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AbstractAbstract
[en] Objective: The most frequent brain tumors are the gliomas. Glioblastomas are largely incurable secondary, to their rapid, aggressive and diffusely infiltrative growth pattern and hypervascularity. This study aimed at investigating the possibility of transecting human sodium/iodide symporter (hNIS) gene into human glioma cell lines to facilitate radioactive iodide treatment in vitro. Methods: Transecting hNIS gene into human glioma cell lines U251 was performed by recombinant expression plasmids with lipofectamine 2000-plasmid complexes. The hNIS gene cell lines with stable expression (hNIS-U251) were selected through G418 antibiotic constraint. The hNIS-U251 gene cell lines were then evaluated for their biologic functions, including 125I uptake assay, 125I influx-course, 125I-efflux-course, 131I inhibitory effect on cellular proliferation by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyhe-trazolium bromide (MTT) assay and flow cytometer. Results: We were successful in transecting hNIS gene into human glioma cell lines by recombinant expression plasmids, and were able to obtain hNIS gene cell lines (hNIS-U251) with stable expression. The hNIS-U251 cell lines could intake and bind radioactive iodide by hNIS gene. The uptakes of 125I were 117 fold higher in hNIS-U251 cell lines than U251 cell lines [(50 469.88 ± 997.29), (432.92 ± 89.28) counts·min-1, respectively]. And the proliferation index of hNIS-U251 cell lines was lower than U251 cell lines after incubating with 131I. Conclusion: The hNIS gene with stable gene expression (hNIS- U251) cell lines could be labeled by 131I with a high efficiency, thereby may function effectively in the treatment of glioma-related brain tumors. (authors)
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Source
4 figs., 13 refs.
Record Type
Journal Article
Journal
Chinese Journal of Nuclear Medicine; ISSN 0253-9780; ; v. 28(2); p. 79-83
Country of publication
ALKALI METALS, ANTI-INFECTIVE AGENTS, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BODY, CELL CONSTITUENTS, CENTRAL NERVOUS SYSTEM, DAYS LIVING RADIOISOTOPES, DISEASES, DRUGS, ELECTRON CAPTURE RADIOISOTOPES, ELEMENTS, HALIDES, HALOGEN COMPOUNDS, INTERMEDIATE MASS NUCLEI, INTERNAL CONVERSION RADIOISOTOPES, IODINE COMPOUNDS, IODINE ISOTOPES, ISOTOPES, MEDICINE, METALS, NEOPLASMS, NERVOUS SYSTEM, NERVOUS SYSTEM DISEASES, NUCLEAR MEDICINE, NUCLEI, ODD-EVEN NUCLEI, ORGANIC COMPOUNDS, ORGANS, POPULATIONS, RADIOISOTOPES, RADIOLOGY, THERAPY
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