DOI QR코드

DOI QR Code

Antioxidant, anticoagulant, and α-glucosidase inhibitory effects of mistletoe (Viscum album var. coloratum) extract

겨우살이(Viscum album var. coloratum) 추출물의 항산화, 항응고 및 α-glucosidase 저해 효과

  • Lee, Mi Eun (Department of Chemical Engineering, Chungwoon University) ;
  • Kim, Jung Min (Department of Chemical Engineering, Chungwoon University) ;
  • Song, In Young (Department of Chemical Engineering, Chungwoon University) ;
  • In, Man-Jin (Department of Chemical Engineering, Chungwoon University) ;
  • Kim, Dong Chung (Department of Chemical Engineering, Chungwoon University)
  • Received : 2022.03.08
  • Accepted : 2022.03.18
  • Published : 2022.03.31

Abstract

Antioxidant, α-glucosidase inhibition, and anticoagulant effects of 80% ethanolic extract from mistletoe (Viscum album var. coloratum) were investigated. The yield and polyphenol content of the mistletoe extract were 30.9±0.4% and 57.6±1.5 mg gallic acid equivalents/g, respectively. The antioxidant effects of the mistletoe extract such as free and cationic radical scavenging ability, nitrite scavenging ability, and reducing power increased in proportion to its concentration. Also the mistletoe extract inhibited the activity of α-glucosidase, and delayed plasma coagulation mainly by inhibiting the extrinsic and common pathways in blood coagulation system.

겨우살이(Viscum album var. coloratum)의 80% 에탄올 추출물의 항산화, α-glucosidase 저해 및 항응고 효과를 확인하였다. 겨우살이 추출물의 수율은 30.9±0.4%이었고, 폴리페놀 함량은 57.6±1.5 mg GAE/g으로 나타났다. 겨우살이 추출물의 농도에 비례하여 유리라디칼 및 양이온라디칼 소거능, 아질산염 소거능, 환원력의 항산화 효과가 증가하였다. 또한 겨우살이 추출물은 α-glucosidase의 활성을 저해하였고, 혈액응고 체계의 외인성 경로와 공통 경로를 주로 저해함으로써 혈장 응고를 억제하였다.

Keywords

Acknowledgement

본 논문은 제1저자의 청운대학교 석사학위논문을 바탕으로 작성 되었습니다.

References

  1. Kim I, Yoon TJ, Park CH, Lee WK, Lee SH, Kim JB (2015) Studies on the content of lectin in Korean mistletoe according to the host tree species and characterization for its application to the quality control. Korean J Food Nutr 28: 1090-1097. doi: 10.9799/ksfan.2015.28.6.1090
  2. Kim CS, Kim SY, Sun BY, Yi JS (2013) A review of the taxonomic and ecological characteristics of Korean mistletoe type (Viscum, Korthalsella, Loranthus and Taxillus). Korean J Pl Taxon 43: 81-89. doi: 10.11110/kjpt.2013.43.2.81
  3. Khwaja TA, Dias CB, Pentecost S (1986) Recent studies on the anticancer activities mistletoe (Viscum album) and its alkaloids. Oncology 43: 42-50. doi: 10.1159/000226419
  4. Ribereau-Gayon G, Jung ML, Baudino S, Salle G, Beck JP (1986) Effect of mistletoe (Viscum album L.) extracts on cultured tumor cells. Experientia 42: 594-599. doi: 10.1007/BF01955552
  5. Frantz M, Jung ML, Ribereau-Gayon G, Anton R (2000) Modulation of mistletoe (Viscum album L.) lectins cytotoxicity by carbohydrates and serum glycoproteins. Arzneimittelforschung 50: 471-478. doi: 10.1055/s-0031-1300232
  6. Ju MJ, Do JR, Kwon JH, Kim HK (2009) Physiological activities of mistletoe extracts from Viscum album L. J Korean Soc Food Sci Nutr 38: 529-534. doi: 10.3746/jkfn.2009.38.5.529
  7. Fischer S, Scheffler A, Kabelitz D (1997) Stimulation of the specific immune system by mistletoe extracts. Anticancer Drugs 8: S33-37. doi: 10.1097/00001813-199704001-00008
  8. Pae HO, Seo WG, Shin M, Lee HS, Lee HS, Kim SB, Chung HT (2000) Heat shock treatment protects human HL-60 cells from apoptosis induced by lectin II isolated from Korean mistletoe, Viscum album var. coloratum. Immunopharmacol Immunotoxicol 22: 237-252. doi: 10.3109/08923970009016418
  9. Jung HY, Yoo YC, Kim I, Sung NY, Choi OB, Choi BH, Kim JB (2015) Inhibition of Type II diabetes in ob/ob mice and enhancement of mitochondrial biogenesis in C2C12 myotubes by Korean mistletoe extract. J Korean Soc Food Sci Nutr 44: 324-330. doi: 10.3746/jkfn.2015.44.3.324
  10. Lee HJ, Do JR, Kwon JH, Kim HK (2010) Antioxidant effects of Viscum album L. extracts by extraction conditions. J Korean Soc Food Sci Nutr 39: 14-19. doi: 10.3746/jkfn.2010.39.1.014
  11. Jang TO, Yoo YH, Hwang YC, Kim HK, Woo HC (2010) Total polyphenol content and antioxidative activities of mistletoe (Viscum album) extracts by supercritical carbon dioxide. J Korean Soc Food Sci Nutr 39: 20-24. doi: 10.3746/jkfn.2010.39.1.020
  12. Folin O, Denis W (1912) On phosphotungstic-phosphomolybdic compounds as color reagents. J Biol Chem 12: 239-243. doi: 10.1016/S0021-9258(18)88697-5
  13. Blois MS (1958) Antioxidant determination by the use of a stable free radical. Nature 181: 1199-1200. doi: 10.1038/1811199a0
  14. Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C (1999) Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radical Biol Med 26: 1231-1237. doi:10.1016/S0891-5849(98)00315-3
  15. Oyaizu M (1985) Studies on products of browning reaction: antioxidant activities of products of browning reaction prepared from glucosamine. Jap J Nutr 44: 307-315. doi: 10.5264/eiyogakuzashi.44.307
  16. Gray JI, Dugan Jr LR (1975) Inhibition of N-nitrosamine formation in model food system. J Food Sci 40: 981-985. doi: 10.1111/j.1365-2621.1975.tb02248.x
  17. Kim TH (2016) A novel α-glucosidase inhibitory constituent from Uncaria gambir. J Nat Med 70: 811-815. doi: 10.1007/s11418-016-1014-0
  18. Fox I, Dawson A, Loynds P, Eisner J, Findlen K, Levin E, Hanson D, Mant T, Wagner J, Maraganore J (1993) Anticoagulant activity of HirulogTM, a direct thrombin inhibitor, in humans. Thromb Haemost 69: 157-163. doi: 10.1055/s-0038-1651573
  19. Daglia M (2012) Polyphenols as antimicrobial agents. Curr Opin Biotechnol 23: 174-181. doi: 10.1016/j.copbio.2011.08.007
  20. Zong S, Ji J, Li JL, Yang QH, Ye M (2017) Physicochemical properties and anticoagulant activity of polyphenols derived from Lachnum singerianum. J Food Drug Anal 25: 837-844. doi: 10.1016/j.jfda.2016.08.011
  21. McDougall GJ, Shpiro F, Dobson P, Smith P, Blake A, Stewart D (2005) Different polyphenolic components of soft fruits inhibit α-amylase and α-glucosidase. J Agric Food Chem 53: 2760-2766. doi: 10.1021/jf0489926
  22. Park EJ, Cho HW, Park YJ, In MJ, Kim DC (2021) In vitro biological activities of lotus (Nelumbo nucifera) leaves extract. J Appl Biol Chem 64: 121-125. doi: 10.3839/jabc.2021.018
  23. In MJ, Kim KH, Kim DC (2020) Antioxidant and anticoagulant activities of Ganghwa medicinal mugwort (Artemisia princeps Pampanini) extract. J Appl Biol Chem 63: 439-442. doi: 10.3839/jabc.2020.057
  24. Kim DC (2020) Antioxidative activities of ethanolic extracts of Duzhong (Eucommia ulmoides Oliver) leaf and bark. J Appl Biol Chem 63: 259-265. doi: 10.3839/jabc.2020.035
  25. Kim DS, Choi MH, Shin HJ (2018) Polyphenol contents and antioxidant activities of domestic bamboo leaves with different extraction solvents. J Adv Eng Tech 11: 7-13. doi: 10.35272/jaet.2018.11.1.7
  26. In MJ, Kim DC (2021) Antioxidant potential of root extracts of Panax ginseng and Panax notoginseng. J Appl Biol Chem 64: 407-411. doi: 10.3839/jabc.2021.055
  27. Lee SE, Lee SW, Bang JK, Yu YJ, Seong NS (2004) Antioxidant activities of leaf, stem and root of Panax ginseng C.A. Meyer. Korean J Medicinal Crop Sci 12: 237-242
  28. Lee SJ, Song EJ, Lee SY, Kim KBWR, Kim SJ, Yoon SY, Lee CJ, Ahn DH (2009) Antioxidant activity of leaf, stem and root extracts from Orostachys japonicus and their heat and pH stabilities. J Korean Soc Food Sci Nutr 38: 1571-1579. doi: 10.3746/jkfn.2009.38.11.1571
  29. Kim JH, Jeong GH, Jeong YH, Kim TH (2019) Free radical scavenging and α-glucosidase inhibitory activities of the extracts of Dystaenia takesimana from Ulleung island. Korean J Food Preserv 26: 246-252. doi: 10.11002/kjfp.2019.26.2.246
  30. Park EM, Kim MY (2017) In vitro antioxidant property and α-glucosidase and pancreatic lipase inhibiting activities of Jeju camellia mistletoe (Korthalsella japonica (Thunb.) Engl.) extracts. J Appl Biol Chem 60: 241-244. doi: 10.3839/jabc.2017.038
  31. Jeong GH, Jeong YH, Kim TH (2020) Comparison of the radical scavenging and α-glucosidase inhibitory activities of fingerroot extracts based on different extraction methods. Korean J Food Preserv 27: 197-203. doi: 10.11002/kjfp.2020.27.2.197
  32. Choi HJ, Jeong YK, Kang DO, Joo WH (2008) Inhibitory effects of four solvent fractions of Alnus firma on α-amylase and α-glucosidase. J Life Sci 18: 1005-1010. doi : 10.5352/JLS.2008.18.7.1005