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Evaluation and Comparison of Antioxidant Activities of Nineteen Commercial Carbonated Vinegar Liquors

19종 시판 탄화초액의 항산화활성의 평가 및 비교

  • Kim, Sung-Phil (Department of Molecular Science and Technology, Ajou University) ;
  • Nam, Seok-Hyun (Department of Biological Science, Ajou University)
  • 김성필 (아주대학교 분자과학기술학과) ;
  • 남석현 (아주대학교 생명과학과)
  • Published : 2009.12.31

Abstract

Biological functionality of nineteen commercially available carbonated vinegar liquors including wood vinegar liquor (WVL), bamboo vinegar liquor (BVL) and chaff vinegar liquor (CVL) were evaluated, focusing mainly on electron donating ability to DPPH radical, reducing power against ferricyanide ($Fe^{3+}$), blockading ability to linoleic acid autoxidation and NO production from LPS-stimulated RAW264.7 cells plus cytotoxicity to RAW264.7 cells. The results showed that crude carbonated vinegar liquors, regardless of their source materials, have high capacity of antioxidation such as electron donating ability, reducing power, blockading ability to lipid peroxidation and NO production, as well as cell cytotoxicity. Refined carbonated vinegar liquors for skin care or bath showed significantly low cell cytotoxicity, however, overall antioxidant potencies were also low. Especially, these carbonated vinegar liquors revealed low levels of inhibition for NO production deeply involved in inflammation. Among nineteen carbonated vinegar liquors examined, chaff vinegar liquor was observed to be the most potent carbonated vinegar liquor with high antioxidant activities together with low cytotoxicity to mammalian cells.

목초액, 죽초액 및 왕겨초액을 포함한 시판 중인 19종의 탄화초액이 가지는 기능성을 DPPH 라디칼에 대한 전자공여활성과 $Fe^{3+}$인 ferricyanide에 대한 환원력, linoleic acid의 자동산화를 억제하는 지질과산화 억제활성, LPS 자극에 의한 생쥐 대식세포주 RAW264.7세포의 NO생산에 대한 억제활성 및 탄화초액 처리에 의한 RAW264.7세포의 세포독성을 중심으로 평가하였다. 실험 결과, 탄화원료에 관계없이 정제도가 떨어지는 탄화초액의 경우, 전자공여활성, 환원력, 지질과산화 억제활성 및 NO 생성 억제활성을 포함한 항산화활성과 세포독성은 모두가 높게 나타났다. 반면, 피부이상 치료용이나 목욕용 정제 탄화액의 경우, 세포독성은 낮지만 전반적인 항산화활성도 낮았고, 특히 염증 유발에 중요한 분자인 NO의 생성을 억제하는 활성도 낮게 나타났다. 19종의 탄화초액 중에서는 왕겨초액이 NO 생성 억제활성을 포함한 항산화활성이 높을 뿐 아니라 세포독성이 낮은 기능성이 뛰어난 탄화초액임이 관찰되었다.

Keywords

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