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      프로폴리스의 생물학적 특성

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      https://www.riss.kr/link?id=A107802649

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      국문 초록 (Abstract)

      프로폴리스는 꿀벌에 의해 생산된 수지 물질로 벌집을 보호하기 위해 사용되어 왔다. 꿀벌은 다양한 나무와 식물에서 배출된 수분을 침과 밀랍과 섞어서 프로폴리스를 생산한다. 프로폴리...

      프로폴리스는 꿀벌에 의해 생산된 수지 물질로 벌집을 보호하기 위해 사용되어 왔다. 꿀벌은 다양한 나무와 식물에서 배출된 수분을 침과 밀랍과 섞어서 프로폴리스를 생산한다. 프로폴리스는 기원전 300년경부터 상처를 치료하는 민간요법으로 사용되어 왔다. 프로폴리스에는 플라보노이드, 페놀계 화합물, 밀랍과 같은 많은 생리 활성 화합물이 포함되어 있다. 프로폴리스의 기능적 요소들 때문에, 프로폴리스에는 생물학적 응용을 위한 넓은 스펙트럼이 있다. 프로폴리스와 프로폴리스의 생물학적 활동의 화합물은 각각 과즙의 출처와 추출 방법에 따라 달라질 수 있다. 프로폴리스의 박테리아, 바이러스, 곰팡이를 포함한 반미생물 활동이 가장 잘 알려진 특징이다. 면역조절 메커니즘의 경우 아르테필린 C와 카페인산 페네틸에스테르가 주로 조절 화합물로 확인되었으며 각 화합물은 염증 반응을 감소시키고 T 림프구에 면역억제 반응을 일으킨다. 프로폴리스는 항염증 효과를 통해 암세포 증식 억제, 종양 신호 전달 캐스케이드 차단, 항혈관신생 등 항종양 활성을 보였다. 그러나 프로폴리스의 더 많은 응용을 위해서는 과즙의 원천 분석, 프로폴리스 화합물의 식별, 프로폴리스 분자 메커니즘, 화합물 시너지 효과의 조사가 더 필요할 것으로 보인다.

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      다국어 초록 (Multilingual Abstract)

      Propolis is a resinous substance produced by honeybees, which they use to protect their hives. Honeybees produce propolis by mixing exudates from the various trees and plants with saliva and beeswax. It has been used since around 300 B.C. as a folk me...

      Propolis is a resinous substance produced by honeybees, which they use to protect their hives. Honeybees produce propolis by mixing exudates from the various trees and plants with saliva and beeswax. It has been used since around 300 B.C. as a folk medicine to cure wounds. Propolis contains many physiologically active components, such as flavonoids, phenolic compounds, and beeswax. Because of its functional components, propolis has a wide spectrum of biological applications. The compounds in propolis and its biological activity can vary according to the location of nectar source and extraction method. Propolis is most commonly known for its anti-microorganism activity against bacteria, viruses, and fungi. Artepillin C and caffeic acid phenethyl ester (CAPE) have been identified as regulatory compounds that reduce inflammation and exert immunosuppressive reactions on T lymphocytes. Through its anti-inflammatory activity, propolis exhibits anti-tumor activity, including the inhibition of cancer cell proliferation, the blocking of tumor signaling cascades, and antiangiogenesis. However, for the more apply of propolis its analysis of nectar source, identifying of propolis compound, the molecular mechanism of propolis and the investigation of compounds synergistic effects are essential. In this study, we described the physiological activity of propolis isolated from honeybees.

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      목차 (Table of Contents)

      • 서론
      • 본론
      • 결론
      • References
      • 초록
      • 서론
      • 본론
      • 결론
      • References
      • 초록
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      참고문헌 (Reference)

      1 정일윤, "프로폴리스에서 분리한 플라보노이드 화합물의 항산화 활성 및 방사선 방어효과" 한국식품영양과학회 34 (34): 162-166, 2005

      2 김세건, "지역별 국산 프로폴리스의 항균활성 및 Pinocembrin의 UPLC 분석" 한국양봉학회 32 (32): 253-259, 2017

      3 우순옥, "국내산 프로폴리스의 총플라보노이드 및 총페놀함량 비교" 한국양봉학회 30 (30): 293-298, 2015

      4 Luceri, C., "p-Coumaric acid, a common dietary phenol, inhibits platelet activity in vitro and in vivo" 97 : 458-463, 2007

      5 Fung, K. L., "Vincristine but not imatinib could suppress mesenchymal niche's support to lymphoid leukemic cells" 51 : 515-522, 2009

      6 Cole, N., "Topical ‘Sydney’ propolis protects against UV-radiation-induced inflammation, lipid peroxidation and immune suppression in mouse skin" 152 : 87-97, 2010

      7 Padmavathi, R., "Therapeutic effect of paclitaxel and propolis on lipid peroxidation and antioxidant system in 7, 12 dimethyl benz(a)anthracene-induced breast cancer in female Sprague Dawley rats" 78 : 2820-2825, 2006

      8 Sze, D. M., "The use of thalidomide in myeloma therapy as an effective anticancer drug" 6 : 325-331, 2006

      9 Seeley, T. D., "The nest of the honeybee(Apis mellifera)" 23 : 495-512, 1976

      10 Hosnuter, M., "The effect of CAPE on lipid peroxidation and nitric oxide levels in the plasma of rats following thermal injury" 30 : 121-125, 2004

      1 정일윤, "프로폴리스에서 분리한 플라보노이드 화합물의 항산화 활성 및 방사선 방어효과" 한국식품영양과학회 34 (34): 162-166, 2005

      2 김세건, "지역별 국산 프로폴리스의 항균활성 및 Pinocembrin의 UPLC 분석" 한국양봉학회 32 (32): 253-259, 2017

      3 우순옥, "국내산 프로폴리스의 총플라보노이드 및 총페놀함량 비교" 한국양봉학회 30 (30): 293-298, 2015

      4 Luceri, C., "p-Coumaric acid, a common dietary phenol, inhibits platelet activity in vitro and in vivo" 97 : 458-463, 2007

      5 Fung, K. L., "Vincristine but not imatinib could suppress mesenchymal niche's support to lymphoid leukemic cells" 51 : 515-522, 2009

      6 Cole, N., "Topical ‘Sydney’ propolis protects against UV-radiation-induced inflammation, lipid peroxidation and immune suppression in mouse skin" 152 : 87-97, 2010

      7 Padmavathi, R., "Therapeutic effect of paclitaxel and propolis on lipid peroxidation and antioxidant system in 7, 12 dimethyl benz(a)anthracene-induced breast cancer in female Sprague Dawley rats" 78 : 2820-2825, 2006

      8 Sze, D. M., "The use of thalidomide in myeloma therapy as an effective anticancer drug" 6 : 325-331, 2006

      9 Seeley, T. D., "The nest of the honeybee(Apis mellifera)" 23 : 495-512, 1976

      10 Hosnuter, M., "The effect of CAPE on lipid peroxidation and nitric oxide levels in the plasma of rats following thermal injury" 30 : 121-125, 2004

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      14 Bag, A., "Synergistic antibacterial and antibiofilm efficacy of nisin in combination with p-coumaric acid against food-borne bacteria Bacillus cereus and Salmonella typhimurium" 65 : 366-372, 2017

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      16 Lee, S. W., "Studies on the flavonoid compositions of Korean propolis" 21 : 389-394, 2001

      17 Veljkovic, V., "Simple criterion for selection of flavonoid compounds with anti-HIV activity" 17 : 1226-1232, 2007

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      27 Remirez, D., "Protective effects of propolis extract on allyl alcohol-induced liver injury in mice" 4 : 309-314, 1997

      28 Orsolic, N., "Protective effects of propolis and related polyphenolic/flavonoid compounds against toxicity induced by irinotecan" 27 : 1346-1358, 2009

      29 Kolankaya, D., "Protective effects of Turkish propolis on alcohol-induced serum lipid changes and liver injury in male rats" 78 : 213-217, 2002

      30 Bazo, A. P., "Protective action of propolis on the rat colon carcinogenesis" 22 : 183-194, 2002

      31 Imhof, M., "Propolis solution for the treatment of chronic vaginitis" 89 : 127-132, 2005

      32 Capoci, I. R. G., "Propolis is an efficient fungicide and inhibitor of biofilm production by vaginal Candida albicans" 2015 : 287693-, 2015

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      34 Ansorge, S., "Propolis and some of its constituents down-regulate DNA synthesis and inflammatory cytokine production but induce TGF-1production of human immune cells" 58 : 580-589, 2003

      35 de Groot, A. C., "Propolis : a review of properties, applications, chemical composition, contact allergy, and other adverse effects" 24 : 263-282, 2013

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      47 de Lima, R. O., "Modifying effect of propolis on dimethylhydrazine-induced DNA damage but not colonic aberrant crypt foci in rats" 45 : 8-16, 2005

      48 Khayyal, M. T., "Mechanisms involved in the anti-inflammatory effect of propolis extract" 19 : 197-203, 1993

      49 Tekin, I. O., "Low-density lipoproteins oxidized after intestinal ischemia/reperfusion in rats" 157 : e47-e54, 2009

      50 Hattori, H., "Isolation, identification, and biological evaluation of HIF-1-modulating compounds from Brazilian green propolis" 19 : 5392-5401, 2011

      51 Krol, W., "Inhibition of nitric oxide (NO.)production in murine macrophages by flavones" 50 : 1031-1035, 1995

      52 Fesen, M. R., "Inhibition of HIV-1 integrase by flavones, caffeic acid phenethyl ester(CAPE)and related compounds" 48 : 595-608, 1994

      53 Gorinstein, S., "Influence of two cultivars of persimmon on atherosclerosis indices in rats fed cholesterol-containing diets : Investigation in vitro and in vivo" 27 : 838-846, 2011

      54 Libby, P., "Inflammation in atherosclerosis" 32 : 2045-2051, 2012

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      57 Moriyasu, J., "In vitro activation of mouse macrophage by propolis extract powder" 8 : 364-365, 1994

      58 Khlebnikov, A. I., "Improved quantitative structure-activity relationship models to predict antioxidant activity of flavonoids in chemical, enzymatic, and cellular systems" 15 : 1749-1770, 2007

      59 Dimov, V., "Immunomodulatory action of propolis. Influence on anti-infections protection and macrophage function" 22 : 155-162, 1991

      60 Orsi, R. O., "Immunomodulatory action of propolis on macrophage activation" 6 : 205-219, 2000

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      62 Tomar, A., "Galangin ameliorates cisplatin induced nephrotoxicity in vivo by modulation of oxidative stress, apoptosis and inflammation through interplay of MAPK signaling cascade" 34 : 154-161, 2017

      63 Viuda-Martos, M., "Functional properties of honey, propolis, and royal jelly" 73 : R117-R124, 2008

      64 Xi, W., "Flavonoid composition and antioxidant activities of Chinese local pummelo (Citrus grandis Osbeck.) varieties" 161 : 230-238, 2014

      65 Cunha, I. B. S., "Factors that influence the yield and composition of Brazilian propolis extracts" 15 : 964-970, 2004

      66 Iio, A., "Ethanolic extracts of Brazilian red propolis increase ABCA1 expression and promote cholesterol efflux from THP-1 macrophages" 19 : 383-388, 2012

      67 Yu, Y., "Ethanolic extract of propolis promotes reverse cholesterol transport and the expression of ATP-binding cassette transporter A1 and G1 in mice" 46 : 805-811, 2011

      68 Song, Y. S., "Estrogenic effects of ethanol and ether extracts of propolis" 82 : 89-95, 2002

      69 Mello, A. P. Q., "Electronegative low-density lipoprotein : origin and impact on health and disease" 215 : 257-265, 2011

      70 Fuliang, H. U., "Effects of propolis on blood glucose, blood lipid and free radicals in ratswithdiabetesmellitus" 51 : 147-152, 2005

      71 Yajing Li, "Effects of Encapsulated Propolis on Blood Glycemic Control, Lipid Metabolism, and Insulin Resistance in Type 2 Diabetes Mellitus Rats" Hindawi Limited 2012 : 1-8, 2012

      72 Shad, B., "Effect of multimorbidity on quality of life in adult with cardiovascular disease : A cross-sectional study" 15 : 1-8, 2017

      73 Kawase, A., "Differential effects of chrysin on nitrofurantoin pharmacokinetics mediated by intestinal breast cancer resistance protein in rats and mice" 12 : 150-163, 2009

      74 Pereira, E. M. R., "Clinical evidence of the efficacy of a mouthwash containing propolis for the control of plaque and gingivitis : a phase II study" 2011 : 750249-, 2011

      75 Jang, H., "Chlorogenic acid and coffee prevent hypoxia-induced retinal degeneration" 62 : 182-191, 2014

      76 Russo, A., "Chilean propolis : antioxidant activity and antiproliferative action in human tumor cell lines" 76 : 545-558, 2004

      77 Fang, D., "Chemopreventive mechanisms of galangin against hepatocellular carcinoma : A review" 109 : 2054-2061, 2019

      78 Machado, B. A. S., "Chemical composition and biological activity of extracts opbtained by supercritical extraction and ethanolic extraction of brown, green and red propolis derived from different geographic regions in Brazil" 11 : e0145954-, 2016

      79 Waller, S. B., "Chemical and cytotoxic analyses of brown Brazilian propolis(Apis mellifera)and its in vitro activity against itraconazole-resistant Sporothrix brasiliensis" 105 : 117-121, 2017

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      81 Kart, A., "Caffeic acid phenethyl ester prevents ovary ischemia/reperfusion injury in rabbits" 47 : 1980-1984, 2009

      82 Lee, K. W., "Caffeic acid phenethyl ester inhibits invasion and expression of matrix metalloproteinase in SK-Hep1 human hepatocellular carcinoma cells by targeting nuclear factor kappa B" 2 : 319-322, 2008

      83 Sudina, G. F., "Caffeic acid phenethyl ester as a lipoxygenase inhibitor with antioxidant properties" 329 : 21-24, 1993

      84 Omene, C. O., "Caffeic Acid Phenethyl Ester(CAPE)derived from propolis, a honeybee product, inhibits growth of breast cancer stem cells" 30 : 1279-1288, 2011

      85 Demestre, M., "CAPE(caffeic acid phenethyl ester)-based propolis extract(Bio 30)suppresses the growth of human neurofibromatosis(NF)tumor xenografts in mice" 23 : 226-230, 2009

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      88 Kunimasa, K., "Brazilian propolis suppresses angiogenesis by inducing apoptosis in tube-forming endothelial cells through inactivation of survival signal ERK1/2" 2011 : 870753-, 2011

      89 Cheung, K. W., "Brazilian green propolis and its constituent, artepillin C inhibits allogeneic activated human CD4 T cells expansion and activation" 138 : 463-471, 2011

      90 de Freitas, M. C. D., "Biological activities of red propolis : A review" 11 : 3-12, 2017

      91 Izuta, H., "Bee products prevent VEGF-induced angiogenesis in human umbilical vein endothelial cells" 9 : 2009

      92 Messerli, S. M., "Artepillin C(ARC)in Brazilian green propolis selectively blocks oncogenic PAK1 signaling and suppresses the growth of NF tumors in mice" 23 : 423-427, 2009

      93 Alday, E., "Apoptotic induction by pinobanksin and some of its ester derivatives from Sonoran propolis in a B-cell lymphoma cell line" 242 : 35-44, 2015

      94 Khoo, B. Y., "Apoptotic effects of chrysin in human cancer cell lines" 11 : 2188-2199, 2010

      95 Kimoto, T., "Apoptosis of human leukemia cells induced by Artepillin C, an active ingredient of Brazilian propolis" 21 : 221-228, 2001

      96 Su, Z. Z., "Apoptosis mediates the selective toxicity of caffeic acid phenethyl ester(CAPE)toward oncogene-transformed rat embryo fibroblast cells" 15 : 1841-1848, 1995

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      99 Xuan, H., "Antitumor activity of Chinese propolis in human breast cancer MCF-7 and MDA-MB-231 cells" 2014 : 280120-, 2014

      100 Ledon, N., "Antipsoriatic, anti-inflammatory, and analgesic effects of an extract of red propolis" 18 : 274-276, 1997

      101 Demir, S., "Antiproliferative and proapoptotic activity of Turkish propolis on human lung cancer cell line" 68 : 165-172, 2016

      102 Chen, T. G., "Antiplatelet activity of caffeic acid phenethyl ester is mediated through a cyclic GMP-dependent pathway in human platelets" 50 : 121-126, 2007

      103 Choi, Y. H., "Antioxidant vitamins and magnesium and the risk of hearing loss in the US general population" 99 : 148-155, 2014

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      105 Silva, V., "Antioxidant activity of Uruguayan propolis" 59 : 6430-6437, 2011

      106 Isla, M. I., "Antioxidant activity of Argentine propolis extracts" 76 : 165-170, 2001

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      108 Mirzoeva, O. K., "Antimicrobial action of propolis and some of its components : the effects on growth, membrane potential and motility of bacteria" 152 : 239-246, 1997

      109 Dobrowolski, J. W., "Antibacterial, antifungal, antiamoebic, antiinflammatory and antipyretic studies on propolis bee products" 35 : 77-82, 1991

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      115 Benguedouar, L., "Algerian ethanolic extract of propolis and galangin decreased melanoma tumour progression in C57BL6 mice" 16 : 1172-1183, 2015

      116 Visscher, P., "Adaptations of honey bees(Apis mellifera)to problems of nest hygiene" 5 : 249-260, 1980

      117 Said, R. A., "Absence of chemopreventive influence of propolis on the rat liver altered foci development" 62 : 405-412, 2010

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      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-08-03 학술지명변경 외국어명 : Korean Journal of Life Science -> Journal of Life Science KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.37 0.37 0.42
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.43 0.43 0.774 0.09
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