Fig. 1. DPPH radical scavenging activity of pine extracts.
Fig. 2. ABTS radical scavenging activity of pine extracts.
Table 1. DPPH Radical Scavenging Activity of Pine Extracts
Table 2. ABTS Radical Scavenging Activity of Pine Extracts
Table 3. Flavonoid Contents of Pine Extracts
References
- K. J. Homan. (2014). Appearance-based exercise motivation moderates the relationship between exercise frequency and positive body image. BODY IMAGE, 11(2), 101-108. ISSN 1740-1445 https://doi.org/10.1016/j.bodyim.2014.01.003
- H. K. Kim. (2013). A Study on appearance management behavior and information search of males workers in 20s and 30s. Doctoral of thesis, Kon-Kuk University, Seoul.
- K. I. KO & H. K. Kim. (2016). Analysis of Media Characteristic for Information Acquisition of Male Beauty for Industrial Promotion Strategy PDF icon. Journal of Digital Contents Society, 17(4), 279-286. DOI : 10.9728/dcs.2016.17.4.279
- U. S. Moon & S. S. Kim. (2015). A Study on the Status Analysis and the Development plan of Beauty-IT Convergence Industry PDF icon. Journal of Korea Digital Policy Institute, 13(8), 235-243. DOI : 10.14400/ JDC.2015.13.8.235
- G. C. Sung. (2004). Characteristics and Analysis of Natural Pine-Needles Extract. Journal of Korea Emulsification Society, 21(4), 320-326.
- Y. H. Lee, Y. M. Shin, S. H. Cha, Y. S. Choi & S. Y. Lee. (1996). Development of the Health Foods Containing the Extract from Pinus strobus Leave. Journal of the Korean Society of Food Science and Nutrition, 25(3), 379-389
- T. K. Hong. Y. L. Lee. M. H. Lim & N. H. Jung. (2004). Physiological Functionality and Nitrite Scavenging Ability of Fermentation Extracts from Pine Needles. Journal of Korean Food Preservation, 11(1), 94-99. KDC 574.000
- T. K. Hong. M. H. Lim & J. H. Lee. (2001). Function of pine needle and application to food. Journal of Food science and industry, 34(4), 48-52
- J. S. Han. (2013). Effect of the Fermented Pine Needle Extract Anti-skin Agin. Doctoral of thesis, Kon-Kuk University, Seoul.
- Blois. (1958). Antioxidant determination by the use of a stable free radical. Nature. 181, 1199-1200 https://doi.org/10.1038/1811199a0
- J. H. Kim. (2010). Identification of Compounds with Elastase Inhibition and DPPH Radical Scavenging Activities from Callistemon lanceolatus. Master of thesis, Jeju University, Jeju.
- J. E. Rim. (2017). Anti-acne Effect of Prunus sargentii Rehder and Prunus serrulata var. spontanea flower extracts on propionibacterium acnes. Doctoral of thesis, Gangwon University, Chuncheon.
- R. Re, N. Pellegrini, A. Proteggente, M. Yang & C. Rice-Evans. (1999). Antioxidant activity applying an improved ABTS radical cation decolorization assay. Journal of Free radal biology & Medicine, 26(9), 1231-1237 https://doi.org/10.1016/S0891-5849(98)00315-3
- R. Edenharder & X. Tang. (1996). Inhibition of the mutagenicity of 2-nitrofluorene, 3-nitrofluuorene and 1-nitropyrene by flavonoids, coumarins, quinones and other phenolic compounds. Journal of Food and Chemical Toxicology, 35(1), 357-372 https://doi.org/10.1016/S0278-6915(97)00125-7
- J. S. Park. (2009). The Antioxidantive, Antimicrobial Activity and Tyrosinase Activity Inhibitory Effect of Extracts from Parts of Robinia pseudo acacia. Doctoral of thesis, Soong-sil University, Seoul.
- E. K. Seol. (2017). Characteristics of antioxidant physiologically active substances of domestic native Pinus densiflora Siebold & Zucc. extracts. Doctoral thesis of Soong-sil University, Seoul.