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Results 1 to 25 of 100

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Solid lipid nanoparticles prepared by coacervation method as vehicles for ocular cyclosporineBATTAGLIA, L; D'ADDINO, I; PEIRA, E et al.Journal of drug delivery science and technology. 2012, Vol 22, Num 2, pp 125-130, issn 1773-2247, 6 p.Article

Nanomaterials for Ocular Drug DeliverySHENGYAN LIU; JONES, Lyndon; GU, Frank X et al.Macromolecular bioscience (Print). 2012, Vol 12, Num 5, pp 608-620, issn 1616-5187, 13 p.Article

Emulsions and microemulsions for ocular drug deliveryPENG, C. C; BENGANI, L. C; JUNG, H. J et al.Journal of drug delivery science and technology. 2011, Vol 21, Num 1, pp 111-121, issn 1773-2247, 11 p.Article

Spanlastics—A novel nanovesicular carrier system for ocular deliveryKAKKAR, Shilpa; KAUR, Indu Pal.International journal of pharmaceutics (Print). 2011, Vol 413, Num 1-2, pp 202-210, issn 0378-5173, 9 p.Article

Recent Perspectives in Ocular Drug Delivery : Role of transporters in ocular drug delivery systemGAUDANA, Ripal; JWALA, J; BODDU, Sai H. S et al.Pharmaceutical research. 2009, Vol 26, Num 5, pp 1197-1216, issn 0724-8741, 20 p.Article

Polymeric nanoparticulate system: A potential approach for ocular drug deliveryNAGARWAL, Ramesh C; KANT, Shri; SINGH, P. N et al.Journal of controlled release. 2009, Vol 136, Num 1, pp 2-13, issn 0168-3659, 12 p.Article

Eudragit RL100 based microspheres for ocular administration of azelastine hydrochlorideSHINDE, Ujwala A; SHETE, Jaykumar N; NAIR, Hema A et al.Journal of microencapsulation. 2012, Vol 29, Num 6, pp 511-519, issn 0265-2048, 9 p.Article

Comparison of ion-activated in situ gelling systems for ocular drug delivery. Part 1: Physicochemical characterisation and in vitro releaseRUPENTHAL, Ilva D; GREEN, Colin R; ALANY, Raid G et al.International journal of pharmaceutics (Print). 2011, Vol 411, Num 1-2, pp 69-77, issn 0378-5173, 9 p.Article

Double Cross-linked Chitosan-Gelatin Particulate Systems for Ophthalmic ApplicationsPEPTU, C. A; BUHUS, G; POPA, Marcel et al.Journal of bioactive and compatible polymers. 2010, Vol 25, Num 1, pp 98-116, issn 0883-9115, 19 p.Article

Filter-cultured ARPE-19 cells as outer blood-retinal barrier modelMANNERMAA, Eliisa; REINISALO, Mika; RANTA, Veli-Pekka et al.European journal of pharmaceutical sciences. 2010, Vol 40, Num 4, pp 289-296, issn 0928-0987, 8 p.Article

An efficient ternary complex of acetazolamide with HP-β-CD and TEA for topical ocular administrationPALMA, Santiago D; TARTARA, Luis I; QUINTEROS, Daniela et al.Journal of controlled release. 2009, Vol 138, Num 1, pp 24-31, issn 0168-3659, 8 p.Article

Design and evaluation of novel fast forming pilocarpine-loaded ocular hydrogels for sustained pharmacological responseANUMOLU, Sivanaga S; SINGH, Yashveer; DAYUAN GAO et al.Journal of controlled release. 2009, Vol 137, Num 2, pp 152-159, issn 0168-3659, 8 p.Article

A Review of the Application of Lipid-Based Systems in Systemic, Dermal/ Transdermal, and Ocular Drug DeliveryGERSHKOVICH, Pavel; WASAN, Kishor M; BARTA, Cheri A et al.Critical reviews in therapeutic drug carrier systems. 2008, Vol 25, Num 6, pp 545-584, issn 0743-4863, 40 p.Article

Preparation and Evaluation of Piroxicam-HPMCAS Solid Dispersions for Ocular UseJACHOWICZ, Renata; CZECH, Anna.Pharmaceutical development and technology. 2008, Vol 13, Num 6, pp 495-504, issn 1083-7450, 10 p.Article

Synthesis and Characterization of Cyclodextrin-containing Hydrogel for Ophthalmic Drugs DeliveryXIAOHONG HU; JIE QIU; HUAPING TAN et al.Journal of macromolecular science. Pure and applied chemistry. 2013, Vol 50, Num 7-9, pp 983-990, issn 1060-1325, 8 p.Article

Novel Surface-Modified Nanostructured Lipid Carriers with Partially Deacetylated Water-Soluble Chitosan for Efficient Ocular DeliveryBAOCHENG TIAN; QIUHUA LUO; SHUANGSHUANG SONG et al.Journal of pharmaceutical sciences. 2012, Vol 101, Num 3, pp 1040-1049, issn 0022-3549, 10 p.Article

Microemulsion for ocular delivery: ocular irritancy test and in vivo studies of anti-inflammatory actionHABIB, F; EL-MAHDY, M; ABDEL-HAFEZ, A et al.Journal of drug delivery science and technology. 2012, Vol 22, Num 6, pp 541-544, issn 1773-2247, 4 p.Article

Metabolism of Ophthalmic Timolol: New Aspects of an Old DrugVOLOTINEN, Marjo; HAKKOLA, Jukka; PELKONEN, Olavi et al.Basic & clinical pharmacology & toxicology (Print). 2011, Vol 108, Num 5, pp 297-303, issn 1742-7835, 7 p.Article

Recent advances in confocal microscopy for studying drug delivery to the eye: Concepts and pharmaceutical applicationsFURRER, Pascal; GURNY, Robert.European journal of pharmaceutics and biopharmaceutics. 2010, Vol 74, Num 1, pp 33-40, issn 0939-6411, 8 p.Article

Permeability and anticataract effects of a topical ocular drug delivery system of disulfiramWANG, S. L; JIANG, T. Y; SUN, C. S et al.Journal of drug delivery science and technology. 2008, Vol 18, Num 4, pp 285-291, 7 p.Article

PLGA Nanospheres for the Ocular Delivery of Flurbiprofen : Drug Release and InteractionsVEGA, E; GAMISANS, F; GARCIA, M. L et al.Journal of pharmaceutical sciences. 2008, Vol 97, Num 12, pp 5306-5317, issn 0022-3549, 12 p.Article

Capacity and tolerance of a new device for ocular drug deliveryPIJLS, Rachel T; CRUYSBERG, Lars P. J; NUIJTS, Rudy M. M. A et al.International journal of pharmaceutics. 2007, Vol 341, Num 1-2, pp 152-161, issn 0378-5173, 10 p.Article

Inhibition of endotoxin-induced uveitis by methylprednisolone acetate nanosuspension in rabbitsADIBKIA, Khosro; OMIDI, Yadollah; SIAHI, Mohammad R et al.Journal of ocular pharmacology and therapeutics. 2007, Vol 23, Num 5, pp 421-432, issn 1080-7683, 12 p.Article

Sustained-release ophthalmic drug delivery systems for treatment of macular disorders : Present and future applicationsBOOTH, Blake A; DENHAM, Lori Vidal; BOUHANIK, Saadallah et al.Drugs & aging. 2007, Vol 24, Num 7, pp 581-602, issn 1170-229X, 22 p.Article

Chitosan and its derivatives as intraocular penetration enhancersZAMBITO, Y; DI COLO, G.Journal of drug delivery science and technology. 2010, Vol 20, Num 1, pp 45-52, issn 1773-2247, 8 p.Article

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