Identification of patients with transitional cell carcinoma of the Bladder overexpressing erbb2, erbb3, or specific ErbB4 isoforms: Real-time reverse transcription-pcr analysis in estimation of ErbB receptor status from cancer patients

The purpose of this research was to quantitatively analyze tumor-specific overexpression of all ErbB receptors and ErbB4 isoforms in transitional cell carcinoma (TCC) of the bladder. A real-time reverse transcription-PCR protocol was set up to simultaneously quantitate the mRNA levels of all four of...

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Published inClinical cancer research Vol. 9; no. 14; pp. 5346 - 5357
Main Authors JUNTTILA, Teemu T, LAATO, Matti, VAHLBERG, Tero, SÖDERSTRÖM, Karl-Ove, VISAKORPI, Tapio, ISOLA, Jorma, ELENIUS, Klaus
Format Journal Article
LanguageEnglish
Published Philadelphia, PA American Association for Cancer Research 01.11.2003
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Abstract The purpose of this research was to quantitatively analyze tumor-specific overexpression of all ErbB receptors and ErbB4 isoforms in transitional cell carcinoma (TCC) of the bladder. A real-time reverse transcription-PCR protocol was set up to simultaneously quantitate the mRNA levels of all four of the ErbB receptors and ErbB4 isoforms. Exon-intron structure of the ErbB4 gene was determined for ErbB4 isoform analysis. The assay was validated by analyzing: (a) defined ErbB cDNAs; (b) cell lines transfected with defined ErbB cDNAs; and (c) cancer cell lines with ErbB status controlled by Western blotting. ErbB mRNA expression was quantitated from 29 clinical samples representing TCC, interstitial cystitis, or histologically normal bladder. Cutoff expression levels predicting neoplasia at 95% probability were determined. ErbB expression and amplification was analyzed by immunohistochemistry and chromogenic in situ hybridization. Experiments with control cDNAs and cell lines demonstrated that the assay was both specific and sensitive, and that ErbB mRNA levels closely correlated with protein levels in cancer cell lines. Determination of cutoff expression levels indicated tumor-specific overexpression of ErbB2, ErbB3, and specific ErbB4 isoforms in a subset of TCC patients. Significant overexpression of ErbB mRNAs was also detected in cases without amplification of the respective gene or when the protein product was not localized at the cell membrane. Bladder cancer patients with tumor-specific overexpression of ErbB receptors or their isoforms were identified. Real-time reverse transcription-PCR could be used for ErbB receptor status quantitation to produce prognostic and predictive information for cancer therapy.
AbstractList PURPOSEThe purpose of this research was to quantitatively analyze tumor-specific overexpression of all ErbB receptors and ErbB4 isoforms in transitional cell carcinoma (TCC) of the bladder.EXPERIMENTAL DESIGNA real-time reverse transcription-PCR protocol was set up to simultaneously quantitate the mRNA levels of all four of the ErbB receptors and ErbB4 isoforms. Exon-intron structure of the ErbB4 gene was determined for ErbB4 isoform analysis. The assay was validated by analyzing: (a) defined ErbB cDNAs; (b) cell lines transfected with defined ErbB cDNAs; and (c) cancer cell lines with ErbB status controlled by Western blotting. ErbB mRNA expression was quantitated from 29 clinical samples representing TCC, interstitial cystitis, or histologically normal bladder. Cutoff expression levels predicting neoplasia at 95% probability were determined. ErbB expression and amplification was analyzed by immunohistochemistry and chromogenic in situ hybridization.RESULTSExperiments with control cDNAs and cell lines demonstrated that the assay was both specific and sensitive, and that ErbB mRNA levels closely correlated with protein levels in cancer cell lines. Determination of cutoff expression levels indicated tumor-specific overexpression of ErbB2, ErbB3, and specific ErbB4 isoforms in a subset of TCC patients. Significant overexpression of ErbB mRNAs was also detected in cases without amplification of the respective gene or when the protein product was not localized at the cell membrane.CONCLUSIONBladder cancer patients with tumor-specific overexpression of ErbB receptors or their isoforms were identified. Real-time reverse transcription-PCR could be used for ErbB receptor status quantitation to produce prognostic and predictive information for cancer therapy.
The purpose of this research was to quantitatively analyze tumor-specific overexpression of all ErbB receptors and ErbB4 isoforms in transitional cell carcinoma (TCC) of the bladder. A real-time reverse transcription-PCR protocol was set up to simultaneously quantitate the mRNA levels of all four of the ErbB receptors and ErbB4 isoforms. Exon-intron structure of the ErbB4 gene was determined for ErbB4 isoform analysis. The assay was validated by analyzing: (a) defined ErbB cDNAs; (b) cell lines transfected with defined ErbB cDNAs; and (c) cancer cell lines with ErbB status controlled by Western blotting. ErbB mRNA expression was quantitated from 29 clinical samples representing TCC, interstitial cystitis, or histologically normal bladder. Cutoff expression levels predicting neoplasia at 95% probability were determined. ErbB expression and amplification was analyzed by immunohistochemistry and chromogenic in situ hybridization. Experiments with control cDNAs and cell lines demonstrated that the assay was both specific and sensitive, and that ErbB mRNA levels closely correlated with protein levels in cancer cell lines. Determination of cutoff expression levels indicated tumor-specific overexpression of ErbB2, ErbB3, and specific ErbB4 isoforms in a subset of TCC patients. Significant overexpression of ErbB mRNAs was also detected in cases without amplification of the respective gene or when the protein product was not localized at the cell membrane. Bladder cancer patients with tumor-specific overexpression of ErbB receptors or their isoforms were identified. Real-time reverse transcription-PCR could be used for ErbB receptor status quantitation to produce prognostic and predictive information for cancer therapy.
Author VAHLBERG, Tero
LAATO, Matti
VISAKORPI, Tapio
SÖDERSTRÖM, Karl-Ove
ISOLA, Jorma
ELENIUS, Klaus
JUNTTILA, Teemu T
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Issue 14
Keywords Human
Molecular form
Urinary system disease
Prognosis
Gene overexpression
Malignant tumor
Transitional cell carcinoma
Gene expression
Growth factor receptor
Urinary bladder
Bladder disease
Predictive factor
Onc gene
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Snippet The purpose of this research was to quantitatively analyze tumor-specific overexpression of all ErbB receptors and ErbB4 isoforms in transitional cell...
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StartPage 5346
SubjectTerms Animals
Biological and medical sciences
Blotting, Western
Carcinoma, Transitional Cell - diagnosis
Carcinoma, Transitional Cell - genetics
Carcinoma, Transitional Cell - metabolism
Cystitis, Interstitial - diagnosis
Cystitis, Interstitial - genetics
Cystitis, Interstitial - metabolism
Humans
Medical sciences
Mice
Nephrology. Urinary tract diseases
NIH 3T3 Cells
Prognosis
Protein Isoforms
Receptor, Epidermal Growth Factor - genetics
Receptor, Epidermal Growth Factor - metabolism
Receptor, ErbB-2 - genetics
Receptor, ErbB-2 - metabolism
Receptor, ErbB-3 - genetics
Receptor, ErbB-3 - metabolism
Receptor, ErbB-4
Reverse Transcriptase Polymerase Chain Reaction
RNA, Messenger - metabolism
Transfection
Tumors of the urinary system
Urinary Bladder Neoplasms - diagnosis
Urinary Bladder Neoplasms - genetics
Urinary Bladder Neoplasms - metabolism
Urinary tract. Prostate gland
Title Identification of patients with transitional cell carcinoma of the Bladder overexpressing erbb2, erbb3, or specific ErbB4 isoforms: Real-time reverse transcription-pcr analysis in estimation of ErbB receptor status from cancer patients
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Volume 9
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