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추출 방법에 따른 명일엽과 돌미나리 착즙박의 정미성분 및 항산화 특성

Taste Compounds and Antioxidant Properties in Extracts of Angelica keiskei and Oenanthe javanica Juice By-Products According to Extraction Methods

  • 이현정 (삼성웰스토리(주) 상품R&D파트) ;
  • 유하나 (삼성웰스토리(주) 상품R&D파트) ;
  • 이현규 (한양대학교 식품영양학과)
  • 투고 : 2023.11.07
  • 심사 : 2023.11.18
  • 발행 : 2023.12.30

초록

본 연구에서는 추출 수율 및 소재의 풍미를 높일 수 있는 EE와 CE를 통해 명일엽과 돌미나리 착즙박 추출물을 제조하여 추출물의 정미 성분인 유리아미노산, 유기산, 당류와 항산화 특성인 DPPH 라디칼 소거능, TPC, TFC를 비교분석하여 명일엽과 돌미나리 착즙박 추출물의 업사이클 가능성을 검토해 보고자 하였다. 유리아미노산의 함량은 명일엽 착즙박은 EE가, 돌미나리 착즙박은 CE가 더 높은 추출 효율을 가졌으며, 착즙 전 원물로 제조한 추출물에 비해 높은 추출 효율을 나타냈다. AKEE의 주요 아미노산은 leucine, alanine, aspartic acid, AKCE의 주요 아미노산은 valine, alanine, aspartic acid 이다. OJEE의 주요 아미노산은 leucine, aspartic acid, arginine, OJCE의 주요 아미노산은 valine, aspartic acid, arginine으로 추출물의 특성에 맞게 사용한다면 식품의 풍미 향상과 더불어 기능성 소재로의 활용 가능성을 확인할 수 있었다. 유기산과 당류 함량은 명일엽, 돌미나리 착즙박 공통적으로 CE의 추출 효율이 높았다. 추출방법에 따라 유기산 및 당류의 조성이 상이하기 때문에 신맛과 단맛의 패턴이 다르게 나타나며 산도 조절과 같은 기능적 특성도 예상할 수 있다. DPPH 라디칼 소거능과 TPC 함량은 명일엽, 돌미나리 착즙박 공통적으로 CE의 추출 효율이 높았다. 이는 CE에 사용한 에탄올과 페놀성 화합물이 반응하여 추출 함량이 증대 된 것으로 판단된다. 또한, 폴리페놀 함량이 높아질수록 DPPH라디칼 소거능이 높아지고 있어 양의 상관관계 성립을 예측할 수 있었다. 하지만 착즙 전 원물 추출물 대비 착즙박 추출물의 항산화능은 다소 낮은 수준이므로 사용량에 대한 검토가 필요하다. TFC 함량은 명일엽 착즙박 추출물은 CE 대비 EE 에서 더 높은 추출 효율을 가지지만, 돌미나리 착즙박 추출물에서는 EE와 CE의 통계적 유의성이 없게 나타났다. 이는, 착즙박 추출물에 가해진 효소의 활성 조건이 착즙박의 세포벽 결합 구조를 파괴하여 플라보노이드의 추출을 유도할 때 AKEE에서는 적합하였지만, OJEE에서는 부적합하여 다른 경향의 결과를 나타내는 것으로 유추해 볼 수 있다. 본 연구를 통하여 명일엽과 돌미나리 녹즙 제조 후 생성되는 착즙박을 활용한 추출물의 정미 성분과 항산화 특성을 분석하였고 고부가가치 소재의 이용성 가능성을 확인 할 수 있었다. 연구결과를 바탕으로 실용화를 위한 구체적 연구개발의 확대가 필요할 것으로 사료된다.

This study aimed to examine the possibility of upcycling extracts of Angelica keiskei and Oenanthe javanica juice by-products through comparing enzyme extraction (EE) and complex extraction (CE) methods to increase the extraction yield and flavor of materials. A higher extraction yield was obtained for free amino acid content with EE and CE for A. keiskei and O. javanica juice by-products, respectively, and a higher extraction efficiency was achieved with juice by-products than with extracts prepared from raw materials before juice production. The content of major amino acids varied depending on the extraction method used. When used according to the characteristics of the extract, their use as a functional material was confirmed along with improvement in the flavor of the food. Consistently high extraction yields for organic acid and sugar levels were obtained with CE in A. keiskei and O. javanica juice by-products. The DPPH radical scavenging ability and TPC were consistently high with CE in A. keiskei and O. javanica juice by-products; the increase in extracted content was likely because of the reaction between the ethanol used for CE and the phenolic compounds. However, because the antioxidant capacity of the juice by-product extracts was somewhat lower than that of the extracts from raw materials before juice production, the amount used should be reviewed. The TFC was found to be higher in extracts obtained with EE than with CE for A. keiskei juice by-products; however, no significant difference was observed between EE and CE in the O. javanica juice by-products. Through this study, the taste compounds and antioxidant properties of extracts obtained from juice by-products produced after the production of A. keiskei and O. javanica green juice were analyzed, and the availability of high value-added materials was confirmed. Based on these research results, expanding specific R&D for practical use should be explored.

키워드

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