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Human epidermal receptor-2 expression in prostate cancer

  • Benjamin F. Calvo
  • , Aaron M. Levine
  • , Mavie Marcos
  • , Qu F. Collins
  • , Mary V. Iacocca
  • , Laura S. Caskey
  • , Christopher W. Gregory
  • , Yuhua Lin
  • , Young E. Whang
  • , H. Shelton Earp
  • , James L. Mohler
  • University of North Carolina at Chapel Hill

Research output: Contribution to journalArticlepeer-review

55 Scopus citations

Abstract

Purpose: Efforts to conclusively establish that human epidermal receptor (HER)-2 overexpression is important to androgen-dependent carcinoma of the prostate (AD-CaP) or to progression to androgen independence (AI-CaP) have failed because of variability in tissue procurement, antibodies, immunostaining procedures, and assessment methods. However, because some in vitro and animal model data correlate HER-2 overexpression with progression to androgen independence, trials of agents that target the HER-2 receptor are under way. To clarify human tumor findings, we studied HER-2 expression at the gene (DNA), mRNA, and protein levels in well-characterized CaP specimens. Experimental Design: Fifty AD-CaP and 25 AI-CaP specimens from similar numbers of Caucasian and African Americans were immunostained for HER-2 receptor. HER-2 mRNA levels were measured using real-time fluorescence quantitative PCR in patients for whom frozen specimens were available. HER-2 amplification was evaluated using fluorescent in situ hybridization. Results: HER-2 receptor immunostained in 52% of androgen-dependent and one (4%) androgen-independent tumor. HER-2 immunostaining was not related to age, race, serum prostate-specific antigen levels, or pathologic stage and Gleason grade. HER-2 overexpression was not detected in AI-CaP at the mRNA or gene level. Mean HER-2 mRNA expression was higher (P < 0.05) in AD-CaP than AI-CaP (22,080 versus 15,496 HER-2 copies). HER-2 was not amplified in any of 20 AD-CaP or 19 AI-CaP specimens. Conclusions: HER-2 protein and message overexpression and HER-2 amplification were not found in AI-CaP.

Original languageEnglish
Pages (from-to)1087-1097
Number of pages11
JournalClinical Cancer Research
Volume9
Issue number3
StatePublished - Mar 1 2003

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