Estrogen induces insulin-like growth factor-1 mRNA expression in the immortalized hippocampal cell: determination by quantitative real-time polymerase chain reaction.

Akiko S Shingo, Shozo Kito
Author Information
  1. Akiko S Shingo: Hyogo University School of Health Sciences, Kakogawa, Hyogo, Japan. sheala@mcn.ne.jp

Abstract

The basic mechanisms of nerve protection by estrogen remain to be clarified. This study was undertaken to confirm estrogen-induced insulin-like growth factor 1 (IGF-1) mRNA expression in the immortalized rat hippocampal cell H19-7 using a real-time quantitative polymerase chain reaction (PCR) assay, which has considerably increased accuracy and rapidity over other current methods. Upon stimulation by estradiol, the copy number of ERalpha mRNA showed a 1.4-fold increase, and that of IGF-1 mRNA showed a 38.5-fold increase when compared with the control value. ICI182,780 inhibited the estradiol-induced upregulation of ERalpha mRNA completely, while it inhibited estradiol-stimulated IGF-1 mRNA expression partially. The increase of the copy number of IGF-1 mRNA was accomanied by enhancement of IGF-1 protein as observed by Western blot analysis.

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MeSH Term

Animals
Cell Line
Estradiol
Hippocampus
Insulin-Like Growth Factor I
Polymerase Chain Reaction
RNA, Messenger
Rats

Chemicals

RNA, Messenger
Estradiol
Insulin-Like Growth Factor I

Word Cloud

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