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High-precision piezo-ejection Ocular microdosing: Phase II Study on Local and Systemic Effects of Topical Phenylephrine
Author(s) -
Tsontcho Ianchulev,
Robert N. Weinreb,
James C. Tsai,
Shan C. Lin,
Louis R. Pasquale
Publication year - 2017
Publication title -
therapeutic delivery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.619
H-Index - 46
eISSN - 2041-6008
pISSN - 2041-5990
DOI - 10.4155/tde-2017-0095
Subject(s) - phenylephrine , medicine , pharmacology , phase (matter) , chemistry , blood pressure , organic chemistry
Aim: Conventional eyedropper-delivered volumes (25–50 µl) exceed the eye's usual tear-film volume (7 µl) and precorneal reservoir capacity, risking overflow and ocular/systemic complications. Piezoelectric high-precision microdosing may circumvent these limitations. Results & methodology: In this masked, nonrandomized, cross-over study, subjects (n = 12) underwent pupil dilation with topical phenylephrine (PE) administered by 32-µl eyedropper (2.5% or 10% formulation) and 8-µl electronic microdosing (10% formulation). Microdosing with PE-10% achieved comparable peak dilation as 10% eyedropper-delivery and superior dilation to 2.5% eyedropper-delivery (p = 0.009) at 75 min. Microdosing significantly reduced 20-min plasma PE levels versus PE10% eyedropper; neither treatment altered heart rate/blood pressure. Eye irritation occurred significantly less frequently with microdosing than PE10% eyedrops. Conclusion: Piezo-ejection PE microdosing achieves comparable biological effect as eyedropper dosing; reduced systemic absorption may decrease risk of systemic side effects.

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