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Focused Ultrasound as a Novel Non-Invasive Method for the Delivery of Gold Nanoparticles to Retinal Ganglion Cells

Title
Focused Ultrasound as a Novel Non-Invasive Method for the Delivery of Gold Nanoparticles to Retinal Ganglion Cells
Authors
ParkYounghoonShinJaewooJunwonKimSeulbiJi HunJaeheungChang SeokChangJin WooSchuurmansCarolAubertIsabelleWon SeokEomKyungsik
Ewha Authors
박지훈
SCOPUS Author ID
박지훈scopus
Issue Date
2024
Journal Title
Translational Vision Science and Technology
ISSN
2164-2591JCR Link
Citation
Translational Vision Science and Technology vol. 13, no. 5
Keywords
blood–retinal barrierdrug deliveryfocused ultrasoundgold nanoparticleslabel-free imaging
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Purpose: The blood–retinal barrier (BRB) restricts the delivery of intravenous therapeutics to the retina, necessitating innovative approaches for treating retinal disorders. This study sought to explore the potential of focused ultrasound (FUS) to non-invasively deliver intravenously administered gold nanoparticles (AuNPs) across the BRB. FUS–BRB modulation can offer a novel method for targeted retinal therapy. Methods: AuNPs of different sizes and shapes were characterized, and FUS parameters were optimized to permeate the BRB without causing retinal damage in a rodent model. The delivery of 70-kDa dextran and AuNPs to the retinal ganglion cell (RGC) layer was visualized using confocal and two-photon microscopy, respectively. Histological and statistical analyses were conducted to assess the effectiveness and safety of the procedure. Results: FUS–BRB modulation resulted in the delivery of dextran and AuNPs to the RGC and inner nuclear layer. Smaller AuNPs reached the retinal layers to a greater extent than larger ones. The delivery of dextran and AuNPs across the BRB with FUS was achieved without significant retinal damage. Conclusions: This investigation provides the first evidence, to our knowledge, of FUS-mediated AuNP delivery across the BRB, establishing a foundation for a targeted and non-invasive approach to retinal treatment. The results contribute to developing promising non-invasive therapeutic strategies in ophthalmology to treat retinal diseases. Translational Relevance: Modifying the BRB with ultrasound offers a targeted and non-invasive delivery strategy of intravenous therapeutics to the retina. © 2024 The Authors.
DOI
10.1167/tvst.13.5.5
Appears in Collections:
사범대학 > 과학교육과 > Journal papers
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