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Phytobiotic소재 선발을 위한 약용식물 추출물의 항산화 및 항균 활성

Antioxidative and Antimicrobial Activities of Medicinal Plant Extracts for Screening Phytobiotic Material

  • 정희경 (대구신기술사업단 바이오산업지원센터) ;
  • 김영진 (대구가톨릭대학교 의공학과) ;
  • 박병권 (전진바이오팜(주)) ;
  • 박승춘 (경북대학교 수의과대학) ;
  • 정유석 (한국생명공학연구원) ;
  • 홍주헌 (대구신기술사업단 바이오산업지원센터)
  • 발행 : 2007.10.30

초록

Phytobiotic으로 활용 가능한 소재를 선발하기 위하여 9종의 약용식물인 진피, 매자나무 뿌리, 매자나무 줄기, 상백피, 석곡, 석창포, 취나물, 택사, 호장근의 열수 추출물을 대상으로 항산화성 및 항균활성을 조사하였다. 호장근은 총폴리페놀 함량이 $725.8{\mu}g/mL$로 가장 높았으며, 전자공여능이 85.9%, 아질산염 소거능이 92.7%로 우수한 항산화성을 나타내었다. 또한 호장근은 0.8 mg/mL의 농도에서 P. aeruginosa, E. coli, B. cereus, S. Typhimurium, L. monocytogenes, K. pneumoniae, S. aureus의 생육을 저해하였다. 호장근 추출물은 7종의 균주에 대해 항균활성을 나타내었고, 특히 K. pneumoniae, S. aureus에 대해서 지속적인 항균활성을 나타내었다. K. pneumoniae, S. aureus에 대한 $IC_{50}$은 각각 6.24 mg/mL, 1.8 mg/mL이었다. 호장근은 항산화성 및 항균활성을 동시에 가지는 기능성 약용식물 추출물로 가축의 phytobiotic소재로 활용 가능함을 확인하였다.

For this study, plant material for development of phytobiotics (feed additives made with plant extract) was screened. Among hot-water extracts of 9 medicinal plants, Fallopia japonin showed the highest antioxidative activity; the electron donating ability (EDA) and nitrite scavenging ability were 86.9% and 92.7%, respectively. Also, F. japonica had the antimicrobial activity for Pseudomonas aeruginora, Escherichia coli, Bacillus cereus, Salmonella Typhimurium, Listeria monocytogenes, Klebsiella pneumoniae, Staphyzococcus aureus. Specially, antimicrobial activity of F. japonica against K. pneumoniae, and S. aureus was vet strong. $IC_{50}$ of F. japonica against K. pneumoniae, and S. aureus was 6.24 mg/mL and 1.8 mg/mL respectively. These results suggested that F. japonica was a candidate for a phytobiotic material.

키워드

참고문헌

  1. Vanbelle M. 1989. The European perspective on the use of animal feed additives: A world without antibiotics, anabolic agents or growth hormone. In Lyons TP, ed. Biotechnology in the feed industry. Proc. of Alltech's 5th Annu. Symp. Alleth Tech. Publ., p 191
  2. Neidert E, Sachemenbrecker PW, Frank T. 1987. Drug residues in animal tissue. J Assoc Chem 70: 197-200
  3. Bae KH, Ko TG, Kim JH, Cho WT, Han YK, Han IK. 1999. Use of metabolically active substances to substitute for antibiotics in finishing pigs. Kor J Anim Sci 41: 23-30
  4. Kim JD, Kang WB, Han YK, Han IK. 1999. Study on the development of antibiotic-free diet for weaned pigs. Kor J Anim Nutr Feed 23: 277-282
  5. Sohn KS, Kim MK, Kim JD, Han IK. 2000. The role of immunostimultants in monogastric animal and fish. Asian- Aus J Anim Sci 13: 1178-1187 https://doi.org/10.5713/ajas.2000.1178
  6. Berg RD. 1998. Probiotics, prebiotics or conbiotics. Trend Microbial 6: 9-92 https://doi.org/10.1016/S0966-842X(98)01224-4
  7. Do JR, Kim KJ, Jo JH, Kim YM, Kim BS, Kim HK, Lim SD, Lee SW. 2005. Antimicrobial, antihypertensive and anticancer activities of medicinal herbs. Korean J Food Sci Technol 37: 206-213
  8. Nam SH, Kang MY. 2000. Screening of antioxidative activity of hot-water extracts from medicinal plants. J Korean Soc Agric Chem Biotechnol 43: 141-147
  9. Folin O, Denis W. 1912. On phosphtungstuc-phosphomokybic compounds as color reagents. J Biol Chem 12: 239- 243
  10. Gray JI, Dugan JR. 1975. Inhibition of N-nitrosamine formation in model food system. J Food Sci 40: 981-984 https://doi.org/10.1111/j.1365-2621.1975.tb02248.x
  11. Kim KT, Kim JO, Lee GD, Kwon JH. 2005. Antioxidative and nitrite scavenging activities of Polygonatum odoratum physiological activites of fresh Pleurotus erygii extracts. J Korean Soc Food Sci Nutr 34: 439-445 https://doi.org/10.3746/jkfn.2005.34.4.439
  12. Cha BC, Lee EH. 2007. Antioxidant activities of flavonoids from the leaves of smilax China linne. Kor J Pharmacogn 38: 31-36
  13. Kim CH, Lee SK, Lee KH. 2004. Effects of dietary xanthophylls and see weed by-products on growth performance, color and antioxidant properties in broiler chicks. Korean J Food Sci Ani Resour 24: 128-134
  14. Han SK. 2004. Antioxidant effect of fermented Salicornia herbacea L. liquid with EM (effective microorganism) on pork. Korean J Food Sci Ani Resour 24: 298-302
  15. Han SI, Choi SC. 2002. The promotion of consumption on fresh-meat brand. Korean J Agric Manag Policy 29: 298- 315
  16. Lee JA, Kim SK, Cho OS, Oh GH, Park YG. 1997. Investigation of respiratory disorders in slaughtered pig. Korean J Vet Ser 20: 27-36
  17. Park HY, Park KK, Jung YC, Lee ES, Yang SY, Im BS, Kim CJ. 2004. Effect of feeding fermented food wastes on consumer acceptability of pork belly. Korean J Food Sci Ani Resour 24: 386-392
  18. Park JW, Kim T, Lim DJ, Lee HB, Joo YS, Park YI. 2004. Antibacterial activities of mushroom liquid culture extracts against livestock disease-causing bacteria and antibiotic resistant bacteria. J Mycol 32: 145-147 https://doi.org/10.4489/KJM.2004.32.2.145
  19. Lee SG. 2003. Antimicrobial activity of Caesalpinia sappan against animal husbandry disease. Kor J Microbiol Biotechnol 31: 242-249
  20. Mok JS, Song KC, Choi NJ, Yang HS. 2001. Antibacterial effect of Cinnamon (Cinnamomum cassia) bark extract against fish pathogenic bacteria. J Korean Fish Soc 34: 545-549

피인용 문헌

  1. Dyeing of plasma treated cotton and bamboo rayon with Fallopia japonica extract vol.23, pp.3, 2016, https://doi.org/10.1007/s10570-016-0951-9
  2. Antioxidant and Antitumor Activities of Methanolic Extracts from Humulus japonicus vol.25, pp.2, 2012, https://doi.org/10.9799/ksfan.2012.25.2.357
  3. 완대탕(完帶湯)의 Gardnerella vaginalis에 대한 시험관내 항균력 및 Clindamycin과 병용효과 vol.25, pp.1, 2007, https://doi.org/10.15204/jkobgy.2012.25.1.034