review article | Q7318358 |
scholarly article | Q13442814 |
P356 | DOI | 10.1016/S1350-9462(98)00017-2 |
P698 | PubMed publication ID | 10192515 |
P2093 | author name string | Wilson SE | |
Liu JJ | |||
Mohan RR | |||
P2860 | cites work | Competence for collagenase gene expression by tissue fibroblasts requires activation of an interleukin 1 alpha autocrine loop | Q34076268 |
Epithelial injury induces keratocyte apoptosis: hypothesized role for the interleukin-1 system in the modulation of corneal tissue organization and wound healing | Q34395966 | ||
Herpes simplex virus type-1 infection of corneal epithelial cells induces apoptosis of the underlying keratocytes | Q34434506 | ||
Corneal healing following laser refractive keratectomy | Q35630678 | ||
Tear hepatocyte growth factor (HGF) availability increases markedly after excimer laser surface ablation. | Q36871642 | ||
A broad-spectrum human lung fibroblast-derived mitogen is a variant of hepatocyte growth factor | Q37370202 | ||
Evidence for the identity of human scatter factor and human hepatocyte growth factor | Q37574028 | ||
Fas Ligand-Induced Apoptosis as a Mechanism of Immune Privilege | Q63408406 | ||
Human keratinocyte growth factor activity on proliferation and differentiation of human keratinocytes: Differentiation response distinguishes KGF from EGF family | Q67666483 | ||
Marked stimulation of growth and motility of human keratinocytes by hepatocyte growth factor | Q67956730 | ||
Binding sites for human interleukin 1 alpha, gamma interferon and tumor necrosis factor on cultured fibroblasts of normal cornea and keratoconus | Q68005187 | ||
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 | Q71670769 | ||
Effect of epidermal growth factor, hepatocyte growth factor, and keratinocyte growth factor, on proliferation, motility and differentiation of human corneal epithelial cells | Q72113974 | ||
Glucocorticoid receptor and interleukin-1 receptor messenger RNA expression in corneal cells | Q72300431 | ||
Differential regulation of keratinocyte growth factor and hepatocyte growth factor/scatter factor by different cytokines in human corneal and limbal fibroblasts | Q73668869 | ||
Role of serum amyloid A as an intermediate in the IL-1 and PMA-stimulated signaling pathways regulating expression of rabbit fibroblast collagenase | Q74062879 | ||
Apoptosis in the cornea: further characterization of Fas/Fas ligand system | Q74177375 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 293-309 | |
P577 | publication date | 1999-05-01 | |
P1433 | published in | Progress in Retinal and Eye Research | Q15760062 |
P1476 | title | Stromal-epithelial interactions in the cornea | |
P478 | volume | 18 |
Q35863488 | A cell-based screening assay to identify pharmaceutical compounds that enhance the regenerative quality of corneal repair |
Q38075613 | A new perspective on the pathobiology of keratoconus: interplay of stromal wound healing and reactive species-associated processes. |
Q61796462 | Aberrant expression of a stabilized β-catenin mutant in keratocytes inhibits mouse corneal epithelial stratification |
Q46432874 | Absence of IL-6 prevents corneal wound healing after deep excimer laser ablation in vivo |
Q39458443 | Alternatives to In Vivo Draize Rabbit Eye and Skin Irritation Tests with a Focus on 3D Reconstructed Human Cornea-Like Epithelium and Epidermis Models |
Q33185810 | Analysis of the keratocyte apoptosis, keratocyte proliferation, and myofibroblast transformation responses after photorefractive keratectomy and laser in situ keratomileusis |
Q30887154 | Apoptosis, necrosis, proliferation, and myofibroblast generation in the stroma following LASIK and PRK. |
Q58722135 | Assessment of Corneal Stromal Remodeling and Regeneration after Photorefractive Keratectomy |
Q41601577 | Association of -31T>C and -511 C>T polymorphisms in the interleukin 1 beta (IL1B) promoter in Korean keratoconus patients |
Q30877898 | Atopy: a patient-specific risk factor for diffuse lamellar keratitis |
Q33244386 | Biomechanics and wound healing in the cornea |
Q58552821 | Cellular therapy of the corneal stroma: a new type of corneal surgery for keratoconus and corneal dystrophies |
Q33941957 | Changes in tear protein profile in keratoconus disease |
Q39660073 | Connective Tissue Growth Factor Cooperates with Fibronectin in Enhancing Attachment and Migration of Corneal Epithelial Cells |
Q64080430 | Construction of a full-thickness human corneal substitute from anterior acellular porcine corneal matrix and human corneal cells |
Q39872737 | Control of scar tissue formation in the cornea: strategies in clinical and corneal tissue engineering |
Q41778359 | Corneal Decellularization: A Method of Recycling Unsuitable Donor Tissue for Clinical Translation? |
Q35687995 | Corneal Regeneration by Deep Anterior Lamellar Keratoplasty (DALK) Using Decellularized Corneal Matrix |
Q35216493 | Corneal cells: chatty in development, homeostasis, wound healing, and disease |
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Q37270013 | Corneal myofibroblast viability: opposing effects of IL-1 and TGF beta1 |
Q41886504 | Corneal stromal cell plasticity: in vitro regulation of cell phenotype through cell-cell interactions in a three-dimensional model. |
Q26771220 | Corneal surgery in keratoconus: which type, which technique, which outcomes? |
Q30935958 | Corneal wound healing after excimer laser keratectomy |
Q31048579 | Corneal wound healing after photorefractive keratectomy: a 3-year confocal microscopy study |
Q35916999 | Decellularized human cornea for reconstructing the corneal epithelium and anterior stroma. |
Q54714567 | Deficient repair regulatory response to injury in keratoconic stromal cells. |
Q41379710 | Development of a rabbit corneal equivalent using an acellular corneal matrix of a porcine substrate |
Q92341731 | Diabetes inhibits corneal epithelial cell migration and tight junction formation in mice and human via increasing ROS and impairing Akt signaling |
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Q38292470 | Differential expression analysis by gene array of cell cycle modulators in human corneal epithelial cells stimulated with epidermal growth factor (EGF), hepatocyte growth factor (HGF), or keratinocyte growth factor (KGF). |
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Q37276073 | Dynamics of the expression of intermediate filaments vimentin and desmin during myofibroblast differentiation after corneal injury |
Q52173934 | Ectopic gland induction by lens-specific expression of keratinocyte growth factor (FGF-7) in transgenic mice. |
Q41519876 | Effect of Keratocyte Supernatant on Epithelial Cell Migration and Proliferation After Corneal Crosslinking (CXL). |
Q78880891 | Effect of ectopic epithelial tissue within the stroma on keratocyte apoptosis, mitosis, and myofibroblast transformation |
Q39242998 | Effect of hyperosmolality on beta-defensin gene expression by human corneal epithelial cells |
Q33732356 | Effects of femtosecond laser-assisted multilayer intrastromal ablation in the midperipheral cornea |
Q39174572 | Engineering epithelial-stromal interactions in vitro for toxicology assessment |
Q35588817 | Epithelial basement membrane proteins perlecan and nidogen-2 are up-regulated in stromal cells after epithelial injury in human corneas |
Q24299083 | Epithelial-derived TGF-beta2 modulates basal and wound-healing subepithelial matrix homeostasis |
Q37215087 | Expression of interleukin-1 receptor antagonist in human cornea |
Q33301372 | Femtosecond laser and microkeratome corneal flaps: comparison of stromal wound healing and inflammation. |
Q51626958 | Gene Expression Profile of Extracellular Matrix and Adhesion Molecules in the Human Normal Corneal Stroma. |
Q45858525 | Gene transfer into rabbit keratocytes using AAV and lipid-mediated plasmid DNA vectors with a lamellar flap for stromal access. |
Q38118786 | Genomics of corneal wound healing: a review of the literature |
Q37592665 | Growth factors and corneal epithelial wound healing |
Q31075797 | Growth factors in corneal wound healing following refractive surgery: A review |
Q73072251 | Hepatocyte growth factor/scatter factor in the eye |
Q35588939 | Human growth hormone promotes corneal epithelial cell migration in vitro |
Q48556537 | Immune privilege and immunogenicity reside among different layers of the mouse cornea. 2000. |
Q87442235 | Immunohistochemical expression of Fas ligand (FasL) and neprilysin (neutral endopeptidase/CD10) in keratoconus |
Q28818265 | In vivo confocal microscopy of early corneal epithelial recovery in patients with chemical injury |
Q35645077 | Inhibition by female sex hormones of collagen degradation by corneal fibroblasts. |
Q34129453 | Interleukin-1 receptor role in the viability of corneal myofibroblasts |
Q73670222 | Involvement of macrophage chemotactic protein-1 and interleukin-1beta during inflammatory but not basic fibroblast growth factor-dependent neovascularization in the mouse cornea |
Q34485501 | Is the corneal degradation in keratoconus caused by matrix-metalloproteinases? |
Q46731953 | Isolation and cultivation of canine corneal cells for in vitro studies on the anti-inflammatory effects of dexamethasone |
Q44541959 | Isolation of a putative keratocyte activating factor from the corneal stroma |
Q43598353 | Keratinocyte growth factor expression in human gingival fibroblasts and stimulation of in vitro gene expression by retinoic acid |
Q34683452 | Keratocyte apoptosis and failure of corneal allografts |
Q30843917 | Keratocyte density in vivo after photorefractive keratectomy in humans. |
Q30752460 | Laser epithelial keratomileusis (LASEK) for treatment of myopia up to -6.0 D. Results from 108 eyes after 12 months |
Q30962244 | Laser in situ keratomileusis flap margin: wound healing and complications imaged by in vivo confocal microscopy |
Q34664190 | Limbal fibroblast conditioned media: a non-invasive treatment for limbal stem cell deficiency. |
Q24544274 | Long-term corneal keratoctye deficits after photorefractive keratectomy and laser in situ keratomileusis |
Q64263255 | MG53 promotes corneal wound healing and mitigates fibrotic remodeling in rodents |
Q35739730 | Morphological changes in keratoconus: pathology or pathogenesis. |
Q40098698 | MyD88 contribution to ocular surface homeostasis |
Q27022253 | Nanomedicine approaches for corneal diseases |
Q30828733 | Nerve growth factor promotes corneal epithelial migration by enhancing expression of matrix metalloprotease-9. |
Q34022797 | Noninvasive intratissue refractive index shaping (IRIS) of the cornea with blue femtosecond laser light |
Q27021208 | Novel Therapy to Treat Corneal Epithelial Defects: A Hypothesis with Growth Hormone |
Q38544776 | Ocular Surface as Barrier of Innate Immunity |
Q35932186 | Ocular and neuronal cell apoptosis during HSV-1 infection: a review |
Q79387445 | Ocular rosacea |
Q34213275 | Opioid growth factor modulation of corneal epithelium: uppers and downers |
Q43665401 | Pathology of ocular irritation with bleaching agents in the rabbit low-volume eye test |
Q33285926 | Photorefractive keratectomy in the cat eye: biological and optical outcomes |
Q28081311 | Progress in corneal wound healing |
Q51615434 | Reprint of "Dynamics of the expression of intermediate filaments vimentin and desmin during myofibroblast differentiation after corneal injury". |
Q34787105 | Resolvin E1 analog RX-10045 0.1% reduces corneal stromal haze in rabbits when applied topically after PRK. |
Q33938175 | Responses of cultured human keratocytes and myofibroblasts to ethyl pyruvate: a microarray analysis of gene expression |
Q34796368 | Reversible femtosecond laser-assisted myopia correction: a non-human primate study of lenticule re-implantation after refractive lenticule extraction. |
Q38162434 | Review: mesenchymal stem cells and corneal reconstruction |
Q36000612 | Role of 5'TG3'-interacting factors (TGIFs) in Vorinostat (HDAC inhibitor)-mediated Corneal Fibrosis Inhibition |
Q55318093 | Role of Bone Morphogenetic Protein 7 (BMP7) in the Modulation of Corneal Stromal and Epithelial Cell Functions. |
Q54984579 | Role of Corneal Stromal Cells on Epithelial Cell Function during Wound Healing. |
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Q89940616 | Sphere-forming corneal cells repopulate dystrophic keratoconic stroma: Implications for potential therapy |
Q34187305 | Stromal interleukin-1 expression in the cornea after haze-associated injury. |
Q42144335 | Syndecan-1 regulates cell migration and fibronectin fibril assembly |
Q36337915 | TGFbeta pathobiology in the eye. |
Q47098331 | Temporal and spatial analysis of stromal cell and extracellular matrix patterning following lamellar keratectomy |
Q36967916 | The acute phase of inflammatory response involved in the wound-healing process after excimer laser treatment. |
Q37208901 | The corneal epithelial basement membrane: structure, function, and disease. |
Q36382242 | The corneal fibrosis response to epithelial-stromal injury |
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Q50221142 | The expression of matrix metalloproteinases and their inhibitors in corneal fibroblasts by alarmins from necrotic corneal epithelial cells |
Q40904221 | The integrin needle in the stromal haystack: emerging role in corneal physiology and pathology |
Q41097866 | Three-dimensional cell culture environment promotes partial recovery of the native corneal keratocyte phenotype from a subcultured population |
Q53298732 | Tissue reaction after intrastromal corneal ring implantation in an experimental animal model. |
Q37221252 | Topical interleukin-1 receptor antagonist inhibits inflammatory cell infiltration into the cornea |
Q34935981 | Topical rosiglitazone is an effective anti-scarring agent in the cornea. |
Q34733480 | Transmission electron microscopy analysis of epithelial basement membrane repair in rabbit corneas with haze. |
Q51190503 | Transplantation of reconstructed corneal layer composed of corneal epithelium and fibroblasts on a lyophilized amniotic membrane to severely alkali-burned cornea. |
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Q60950077 | Wound-Healing Markers Revealed by Proximity Extension Assay in Tears of Patients following Glaucoma Surgery |
Q80587495 | [In vivo confocal corneal microscopy after keratoplasty] |
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