Laser‐Responsive Shape Memory Device to Program the Stepwise Control of Intraocular Pressure in Glaucoma

Author:

Lee Kyubae1ORCID,Choi Wungrak2ORCID,Kim Si Yeong1ORCID,Lee Eon‐Bee3ORCID,Oh Won Take1,Park Jeongeun1,Lee Chan Hee1,Lee Jihei Sara2,Bae Hyoung Won2,Jang Dong‐Su4,Lee Kang Suk15,Yi Se Won15,Kang Mi‐Lan15,Kim Chan Yun2ORCID,Sung Hak‐Joon15ORCID

Affiliation:

1. Department of Medical Engineering Yonsei University College of Medicine 50–1 Yonsei‐ro Seodaemun‐gu Seoul 03722 Republic of Korea

2. Department of Ophthalmology Institute of Vision Research Yonsei University College of Medicine 50–1 Yonsei‐ro Seodaemun‐gu Seoul 03722 Republic of Korea

3. Laboratory of Veterinary Pharmacokinetics and Pharmacodynamics College of Veterinary Medicine Kyungpook National University Daegu 41566 Republic of Korea

4. Office of Research Affairs Yonsei University College of Medicine 50–1 Yonsei‐ro Seodaemun‐gu Seoul 03722 Republic of Korea

5. TMD LAB Co., Ltd 6th Floor, 31, Gwangnaru‐ro 8‐gil Seongdong‐gu Seoul 04799 Republic of Korea

Abstract

AbstractThere is an unmet need in the glaucoma clinic to control changes in the intraocular pressure (IOP), i.e., patient‐specific hypotony and tissue fibrosis‐mediated ocular hypertension, owing to the fixed tube diameter of the glaucoma drainage device. As a potential solution, the tube diameter can be adjusted, depending on the IOP, by shape memory polymer (SMP) and clinical laser systems, which can control the energy level, focus, and frequency by minimizing untargeted influences. To develop a translatable device, a laser‐responsive SMP with two additional elements: i) a tube with an intimal gel coating to release 5‐fluorouracil as an anti‐fibrotic drug and ii) a safety lock ring to block late hypotony in special cases is employed. When the SMP tube is inserted into a silicone tube and wrapped externally by the ring, intimal gel degradation and argon laser‐triggered diameter increase enable a three‐step IOP control. Sustained drug release of the intimal gel suppresses tissue fibrosis, and the ring prevents late hypotony by externally squeezing the silicone tube. The advanced design and functions are validated using computational in vitro and rabbit glaucoma models by determining clinic‐friendly argon laser parameters.

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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