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Efficacy Evaluation of Extracts from Different Parts of Buxus Koreana

회양목 부위별 추출물의 효능평가

  • Kim, Yong-Min (School of Cosmetic Science and Beauty Biotechnology, Semyung University) ;
  • Kim, Myong-Ki (School of Food and Pharmaceutical Science & Engineering, Seowon University)
  • 김용민 (세명대학교 화장품뷰티생명과학부) ;
  • 김명기 (서원대학교 제약식품공학부)
  • Received : 2020.09.11
  • Accepted : 2020.11.20
  • Published : 2020.11.28

Abstract

This study was conducted to confirm the component and efficacy evaluation of Buxus Koreana by different part. Leaf, stem, root, and fruit were extracted with 70% ethanol, and the contents of polyphenols and flavonoids were analyzed, and the efficacy against anti-inflammatory, moisturizing and wrinkles were confirmed. The contents of polyphenols and flavonoids of B. Koreana were the highest in fruit extracts at 77.32 and 51.91 mg/g, respectively. As a result of confirming the NO production inhibitory effect, the root extracts showed an inhibitory effect of 29.6%, and iNOS significantly decreased as the concentration of the extracts increased compared to the LPS treatment group. As a result of checking the mRNA expression level of MMP1, it was found to be effective in the root and stem extracts. Through the efficacy evaluation of B. Koreana the possibility of use as a cosmetic material was confirmed.

본 연구는 회양목의 부위별 성분과 효능평가를 확인하기 위해 수행되었다. 잎, 줄기, 뿌리, 열매를 70% 에탄올로 추출하여 폴리페놀과 플라보노이드의 함량을 분석하였으며 항염, 보습 및 주름에 대한 효능을 확인하였다. 회양목의 부위별 폴리페놀과 플라보노이드 함량은 열매 추출물에서 각각 77.32, 51.91 mg/g으로 가장 높게 나타났다. NO 생성 억제 효과를 확인한 결과, 뿌리 추출물에서 29.6%의 저해 효과를 나타냈으며, iNOS는 LPS 처리군과 비교하였을 때 추출물의 농도가 증가함에 따라 유의적으로 감소하였다. MMP1의 mRNA 발현 수준을 확인한 결과, 뿌리와 줄기에서 효과가 있는 것으로 나타났다. 회양목에 대한 효능평가를 통해 화장품 소재로서 활용 가능성을 확인하였다.

Keywords

References

  1. S. Y. Wei, J. W. Song and C. H. Oh. (2019). A study on plant communities of Buxus Koreana community and the density distribution in Kwanaksan ecological landscape reserve area. Proceeding of Korean society of environmenta and ecology conference, 29(2), 32.
  2. H. Y. Lee, C. H. Oh & S. J. Lee. (2012). A study on the distribution characteristics of Buxus Koreana in Kwanaksan ecological and scenery conservation area. Korean Journal of Environment and Ecology, 26(1), 91-99.
  3. www.nature.go.kr
  4. J. H. et al. (1986). Effects of cyclobuxin D on the electrocardiogram(ECG) and heart rate in anesthetized rats and isorate frog heart. Korean Journal of Pharmacology, 22(2), 105-114.
  5. H. S. Kwon. (2012). Iksengyangshu-daejeon. Bucheon : Hagsulpyeonsugwan.
  6. H. J. Lee, M. C. Kim. (2013). Buxus Microphylla var. Koreana Nakai extract for the treatment of gastric cancer. Journal of Pharmacopuncture, 16(3), 39-45. DOI : 10.3831/KPI.2013.16.016
  7. J. S. Yun et al. (2003). Screening of 94 plant species showing ACE inhibitory activity. Korean Journal of Medicinal Crop Science, 11(3), 246-251.
  8. S. J. Lee & C. H. Kim. (1971). Pharmacognostical study on Bux Wood. Korean Journal of Pharmacognosy. 2(1), 15-18.
  9. J. H. Lee, J. T. Kwon & C. K. Moon. (1993). Cyclobuxine protects the isolated rat heart from the myocardial injuries produced by ischemia and reperfusion. Planta Medica, 59(4), 296-301. DOI : 10.1055/s-2006-959685
  10. O. Folin & V. Ciocalteu. (1927). On tyrosine and tryptophane determination in proteins. Journal of Biological Chemistry, 27, 627-650.
  11. M. K. Kim. (2016). Optimal extraction conditions of active components from adventitious roots of noni (Morinda citrifolia L.). Korean Journal of Food Science and Technology, 48(2), 111-116. DOI : 10.9721/KJFST.2016.48.2.111
  12. J. Zhishen, T. Mengcheng & W. Jianming. (1999). The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chemistry, 64, 555-559. DOI : 10.1016/s0308-8146(98)00102-2
  13. J. W. Lee, B. O. Jung & S. J. Chung. (2017). Antioxidative activity and synergy effect of water-soluble chitosan with extracts prepared from different part of Ilex serrata. Journal of Chitin and Chitosan, 22(2), 89-96. DOI : 10.17642/jcc.22.2.4
  14. J. N. Lee, M. S. Kim, D. H. Kim & H. Y. Sohn. (2016). Anti-oxidation and anti-thrombosis activities of different parts of Salicornia herbacea L. Microbiology and biotechnology letters, 44(3), 311-316. DOI : 10.4014/mbl.1607.07003
  15. J. Y. Mok et al. (2011). Antioxidative and anti-inflammatory effects of extracts from different organs of Cirsium japonicum var. ussuriense. The Korea Journal of Herbology, 26(4), 39-47. DOI : 10.6116/kjh.2011.26.4.039
  16. S. H. Kim et al. (2020). Anti-inflammatory and anti-oxidant studies of osung-tang extracts in LPS-induced RAW 264.7 Cells. The Journal of Korean Medicine Ophthalmology & Otolaryngology & Dermatology, 33(1), 1-11. DOI : 10.6114/jkood.2020.33.1.001
  17. M. J. Park & Y. H. Kang. (2016). Anti-oxidant and anti-inflammatory activities of various organ extracts from Trichosanthes kirilowii Maxim. Korean Journal of Pharmacognosy, 47(4), 327-332.
  18. J. S. Park (2013). Walnut husk ethanol extract possess antioxidant activity and inhibitory effect of matrix metalloproteinase-1 expression induced by tumor necrosis factor alpha in human keratinocyte. Asian Journal of Beauty & Cosmetology, 11(4), 715-719.
  19. Y. H. Shin & C. K. Song. (2017). Antioxidant and metalloproteinase inhibitory activities of ethanol extracts from Lespedeza cuneata G. Don. Korean Journal of Environmental Agriculture, 36(4), 263-268. DOI : 10.5338/KJEA.2017.36.4.40