Culture model of human corneal epithelium for prediction of ocular drug absorption.
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A. Urtti | E. Toropainen | A. Urtti | V. Ranta | P. Suhonen | E Toropainen | V P Ranta | A Talvitie | P Suhonen | A Urtti | A. Talvitie | Elisa Toropainen
[1] J. Zieske,et al. Basement membrane assembly and differentiation of cultured corneal cells: importance of culture environment and endothelial cell interaction. , 1994, Experimental cell research.
[2] M. Prausnitz,et al. Permeability of cornea, sclera, and conjunctiva: a literature analysis for drug delivery to the eye. , 1998, Journal of pharmaceutical sciences.
[3] A. Clark,et al. Age-related permeability changes in rabbit corneas. , 1999, Journal of ocular pharmacology and therapeutics : the official journal of the Association for Ocular Pharmacology and Therapeutics.
[4] J. Robinson,et al. Pharmacokinetics of topically applied pilocarpine in the albino rabbit eye. , 1979, Journal of pharmaceutical sciences.
[5] T. F. Patton,et al. Importance of the noncorneal absorption route in topical ophthalmic drug delivery. , 1985, Investigative ophthalmology & visual science.
[6] J. Robinson,et al. Mechanistic studies on transcorneal permeation of pilocarpine. , 1976, Journal of pharmaceutical sciences.
[7] S. Klyce,et al. Site and mode of adrenaline action on chloride transport across the rabbit corneal epithelium. , 1977, The Journal of physiology.
[8] A. Urtti,et al. Enzymatic and permeation barrier of [D-Ala(2)]-Met-enkephalinamide in the anterior membranes of the albino rabbit eye. , 2000, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[9] W. Kuri-Harcuch,et al. Cultivation of rabbit corneal epithelial cells in serum-free medium. , 1997, Investigative ophthalmology & visual science.
[10] T. Maren,et al. Permeability of human cornea and sclera to sulfonamide carbonic anhydrase inhibitors. , 1988, Archives of ophthalmology.
[11] Y. Kawashima,et al. Beta adrenergic antagonist permeation across cultured rabbit corneal epithelial cells grown on permeable supports. , 1998, Current eye research.
[12] S. Klyce,et al. Transport processes across the rabbit corneal epithelium: a review. , 1985, Current eye research.
[13] F. Castro‐Muñozledo,et al. Development of a spontaneous permanent cell line of rabbit corneal epithelial cells that undergoes sequential stages of differentiation in cell culture. , 1994, Journal of cell science.
[14] T. Nakai,et al. Evaluation of permeability enhancement of hydrophilic compounds and macromolecular compounds by bile salts through rabbit corneas in‐vitro , 1987, The Journal of pharmacy and pharmacology.
[15] D. Maurice,et al. The rate of diffusion of fluorophores through the corneal epithelium and stroma. , 1987, Experimental eye research.
[16] R. Schoenwald,et al. Relationship between steroid permeability across excised rabbit cornea and octanol-water partition coefficients. , 1978, Journal of pharmaceutical sciences.
[17] A. Urtti,et al. Different effects of pH on the permeation of pilocarpine and pilocarpine prodrugs across the isolated rabbit cornea. , 1998, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[18] S. Tseng,et al. Serum differentially modulates the clonal growth and differentiation of cultured limbal and corneal epithelium. , 1993, Investigative ophthalmology & visual science.
[19] V. H. Lee,et al. Topical ocular drug delivery: recent developments and future challenges. , 1986, Journal of ocular pharmacology.
[20] K. Kontturi,et al. Characterization of paracellular and aqueous penetration routes in cornea, conjunctiva, and sclera. , 1997, Investigative ophthalmology & visual science.
[21] A. Urtii,et al. Animal pharmacokinetic studies , 1993 .
[22] C. Kahn,et al. Human corneal epithelial primary cultures and cell lines with extended life span: in vitro model for ocular studies. , 1993, Investigative ophthalmology & visual science.
[23] Kazuhito Yamada,et al. Characterization of cyclosporin A transport in cultured rabbit corneal epithelial cells: P-glycoprotein transport activity and binding to cyclophilin. , 1999, Investigative ophthalmology & visual science.
[24] M. Doane,et al. Penetration routes of topically applied eye medications. , 1978, American journal of ophthalmology.
[25] H. Edelhauser,et al. Evaluation of effects of a physiologic artificial tear on the corneal epithelial barrier: electrical resistance and carboxyfluorescein permeability. , 1994, Advances in experimental medicine and biology.
[26] K. Fukuda,et al. Differential distribution of subchains of the basement membrane components type IV collagen and laminin among the amniotic membrane, cornea, and conjunctiva. , 1999, Cornea.
[27] H. Sugihara,et al. Reconstruction of cornea in three-dimensional collagen gel matrix culture. , 1993, Investigative ophthalmology & visual science.
[28] J. Friend,et al. Collagen gel for ocular surface. , 1985, Investigative ophthalmology & visual science.
[29] L. Dipasquale,et al. Evaluation of a human corneal epithelial cell line as an in vitro model for assessing ocular irritation. , 1997, Fundamental and applied toxicology : official journal of the Society of Toxicology.
[30] J. Houseman,et al. Disposition of cyclophosphamide in the rabbit and human cornea. , 1982, Biopharmaceutics & drug disposition.
[31] J. McCulley,et al. Growing human corneal epithelium on collagen shield and subsequent transfer to denuded cornea in vitro. , 1991, Current eye research.
[32] Alexander A. Maximow,et al. A Textbook of Histology , 1935, The Indian Medical Gazette.
[33] H F Edelhauser,et al. Drug delivery for posterior segment eye disease. , 2000, Investigative ophthalmology & visual science.
[34] John W. Shell. Ophthalmic drug delivery systems , 1984 .
[35] R A Thoft,et al. Basement membrane synthesis by human corneal epithelial cells in vitro. , 1994, Investigative ophthalmology & visual science.
[36] M. Khan,et al. Permeability characteristics of novel mydriatic agents using an in vitro cell culture model that utilizes SIRC rabbit corneal cells. , 1999, Journal of pharmaceutical sciences.
[37] H. Handa,et al. An SV40-immortalized human corneal epithelial cell line and its characterization. , 1995, Investigative ophthalmology & visual science.
[38] R. Schoenwald,et al. Corneal penetration behavior of beta-blocking agents II: Assessment of barrier contributions. , 1983, Journal of pharmaceutical sciences.
[39] Thomas S. Leeson,et al. Textbook of Histology , 1985 .