Invasive and Metastatic Potential of a v-Ha-ras-Transformed Human Bronchial Epithelial Cell Line

The in vivo growth behavior and invasive potential of normal and “immortalized” human bronchial epithelial cells were studied by xenotransplantation procedures, an in vitro assay of invasiveness, and determinations of type IV collagenase activity and mRNA expression. BEAS-2B cells, immortalized afte...

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Veröffentlicht in:JNCI : Journal of the National Cancer Institute 1989-04, Vol.81 (8), p.587-594
Hauptverfasser: Bonfil, R. Daniel, Reddel, Roger R., Ura, Hitoshi, Reich, Reuven, Fridman, R, Harris, Curtis C., Klein-Szanto, Andres J. P.
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container_end_page 594
container_issue 8
container_start_page 587
container_title JNCI : Journal of the National Cancer Institute
container_volume 81
creator Bonfil, R. Daniel
Reddel, Roger R.
Ura, Hitoshi
Reich, Reuven
Fridman, R
Harris, Curtis C.
Klein-Szanto, Andres J. P.
description The in vivo growth behavior and invasive potential of normal and “immortalized” human bronchial epithelial cells were studied by xenotransplantation procedures, an in vitro assay of invasiveness, and determinations of type IV collagenase activity and mRNA expression. BEAS-2B cells, immortalized after hybrid virus infection (adenovirus 12-simian virus 40), reconstItuted a columnar epithelium when xenotransplanted Into de-epithellalized rat tracheas transplanted se Into athymic BALB/c mice. A few adenomatous growths could be seen 16 weeks after transplantation. BZR cells, obtained by transfer of the v-Ha-ras oncogene Into BEAS-2B cells, were tumorigenic In this xenotransplantation model. BZR-T33 cells, obtained from a tumor produced after injection of BZR cells, were also tumorigenic; however, they exhibited a shorter latent period. When these same cell lines were injected sc and iv into athymic BALB/c mice, BEAS-2B cells were not tumongenic, and the BZR-T33 cells were more tumorigenic than the BZR cells. The incidence of spontaneous metastases after sc inoculation was zero for BEAS-2B cells, 33% for BZR cells, and 100% for BZR-T33 cells. Similar increasing values that correlated well with the data on in vivo growth were noted in the in vitro invasion assay, the collagenolytic ability, and the mRNA expression of type IV collagenase. Normal human bronchial epithelial cells showed the lowest values in all the assays. These progressive changes occurring in cells derived from the same parental line Indicate that the presence of the v-Ha-ras oncogene In immortalized bronchial cells is associated with a full-fledged malignant phenotype, which is further enhanced by in vivo passaging. [J Natl Cancer Inst 81:587–594, 1989]
doi_str_mv 10.1093/jnci/81.8.587
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Daniel ; Reddel, Roger R. ; Ura, Hitoshi ; Reich, Reuven ; Fridman, R ; Harris, Curtis C. ; Klein-Szanto, Andres J. P.</creator><creatorcontrib>Bonfil, R. Daniel ; Reddel, Roger R. ; Ura, Hitoshi ; Reich, Reuven ; Fridman, R ; Harris, Curtis C. ; Klein-Szanto, Andres J. P.</creatorcontrib><description>The in vivo growth behavior and invasive potential of normal and “immortalized” human bronchial epithelial cells were studied by xenotransplantation procedures, an in vitro assay of invasiveness, and determinations of type IV collagenase activity and mRNA expression. BEAS-2B cells, immortalized after hybrid virus infection (adenovirus 12-simian virus 40), reconstItuted a columnar epithelium when xenotransplanted Into de-epithellalized rat tracheas transplanted se Into athymic BALB/c mice. A few adenomatous growths could be seen 16 weeks after transplantation. BZR cells, obtained by transfer of the v-Ha-ras oncogene Into BEAS-2B cells, were tumorigenic In this xenotransplantation model. BZR-T33 cells, obtained from a tumor produced after injection of BZR cells, were also tumorigenic; however, they exhibited a shorter latent period. When these same cell lines were injected sc and iv into athymic BALB/c mice, BEAS-2B cells were not tumongenic, and the BZR-T33 cells were more tumorigenic than the BZR cells. The incidence of spontaneous metastases after sc inoculation was zero for BEAS-2B cells, 33% for BZR cells, and 100% for BZR-T33 cells. Similar increasing values that correlated well with the data on in vivo growth were noted in the in vitro invasion assay, the collagenolytic ability, and the mRNA expression of type IV collagenase. Normal human bronchial epithelial cells showed the lowest values in all the assays. These progressive changes occurring in cells derived from the same parental line Indicate that the presence of the v-Ha-ras oncogene In immortalized bronchial cells is associated with a full-fledged malignant phenotype, which is further enhanced by in vivo passaging. 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Daniel</creatorcontrib><creatorcontrib>Reddel, Roger R.</creatorcontrib><creatorcontrib>Ura, Hitoshi</creatorcontrib><creatorcontrib>Reich, Reuven</creatorcontrib><creatorcontrib>Fridman, R</creatorcontrib><creatorcontrib>Harris, Curtis C.</creatorcontrib><creatorcontrib>Klein-Szanto, Andres J. P.</creatorcontrib><title>Invasive and Metastatic Potential of a v-Ha-ras-Transformed Human Bronchial Epithelial Cell Line</title><title>JNCI : Journal of the National Cancer Institute</title><addtitle>J Natl Cancer Inst</addtitle><description>The in vivo growth behavior and invasive potential of normal and “immortalized” human bronchial epithelial cells were studied by xenotransplantation procedures, an in vitro assay of invasiveness, and determinations of type IV collagenase activity and mRNA expression. 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Similar increasing values that correlated well with the data on in vivo growth were noted in the in vitro invasion assay, the collagenolytic ability, and the mRNA expression of type IV collagenase. Normal human bronchial epithelial cells showed the lowest values in all the assays. These progressive changes occurring in cells derived from the same parental line Indicate that the presence of the v-Ha-ras oncogene In immortalized bronchial cells is associated with a full-fledged malignant phenotype, which is further enhanced by in vivo passaging. [J Natl Cancer Inst 81:587–594, 1989]</description><subject>Animals</subject><subject>Biological and medical sciences</subject><subject>Blotting, Northern</subject><subject>Carcinoma, Bronchogenic - enzymology</subject><subject>Carcinoma, Bronchogenic - pathology</subject><subject>Carcinoma, Bronchogenic - secondary</subject><subject>Cell Line, Transformed</subject><subject>Chemotaxis - drug effects</subject><subject>Fibronectins - pharmacology</subject><subject>Humans</subject><subject>Immunoblotting</subject><subject>Lung Neoplasms - enzymology</subject><subject>Lung Neoplasms - pathology</subject><subject>Medical sciences</subject><subject>Mice</subject><subject>Mice, Nude</subject><subject>Microbial Collagenase - metabolism</subject><subject>Neoplasm Invasiveness</subject><subject>Neoplasm Transplantation</subject><subject>Pneumology</subject><subject>Tumors of the respiratory system and mediastinum</subject><issn>0027-8874</issn><issn>1460-2105</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1989</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNqFkU1vEzEQhi0EKqFw5IjkA-Lm1F-7to-QlqYofIkiVVzMrNerumy8wXai8u9x1Cgc8WVGeh-N7WcQesnonFEjzu6iC2eazfW80eoRmjHZUsIZbR6jGaVcEa2VfIqe5XxH6zFcnqAT3ggjtZ6hn1dxBznsPIbY44--QC5QgsNfpuJjCTDiacCAd2QJJEEm1wliHqa09j1ebtcQ8bs0RXe7Jy82odz6cd8u_DjiVYj-OXoywJj9i0M9Rd_fX1wvlmT1-fJq8XZFnGx4IdxI8AwMbTspQXSuFS1vPXDFu77npus41WCkcKYRginT1aYGXc9BD0qLU_TmYe4mTb-3Phe7DtnVV0D00zZbpXX9sWj_C7JWUy2FqSB5AF2ack5-sJsU1pD-WEbtXr3dq7eaWW2r-sq_OgzedtXOkT64rvnrQw7ZwThUkS7kI6bqznhD_10bcvH3xxjSL9sqoRq7vPlhz89vPnxbyU_2q_gLjJ6bLQ</recordid><startdate>19890419</startdate><enddate>19890419</enddate><creator>Bonfil, R. 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Similar increasing values that correlated well with the data on in vivo growth were noted in the in vitro invasion assay, the collagenolytic ability, and the mRNA expression of type IV collagenase. Normal human bronchial epithelial cells showed the lowest values in all the assays. These progressive changes occurring in cells derived from the same parental line Indicate that the presence of the v-Ha-ras oncogene In immortalized bronchial cells is associated with a full-fledged malignant phenotype, which is further enhanced by in vivo passaging. [J Natl Cancer Inst 81:587–594, 1989]</abstract><cop>Cary, NC</cop><pub>Oxford University Press</pub><pmid>2539488</pmid><doi>10.1093/jnci/81.8.587</doi><tpages>8</tpages></addata></record>
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subjects Animals
Biological and medical sciences
Blotting, Northern
Carcinoma, Bronchogenic - enzymology
Carcinoma, Bronchogenic - pathology
Carcinoma, Bronchogenic - secondary
Cell Line, Transformed
Chemotaxis - drug effects
Fibronectins - pharmacology
Humans
Immunoblotting
Lung Neoplasms - enzymology
Lung Neoplasms - pathology
Medical sciences
Mice
Mice, Nude
Microbial Collagenase - metabolism
Neoplasm Invasiveness
Neoplasm Transplantation
Pneumology
Tumors of the respiratory system and mediastinum
title Invasive and Metastatic Potential of a v-Ha-ras-Transformed Human Bronchial Epithelial Cell Line
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