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Comparison of the Total Phenolic and Flavonoid Contents and Antioxidant Activities of Four Kinds of Sand Dune Plants Living in Taean, Korea

태안에서 서식하는 사구식물 4종의 폴리페놀, 플라보노이드 함량과 항산화 활성 비교

  • Received : 2016.08.12
  • Accepted : 2016.11.21
  • Published : 2017.02.28

Abstract

This study attempted to investigate the antioxidant properties of four different species of sand dune plants (Calystegia soldanella, Messerschmidia sibirica, Vitex rotundifolia and Rosa rugosa). In order to validate the antioxidant activity of these plants, we first determined the total amount of flavonoid versus phenolic contents (TFC/TPC) and extracted crude flavonoids for measuring antioxidant activities that were determined by DPPH, ABTS and FRAP assays with radical scavenging effects. We found that highest amounts of TPC were detected in R. rugose with values of 110.20 mg/g (leaves) and 65.71 mg/g (stems), while the highest amounts of TFC in V. rotundifolia with values of 38.07 mg/g (leaves) and 6.55 mg/g (stems). We further examined how closely related the amounts of TFC/TPC in antioxidant activities and found that R. rugose has the highest activities of radical scavenging with values of $63.4{\mu}g/ml$ and $51.2{\mu}g/ml$ determined by DPPH and ABTS assays compared with the value of $21.2{\mu}g/ml$ by FRAP assay. It is of note that there is a statistically significant correlation between the resulting antioxidant activities and the total ratio of TFC and TPC, suggesting that the different amounts of TFC/TPC may directly contribute to the various antioxidant activities.

본 연구에서는 사구식물인 갯메꽃(Calystegia soldanella), 모래지치(Messerschmidia sibirica), 순비기나무(Vitex rotundifolia), 해당화(Rosa rugosa)의 잎과 줄기의 methanol 추출물에서 측정한 총 폴리페놀 함량은 해당화(110.20 mg/g)가 가장 높았고, 총 플라보노이드 함량은 순비기나무(38.07 mg/g)가 가장 높게 측정되었다. 추출물의 에틸아세테이트 분획물(조플라보노이드)을 이용하여 라디칼 소거능을 나타내는 DPPH, ABTS, FRAP assay로 항산화능을 측정하였다. 그리고 총 폴리페놀 / 플라보노이드 함량 (TFC/TPC) 비와 항산화능, 두 요인 사이의 상관관계에 대하여 분석하였다. TFC/TPC 비율이 매우 높았던 순비기 나무의 잎과 줄기는 항산화능 실험에서 대조군인 ascorbic acid 보다 떨어지는 것으로 나타났다. 하지만 가장 낮았던 해당화 잎이 DPPH, ABTS assay에서 가장 항산화능이 높았고, FRAP assay에서 모래지치 줄기가 가장 뛰어났다. 위 결과에서 항산화활성과 TFC/TPC 간의 상관관계를 통계적으로 유의하다는 점을 확인하여 TFC/TPC의 값이 직접적으로 항산화능에 기여 한다고 판단된다.

Keywords

References

  1. Ahn, N.R., J.M. Ko and H.C. Cha. 2012. Comparison of flavonoid profiles between leaves and stems of Calystegia soldanella and Calystegia japonica. Am. J. Plant Sci. 3:1073-1076. https://doi.org/10.4236/ajps.2012.38128
  2. Arrigoni, O. and M.C. De Tulio. 2002. Ascorbic acid: much more than just an antioxidant. Biochem Biophys Acta 1569:1-9. https://doi.org/10.1016/S0304-4165(01)00235-5
  3. Chen, G., S. Chen, Y. Xie, F. Chen, Y. Zhao, C. Luo and Y. Gao. 2015. Total phenolic, flavonoid and antioxidant activity of 23 edible flowers subjected to in vitro digestion. J. Funct Foods 17:243-259. https://doi.org/10.1016/j.jff.2015.05.028
  4. Dudonne, S., X. Vitrac, P. Coutiere, M. Woillez and J.M. Merillon. 2009. Comparative study of antioxidant properties and total phenolic content of 30 plant extracts of industrial interest using DPPH, ABTS, FRAP, SOD, and ORAC assays. J. Agr. Food Chem. 57:1768-1774. https://doi.org/10.1021/jf803011r
  5. Floegel, A., D.O. Kim, S.J. Chung, S.I. Koo and O.K. Chun. 2011. Comparison of ABTS/DPPH assays to measure antioxidant capacity in popular antioxidant-rich US foods. J Food Compos Anal. 24:1043-1048. https://doi.org/10.1016/j.jfca.2011.01.008
  6. Hashidoko, Y. 1996. The phytochemistry of Rosa rugosa. Phytochemistry 43(3):535-549. https://doi.org/10.1016/0031-9422(96)00287-7
  7. Im, K.H. 2012. Physiological activities of the polyphenol compound extracted from Erigeron annuus using the ultrasonification. Department of Life Science, M.S. Thesis, Dankook Univ., Korea. pp. 1-26 (in Korean).
  8. Jang, T.W., S.H. Nam and J.H. Park. 2016. Antioxidant activity and inhibitory effect on oxidative DNA damage of ethyl acetate fractions extracted from cone of red pine (Pinus densiflora). Korean J. Plant Res. 29(2):163-170 (in Korean). https://doi.org/10.7732/kjpr.2016.29.2.163
  9. Joo, E.Y., Y.S. Lee and N.W. Kim. 2007. Polyphenol compound contents and physiological activities in various extracts of the vitex rotundifolia stems. J. Korean Soc. Food Sci. Nutr. 36(7):813-818 (in Korean). https://doi.org/10.3746/jkfn.2007.36.7.813
  10. Jung, S.J., J.H. Lee, H.N. Song, N.S. Seong, S.E. Lee and N.I. Baek. 2004. Screening for antioxidant activity of plant medicinal extracts. Appl. Biol. Chem. 47(1):135-140 (in Korean).
  11. Kaneta, M., H. Hikichi, S. Endo and N. Sugiyama. 1979. Identification of flavones in nineteen Rosaceae species. Agr. Biol. Chem. Tokyo. 43(3):657-658.
  12. Kim, Y., H.Y. Min, H.J. Park, E.J. Lee, E.J. Park, H. J. Hwang, C. Jin, Y. S. Lee and S. K. Lee. 2004. Suppressive effects of nitric oxide production and inducible nitric oxide synthase (iNOS) gene expression by Calystegia soldanella methanol extract on lipopolysaccharide-activated RAW 264.7 cells. Eur. J. Cancer Prev. 13:419-424. https://doi.org/10.1097/00008469-200410000-00010
  13. Ko, J.M. 2008. Identification of flavonoids and plant regeneration of coastal sand dune plants via in vitro culture. Department of Life Science, Ph.D. Thesis, Dankook Univ., Korea. pp. 1-76 (in Korean).
  14. Lee, Y.M., J.H. Bae, H.Y. Jung, J.H. Kim and D.S. Park. 2011. Antioxidant activity in water and methanol extracts from Korean edible wild plants. J. Korean Soc. Food Sci. Nutr. 40(1):29-36 (in Korean). https://doi.org/10.3746/jkfn.2011.40.1.029
  15. Lee, J.H. and J.W. Jhoo. 2012. Antioxidant activity of different parts of Lespedeza bicolor and isolation of antioxidant compound. Korean J Food Sci Technol. 44(6):763-771 (in Korean). https://doi.org/10.9721/KJFST.2012.44.6.763
  16. Lee, H.J., Y.A. Kim, J.W. Ahn, H.J. Na, H.M. Kim and Y. Seo. 2006. Screening of Korean marine plants for their inhibitory effect on histamine release from RPMC in vitro. Biotechnol Bioprocess Eng. 11:80-83. https://doi.org/10.1007/BF02931873
  17. Lee, S.M., Y.J. Lee, Y.C. Kim, J.S. Kimm, D.G. Kang and H.S. Lee. 2012. Vascular protective role of vitexcarpin isolated from Vitex rotundifolia in human umbilical vein endothelial cells. Inflammation 35:584-593. https://doi.org/10.1007/s10753-011-9349-x
  18. Oh, H.K., Y.H. Kim, M.S. Beon and J.M. Park. 2005. A study on flora of the Shindoo-ri coastal dune. J. Korean Inst. For. Recreation 9(1):37-48 (in Korean).
  19. Olech, M. and R. Nowak. 2012. Influence of different extraction procedures on the antiradical activity and phenolic profile of Rosa rugosa petals. Acta Pol Pharm. 69:501-507.
  20. Park, B.J. 2008. Isolation of main component and antioxidant activities on the stem and root of Rosa rugosa. Korean J. Plant Res. 21(5):402-407 (in Korean).
  21. Park, Y.M. 1990. Effects of drought on two grass species with different distribution around coastal sand-dunes. Functional Ecol. 4(6):735-741. https://doi.org/10.2307/2389440
  22. Park, Y.M. 2013. Characteristic of matter allocation of Calystegia soldanella under water stress. J. Environ. Sci. Int. 22(2):187-193 (in Korean). https://doi.org/10.5322/JESI.2013.22.2.187
  23. Park, Y.K. and J.H. Kim. 2016. Antioxidant activity, total phenolics, vitamin C and sugar content during fruit ripening of five different jujube cultivars. Korean J. Plant Res. 29(5):539-546 (in Korean). https://doi.org/10.7732/kjpr.2016.29.5.539
  24. Ranwell, D.S. 1972. Ecology of Salt Marshed Dune. Champman and Hall. London, UK.
  25. Rice-Evans, C.A., N.J. Miller and G. Paganaga. 1996. Structure-antioxidant activity relationships of flavonoids and phenolic acids. Free Radic Biol Med. 20(7):933-956. https://doi.org/10.1016/0891-5849(95)02227-9
  26. Singleton, V.L. and J.A. Rossi. 1965. Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. Am. J. Enol. Viticult. 16(3):144-158.
  27. Szollosi, R. and I.S. Varga. 2002. Total antioxidant power in some species of Labiatae (Adaptation of FRAP method). Acta Biologica Szegediensis 46(3-4):125-127.
  28. Thaipong, K., U. Boonprakob, K. Crosby, L. Cisneros-Zevallos and D.H. Byrne. 2006. Comparison of ABTS, DPPH, FRAP and ORAC assays for estimating antioxidant activity from guava fruit extracts. J. Food Compos. Anal. 19:669-675. https://doi.org/10.1016/j.jfca.2006.01.003
  29. Yoo, B.R., J.M. Kim, J.S. Choi, B.O. Jung and S.J. Chung. 2014. Effect of antioxidant activity of Cornus officinalis flower with chitosan. J. Chitin Chitosan. 19(2):143-149 (in Korean).
  30. Yoshida, T., K. Mori, T. Hatano, T. Okumura, I. Uehara, K. Komagoe, Y. Fujita and T. Okuda. 1989. Studies on inhibition mechanism of autoxidation by tannins and flavonoids. V. radical scavenging effects of tannins and related polyphenols on 1,1-Diphenyl-2-picrylhydrazyl radical. Chem Pharm Bull. 37:1919-1921. https://doi.org/10.1248/cpb.37.1919
  31. Yu, M.H., I.G. Chae, Y.T. Jung, Y.S. Jeong, H.I. Kim and I.S. Lee. 2011. Antioxidative and antimicrobial activities of methanol extract from Rosmarinus officinalis L. and their fractions. J. Life Sci. 21(3):375-384 (in Korean). https://doi.org/10.5352/JLS.2011.21.3.375

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