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Basic Sciences

Chemosensitivity and Radiosensitivity of Small Cell Lung Cancer Cell Lines Studied by a Newly Developed 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium Bromide (MTT) Hybrid Assay

Toyoaki Hida, Ryuzo Ueda, Takashi Takahashi, Hiroyoshi Watanabe, Taketoshi Kato, Motokazu Suyama, Takahiko Sugiura, Yutaka Ariyoshi and Toshitada Takahashi
Toyoaki Hida
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Ryuzo Ueda
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Takashi Takahashi
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Hiroyoshi Watanabe
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Taketoshi Kato
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Motokazu Suyama
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Takahiko Sugiura
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Yutaka Ariyoshi
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Toshitada Takahashi
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DOI:  Published September 1989
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Abstract

The 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) hybrid assay was developed by technically combining the human tumor clonogenic assay and the MTT assay to make the most of both assays. This assay was able to estimate the in vitro growth of cultured cell lines and of tumor cells in pleural effusion, suggesting the possibility of its use for assessment of chemosensitivity and radiosensitivity of fresh tumor samples.

Multiple cell lines [including morphological and/or phenotypical in vitro converters and cisplatin (CDDP)-resistant lines] were established from three patients with small cell lung cancer at different stages of the disease. Chemosensitivity of these cell lines to four commonly used chemotherapeutic drugs was tested by the MTT hybrid assay. SK1 and SK3 lines were established from Patient S. K. before and after chemotherapy and radiotherapy, respectively. SK3/CDDP, a CDDP-resistant line derived from the SK3 line, was 30-fold more resistant to CDDP [50% inhibiting dose (IC50), 21.5 µg/ml] than the SK1 line. In Patient M. O., MOA2/CDDP, a CDDP-resistant line derived from MOA2 (an in vitro converter from the MO line), was 41-fold more resistant to CDDP (IC50, 37 µg/ml) than the parent MO line. From Patient T. M., TM1 and TM2 lines were established before and after chemotherapy, respectively. The latter showed 6-fold more resistance to CDDP than the former. Chemosensitivity of these lines to three other drugs, 4-hydroperoxycyclophosphamide, Adriamycin, and etoposide, suggested cross-resistance between CDDP and 4-hydroperoxycyclophosphamide. Radiosensitivity study was also carried out with the MTT hybrid assay. The MOA2 line was more resistant [Do, 3.0 Gy; extrapolation number (n), 4.0] than the parental MO line (Do, 1.6 Gy; n, 2.1). There was no clear difference in radiosensitivity between the cell lines established before and after radiation therapy in Patient S. K.

Footnotes

  • ↵1 This work was supported in part by a Grant-in-Aid for the Comprehensive Ten-Year Strategy for Cancer Control from the Ministry of Health and Welfare; by Grants-in-Aid for Cancer Research from the Ministries of Education, Science, and Culture and of Health and Welfare in Japan; and by a grant from the Cancer Research Institute, Inc., New York, NY.

  • ↵2 To whom requests for reprints should be addressed.

  • Received November 8, 1988.
  • Revision received May 11, 1989.
  • Accepted June 7, 1989.
  • ©1989 American Association for Cancer Research.
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September 1989
Volume 49, Issue 17
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Chemosensitivity and Radiosensitivity of Small Cell Lung Cancer Cell Lines Studied by a Newly Developed 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium Bromide (MTT) Hybrid Assay
Toyoaki Hida, Ryuzo Ueda, Takashi Takahashi, Hiroyoshi Watanabe, Taketoshi Kato, Motokazu Suyama, Takahiko Sugiura, Yutaka Ariyoshi and Toshitada Takahashi
Cancer Res September 1 1989 (49) (17) 4785-4790;

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Chemosensitivity and Radiosensitivity of Small Cell Lung Cancer Cell Lines Studied by a Newly Developed 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium Bromide (MTT) Hybrid Assay
Toyoaki Hida, Ryuzo Ueda, Takashi Takahashi, Hiroyoshi Watanabe, Taketoshi Kato, Motokazu Suyama, Takahiko Sugiura, Yutaka Ariyoshi and Toshitada Takahashi
Cancer Res September 1 1989 (49) (17) 4785-4790;
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