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Citations to this article

Lymphatic regulator PROX1 determines Schlemm’s canal integrity and identity
Dae-Young Park, … , Young-Kwon Hong, Gou Young Koh
Dae-Young Park, … , Young-Kwon Hong, Gou Young Koh
Published July 25, 2014
Citation Information: J Clin Invest. 2014;124(9):3960-3974. https://doi.org/10.1172/JCI75392.
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Research Article Article has an altmetric score of 18

Lymphatic regulator PROX1 determines Schlemm’s canal integrity and identity

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Abstract

Schlemm’s canal (SC) is a specialized vascular structure in the eye that functions to drain aqueous humor from the intraocular chamber into systemic circulation. Dysfunction of SC has been proposed to underlie increased aqueous humor outflow (AHO) resistance, which leads to elevated ocular pressure, a factor for glaucoma development in humans. Here, using lymphatic and blood vasculature reporter mice, we determined that SC, which originates from blood vessels during the postnatal period, acquires lymphatic identity through upregulation of prospero homeobox protein 1 (PROX1), the master regulator of lymphatic development. SC expressed lymphatic valve markers FOXC2 and integrin α9 and exhibited continuous vascular endothelial–cadherin (VE-cadherin) junctions and basement membrane, similar to collecting lymphatics. SC notably lacked luminal valves and expression of the lymphatic endothelial cell markers podoplanin and lymphatic vessel endothelial hyaluronan receptor 1 (LYVE-1). Using an ocular puncture model, we determined that reduced AHO altered the fate of SC both during development and under pathologic conditions; however, alteration of VEGF-C/VEGFR3 signaling did not modulate SC integrity and identity. Intriguingly, PROX1 expression levels linearly correlated with SC functionality. For example, PROX1 expression was reduced or undetectable under pathogenic conditions and in deteriorated SCs. Collectively, our data indicate that PROX1 is an accurate and reliable biosensor of SC integrity and identity.

Authors

Dae-Young Park, Junyeop Lee, Intae Park, Dongwon Choi, Sunju Lee, Sukhyun Song, Yoonha Hwang, Ki Yong Hong, Yoshikazu Nakaoka, Taija Makinen, Pilhan Kim, Kari Alitalo, Young-Kwon Hong, Gou Young Koh

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2010 Total
Citations: 4 12 5 9 13 14 4 5 16 10 6 3 1 102
Citation information
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Citations to this article in year 2022 (9)

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Emerging roles of inflammation-mediated endothelial–mesenchymal transition in health and disease
Y Yoshimatsu, T Watabe
Inflammation and Regeneration 2022
Morphology of the Trabecular Meshwork and Schlemm's Canal in Posner-Schlossman Syndrome
X Yan, M Li, J Wang, H Zhang, X Zhou, Z Chen
Investigative ophthalmology & visual science 2022
Lymphatic Tissue and Organ Engineering for In Vitro Modeling and In Vivo Regeneration.
Kolarzyk AM, Wong G, Lee E
Cold Spring Harbor Perspectives in Medicine 2022
An analysis modality for vascular structures combining tissue-clearing technology and topological data analysis
Takahashi K, Abe K, Kubota SI, Fukatsu N, Morishita Y, Yoshimatsu Y, Hirakawa S, Kubota Y, Watabe T, Ehata S, Ueda HR, Shimamura T, Miyazono K
Nature Communications 2022
Genetic association of ANGPT2 with primary open-angle glaucoma
He JN, Ng TK, Lu SY, Tam PO, Chan PP, Tham CC, Pang CP, Chen LJ, Chu WK
Eye and Vision 2022
Cooperation of Angiopoietin-2 and Angiopoietin-4 in Schlemm's Canal Maintenance
Kapiainen E, Elamaa H, Miinalainen I, Izzi V, Eklund L
Investigative ophthalmology & visual science 2022
CRISPR-Cas9-mediated functional dissection of the foxc1 genomic region in zebrafish identifies critical conserved cis-regulatory elements.
Ferre-Fernández JJ, Muheisen S, Thompson S, Semina EV
Human genomics 2022
The Impact of Stem/Progenitor Cells on Lymphangiogenesis in Vascular Disease
Mou R, Chen K, Zhu P, Xu Q, Ma L
Cells 2022

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Copyright © 2025 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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