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Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier

Putrescine is a bioactive polyamine. Its retinal concentration is strictly controlled to maintain a healthy sense of vision. The present study investigated putrescine transport at the blood–retinal barrier (BRB) to gain a better understanding of the mechanisms of putrescine regulation in the retina....

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Autores principales: Tega, Yuma, Kubo, Yoshiyuki, Miura, Hiroaki, Ri, Kairi, Tomise, Ayaka, Akanuma, Shin-ichi, Hosoya, Ken-ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10219508/
https://www.ncbi.nlm.nih.gov/pubmed/37240348
http://dx.doi.org/10.3390/ijms24109003
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author Tega, Yuma
Kubo, Yoshiyuki
Miura, Hiroaki
Ri, Kairi
Tomise, Ayaka
Akanuma, Shin-ichi
Hosoya, Ken-ichi
author_facet Tega, Yuma
Kubo, Yoshiyuki
Miura, Hiroaki
Ri, Kairi
Tomise, Ayaka
Akanuma, Shin-ichi
Hosoya, Ken-ichi
author_sort Tega, Yuma
collection PubMed
description Putrescine is a bioactive polyamine. Its retinal concentration is strictly controlled to maintain a healthy sense of vision. The present study investigated putrescine transport at the blood–retinal barrier (BRB) to gain a better understanding of the mechanisms of putrescine regulation in the retina. Our microdialysis study showed that the elimination rate constant during the terminal phase was significantly greater (1.90-fold) than that of [(14)C]D-mannitol, which is a bulk flow marker. The difference in the apparent elimination rate constants of [(3)H]putrescine and [(14)C]D-mannitol was significantly decreased by unlabeled putrescine and spermine, suggesting active putrescine transport from the retina to the blood across the BRB. Our study using model cell lines of the inner and outer BRB showed that [(3)H]putrescine transport was time-, temperature-, and concentration-dependent, suggesting the involvement of carrier-mediated processes in putrescine transport at the inner and outer BRB. [(3)H]Putrescine transport was significantly reduced under Na(+)-free, Cl(−)-free, and K(+)-replacement conditions, and attenuated by polyamines or organic cations such as choline, a choline transporter-like protein (CTL) substrate. Rat CTL1 cRNA-injected oocytes exhibited marked alterations in [(3)H]putrescine uptake, and CTL1 knockdown significantly reduced [(3)H]putrescine uptake in model cell lines, suggesting the possible participation of CTL1 in putrescine transport at the BRB.
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spelling pubmed-102195082023-05-27 Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier Tega, Yuma Kubo, Yoshiyuki Miura, Hiroaki Ri, Kairi Tomise, Ayaka Akanuma, Shin-ichi Hosoya, Ken-ichi Int J Mol Sci Article Putrescine is a bioactive polyamine. Its retinal concentration is strictly controlled to maintain a healthy sense of vision. The present study investigated putrescine transport at the blood–retinal barrier (BRB) to gain a better understanding of the mechanisms of putrescine regulation in the retina. Our microdialysis study showed that the elimination rate constant during the terminal phase was significantly greater (1.90-fold) than that of [(14)C]D-mannitol, which is a bulk flow marker. The difference in the apparent elimination rate constants of [(3)H]putrescine and [(14)C]D-mannitol was significantly decreased by unlabeled putrescine and spermine, suggesting active putrescine transport from the retina to the blood across the BRB. Our study using model cell lines of the inner and outer BRB showed that [(3)H]putrescine transport was time-, temperature-, and concentration-dependent, suggesting the involvement of carrier-mediated processes in putrescine transport at the inner and outer BRB. [(3)H]Putrescine transport was significantly reduced under Na(+)-free, Cl(−)-free, and K(+)-replacement conditions, and attenuated by polyamines or organic cations such as choline, a choline transporter-like protein (CTL) substrate. Rat CTL1 cRNA-injected oocytes exhibited marked alterations in [(3)H]putrescine uptake, and CTL1 knockdown significantly reduced [(3)H]putrescine uptake in model cell lines, suggesting the possible participation of CTL1 in putrescine transport at the BRB. MDPI 2023-05-19 /pmc/articles/PMC10219508/ /pubmed/37240348 http://dx.doi.org/10.3390/ijms24109003 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tega, Yuma
Kubo, Yoshiyuki
Miura, Hiroaki
Ri, Kairi
Tomise, Ayaka
Akanuma, Shin-ichi
Hosoya, Ken-ichi
Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title_full Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title_fullStr Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title_full_unstemmed Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title_short Carrier-Mediated Process of Putrescine Elimination at the Rat Blood–Retinal Barrier
title_sort carrier-mediated process of putrescine elimination at the rat blood–retinal barrier
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10219508/
https://www.ncbi.nlm.nih.gov/pubmed/37240348
http://dx.doi.org/10.3390/ijms24109003
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