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韓國資源植物學會誌 = Korean journal of plant resources v.21 no.1, 2008년, pp.12 - 18   피인용횟수: 22

제주도에 자생하는 양치식물의 생리활성 검색
Screening of Biological Activities in Fern Plants Native to Jeju Island

오순자   (제주대학교 생명과학과.기초과학연구소UU0001165  ); 홍성수   (골든팜CC0175093  ); 김연희   (골든팜CC0175093  ); 고석찬   (제주대학교 생명과학과.기초과학연구소UU0001165  );
  • 초록

    제주도에 자생하는 양치식물 25종을 대상으로 항산화활성, ACE 저해활성, APN 저해활성 및 $\alpha$ -amylase 저해활성을 검색하였다. 항산화활성은 쇠고비와 일색고사리에서 비교적 높아서 항산화 음료로 애용되고 있는 차나무 잎보다도 더 높았다. ACE 저해활성과 APN 저해활성은 전체적으로 낮았으나, 쇠고비에서 각각 26.7%와 28.2%으로 비교적 높은 저해활성을 나타내었다. $\alpha$ -Amylase 저해활성은 10종이 50% 이상의 높은 활성으로 보였으며, 그 중에서 쇠고비와 홍지네고사리의 저해활성이 특히 높았다. 이상의 결과로부터 쇠고비는 항산화활성뿐만 아니라 ACE 저해활성, APN 저해활성과 $\alpha$ -amylase 저해활성 모두 다른 식물에 비해 높아 생리활성 물질의 분리 및 동정 등 식품소재 및 식물생약으로 이용하기 위한 후속 연구가 기대된다.


    Antioxidative activity and inhibitory activity of angiotensin I converting enzyme(ACE), aminopeptidase N(APN) and $\alpha$ -amylase were investigated in the methanol extracts from 25 fern plants native to Jeju Island, in order to screen the plant species containing bioactive materials for functional foods or medicines. The antioxidative activity was higher in Cytomium fortunei(41.9%) and Rumohra standishii(34.1%) than in leaves of Thea sinensis(30.9%), a small tree for antioxidative beverage. Inhibitory activities of ACE and APN were relatively high in Cytomium fortunei as 26.7% and 28.2% respectively. $\alpha$ -Amylase inhibitory activity was higher than 50% in 10 species. Particularly, Cytomium fortunei(87.4%) and Dryopteris erythrosora(71.6%) showed the inhibitory activities higher than those of other form plants. Of 25 fern plants investigated here, Cytomium fortunei showed not only the highest antioxidative activity but also the highest inhibitory activity of ACE, APN and $\alpha$ -amylase. It suggests that Cytomium fortunei could be potentially used as a resource of bioactive materials for fuctional foods or medicines.


  • 주제어

    Fern plants .   Antioxidative activity .   Inhibitory Activity .   Angiotensin I converting enzyme(ACE) .   Aminopeptidase N(APN) .   $\alpha$-amylase.  

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