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      The Protective and Inhibitory Effect of Antioxidants Found in Broussonetia kazinoki Siebold against Oxidative DNA Damage

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      https://www.riss.kr/link?id=A106493553

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      다국어 초록 (Multilingual Abstract)

      Oxidative DNA damage negatively affects humans and the research is currently ongoing to find ways to reduce oxidative stress. Oxidative stress has been identified as a key factor in triggering various diseases. Thus, its alleviation is important for human health. Broussonetia kazinoki (B. kazinoki) has been used in traditional Korean medicine as a dermatological therapy to treat burns, pruritus, and acne. B. kazinoki is generally segregated into peeled root (PR), root bark (RB), peeled stem (PS), and stem bark (SB). To assess these components for their antioxidant activity and protection against DNA damage, their ethyl acetate fractions were examined by 1,1-diphenyl-2-picryl hydrazyl (DPPH) and 2,2'-Azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt (ABTS) radical scavenging assay. As a result of confirming the expression of factors involved in attenuating DNA damage, the protective effect of SB on oxidative stress suppressed the expression of p-p53 and γ-H2AX. Additionally, the levels of p53 and H2AX mRNA were significantly downregulated. In conclusion, these results indicated that the SB component of B. kazinoki had the potential to be used as an effective natural antioxidant compared to the other parts of the plant.
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      Oxidative DNA damage negatively affects humans and the research is currently ongoing to find ways to reduce oxidative stress. Oxidative stress has been identified as a key factor in triggering various diseases. Thus, its alleviation is important for h...

      Oxidative DNA damage negatively affects humans and the research is currently ongoing to find ways to reduce oxidative stress. Oxidative stress has been identified as a key factor in triggering various diseases. Thus, its alleviation is important for human health. Broussonetia kazinoki (B. kazinoki) has been used in traditional Korean medicine as a dermatological therapy to treat burns, pruritus, and acne. B. kazinoki is generally segregated into peeled root (PR), root bark (RB), peeled stem (PS), and stem bark (SB). To assess these components for their antioxidant activity and protection against DNA damage, their ethyl acetate fractions were examined by 1,1-diphenyl-2-picryl hydrazyl (DPPH) and 2,2'-Azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt (ABTS) radical scavenging assay. As a result of confirming the expression of factors involved in attenuating DNA damage, the protective effect of SB on oxidative stress suppressed the expression of p-p53 and γ-H2AX. Additionally, the levels of p53 and H2AX mRNA were significantly downregulated. In conclusion, these results indicated that the SB component of B. kazinoki had the potential to be used as an effective natural antioxidant compared to the other parts of the plant.

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      참고문헌 (Reference)

      1 한혜민, "마름 추출물의 항산화활성 및 암세포증식 억제 활성" 한국약용작물학회 24 (24): 14-20, 2016

      2 Zeng, Y., "UVB-induced formation of intrastrand cross-link products of DNA in MCF-7 cells treated with 5-bromo-2’-deoxyuridine" 46 (46): 8189-8195, 2007

      3 Baek, Y. S., "Tyrosinase inhibitory effects of 1, 3-diphenylpropanes from Broussonetia kazinoki" 17 (17): 35-41, 2009

      4 Mustafa, R., "Total phenolic compounds, flavonoids, and radical scavenging activity of 21 selected tropical plants, J" 75 (75): C28-C35, 2010

      5 Pisoschi, A. M., "Total antioxidant capacity of some commercial fruit juices : electrochemical and spectrophotometrical approaches" 14 (14): 480-493, 2009

      6 Dinstel, R. R., "The antioxidant level of Alaska’s wild berries: High, higher and highest" 72 : 2013

      7 Sablina, A. A., "The antioxidant function of the p53 tumor suppressor" 11 (11): 1306-1313, 2005

      8 Ho Young Lee, "The Leaves of Broussonetia kazinoki Siebold Inhibit Atopic Dermatitis-Like Response on Mite Allergen-Treated Nc/Nga Mice" 한국응용약물학회 22 (22): 438-444, 2014

      9 Circu, M. L., "Reactive oxygen species, cellular redox systems, and apoptosis" 48 (48): 749-762, 2010

      10 Maxwell, S. R. J, "Prospects for the use of antioxidant therapies" 49 (49): 345-361, 1995

      1 한혜민, "마름 추출물의 항산화활성 및 암세포증식 억제 활성" 한국약용작물학회 24 (24): 14-20, 2016

      2 Zeng, Y., "UVB-induced formation of intrastrand cross-link products of DNA in MCF-7 cells treated with 5-bromo-2’-deoxyuridine" 46 (46): 8189-8195, 2007

      3 Baek, Y. S., "Tyrosinase inhibitory effects of 1, 3-diphenylpropanes from Broussonetia kazinoki" 17 (17): 35-41, 2009

      4 Mustafa, R., "Total phenolic compounds, flavonoids, and radical scavenging activity of 21 selected tropical plants, J" 75 (75): C28-C35, 2010

      5 Pisoschi, A. M., "Total antioxidant capacity of some commercial fruit juices : electrochemical and spectrophotometrical approaches" 14 (14): 480-493, 2009

      6 Dinstel, R. R., "The antioxidant level of Alaska’s wild berries: High, higher and highest" 72 : 2013

      7 Sablina, A. A., "The antioxidant function of the p53 tumor suppressor" 11 (11): 1306-1313, 2005

      8 Ho Young Lee, "The Leaves of Broussonetia kazinoki Siebold Inhibit Atopic Dermatitis-Like Response on Mite Allergen-Treated Nc/Nga Mice" 한국응용약물학회 22 (22): 438-444, 2014

      9 Circu, M. L., "Reactive oxygen species, cellular redox systems, and apoptosis" 48 (48): 749-762, 2010

      10 Maxwell, S. R. J, "Prospects for the use of antioxidant therapies" 49 (49): 345-361, 1995

      11 Leinisch, F., "Peroxyl radical-and photo-oxidation of glucose 6-phosphate dehydrogenase generates cross-links and functional changes via oxidation of tyrosine and tryptophan residues" 112 : 240-252, 2017

      12 Crean, C., "Oxidation of single-stranded oligonucleotides by carbonate radical anions : Generating intrastrand cross-links between guanine and thymine bases separated by cytosines" 36 (36): 742-755, 2008

      13 AOAC, "Official Methods of Analysis" Association of Official Analytical Chemists 8-35, 1995

      14 Yu, Y., "Occurrence, biological consequences, and human health relevance of oxidative stress-induced DNA damage" 29 (29): 2008-2039, 2016

      15 Reiter, R. J., "Neurotoxins : free radical mechanisms and melatonin protection" 8 (8): 194-210, 2010

      16 Valko, M., "Metals, toxicity and oxidative stress" 12 (12): 1161-1208, 2005

      17 Galano, A., "Melatonin and its metabolites as copper chelating agents and their role in inhibiting oxidative stress : a physicochemical analysis" 58 (58): 107-116, 2015

      18 Reiter, R. J., "Melatonin : exceeding expectations" 29 (29): 325-333, 2014

      19 Bondet, V., "Kinetics and mechanisms of antioxidant activity using the DPPH free radical method" 30 (30): 609-615, 1997

      20 Zhang, Q., "Independent generation of 5-(2’-deoxycytidinyl)methyl radical and the formation of a novel cross-link lesion between 5-methylcytosine and guanine" 125 (125): 12795-12802, 2003

      21 Fernandez-Capetillo, O., "H2AX: the histone guardian of the genome" 3 (3): 959-967, 2004

      22 Uvaydov, Y., "Generation of guanine-amino acid cross-links by a free radical combination mechanism" 16 (16): 11729-11736, 2014

      23 Sen, S., "Free radicals, antioxidants, diseases and phytomedicines : current status and future prospect, Int" 3 (3): 91-100, 2010

      24 Box, H. C., "Free radical-induced tandem base damage in DNA oligomers" 23 (23): 1021-1030, 1997

      25 Yoo, I. D., "Development of new natural antioxidants for cosmeceuticals" 31 (31): 349-357, 2005

      26 Meir, S., "Determination and involvement of aqueous reducing compounds in oxidative defense systems of various senescing leaves" 43 (43): 1813-1819, 1995

      27 Wiseman, H., "Damage to DNA by reactive oxygen and nitrogen species : role in inflammatory disease and progression to cancer" 313 (313): 17-29, 1996

      28 Shibata, A., "DNA double-strand break repair in a cellular context" 26 (26): 243-249, 2014

      29 Maréchal, A., "DNA damage sensing by the ATM and ATR kinases" 5 (5): a012716-, 2013

      30 Roos, W. P., "DNA damage and the balance between survival and death in cancer biology" 16 (16): 20-33, 2016

      31 Bellon, S., "Cross-linked thymine-purine base tandem lesions : Synthesis, characterization, and measurement in γ-irradiated isolated DNA" 15 (15): 598-606, 2002

      32 Lee, T. B, "Coloured Flora of Korea" Hayangmunsa 223-223, 2003

      33 Minko, I. G., "Chemistry and biology of DNA containing 1, N 2-deoxyguanosine adducts of the α, β-unsaturated aldehydes acrolein, crotonaldehyde, and 4-hydroxynonenal" 22 (22): 759-778, 2009

      34 Van den Berg, R., "Applicability of an improved Trolox equivalent antioxidant capacity(TEAC)assay for evaluation of antioxidant capacity measurements of mixtures" 66 (66): 511-517, 1999

      35 Lee, H. J., "Antioxidant components from Broussonetia kazinoki" 41 (41): 439-443, 1997

      36 Prasad, K. N., "Antioxidant capacities of peel, pulp, and seed fractions of Canarium odontophyllum Miq. fruit" 8 : 2010

      37 Attaguile, G., "Antioxidant activity and protective effect on DNA cleavage of extracts from Cistus incanus L. and Cistus monspeliensis L" 16 (16): 83-90, 2000

      38 Que, F., "Antioxidant activities of five Chinese rice wines and the involvement of phenolic compounds" 39 (39): 581-587, 2006

      39 장태원, "Antioxidant Activity and Inhibitory Effects on Oxidative DNA Damage of Callus from Abeliophyllum distichum Nakai" 한국자원식물학회 31 (31): 228-236, 2018

      40 Kong, Y. J., "Antimicrobial activity of Quercus mongolica leaf ethanol extract and organic acids against food-borne microorganisms" 33 (33): 178-183, 2001

      41 김태현, "A549세포에서 닥나무 추출물의 미토콘드리아/Caspase 경로를 통한 Apoptosis 유도작용" 한의병리학회 30 (30): 150-156, 2016

      42 Alvarez-Idaboy, J. R., "A. On the chemical repair of DNA radicals by glutathione : Hydrogen vs. electron transfer" 116 (116): 9316-9325, 2012

      43 Bae, U. J., "A prenylated flavan from Broussonetia kazinoki prevents cytokine-induced β-cell death through suppression of nuclear factor-κB activity" 34 (34): 1026-1031, 2011

      44 Paull, T. T., "A critical role for histone H2AX in recruitment of repair factors to nuclear foci after DNA damage" 10 (10): 886-895, 2000

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 재인증평가 신청대상 (재인증)
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2012-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2008-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2007-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2006-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2005-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2003-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.77 0.77 0.77
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.74 0.67 1.157 0.27
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