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Effect of Whey Protein Isolate and Lactobacillus spp. Cell Extracts on Intracellular Antioxidative Activities in Human Prostate Epitherial Cells

유청단백질 및 Lactobacillus spp. 추출물이 전립선 세포 내 항산화 활성에 미치는 영향

  • Published : 2006.10.31

Abstract

Bovine whey protein are rich in cysteine, which is the rate limiting amino acid for synthesis of antioxidant glutathione(GSH). Some strains of Lactobacillus caseihas been reported to contain high level of GSH in cell extracts. The objective ofthis study was to determine whether enzymatically hydrolyzed whey protein isolate(WPI) and cell extract of Lb. casei HY2782 could increase intracellular GSH concentrations and protect against oxidant induced cell death in human prostate epithelial cell line (designated as RWPE1, and PC3MMM2 cells). Treatment of RWPE1 cellsandPC3MMM2 cells with hydrolyzed WPI (500g/ml) significantly increased GSH by28.2% and38.4% respectively. Compared with control cells receiving no hydrolyzed WPI(P<0.05). hydrolyzed WPI and Lb casei HY2782 cell extracts significantly protected RWPE1 and PC3MMM2 cellsfrom oxidant induced cell death compared with controls receiving no WPI. DNA damage associated with oxidant treatment was demonstrated by single cell gel (SCG) electrophoresis.

본 실험은 가수분해 시킨 유청단백질과 Lb. casei HY2782의 세포 추출물을 인간 전립선 세포에처리하여 세포 내 glutathione 농도 상승효과와 산화제 tbutyl hydroperoxide (TBHP)에 의한핵산 손상 방지 효과를 알아보기 위한 실험으로 전립선 세포 RWPE1 cells와 PC3MMM2 cells에 hydrolyzed WPI(500g/m)를 48시간 동안 처리 시, 가수분해 시키지 않은 WPI 보다 각각 28.2%, 38.4%씩 GSH 농도가 증가하는 것을 유의적으로 확인할 수 있었고(p<0.05), 카제인의 경우 RWPE1 cells and PC3MMM2 cells에 처리 시 가수분해 시킨 카제인과의 유의차가 보이지 않았으며 (p<0.05), glutathione 합성저해제인 Buthionine sulfoximin (BSO) 처리 시 Glutathione 농도가 현저하게 낮아지는 것을 확인할 수가 있었다(Anderson, 1998). 전립선 세포 RWPE1 cells 와 PC3MMM2 cells에 Lb. casei HY2782 세포 추출물 처리 시 PC3MMM2 cell에서는 GSH의 농도가 유의적으로 증가하는 것을 확인 할 수 있었고(p<0.05), RWPE1 cell에서는 증가 성향을 확인 할 수가 있었다.가수분해 시킨 유청단백질과 Lb. casei cell 세포추출물 처리 시 산화제에 의한 세포의 DNA 손상 억제정도와 사멸율의 변화를 확인 한 결과, 가수분해 WPI를 처리 후 Oxidant tbutyl hydroperoxide (TBHP)(500mM)를 이용하여 PC3MMM2 세포에 산화적인 스트레스를 주었을 시, TBHP만 처리한 구에서는 62.0%의 생존율을 나타내었고, glutathione 합성저해제인 BSO를 첨가시킨 처리구에서는 33.7%의 생존율을 나타내었다. 가수분해 시킨 WPI와 카제인 처리구에서는 각각 86.7%, 63.6%의 생존율을 나타내었고, WPI와 BSO를 함께 처리한 구에서는 71.5%의 생존율을 나타내었다. 이는 BSO에 의해 GSH의 생성이 저해되어 나타난 결과로 보여지며(Anderson, 1988), 가수분해시킨 WPI 가 가수분해 시킨 카제인보다는 높은 생존율을 나타내는 것을 유의적으로 확인할 수가 있었다. (p<0.05) Lb. casei 세포 추출물처리에 의한 생존율에서는 가수분해시킨 WPI와 유사한 수준의 82.4%의 생존율을 보였다. 가수분해시킨 유청단백질과 Lb. casei cell 세포추출물에 의한 세포에서의 glutathione 농도 증가에 의해 산화제에 의한 DNA의 손상이 적었던 것으로 사료되어지고, 이로 인해 생존율이 높았던 것으로 판단된다.

Keywords

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