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Once Daily Pregabalin Eye Drops for Management of Glaucoma
Mohamed Moustafa Ibrahim1,2, Doaa Nabih Maria1,2, Sanjay R Mishra3
1Department of Ophthalmology, Hamilton Eye Institute , University of Tennessee Health Science Center , Memphis , Tennessee 38163 , United States.
Abstract:
Elevated intraocular pressure (IOP) is the most significant risk factor contributing to visual field loss in glaucoma. Unfortunately, the deficiencies associated with current therapies have resulted in reduced efficacy, several daily dosings, and poor patient compliance. Previously, we identified the calcium voltage-gated channel auxiliary subunit alpha2delta 1 gene (Cacna2d1) as a modulator of IOP and demonstrated that pregabalin, a drug with high affinity and selectivity for CACNA2D1, lowered IOP in a dose-dependent manner. Unfortunately, IOP returned to baseline at 6 h after dosing. In the current study, we develop a once daily topical pregabalin-loaded multiple water-in-oil-in-water microemulsion formulation to improve drug efficacy. We characterize our formulations using multiple in vitro and in vivo evaluations. Our lead formulation provides continuous release of pregabalin for up to 24 h. Because of its miniscule droplet size (<20 nm), our microemulsion has a transparent appearance and should not blur vision. It is also stable at one month of storage at temperatures ranging from 5 to 40 °C. Our formulation is nontoxic, as illustrated by a cell toxicity study and slit-lamp biomicroscopic exams. CACNA2D1 is highly expressed in both the ciliary body and the trabecular meshwork, where it functions to modulate IOP. A single drop of our lead pregabalin formulation reduces IOP by greater than 40%, which does not return to baseline until >30 h post-application. Although there were no significant differences in the amplitude of IOP reduction between the formulations we tested, a significant difference was clearly observed in their duration of action. Our multilayered microemulsion is a promising carrier that sustains the release and prolongs the duration of action of pregabalin, a proposed glaucoma therapeutic.
Insights
A novel microemulsion formulation delivers pregabalin topically to reduce intraocular pressure (IOP) for glaucoma treatment. This formulation offers sustained drug release, significantly prolonging IOP reduction beyond 30 hours with a single application.
Area of Science:
- Ophthalmology
- Pharmaceutics
- Neuroscience
Background:
- Elevated intraocular pressure (IOP) is a primary risk factor for glaucoma and vision loss.
- Current glaucoma therapies have limitations including reduced efficacy, frequent dosing, and poor patient compliance.
- The calcium voltage-gated channel auxiliary subunit alpha2delta 1 gene (Cacna2d1) modulates IOP, and pregabalin targets this pathway.
Purpose of the Study:
- To develop a novel, once-daily topical pregabalin formulation for improved glaucoma treatment.
- To create a microemulsion system for sustained drug delivery and enhanced therapeutic efficacy.
- To evaluate the safety and efficacy of the pregabalin microemulsion in reducing IOP.
Main Methods:
- Development and characterization of a pregabalin-loaded multiple water-in-oil-in-water microemulsion.
- In vitro and in vivo studies to assess drug release kinetics, stability, and IOP-lowering effects.
- Cell toxicity assays and slit-lamp biomicroscopy to evaluate formulation safety.
Main Results:
- The lead microemulsion formulation demonstrated continuous pregabalin release for up to 24 hours.
- A single topical application of the pregabalin microemulsion reduced IOP by over 40% for more than 30 hours.
- The formulation exhibited a transparent appearance, stability at various temperatures, and was found to be non-toxic.
Conclusions:
- The multilayered microemulsion serves as a promising carrier for topical pregabalin delivery in glaucoma.
- This formulation significantly prolongs the duration of IOP reduction compared to conventional methods.
- The developed microemulsion offers a potential strategy for more effective and compliant glaucoma management.
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