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http://dx.doi.org/10.4014/mbl.1711.11004

Antioxidant Activities and Cytoprotective Effects of Lonicera japonica Thunb. Extract and Fraction against Oxidative Stress  

Lee, Ye Seul (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Yun, Mid Eum (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Lee, Yun Ju (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Park, Young Min (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Lee, Sang Lae (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Park, Soo Nam (Department of Fine Chemistry, Cosmetic R&D Center, Cosmetic Industry Coupled Collaboration Center, Seoul National University of Science and Technology)
Publication Information
Microbiology and Biotechnology Letters / v.46, no.1, 2018 , pp. 18-28 More about this Journal
Abstract
In this study, the antioxidant activities and cytoprotective effects against oxidative stress of Lonicera japonica Thunb. 50% ethanol extract and ethyl acetate fraction were investigated. Using the 1,1-diphenyl-2-picrylhydrazyl assay, the free radical scavenging activity (FSC50) of L. japonica Thunb. 50% ethanol extract and ethyl acetate fraction was determined as 152.00 and $77.25{\mu}g/ml$, respectively. To measure the reactive oxygen species (ROS) scavenging activity, the total antioxidant capacity (OSC50) was determined by using a luminol-dependent chemiluminescence assay. The antioxidant activity of the ethyl acetate fraction ($0.33{\mu}g/ml$) was approximately four times stronger than that of the 50% ethanol extract ($1.12{\mu}g/ml$). The protective effect against $^1O_2$-induced cellular damage of human erythrocytes (${\tau}_{50}$) was 46.0 min at $10{\mu}g/ml$ of the 50% ethanol extract and 52.3 min at $1{\mu}g/ml$ of the ethyl acetate fraction. We also investigated the cytoprotective effects against oxidative stress induced by $H_2O_2$ and the intracellular ROS scavenging activity in response to UVB irradiation and found that the extract and fraction protected human skin cells from damage and reduced ROS. These results confirmed that L. japonica Thunb. was a valuable plant-derived natural antioxidant with potential for development as an antioxidative functional ingredient.
Keywords
Lonicera japonica Thunb.; reactive oxygen species; antioxidative activity; cytoprotective effect; oxidative stress;
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Times Cited By KSCI : 2  (Citation Analysis)
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1 Lee DS, Lim MS, Kwan SS, Kim SY, Park SN. 2012. Antioxidative activity and componential analysis of Chamaecyparis obtusa leaf extract. Appl. Chem. Eng. 23: 93-99.
2 Won DH, Han SB, Hwang JP, Kim SJ, Park J, Park SN. 2012. Antioxidative effect and tyrosinase inhibitory activity of Lindera obtusiloba blume extracts. J. Soc. Cosmet. Scientists Korea. 38: 297-304.   DOI
3 Gordon MH. 1996. Dietary antioxidants in disease prevention. Nat. Prod. Rep. 13: 265-273.   DOI
4 Park SN. 1997. Skin aging and antioxidant. J. Soc. Cosmet. Scientists Korea. 23: 75-132.
5 Slater TF. 1984. Free-radical mechanisms in tissue injury. Biochem. J. 222: 1-15.   DOI
6 Park SN, Kim SI, Ahn YJ, Kim EH. 2009. Antibacterial and antioxidative activities of Quercus acutissima Carruth leaf extracts and isolation of active ingredients. J. Soc. Cosmet. Scientists Korea 35: 159-169.
7 Masaki H, Sakaki S, Atsumi T, Sakurai H. 1995. Active-oxygen scavenging activity of plant extracts. Biol. Pharm. Bull. 18: 162-166.   DOI
8 Mitsui T. 1997. New Cosmetic Science. Elsevier, Netherlands.
9 Xiong J, Li S, Wang W, Hong Y, Tang K, Luo Q. 2013. Screening and identification of the antibacterial bioactive compounds from Lonicera japonica Thunb. leaves. Food Chem. 138: 327-333.
10 Yoo HJ, Kang HJ, Song YS, Park EH, Lim CJ. 2008. Anti‐angiogenic, antinociceptive and anti‐inflammatory activities of Lonicera japonica extract. J. Pharm. Pharmacol. 60: 779-786.   DOI
11 Kammeyer A, Luiten RM. 2015. Oxidation events and skin aging. Ageing Res. Rev. 21: 16-29.   DOI
12 Gulcin I. 2006. Antioxidant activity of caffeic acid (3, 4-dihydroxycinnamic acid). Toxicology 217: 213-220.   DOI
13 Han JM, Kim MH, Choi YY, Lee H, Hong J, Yang WM. 2015. Effects of Lonicera japonica Thunb. on type 2 diabetes via $PPAR-{\gamma}$ activation in Rats. Phytother. Res. 29: 1616-1621.   DOI
14 Hwang GS, Lee DH, Lee HJ. 2014. Antioxidant activity and components of Lonicera japonica Thunb. Plant Resources Soc. Korea 173-173.
15 Kong BJ, Han SS, Ha JH, Park SN. 2014. Antioxidant activities of Ipomoea batatas L. Lam.(purple sweet potato) extracts cultured in Korea, J. Soc. Cosmet. Scientists Korea 40: 423-430.   DOI
16 Sato Y, Itagaki S, Kurokawa T, Ogura J, Kobayashi M, Hirano T, et al. 2011. In vitro and in vivo antioxidant properties of chlorogenic acid and caffeic acid. Int. J. Pharm. 403: 136-138.   DOI
17 Pietta PG. 2000. Flavonoids as antioxidants. J. Nat. Prod. 63: 1035-1042.   DOI
18 Torel J, Cillard J, Cillard P. 1986. Antioxidant activity of flavonoids and reactivity with peroxy radical. Phytochemistry 25: 383-385.   DOI
19 Kammeyer A, Luiten RM. 2015. Oxidation events and skin aging. Ageing Res. Rev. 21: 16-29.   DOI
20 Prasad NR, Karthikeyan A, Karthikeyan S, Reddy BV. 2011. Inhibitory effect of caffeic acid on cancer cell proliferation by oxidative mechanism in human HT-1080 fibrosarcoma cell line. Mol. Cell Biochem. 349: 11-19.   DOI
21 Seelinger G, Merfort I, Schempp CM. 2008. Anti-oxidant, antiinflammatory and anti-allergic activities of luteolin. Planta Med. 74: 1667-1677.   DOI
22 Seibert H, Maser E, Schweda K, Seibert S, Gulden M. 2011. Cytoprotective activity against peroxide-induced oxidative damage and cytotoxicity of flavonoids in C6 rat glioma cells. Food Chem. Toxicol. 49: 2398-2407.   DOI
23 Alves RC, Costa ASG, Jerez M, Casal S, Sineiro J, Nunez MJ, et al. 2010. Antiradical activity, phenolics profile, and hydroxymethylfurfural in espresso coffee: influence of technological factors. J. Agric. Food Chem. 58: 12221-12229.   DOI
24 Zhishen J, Mengcheng T, Jianming W. 1999. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 64: 555-559.   DOI