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OtherBASIC SCIENCE INVESTIGATIONS

Establishment and Characterization of a Breast Cancer Cell Line Expressing Na+/I− Symporters for Radioiodide Concentrator Gene Therapy

Yuji Nakamoto, Tsuneo Saga, Takashi Misaki, Hisataka Kobayashi, Noriko Sato, Takayoshi Ishimori, Shinji Kosugi, Harumi Sakahara and Junji Konishi
Journal of Nuclear Medicine November 2000, 41 (11) 1898-1904;
Yuji Nakamoto
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Tsuneo Saga
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Takashi Misaki
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Hisataka Kobayashi
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Noriko Sato
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Takayoshi Ishimori
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Shinji Kosugi
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Harumi Sakahara
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Junji Konishi
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Article Information

vol. 41 no. 11 1898-1904
PubMed 
11079502

Published By 
Society of Nuclear Medicine
Print ISSN 
0161-5505
Online ISSN 
2159-662X
History 
  • Published online November 1, 2000.

Copyright & Usage 
© 2000

Author Information

  1. Yuji Nakamoto,
  2. Tsuneo Saga,
  3. Takashi Misaki,
  4. Hisataka Kobayashi,
  5. Noriko Sato,
  6. Takayoshi Ishimori,
  7. Shinji Kosugi,
  8. Harumi Sakahara and
  9. Junji Konishi
  1. Department of Nuclear Medicine and Diagnostic Imaging and Department of Laboratory Medicine, Graduate School of Medicine, Kyoto University, Kyoto; and Department of Radiology, Hamamatsu University School of Medicine, Hamamatsu, Japan
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Journal of Nuclear Medicine
Vol. 41, Issue 11
November 1, 2000
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Establishment and Characterization of a Breast Cancer Cell Line Expressing Na+/I− Symporters for Radioiodide Concentrator Gene Therapy
Yuji Nakamoto, Tsuneo Saga, Takashi Misaki, Hisataka Kobayashi, Noriko Sato, Takayoshi Ishimori, Shinji Kosugi, Harumi Sakahara, Junji Konishi
Journal of Nuclear Medicine Nov 2000, 41 (11) 1898-1904;

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Establishment and Characterization of a Breast Cancer Cell Line Expressing Na+/I− Symporters for Radioiodide Concentrator Gene Therapy
Yuji Nakamoto, Tsuneo Saga, Takashi Misaki, Hisataka Kobayashi, Noriko Sato, Takayoshi Ishimori, Shinji Kosugi, Harumi Sakahara, Junji Konishi
Journal of Nuclear Medicine Nov 2000, 41 (11) 1898-1904;
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Cited By...

  • Transfection of the Human Sodium/Iodide Symporter (NIS) Gene with Liposomes and the Expression of the NIS Protein in Human Lung A549 Cancer Cells
  • Radioiodide imaging and radiovirotherapy of multiple myeloma using VSV({Delta}51)-NIS, an attenuated vesicular stomatitis virus encoding the sodium iodide symporter gene
  • Enhanced Expression of Adenovirus-Mediated Sodium Iodide Symporter Gene in MCF-7 Breast Cancer Cells with Retinoic Acid Treatment
  • A perspective view of sodium iodide symporter research and its clinical implications.
  • Development of a Sodium/Iodide Symporter (NIS)-Transgenic Mouse for Imaging of Cardiomyocyte-Specific Reporter Gene Expression
  • In vivo Radioiodide Imaging and Treatment of Breast Cancer Xenografts after MUC1-Driven Expression of the Sodium Iodide Symporter
  • Long-Term Radioiodine Retention and Regression of Liver Cancer after Sodium Iodide Symporter Gene Transfer in Wistar Rats
  • Establishment of a Human Hepatocellular Carcinoma Cell Line Highly Expressing Sodium Iodide Symporter for Radionuclide Gene Therapy
  • Iodide Kinetics and Dosimetry In Vivo After Transfer of the Human Sodium Iodide Symporter Gene in Rat Thyroid Carcinoma Cells
  • Kinetics of Perrhenate Uptake and Comparative Biodistribution of Perrhenate, Pertechnetate, and Iodide by NaI Symporter-Expressing Tissues In Vivo
  • Systemic Retinoic Acid Treatment Induces Sodium/Iodide Symporter Expression and Radioiodide Uptake in Mouse Breast Cancer Models
  • In Vitro Cytotoxicity of 211At-Astatide and 131I-Iodide to Glioma Tumor Cells Expressing the Sodium/Iodide Symporter
  • Radioiodide Treatment after Sodium Iodide Symporter Gene Transfer Is a Highly Effective Therapy in Neuroendocrine Tumor Cells
  • Sodium Iodide Symporter: Its Role in Nuclear Medicine
  • The Endogenous Mammary Gland Na+/I- Symporter May Mediate Effective Radioiodide Therapy in Breast Cancer
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