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The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study

Gadolinium deposition in the brain has been observed in areas rich in iron, such as the dentate nucleus of the cerebellum. We investigated the role of Fe(2+) in the effect of gadolinium-based contrast agents (GBCA) on thyroid hormone-mediated Purkinje cell dendritogenesis in a cerebellar primary cul...

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Autores principales: Kartamihardja, Achmad Adhipatria Perayabangsa, Ariyani, Winda, Hanaoka, Hirofumi, Taketomi-Takahashi, Ayako, Koibuchi, Noriyuki, Tsushima, Yoshito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8699861/
https://www.ncbi.nlm.nih.gov/pubmed/34943547
http://dx.doi.org/10.3390/diagnostics11122310
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author Kartamihardja, Achmad Adhipatria Perayabangsa
Ariyani, Winda
Hanaoka, Hirofumi
Taketomi-Takahashi, Ayako
Koibuchi, Noriyuki
Tsushima, Yoshito
author_facet Kartamihardja, Achmad Adhipatria Perayabangsa
Ariyani, Winda
Hanaoka, Hirofumi
Taketomi-Takahashi, Ayako
Koibuchi, Noriyuki
Tsushima, Yoshito
author_sort Kartamihardja, Achmad Adhipatria Perayabangsa
collection PubMed
description Gadolinium deposition in the brain has been observed in areas rich in iron, such as the dentate nucleus of the cerebellum. We investigated the role of Fe(2+) in the effect of gadolinium-based contrast agents (GBCA) on thyroid hormone-mediated Purkinje cell dendritogenesis in a cerebellar primary culture. The study comprises the control group, Fe(2+) group, GBCA groups (gadopentetate group or gadobutrol group), and GBCA+Fe(2+) groups. Immunocytochemistry was performed with an anti-calbindin-28K (anti-CaBP28k) antibody, and the nucleus was stained with 4′,6-diamidino-2-phenylindole (DAPI). The number of Purkinje cells and their arborization were evaluated with an analysis of variance with a post-hoc test. The number of Purkinje cells was similar to the control groups among all treated groups. There were no significant differences in dendrite arborization between the Fe(2+) group and the control groups. The dendrite arborization was augmented in the gadopentetate and the gadobutrol groups when compared to the control group (p < 0.01, respectively). Fe(2+) significantly increased the effect of gadopentetate on dendrite arborization (p < 0.01) but did not increase the effect of gadobutrol. These findings suggested that the chelate thermodynamic stability and Fe(2+) may play important roles in attenuating the effect of GBCAs on the thyroid hormone-mediated dendritogenesis of Purkinje cells in in vitro settings.
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spelling pubmed-86998612021-12-24 The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study Kartamihardja, Achmad Adhipatria Perayabangsa Ariyani, Winda Hanaoka, Hirofumi Taketomi-Takahashi, Ayako Koibuchi, Noriyuki Tsushima, Yoshito Diagnostics (Basel) Article Gadolinium deposition in the brain has been observed in areas rich in iron, such as the dentate nucleus of the cerebellum. We investigated the role of Fe(2+) in the effect of gadolinium-based contrast agents (GBCA) on thyroid hormone-mediated Purkinje cell dendritogenesis in a cerebellar primary culture. The study comprises the control group, Fe(2+) group, GBCA groups (gadopentetate group or gadobutrol group), and GBCA+Fe(2+) groups. Immunocytochemistry was performed with an anti-calbindin-28K (anti-CaBP28k) antibody, and the nucleus was stained with 4′,6-diamidino-2-phenylindole (DAPI). The number of Purkinje cells and their arborization were evaluated with an analysis of variance with a post-hoc test. The number of Purkinje cells was similar to the control groups among all treated groups. There were no significant differences in dendrite arborization between the Fe(2+) group and the control groups. The dendrite arborization was augmented in the gadopentetate and the gadobutrol groups when compared to the control group (p < 0.01, respectively). Fe(2+) significantly increased the effect of gadopentetate on dendrite arborization (p < 0.01) but did not increase the effect of gadobutrol. These findings suggested that the chelate thermodynamic stability and Fe(2+) may play important roles in attenuating the effect of GBCAs on the thyroid hormone-mediated dendritogenesis of Purkinje cells in in vitro settings. MDPI 2021-12-08 /pmc/articles/PMC8699861/ /pubmed/34943547 http://dx.doi.org/10.3390/diagnostics11122310 Text en © 2021 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
Kartamihardja, Achmad Adhipatria Perayabangsa
Ariyani, Winda
Hanaoka, Hirofumi
Taketomi-Takahashi, Ayako
Koibuchi, Noriyuki
Tsushima, Yoshito
The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title_full The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title_fullStr The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title_full_unstemmed The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title_short The Role of Ferrous Ion in the Effect of the Gadolinium-Based Contrast Agents (GBCA) on the Purkinje Cells Arborization: An In Vitro Study
title_sort role of ferrous ion in the effect of the gadolinium-based contrast agents (gbca) on the purkinje cells arborization: an in vitro study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8699861/
https://www.ncbi.nlm.nih.gov/pubmed/34943547
http://dx.doi.org/10.3390/diagnostics11122310
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