Microbubble-Assisted Ultrasound for Drug Delivery to the Retina in an Ex Vivo Eye Model

Publication date

2023-04-11

Authors

Rousou, CharisISNI 0000000492918475
van Kronenburg, NickyISNI 000000050777388X
Sonnen, Andreas F-P
van Dijk, Marijke
Moonen, Chrit
Storm, GerritISNI 0000000042534976
Mastrobattista, EnricoORCID 0000-0002-6745-2015ISNI 000000035187179X
Deckers, RoelISNI 0000000357092076

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Document Type

Article
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cc_by

Abstract

Drug delivery to the retina is one of the major challenges in ophthalmology due to the biological barriers that protect it from harmful substances in the body. Despite the advancement in ocular therapeutics, there are many unmet needs for the treatment of retinal diseases. Ultrasound combined with microbubbles (USMB) was proposed as a minimally invasive method for improving delivery of drugs in the retina from the blood circulation. This study aimed to investigate the applicability of USMB for the delivery of model drugs (molecular weight varying from 600 Da to 20 kDa) in the retina of ex vivo porcine eyes. A clinical ultrasound system, in combination with microbubbles approved for clinical ultrasound imaging, was used for the treatment. Intracellular accumulation of model drugs was observed in the cells lining blood vessels in the retina and choroid of eyes treated with USMB but not in eyes that received ultrasound only. Specifically, 25.6 ± 2.9% of cells had intracellular uptake at mechanical index (MI) 0.2 and 34.5 ± 6.0% at MI 0.4. Histological examination of retinal and choroid tissues revealed that at these USMB conditions, no irreversible alterations were induced at the USMB conditions used. These results indicate that USMB can be used as a minimally invasive targeted means to induce intracellular accumulation of drugs for the treatment of retinal diseases.

Keywords

ex vivo perfused eye, intracellular accumulation, microbubbles, retinal drug delivery, ultrasound, Pharmaceutical Science

Citation

Rousou, C, van Kronenburg, N, Sonnen, A F P, van Dijk, M, Moonen, C, Storm, G, Mastrobattista, E & Deckers, R 2023, 'Microbubble-Assisted Ultrasound for Drug Delivery to the Retina in an Ex Vivo Eye Model', Pharmaceutics, vol. 15, no. 4, 1220. https://doi.org/10.3390/pharmaceutics15041220