and dysfunctional regulation in the lumican‐deficient murine cornea , 2006, Developmental dynamics : an official publication of the American Association of Anatomists.
[68] D. Greenspan,et al. BMP1 controls TGFβ1 activation via cleavage of latent TGFβ-binding protein , 2006, The Journal of cell biology.
[69] J. West-Mays,et al. The keratocyte: corneal stromal cell with variable repair phenotypes. , 2006, The international journal of biochemistry & cell biology.
[70] William J Dupps,et al. Femtosecond laser and microkeratome corneal flaps: comparison of stromal wound healing and inflammation. , 2007, Journal of refractive surgery.
[71] A. Ljubimov,et al. Immunohistochemical Evaluation of Two Corneal Buttons With Post-LASIK Keratectasia , 2007, Cornea.
[72] T. Mimura,et al. Isolation and distribution of rabbit keratocyte precursors , 2008, Molecular vision.
[73] J. Jester. Corneal crystallins and the development of cellular transparency. , 2008, Seminars in cell & developmental biology.
[74] Jing-zi Li,et al. Connective tissue growth factor stimulates renal cortical myofibroblast‐like cell proliferation and matrix protein production , 2008, Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society.
[75] B. Hinz,et al. Integrins and the activation of latent transforming growth factor beta1 - an intimate relationship. , 2008, European journal of cell biology.
[76] Takako Sasaki,et al. Alterations of Extracellular Matrix Components and Proteinases in Human Corneal Buttons With INTACS for Post-Laser In Situ Keratomileusis Keratectasia and Keratoconus , 2008, Cornea.
[77] Steven E. Wilson,et al. Corneal myofibroblast viability: opposing effects of IL-1 and TGF beta1. , 2009, Experimental eye research.
[78] Marcella Q. Salomão,et al. Corneal stroma PDGF blockade and myofibroblast development. , 2009, Experimental eye research.
[79] Steven E. Wilson,et al. Dynamics of the expression of intermediate filaments vimentin and desmin during myofibroblast differentiation after corneal injury. , 2009, Experimental eye research.
[80] E. Novo,et al. Hepatic myofibroblasts: a heterogeneous population of multifunctional cells in liver fibrogenesis. , 2009, The international journal of biochemistry & cell biology.
[81] A. Hutcheon,et al. Human corneal fibrosis: an in vitro model. , 2010, Investigative ophthalmology & visual science.
[82] A. Oldberg,et al. The role of small leucine-rich proteoglycans in collagen fibrillogenesis. , 2010, Matrix biology : journal of the International Society for Matrix Biology.
[83] S. Wilson,et al. Stromal interleukin-1 expression in the cornea after haze-associated injury. , 2010, Experimental eye research.
[84] Steven E. Wilson,et al. Corneal myofibroblast generation from bone marrow-derived cells. , 2010, Experimental eye research.
[85] S. Saika,et al. Transforming Growth Factor &bgr; Signal Transduction: A Potential Target for Maintenance/Restoration of Transparency of the Cornea , 2010, Eye & contact lens.
[86] R. Mohan,et al. Decorin transfection suppresses profibrogenic genes and myofibroblast formation in human corneal fibroblasts. , 2010, Experimental eye research.
[87] S. Wilson,et al. Monocyte development inhibitor PRM-151 decreases corneal myofibroblast generation in rabbits. , 2011, Experimental eye research.
[88] D. Sheppard,et al. Cross talk among TGF-β signaling pathways, integrins, and the extracellular matrix. , 2011, Cold Spring Harbor perspectives in biology.
[89] A. Hutcheon,et al. Localization of thrombospondin-1 and myofibroblasts during corneal wound repair. , 2011, Experimental eye research.
[90] J. Tovey,et al. Significant inhibition of corneal scarring in vivo with tissue-selective, targeted AAV5 decorin gene therapy. , 2011, Investigative ophthalmology & visual science.
[91] S. Wilson,et al. Effect of TGFβ and PDGF-B blockade on corneal myofibroblast development in mice. , 2011, Experimental eye research.
[92] A. Tandon,et al. Decorin biology, expression, function and therapy in the cornea. , 2011, Current molecular medicine.
[93] D. Brenner,et al. Migration of fibrocytes in fibrogenic liver injury. , 2011, The American journal of pathology.
[94] V. Vasiliou,et al. Myofibroblast differentiation modulates keratocyte crystallin protein expression, concentration, and cellular light scattering. , 2012, Investigative ophthalmology & visual science.
[95] S. Wilson. Corneal myofibroblast biology and pathobiology: generation, persistence, and transparency. , 2012, Experimental eye research.
[96] S. Wilson,et al. Stromal fibroblast-bone marrow-derived cell interactions: implications for myofibroblast development in the cornea. , 2012, Experimental eye research.
[97] C. Huisingh,et al. Keratocyte density 3 months, 15 months, and 3 years after corneal surface ablation with mitomycin C. , 2012, American journal of ophthalmology.
[98] M. Netto,et al. Mitomycin C: Biological Effects and Use in Refractive Surgery , 2012, Cornea.
[99] D. Rifkin,et al. Matrix control of transforming growth factor-β function. , 2012, Journal of biochemistry.
[100] A. Grobbelaar,et al. The role of the TGF-β family in wound healing, burns and scarring: a review. , 2012, International journal of burns and trauma.
[101] A. Torricelli,et al. Transmission electron microscopy analysis of epithelial basement membrane repair in rabbit corneas with haze. , 2013, Investigative ophthalmology & visual science.
[102] A. Torricelli,et al. The corneal epithelial basement membrane: structure, function, and disease. , 2013, Investigative ophthalmology & visual science.
[103] Lin Zhao,et al. Silencing of Fanconi Anemia Complementation Group F Exhibits Potent Chemosensitization of Mitomycin C Activity in Breast Cancer Cells , 2013, Journal of breast cancer.
[104] G. M. Di Guglielmo,et al. Dynamics of Transforming Growth Factor Beta Signaling in Wound Healing and Scarring. , 2013, Advances in wound care.
[105] V. Singh,et al. Transforming growth factor β and platelet-derived growth factor modulation of myofibroblast development from corneal fibroblasts in vitro. , 2014, Experimental eye research.
[106] V. Trinkaus-Randall,et al. Wounding the cornea to learn how it heals. , 2014, Experimental eye research.
[107] A. Hutcheon,et al. Reversal of fibrosis by TGF-β3 in a 3D in vitro model. , 2014, Experimental eye research.
[108] Steven E. Wilson,et al. TGFβ and PDGF-B signaling blockade inhibits myofibroblast development from both bone marrow-derived and keratocyte-derived precursor cells in vivo. , 2014, Experimental eye research.