The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines
Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epiderm...
Ausführliche Beschreibung
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1998 |
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Springer Online Journal Archives 1860-2002 |
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in: Journal of cancer research and clinical oncology - 1904, 124(1998) vom: März/Apr., Seite 155-164 |
Übergeordnetes Werk: |
volume:124 ; year:1998 ; month:03/04 ; pages:155-164 ; extent:10 |
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NLEJ205280390 |
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520 | |a Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. | ||
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700 | 1 | |a Remmelink, Myriam |4 oth | |
700 | 1 | |a Decaestecker, Christine |4 oth | |
700 | 1 | |a Darro, Francis |4 oth | |
700 | 1 | |a Goldschmidt, Denis |4 oth | |
700 | 1 | |a Gebhart, Michael |4 oth | |
700 | 1 | |a Pasteels, Jean-Lambert |4 oth | |
700 | 1 | |a Kiss, Robert |4 oth | |
700 | 1 | |a Salmon, Isabelle |4 oth | |
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(DE-627)NLEJ205280390 DE-627 ger DE-627 rakwb eng The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines 1998 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. Springer Online Journal Archives 1860-2002 Remmelink, Myriam oth Decaestecker, Christine oth Darro, Francis oth Goldschmidt, Denis oth Gebhart, Michael oth Pasteels, Jean-Lambert oth Kiss, Robert oth Salmon, Isabelle oth in Journal of cancer research and clinical oncology 1904 124(1998) vom: März/Apr., Seite 155-164 (DE-627)NLEJ188987657 (DE-600)1459285-x 1432-1335 nnns volume:124 year:1998 month:03/04 pages:155-164 extent:10 http://dx.doi.org/10.1007/s004320050149 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 124 1998 3/4 155-164 10 |
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(DE-627)NLEJ205280390 DE-627 ger DE-627 rakwb eng The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines 1998 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. Springer Online Journal Archives 1860-2002 Remmelink, Myriam oth Decaestecker, Christine oth Darro, Francis oth Goldschmidt, Denis oth Gebhart, Michael oth Pasteels, Jean-Lambert oth Kiss, Robert oth Salmon, Isabelle oth in Journal of cancer research and clinical oncology 1904 124(1998) vom: März/Apr., Seite 155-164 (DE-627)NLEJ188987657 (DE-600)1459285-x 1432-1335 nnns volume:124 year:1998 month:03/04 pages:155-164 extent:10 http://dx.doi.org/10.1007/s004320050149 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 124 1998 3/4 155-164 10 |
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(DE-627)NLEJ205280390 DE-627 ger DE-627 rakwb eng The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines 1998 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. Springer Online Journal Archives 1860-2002 Remmelink, Myriam oth Decaestecker, Christine oth Darro, Francis oth Goldschmidt, Denis oth Gebhart, Michael oth Pasteels, Jean-Lambert oth Kiss, Robert oth Salmon, Isabelle oth in Journal of cancer research and clinical oncology 1904 124(1998) vom: März/Apr., Seite 155-164 (DE-627)NLEJ188987657 (DE-600)1459285-x 1432-1335 nnns volume:124 year:1998 month:03/04 pages:155-164 extent:10 http://dx.doi.org/10.1007/s004320050149 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 124 1998 3/4 155-164 10 |
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(DE-627)NLEJ205280390 DE-627 ger DE-627 rakwb eng The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines 1998 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. Springer Online Journal Archives 1860-2002 Remmelink, Myriam oth Decaestecker, Christine oth Darro, Francis oth Goldschmidt, Denis oth Gebhart, Michael oth Pasteels, Jean-Lambert oth Kiss, Robert oth Salmon, Isabelle oth in Journal of cancer research and clinical oncology 1904 124(1998) vom: März/Apr., Seite 155-164 (DE-627)NLEJ188987657 (DE-600)1459285-x 1432-1335 nnns volume:124 year:1998 month:03/04 pages:155-164 extent:10 http://dx.doi.org/10.1007/s004320050149 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 124 1998 3/4 155-164 10 |
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(DE-627)NLEJ205280390 DE-627 ger DE-627 rakwb eng The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines 1998 10 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. Springer Online Journal Archives 1860-2002 Remmelink, Myriam oth Decaestecker, Christine oth Darro, Francis oth Goldschmidt, Denis oth Gebhart, Michael oth Pasteels, Jean-Lambert oth Kiss, Robert oth Salmon, Isabelle oth in Journal of cancer research and clinical oncology 1904 124(1998) vom: März/Apr., Seite 155-164 (DE-627)NLEJ188987657 (DE-600)1459285-x 1432-1335 nnns volume:124 year:1998 month:03/04 pages:155-164 extent:10 http://dx.doi.org/10.1007/s004320050149 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 124 1998 3/4 155-164 10 |
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This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. 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the in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines |
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The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines |
abstract |
Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. |
abstractGer |
Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. |
abstract_unstemmed |
Abstract Little is known about the regulation of sarcoma proliferation by hormones and/or growth factors. We therefore characterised the in vitro proliferative influence on eight sarcoma cell lines of the platelet-derived growth factor, the insulin-like growth factor 1, triiodothyronine, the epidermal growth factor, the luteinising-hormone-releasing hormone, progesterone, gastrin and 17 β-oestradiol. The influence of the different factors on the proliferation of sarcoma cell lines was measured by the colorimetric 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide test. Two culture media were studied: (1) a nutritionally poor medium containing 2% of fetal calf serum and (2) a nutritionally rich one containing 5% or 10% FCS both with and without the addition of non-essential amino acids. The results were analysed either by conventional statistical analyses or by a classification method based on a decision-tree approach developed in Machine Learning. This latter method was also compared to other classifiers (such as logistic regression and k nearest neighbours) with respect to its accuracy of classification. Monovariate statistical analysis showed that each of the eight cell lines exhibited sensitivity to at least one factor, and each factor significantly modified the proliferation of five or six of the eight cell lines under study. Of these eight lines one of fibrosarcoma origin was the most “factor-sensitive”. Decision-tree-related data analysis enabled the specific pattern of factor sensitivity to be characterised for the three histological types of cell line under study. The effects of hormone and growth factors are significantly influenced by the type of culture medium used. The method used appeared to be an accurate classifier for the kind of data analysed. Sarcoma proliferation can be modulated, at least in vitro, by various hormones and growth factors, and the proliferation of each histopathological type exhibited a distinct sensitivity to different hormone and/or growth-factors. |
collection_details |
GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE |
title_short |
The in vitro influence of eight hormones and growth factors on the proliferation of eight sarcoma cell lines |
url |
http://dx.doi.org/10.1007/s004320050149 |
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author2 |
Remmelink, Myriam Decaestecker, Christine Darro, Francis Goldschmidt, Denis Gebhart, Michael Pasteels, Jean-Lambert Kiss, Robert Salmon, Isabelle |
author2Str |
Remmelink, Myriam Decaestecker, Christine Darro, Francis Goldschmidt, Denis Gebhart, Michael Pasteels, Jean-Lambert Kiss, Robert Salmon, Isabelle |
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up_date |
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7.401636 |