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Ophthalmic drug delivery depends on corneal diffusion and is limited by tear output and drainage. The drug's physicochemical properties also play an important role. Most ophthalmic drugs, like pilocarpine and atropine, are weak bases. They are formulated at an acidic pH to enhance stability. This increases their ionization, impacting corneal penetration.
Additionally, drugs with short half-lives require frequent administration. This increases the risk of irritation and systemic effects.
The effectiveness of a drug can be enhanced by prolonging corneal contact, achieved through viscous formulations like suspensions and ointments. However, these do not provide controlled delivery.
Ocular inserts or ocuserts deliver drugs like pilocarpine at a constant rate for glaucoma treatment.
These thin, flexible wafers contain a drug reservoir core surrounded by ethylene-vinyl acetate membranes that regulate the drug release rate.
Inserted in the lower fornix conjunctiva, they release drugs for up to 7 days, replacing multiple daily doses.
Ophthalmic drug delivery faces major limitations due to poor absorption across the corneal membrane. This process is primarily driven by diffusion and…
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