Application of iontophoresis in ophthalmic practice: an innovative strategy to deliver drugs into the eye.

Drug Deliv

Henan Eye Institute, Henan Eye Hospital, People's Hospital of Zhengzhou University, Henan University School of Medicine, Henan Provincial People's Hospital, Zhengzhou, China.

Published: December 2023

AI Article Synopsis

  • Effective drug delivery to eye lesions is a major challenge in ophthalmology due to the eye's unique anatomy, and emerging technologies like ocular iontophoresis may offer solutions by enhancing drug penetration with small electric currents.* -
  • Iontophoresis has been shown to successfully deliver various medications, including antibiotics and gene drugs, for treating conditions such as uveitis and cataracts.* -
  • The review will cover recent advancements in iontophoresis devices, including coulomb controlled iontophoresis, hydrogel ionic circuits, and the EyeGate II system, while also addressing potential toxic effects and factors influencing treatment efficacy.*

Article Abstract

Delivery of drugs to special locations of ocular lesions, while minimizing systemic and local toxic effects, is recognized as a critical challenge in the ophthalmic practice. The special anatomy and physiology barriers within the eyeball entail effective drug delivery systems. Emerging attempts in drug delivery has led to developments in ocular iontophoresis, which acts as a noninvasive technology to enhance drug penetration using a small electric current. This technique offers greater flexibility to deliver desired drug dose in a controlled and tolerable manner. In previous studies, this technique has been testified to deliver antibiotics, corticoid, proteins and other gene drugs into the eye with the potency of treating or alleviating diverse ophthalmological diseases including uveitis, cataract, retinoblastoma, herpes simplex and cytomegalovirus retinitis (CMVR), etc. In this review, we will introduce the recent developments in iontophoresis device. We also summarize the latest progress in coulomb controlled iontophoresis (CCI), hydrogel ionic circuit (HIC) and EyeGate II delivery system (EGDS), as well as overview the potential toxicity of iontophoresis. We will discuss these factors that affect the efficacy of iontophoresis experiments, and focus on the latest progress in its clinical application in the treatment of eye diseases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851230PMC
http://dx.doi.org/10.1080/10717544.2023.2165736DOI Listing

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