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Effects of Reactive Oxygen Species (ROS) on Capacitation and Acrosome Reaction in Human Spermatozoa KCI 등재

반응성 산소족이 사람 정자의 수정능력 획득과 첨체반응에 미치는 영향

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

본 연구에서는 반응성 산소족이 수정능력획득, 칩체반응에 미치는 영향을 알아보고자 반응성 산소족으로 superoxide anion은 xanthine (X) -xanthine oxidase (XO) system을, hydroperoxide는 를 농도별로 처 리하였으며, nitric oxide (NO)는 NO donor인 sodium nitroprusside (SNP)를 처리하였다 또한 남성불임요인의 하나로 알려진 leukocytospermia에 대한 영향을

To investigate the effects of reactive oxygen species (ROS) on capacitation, acrosome reaction in human spermatozoa. Human spermatozoa were incubated with xanthine-xanthine oxidase (X-XO), , sodium nitroprusside (SNP) or lymphocyte. Otherwise, spermatozoa were incubated under low (5 %) condition. Chlortetracycline (CTC) staining was conducted to assess capacitation and acrosome reaction. Analysis of lipid peroxidation was done by spectrophotometric determination of malondialdehyde (MDA) production in spermatozoa. , X-XO, SNP and lymphocyte treatment significantly increased capacitated spermatozoa within 1 h of incubation. There was no significant difference in capacitation between low- and high groups. In the presence of low concentration of , lipid peroxidation decreased significantly. However, under the high concentration of , lipid peroxidation significantly increased at the end of incubation compared to control. In the presence of high concentration of lymphocytes, lipid peroxidation significantly increased compared to control at 1hr of incubation. There was no significant difference in lipid peroxidation according to concentration examined. Acrosome reaction (AR) was evaluated by CTC staining after the progesterone challenge. In all ROS groups, AR increased compared to control. The X(100 M) - XO (100mIU) system was the most potent to induce AR. Taken together, it suggested positive control of AR by ROS and the positive relationship between the lipid peroxidation and AR. The early onset of capacitation in the presence of ROS suggest that ROS might be a positive regulator of sperm capacitation and hyperactivation.

저자
  • 강희규
  • 김동훈
  • 한성원
  • 김묘경
  • 권혁찬
  • 이호준
  • 윤용달
  • 김문규