Literature DB >> 23321274

Development of a novel bioerodible dexamethasone implant for uveitis and postoperative cataract inflammation.

Srinivas Rao Chennamaneni1, Christina Mamalis, Bonnie Archer, Zack Oakey, Balamurali K Ambati.   

Abstract

Delivery of anti-inflammatory steroids concurrently to both anterior and posterior segments of the eye is a challenge. The anterior ocular structures limit topical delivery. Injection can be disproportionately and repeatedly invasive and selective for only one ocular hemisphere. We developed a novel implant that can compensate for the limited conveyance of topical medicine and reduce the repetitive invasiveness of injection from the capsular bag allowing dexamethasone (DXM) delivery to both the anterior and posterior chambers. To establish proof of concept, microparticles were prepared with PLGA [poly(d,l-lactide-co-glycolide), 50:50, MW. 7000-17000], hydroxypropyl methyl cellulose (HPMC), and DXM by oil-in-water emulsion/solvent evaporation technique. Zeatsizer Nano and SEM (scanning electron microscopy) results showed microspheres in the range of 8±1µm. The target load of DXM in the microparticles was ~20.0% with a % recovery of 99.9% (w/w). Dose related pharmacokinetics with near zero order kinetics was observed for up to 6 weeks in rabbits with intracapsular bag implants. DXM flow was bidirectional from the endocapsular space and significant concentrations were found in the anterior and posterior chambers after up to 6 weeks. Whereas, with topical drops the exposure was minimal in all the ocular tissues with greater systemic exposure. Intraocular pressure was normal in all of the study groups; slit lamp biomicroscopy examinations revealed that no cells or fibrin formation in the anterior and posterior chamber with implants but flare, cells and fibrin was present in the topical drops group. Histological examination revealed normal tissues and no signs of inflammation in all the groups. The implant did not migrate to the center of the eye or obstruct the visual axis. We believe these findings demonstrate the feasibility of drug delivery from the capsular bag to the anterior and posterior segments effectively compared to topical alternatives.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2013        PMID: 23321274      PMCID: PMC3712833          DOI: 10.1016/j.jconrel.2013.01.007

Source DB:  PubMed          Journal:  J Control Release        ISSN: 0168-3659            Impact factor:   9.776


  31 in total

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2.  High concentration of dexamethasone in aqueous and vitreous after subconjunctival injection.

Authors:  O Weijtens; E J Feron; R C Schoemaker; A F Cohen; E G Lentjes; F P Romijn; J C van Meurs
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4.  Dexamethasone intravitreal implant in patients with macular edema related to branch or central retinal vein occlusion twelve-month study results.

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Journal:  Ophthalmology       Date:  2011-07-20       Impact factor: 12.079

5.  Intraocular pressure outcome of patients with fluocinolone acetonide intravitreal implant for noninfectious uveitis.

Authors:  Kathryn Bollinger; James Kim; Careen Y Lowder; Peter K Kaiser; Scott D Smith
Journal:  Ophthalmology       Date:  2011-06-08       Impact factor: 12.079

6.  Pharmacokinetics and pharmacodynamics of a sustained-release dexamethasone intravitreal implant.

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7.  Dexamethasone concentration in the subretinal fluid after a subconjunctival injection, a peribulbar injection, or an oral dose.

Authors:  O Weijtens; R C Schoemaker; E G Lentjes; F P Romijn; A F Cohen; J C van Meurs
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8.  NANOTECHNOLOGY IN THE TREATMENT AND DETECTION OF INTRAOCULAR CANCERS.

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9.  Intracameral dexamethasone reduces inflammation on the first postoperative day after cataract surgery in eyes with and without glaucoma.

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Journal:  Clin Ophthalmol       Date:  2009-06-02

10.  Cataract surgery in patients with history of uveitis.

Authors:  Ujwala Baheti; Sana S Siddique; C Stephen Foster
Journal:  Saudi J Ophthalmol       Date:  2012-01
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  11 in total

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Journal:  J Mater Sci Mater Med       Date:  2015-12-16       Impact factor: 3.896

2.  The role of Dexamethasone in clinical pharmaceutical treatment for patients with cataract surgery.

Authors:  Gaokun Zhang; Shuang Liu; Lieying Yang; Yanqing Li
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Review 3.  In vitro dissolution testing models of ocular implants for posterior segment drug delivery.

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4.  Pharmacokinetics and efficacy of Bioerodible Dexamethasone implant in Concanavalin A-induced uveitic cataract rabbit model.

Authors:  Srinivas Rao Chennamaneni; Austin Bohner; Ashlie Bernhisel; Balamurali K Ambati
Journal:  Pharm Res       Date:  2014-06-20       Impact factor: 4.200

Review 5.  The future of uveitis treatment.

Authors:  Phoebe Lin; Eric B Suhler; James T Rosenbaum
Journal:  Ophthalmology       Date:  2013-10-26       Impact factor: 12.079

6.  Topical Ocular Drug Delivery to the Back of the Eye by Mucus-Penetrating Particles.

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7.  Controllable continuous sub-tenon drug delivery of dexamethasone disodium phosphate to ocular posterior segment in rabbit.

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10.  Controlled Release of Dexamethasone From an Intravitreal Delivery System Using Porous Silicon Dioxide.

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Journal:  Invest Ophthalmol Vis Sci       Date:  2016-02       Impact factor: 4.799

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