Literature DB >> 24530235

Functional analysis of [methyl-(3)H]choline uptake in glioblastoma cells: Influence of anti-cancer and central nervous system drugs.

Chiaki Taguchi1, Masato Inazu2, Iwao Saiki1, Miki Yara1, Naomi Hara1, Tsuyoshi Yamanaka3, Hiroyuki Uchino1.   

Abstract

Positron emission tomography (PET) and PET/computed tomography (PET-CT) studies with (11)C- or (18)F-labeled choline derivatives are used for PET imaging in glioblastoma patients. However, the nature of the choline transport system in glioblastoma is poorly understood. In this study, we performed a functional characterization of [methyl-(3)H]choline uptake and sought to identify the transporters that mediate choline uptake in the human glioblastoma cell lines A-172 and U-251MG. In addition, we examined the influence of anti-cancer drugs and central nervous system drugs on the transport of [methyl-(3)H]choline. High- and low-affinity choline transport systems were present in A-172 cells, U-251MG cells and astrocytes, and these were Na(+)-independent and pH-dependent. Cell viability in A-172 cells was not affected by choline deficiency. However, cell viability in U-251MG cells was significantly inhibited by choline deficiency. Both A-172 and U-251MG cells have two different choline transporters, choline transporter-like protein 1 (CTL1) and CTL2. In A-172 cells, CTL1 is predominantly expressed, whereas in U-251MG cells, CTL2 is predominantly expressed. Treatment with anti-cancer drugs such as cisplatin, etoposide and vincristine influenced [methyl-(3)H]choline uptake in U-251MG cells, but not A-172 cells. Central nervous system drugs such as imipramine, fluvoxamine, paroxetine, reboxetine, citalopram and donepezil did not affect cell viability or [methyl-(3)H]choline uptake. The data presented here suggest that CTL1 and CTL2 are functionally expressed in A-172 and U-251MG cells and are responsible for [methyl-(3)H]choline uptake that relies on a directed H(+) gradient as a driving force. Furthermore, while anti-cancer drugs altered [methyl-(3)H]choline uptake, central nervous system drugs did not affect [methyl-(3)H]choline uptake.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Choline; Choline PET; Glioblastoma cells; Transporter

Mesh:

Substances:

Year:  2014        PMID: 24530235     DOI: 10.1016/j.bcp.2014.01.033

Source DB:  PubMed          Journal:  Biochem Pharmacol        ISSN: 0006-2952            Impact factor:   5.858


  13 in total

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Journal:  Contrast Media Mol Imaging       Date:  2017-01-16       Impact factor: 3.161

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7.  Molecular and Functional Analysis of Choline Transporters and Antitumor Effects of Choline Transporter-Like Protein 1 Inhibitors in Human Pancreatic Cancer Cells.

Authors:  Kaho Hirai; Saiichiro Watanabe; Nozomi Nishijima; Kaoru Shibata; Akane Hase; Tsuyoshi Yamanaka; Masato Inazu
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8.  Molecular and Functional Characterization of Choline Transporter-Like Proteins in Esophageal Cancer Cells and Potential Therapeutic Targets.

Authors:  Fumiaki Nagashima; Ryohta Nishiyama; Beniko Iwao; Yuiko Kawai; Chikanao Ishii; Tsuyoshi Yamanaka; Hiroyuki Uchino; Masato Inazu
Journal:  Biomol Ther (Seoul)       Date:  2018-07-01       Impact factor: 4.634

9.  Anticancer Activity of Amb4269951, a Choline Transporter-Like Protein 1 Inhibitor, in Human Glioma Cells.

Authors:  Saiichiro Watanabe; Nozomi Nishijima; Kaho Hirai; Kaoru Shibata; Akane Hase; Tsuyoshi Yamanaka; Masato Inazu
Journal:  Pharmaceuticals (Basel)       Date:  2020-05-25

10.  Functional Expression of Choline Transporters in the Blood-Brain Barrier.

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Journal:  Nutrients       Date:  2019-09-20       Impact factor: 5.717

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