Pharmacodynamic profile of mydriatic agents delivered by ocular piezo-ejection microdosing compared with conventional eyedropper

Author:

Ianchulev Tsontcho1,Chayet Arturo2,Kahook Malik3,Packer Mark4,Pasquale Louis5,Weinreb Robert N6

Affiliation:

1. Department of Ophthalmology, University of California at San Francisco, 707 Oregon Ave, San Mateo, CA 94402, USA

2. CODET Vision Institute, Tijuana, Mexico

3. Department of Ophthalmology, University of Colorado, Aurora, CO, USA

4. Mark Packer MD Consulting, Boulder, CO, USA

5. Massachusetts Eye & Harvard University, Cambridge, MA, USA

6. Department of Ophthalmology, Hamilton Glaucoma Center & Shiley Eye Institute, University of California at San Diego, CA, USA

Abstract

Aim: Eyedroppers deliver medication volumes exceeding conjunctival absorptive capacity, causing spillage and risking ocular/systemic complications. We evaluated piezoelectric microdosing. Results/methodology: Subjects (n = 102) received precision microdroplet delivery of phenylephrine (2.5%) and tropicamide (1.0%): 1 × 1.5 μl, 1 × 6 μl or 2 × 3 μl of each (randomized 1:1:1), into one eye. Contralateral eyes received eyedropper doses of both drugs. Outcomes were pupil dilation (0–60 min) and patient satisfaction. Six-microliter microdosing achieved comparable, and 2 × 3 μl met/exceeded dilation speed and magnitude versus eyedropper. Separately, participants preferred piezoelectric saline self-delivery to eyedroppers, reporting better head-positioning comfort, reduced tearing/overflow and increased likelihood of adhering to ocular medication regimens. Conclusion: Piezoelectric microdosing achieves comparable effects as eyedroppers delivering 4–17-fold larger doses. Microdosing may enhance patient adherence to ocular medication regimens while minimizing side effects.

Publisher

Future Science Ltd

Subject

Pharmaceutical Science

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