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Effects of Bisphenol and Octylphenol on TM3 Cell : Expression of Cytochrome P450scc and Estrogen Receptor mRNA KCI 등재

Bisphenol과 Octylphenol이 TM3 세포에 미치는 영향: Cytochrome P450scc와 Estrogen Receptor 유전자의 발현

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Development & Reproduction (발생과 생식)
한국발생생물학회 (The Korea Society Of Developmental Biology)
초록

대부분의 내분비교란물질들은 에스트로겐이나 항에스트로겐적인 활성을 가지고 있어 사람이나 생태계에 있어서 생식기능 발달을 저해하는 것으로 보고되고 있다. 본 연구는 estrogen (E)과 bisphenol (BP) 그리고 octylphenol (OP)이 생쥐 Leydig cell line인 TM3 세포에 미치는 영향을 알아보고자 하였다. TM3 세포는 11 ~13일령의 BALB/c nu/+ 생쥐로부터 유래한 정소내 세포인 Leydig cell로 DMEM에

Most of endocrine disrupters (EDs) have been reported to exhibit estrogenic or anti-androgenic activity and thereby may disrupt reproductive development in human or wildlife. This study was performed to investigate the effects of estrogen (E), bisphenol (BP) and octylphenol (OP) on the mouse Leydig cell line (TM3). TM3 originated from testis of 11~13-daly-old BALB/c nu/+ mice was cultured in DMEM supplemented with 10% FBS alone or medium with estrogen (E), bisphenol (BP) and octylphenol (OP; 1 pM, 1 nM, 1 M, 1 mM, respectively) for 48 hours. After culture, total cell number and viability were assessed by heamocyto-meter and trypan blue stain. Expression of cytochrome P450scc (CYPscc) mRNA whose product is involved in steroid hormone biosynthesis and estrogen receptor (ER ) mRNA were detected by RT-PCR. As a result, treatment of TM3 with E, BP and OP(1 mM, respectively) significantly decreased the viability but not all of groups as high as 1 M. Exposure of TM3 to OP significantly reduced the total cell number but not E or BP. The expression of CYPscc mRNA was slightly reduced in BP (1 nM, 1 M) and significantly decreased in OP (1 nM, 1 M) treated TM3, except E group. But the expression of ER mRNA was sightly increased in all treated groups. In conclusion, BP and OP (high concentration) might inhibit steroidogenesis by decreasing the CYPscc mRNA expression in the mouse testis. These results suggest that BP and OP might impair spermatogenesis and subsequently disturb testicular function.

저자
  • 이호준
  • 김묘경
  • 강희규
  • 김동훈
  • 한성원
  • 고덕성