종설 : 흑삼의 화학성분 및 생리활성에 대한 최근 연구

' 종설 : 흑삼의 화학성분 및 생리활성에 대한 최근 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • biologicalactivities
  • blackginseng
  • chemicalconstituents
  • ginsenosides
  • panax ginseng
  • safety
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
916 0

0.0%

' 종설 : 흑삼의 화학성분 및 생리활성에 대한 최근 연구' 의 참고문헌

  • 흑삼의 제조 및 항암효과
    이지현 동의생리병리학회지 20 (4) : 951 ~ 956 [2006]
  • 흑삼의 아토피 억제활성에 대한 연구
    신영진 아시안뷰티화장품학술지 10 (1) : 91 ~ 97 [2012]
  • 흑삼의 신생혈관 억제활성에 대한 연구
    송규용 대한본초학회지 26 (3) : 83 ~ 90 [2011]
  • 흑삼과 홍삼의 인삼 프로사포게닌 성분 비교
    고성권 생약학회지 42 (4) : 361 ~ 365 [2011]
  • 흑삼(구증구포인삼)이 혈당 강하에 미치는 영향 및 증포별 ginsenoside 조성 변화
    김성년 한국식품과학회지 41 (1) : 77 ~ 81 [2009]
  • 흑삼 제조과정 중 증포 횟수에 따른 에탄올 추출물의 항산화 활성
    김효진 한국식품영양과학회지 40 (2) : 156 ~ 162 [2011]
  • 흑삼 제조과정 중 증포 횟수에 따른 색상 및 진세노사이드 함량 변화
    남기열 한국약용작물학회지 20 (1) : 27 ~ 35 [2012]
  • 홍삼산성다당체 (RGAP)의 경구투여에 의한 항종양 효과
    Yi-Seong Kwak Journal of Ginseng Research 29 (4) : 176 ~ 181 [2005]
  • 포도주스 침지 제조 흑삼의 Ginsenoside Rg3 함량 변화와 Acetylcholinesterase 억제효과
    이미라 Journal of Ginseng Research 33 (4) : 349 ~ 354 [2009]
  • 정상 식이 수컷 흰쥐에서 흑삼이 체중 및 지질에 미치는 영향
    송규용 약 학 회 지 50 (6) : 381 ~ 385 [2006]
  • 인삼의 九蒸九曝에 의한 갈변물질, 조지방, 조단백 및 향기성분의 변화
    김도완 동의생리병리학회지 22 (2) : 333 ~ 339 [2008]
  • 알츠하이머병의 새로운 약물치료
    한설희 대한의사협회지 52 (11) : 1059 ~ 1068 [2009]
  • 신공법에 의한 흑삼의 제조 및 항암활성
    김의검 대한본초학회지 23 (1) : 85 ~ 92 [2008]
  • 수삼의 증숙 횟수에 따른 페놀산 함량 변화와 라디칼 소거활성
    김영찬 Journal of Ginseng Research 31 (4) : 230 ~ 236 [2007]
  • 새로운 자동 구증구포방법에 의한 인삼사포닌의 변환 및 이화학적 특성
    김염 한국자원식물학회지 25 (4) : 473 ~ 481 [2012]
  • 가열처리에 따른 인삼의 이화학적 성분변화
    이기동 한국식품영양과학회지 34 (10) : 1572 ~ 1578 [2005]
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    Chani, P. C. J. Food Drug Anal 15 : 416 ~ 427 [2007]
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    Dong, H. Molecules 16 : 10619 ~ 10630 [2011]
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    Nam, K. Y. J. Ginseng Res 29 : 1 ~ 18 [2005]
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    Francis, G. Br. J. Nutr 88 : 587 ~ 605 [2002]
  • The Protective Effect of Black Ginseng Against Transient Focal Ischemia-induced Neuronal Damage in Rats
    Hyun-Jung Park The Korean Journal of Physiology & Pharmacology 15 (6) : 333 ~ 338 [2011]
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    Kang, K. S. Biol. Pharm. Bull 30 : 724 ~ 728 [2007]
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    강신정 한국식품영양과학회지 42 (8) : 1190 ~ 1196 [2013]
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    Yang, W. Z. Phytochemistry 106 : 7 ~ 24 [2014]
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    Sun, B. S. Biotechnol. Bioprocess Eng 16 : 956 ~ 965 [2011]
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    Lim, J. H. Neurosci. Res 28 : 191 ~ 200 [1997]
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    Nishijo, H. J. Pharmacol. Sci 95 : 145 ~ 152 [2004]
  • Preparation of ginsenosides Rg3, Rk1, and Rg5-selectively enriched ginsengs by a simple steaming process
    Jo, S. K. Eur. Food Res. Technol 240 : 251 ~ 256 [2015]
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    Shahidi, F. Crit. Rev. Food Sci. Nutr 32 : 67 ~ 103 [1992]
  • Pectic polysaccharides from Panax ginseng as the antirotavirus principals in ginseng
    Baek, S. H. Biomacromolecules 11 : 2044 ~ 2052 [2010]
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    Gillis, C. N. Biochem. Pharmacol 54 : 1 ~ 8 [1997]
  • Oxidative stress and human diseases: origin, link, measurement, mechanisms, and biomarkers
    Giustarini, D. Crit. Rev. Clin. Lab. Sci 46 : 241 ~ 281 [2009]
  • Optimization of the Manufacturing Process for Black Ginseng
    Young-Ju Ban Applied Biological Chemistry 53 (1) : 71 ~ 77 [2010]
  • On neurodegenerative diseases, models, and treatment strategies:lessons learmed and lessons forgotten a generation following the cholinergic hypothesis
    Bartus, R. T. Exp. Neurol 163 : 495 ~ 529 [2000]
  • Obesity and the regulation of energy balance
    Spiegelman, B. M Cell 104 : 531 ~ 543 [2001]
  • Neuroprotective effect of 20(S)-ginsenoside Rg3 on cerebral ischemia in rats
    Tian, J. Neurosci. Lett 374 : 92 ~ 97 [2005]
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    He, B. Neurosci. Lett 526 : 106 ~ 111 [2012]
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    Sung-Ran Yoon Food Science and Biotechnology 19 (1) : 151 ~ 157 [2010]
  • Molecular mechanisms and clinical applications of ginseng root for cardiovascular disease
    Zhou, W. Med. Sci. Monit 10 : RA187 ~ RA192 [2004]
  • Mite antigen-induced IL-4 and IL-13 production by basophils derived from atopic asthma patients
    Shimizu, Y Clin. Exper. Allergy 28 : 497 ~ 503 [1998]
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    Bao, H. Y. Arch. Pharm. Res 28 : 335 ~ 342 [2005]
  • Korean red ginseng (Panax ginseng) prevents obesity by inhibiting angiogenesis in high fat diet-induced obese C57BL/6J mice
    Lee, H Food Chem. Toxicol 53 : 402 ~ 408 [2013]
  • Korean red ginseng (Panax ginseng) improves glucose and insulin regulation in well-controlled, type 2 diabetes: results of a randomized, double-blind, placebo-controlled study of efficacy and safety
    Vuksan, V. Nutr. Metab. Cardiovasc. Dis 18 : 46 ~ 56 [2008]
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    De Souza, L. R. J. Ethnopharmacol 137 : 245 ~ 250 [2011]
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    Qi, L. W. Nat. Prod. Rep 28 : 467 ~ 495 [2011]
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    Wan, J. Y. J. Pharm. Biomed. Anal 107 : 89 ~ 97 [2015]
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    이동하 Journal of Ginseng Research 37 (2) : 176 ~ 186 [2013]
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    Keum, Y. Mutat. Res 523 : 75 ~ 85 [2003]
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    Kang, K. S. Biol. Pharm. Bull 29 : 750 ~ 754 [2006]
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    Wang, W. Pharmacol 59 : 589 ~ 601 [2007]
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    Lee, J. S. Cytokine 42 : 365 ~ 371 [2008]
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    Kim, N. D. J. Ginseng Res 32 : 89 ~ 98 [2008]
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    Kim, E. J. J. Ethnopharmacol 146 : 294 ~ 299 [2013]
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    Liang, L. Mol. Med. Rep 11 : 940 ~ 946 [2015]
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    Chu, S. Int. Immunopharmacol 19 : 317 ~ 326 [2014]
  • Ginsenoside Rg3의 항암효능 연구의 진보
    남기열 생약학회지 45 (1) : 1 ~ 10 [2014]
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    Mi Hyun Kim Journal of Ginseng Research 34 (2) : 93 ~ 97 [2010]
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    Mi-Ra Lee Journal of Ginseng Research 34 (1) : 51 ~ 58 [2010]
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    이미라 Journal of Ginseng Research 37 (3) : 308 ~ 314 [2013]
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    Shin-Jung Kim Journal of Ginseng Research 39 (2) : 125 ~ 134 [2015]
  • Anti-Diabetic Effect of Black Ginseng in C57BLKS/J-db/db Mice
    강신정 한국식품영양학회지 24 (4) : 770 ~ 776 [2011]
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