• 제목/요약/키워드: Angelica sinensis radix

검색결과 18건 처리시간 0.023초

근적외선분광법, 전자코 및 엑스선형광법을 이용한 당귀의 기원판별법 비교 연구 (Comparative Studies on the Discrimination of Angelicae Gigantis Radix by Near-infrared Spectroscopy, Electronic Nose and X-ray Fluorescence Spectrometry)

  • 조창희;김수정;김효진
    • 약학회지
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    • 제46권3호
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    • pp.161-167
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    • 2002
  • Angelicae gigantis radix is the root of the perennial plant, which belongs to the family Umbelliferae. However, this herbal drug is represented quite different chemical components according to its different genus name, though other herbal drugs (i.e. Leonuri Herba, Xanthii Fructus and so on) show similar constituents on the same name. The root of Angelica gigas containing the coumarin compounds is commonly used in Korea, while Angelica sinensis and Angelica acutiloba including phthalide compounds are used in China and Japan, respectively as Angelicae gigantis radix. In this paper, a nearinfrared spectroscopic method was developed to determine genus name of Angelica spp., especially A. gigas and A. sinensis which are commonly misused in herbal markets. X-ray fluorescence spectrometry and electronic nose have been also applied as nondestructive methods to discriminate A. gigas from A. sinensis according to their specific properties.

Chemotype Discrimination and Rapid Identification of Angelica Roots by DART-TOF-MS

  • Kim, Hye-Jin;Piao, Xiang-Lan;Jang, Young-Pyo
    • Natural Product Sciences
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    • 제17권3호
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    • pp.202-205
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    • 2011
  • The Angelica root has been used as a medicinal herb in many Asian countries including Korea, China, and Japan. Angelica gigas, A. sinensis, and A. acutiloba have been considered as Angelicae radix in Korean, Chinese, and Japanese Pharmacopoeia, respectively. Since the origins of Angelicae radix differ from country to country, there is a need to develop an efficient analytical method to identify the origin of the Angelica root. In order to obtain chemical fingerprints, three different Angelicae Radices were analyzed by direct analysis in real time mass spectrometry (DART-MS). Significantly different DART-MS spectra were observed from three different species of Angelicae Radix. Strong peaks of decursin or decusinol angelate, and its dimer were exclusively found from A. gigas. Ligustilide and linoleic acid were detected as the major component from A. acutiloba. The strongest ligustilide peak was observed from A. sinensis. DART-MS fingerprinting is a promising method for the rapid identification and/or quality control of Angelicae Radix.

참당귀, 중국당귀, 일당귀 및 그 구성 생화합물의 약리작용에 대한 고찰 (A Review of Pharmacological Effects of Angelica gigas, Angelica sinensis, Angelica acutiloba and their Bioactive Compounds)

  • 김선애;오혜경;김지영;홍진우;조수인
    • 대한한의학회지
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    • 제32권4호
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    • pp.1-24
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    • 2011
  • Backgrounds: Danggui, one of the major herbs in Korean traditional medicine consists of three species: Angelica gigas of Korea, Angelica sinensis of China, and Angelica acutiloba of Japan. Despite its importance in Korean traditional medicine, recognition of the clinical differences between its three species is insufficient. Objectives: The purpose of the present review is to suggest evidence in using Angelica gigas, Angelica sinensis, and Angelica acutiloba distinctively in clinic, by comparing their pharmacological effects and bioactive compounds. Methods: We searched articles published from 2000 to 2009 in Pubmed, EMbase, and RISS. The search keywords were "Angelica gigas", "Angelica sinensis", "Angelica acutiloba", "dongquei", "toki", "Angelicae Radix", "Archangelica officinalis Hoffm.", "Garden Angelica", "Chinese angelica root", "tangkuei", and "danggui". 861 articles were searched. Among them, we selected 143 articles which met our inclusion criteria. Results: This review summarizes active constituents, experimental studies, clinical studies, pharmacokinetics, side effects and toxicity, drug interaction, and industrial use of Angelica gigas, Angelica sinensis, and Angelica acutiloba. Conclusions: While Angelica sinensis and Angelica acutiloba are relatively similar, Angelica gigas is quite different from the others in main active constituents and genetic form. The main experimental studies of Danggui are cardiovascular studies, central nervous system studies and anti-cancer activity. Even though there were cases in which the three species show similar pharmacological effects, the mechanism was not always shared. Therefore, distinguished use of Angelica gigas, Angelica sinensis and Angelica acutiloba is needed.

Modulation of Aqueous Extracted Angelicae sinensis Radix on Nitric Oxide Production and Pro-inflammatory Cytokine Gene Expressions in RAW 264.7 Macrophage Cells

  • Lee Young Sun;Han Ok Kyung;Shin Sang Woo;Park Jong Hyun;Kwon Young Kyu
    • 동의생리병리학회지
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    • 제17권6호
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    • pp.1514-1518
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    • 2003
  • Angelica sinensis radix, Danggui, is a traditional oriental medication, which has been used to modulate immune response. We report here that aqueous extract of Angelica sinensis radix (ASR) can induces NO production, and inhibit LPS-induced NO production in dose-dependent manner in RAW 264.7 macrophage cells. ASR also induces iNOS mRNA and iNOS protein expression, and exhibit inhibitory effect on iNOS mRNA and protein expression in a dose-dependent manner in LPS-stimulated RAW 264.7 macrophage cells. Cytokines involved in the regulation of inflammatory reaction and immune response may play a role in the pathogenesis. ASR induces. pro-inflammatory cytokine gene expression (IL-1α, IL-1β and IL-6 gene) in a dose-dependent manner, and inhibits the expressions of these cytokines in LPS-stimulated RAW 264.7 macrophage cells. These data indicate that (1) ASR may be a potential therapeutic modulator of NO synthesis in various pathological conditions, and (2) the immunomodulatory effects of ASR may be, in part, associated with the inducing or suppression of pro-inflammatory cytokine gene expressions.

참당귀, 중국당귀, 일당귀의 헤모글로빈 활성도 비교 (Comparison of Hemoglobin Activity of Angelica gigas, Angelica sinensis and Angelica acutiloba roots)

  • 이장천;조수인;김형우;김정훈;성대동;이부균
    • 대한본초학회지
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    • 제35권4호
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    • pp.1-8
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    • 2020
  • Objectives : Angelicae gigas, A. sinensis and A. acutiloba are three types of plants used as Angelicae Radix (Dang-Gui). Many doctors of Korean medicine want to know the difference in clinical use of these three species. This study aimed to compare the hemoglobin-related activity of the extracts of Angelicae gigas, A. sinensis and A. acutiloba roots by measuring the intensity of binding oxygen to hemoglobin using Raman spectroscopy. Methods : Hemoglobin activity was measured by chemical analysis and Raman spectroscopy to compare the pharmaceutical efficacy of three Angelica root extracts. The oxygenated hemoglobin intensity, blood decursinol and acetylcholinestrase(AChE) concentration in mice were measured. In addition, the effects of three Angelica root extracts on oxygenated hemoglobin intensity, decursinol and AChE concentration in red blood cells (RBC) from human were also investigated. Results : The contents of decursin, decursinol and decursinol angelate, which affected physiological activity and RBC properties, were higher in the extract of A. gigas root than in those of A. sinensis and A. acutiloba roots. Moreover, oxygenated hemoglobin intensity in the A. gigas extract was higher than that of other two species in the blood of mice and human RBCs. Also, the blood decursinol and AChE concentrations of A. gigas root extract were higher than that of A. sinensis and A. acutiloba roots. Conclusions : These results suggest that A. gigas is more effective in treating disease related oxygen deficiency in RBC deformation under oxidative stress.

당귀(當歸)와 황기(黃芪)의 배합 변화가 DPPH 자유기 소거에 미치는 영향 연구 (Compositions of Astragali Radix and Angelicae Radix by DPPH Radical Scavenging Activity)

  • 강순아;오명숙;김도림;강지웅;김원남;박은화;장문석;박성규
    • 대한본초학회지
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    • 제21권1호
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    • pp.17-24
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    • 2006
  • Objectives : This study was conducted to compare antioxidant activity of ratio-related Angelicae Radix and Astragali Radix compositions by DPPH radical scavenging activity. Methods : The species of Angelicae Radix was compared as Angelica gigas, A. sinensis and A. acutiloba. Then various compositions of Angelicae Radix with Astragali Radix were prepared with different ratio. Diphenyl-picryl-hydrazyl (DPPH) radical scavenging activity was measured after 10, 20 and 30 minutes. Each extracts were tested by 1, 5, 10, 50, 100, 500 and 1,000 ${\mu}g/ml$ concentrations. Results : The results showed that Angelica gigas, A. sinensis and A. acutiloba scavenged DPPH radical with 66.8, 61.7 and 56.7% in 1,000 ${\mu}g/ml$ concentration, respectively. According to this result, Angelicae Radix and Astragali Hadix compositions with 100:0, 10:1, 5:1, 3:1, 1:1, 1:3, 1:5, 1:10 and 0:100 ratio were scavenged DPPH radical with 56.3, 49.9, 61.2, 55.7, 54.7, 55.0, 52.8 ,md 50.2% in 1,000 ${\mu}g/ml$ concentration, respectively. The extract of Angelicae Radix and Astragali Radix compositions with 100:0, 10:1, 5:1, 3:1, 1:1, 1:3, 1:5, 1:10 and 0:100 ratio scavenged DPPH radical with the $IC_{50}$ being 85,21, 1016.26, 656.51, 785.67 and 956.74 ${\mu}g/ml$ respectively. Conclusion : In conclusion, the extract of Angelicae Radix and Astragali Radix compositions with 1:1 ratio showed dose-dependent DPPH radical scavenging activity.

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독성대사체를 생성하는 다빈도사용 한약재의 안전성등급화 - 천궁, 당귀, 감초, 숙지황을 중심으로 - (Safety classification for frequently-used herbal medicines inducing toxic metabolites)

  • 박영철;이선동
    • 대한예방한의학회지
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    • 제19권2호
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    • pp.123-133
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    • 2015
  • The new formular for herbal medicine-safety classification in terms of evidence-based medicine was developed and applied to evaluate various herbal medicines in the previous study. This study is aimed to evaluate the frequently-used herbal medicines inducing toxic metabolites or reactive intermediates(RI), such as Ligusticum wallichii Franch, Angelica sinensis, Glycyrrhizae Radix, Rehmanniae Radix, based on 6 safety grades calculated from human equivalent dose(HED)-based MOS(margin of safety). HED-based MOS can be explained as the ratio of theoretical ALD(approximate lethal dose) of human as $LD_1$(lethal dose of 1%)/ clinical maximum dose as $ED_{99}$(Effective dose of 99%). The herbal medicine showing the ratio less than 1 belongs to Class 1, but the herbal medicine showing the ratio more than 500 belongs to Class 6 with the lowest toxicity. As a result, they were evaluated as class 2 for Angelica sinensis and Glycyrrhizae Radix, class 3 for Ligusticum wallichii Franch and Rehmanniae Radix. These resultant grades for 4 herbal medicines were lower than the grade expected under consideration that these herbal medicines are used very frequently in oriental clinics. These low grades would be due to their ingredients which is biotransformed to toxic metabolites.

미각센서와 DNA 염기서열을 이용한 당귀류 비교 (Comparison of Angelica Species Roots Using Taste Sensor and DNA Sequencing Analysis)

  • 김영화;최고야;이혜원;이관호;채성욱;김윤희;이미영
    • 대한본초학회지
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    • 제27권6호
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    • pp.37-42
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    • 2012
  • Objectives : Angelica Gigantis Radix is prescribed as the root of different Angelica species on the pharmacopoeia in Korea, Japan and China. Chemical components and their biological activities were also different according to their species. A study for the development of simple method to compare Angelica roots was needed. In order to classify them, the methods such as DNA sequencing analysis and taste sensor were applied to three Angelica species like Angelica gigas, Angelica acutiloba and Angelica sinensis. Methods : PCR amplification of intergenic transcribed spacer (ITS) region was performed using ITS1 and ITS4 primer from nine Angelica roots, and then nucleotide sequence was determined. Taste pattern of samples were measured using the taste-sensing system SA402B equipped with a sensing unit, which consists of artificial lipid membrane sensor probes of anionic bitterness, astringency, saltiness, umami, and cationic bitterness (C00, AE1, CT0, AAE, and AN0, respectively). Results : As a result of comparing the similarity of the ITS region sequences, A. sinensis was discriminated from the others (A. gigas and A. acutiloba). Equally this genetic result, A. gigas and A. acutiloba showed similar taste pattern as compared to A. sinensis. Sourness, bitterness, aftertaste of bitterness, astringency, and aftertaste of astringency of A. sinensis were significantly high as compared with A. gigas and A. acutiloba. In contrast, richness was significantly low. Conclusions : These taste pattern can be used as a way of comparison of Angelica species and this technic could be applied to establish a taste pattern marker for standardization of herbs in various purposes.

당귀의 해부형태학적 특징에 따른 기원판별 (Discrimination of Angelicae Radix Based on Anatomical Characters)

  • 성정숙;방경환;박충헌;박춘근;유홍섭;박희운;성낙술
    • 한국약용작물학회지
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    • 제12권1호
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    • pp.67-72
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    • 2004
  • 당귀류 약재의 기원식물에 대해 해부형태적 특징을 관찰하고, 이를 통하여 당귀 기원 및 국내유통 당귀류 약재의 판별에 이용코자 실험한 결과는 다음과 같다. 기원식물 뿌리의 해부형태특징은 정상 2기생장, 주피발달, 유세포내 전분함유 등이 공통점이었고, 후각세포층은 참당귀와 왜당귀에서 관찰되었으며 피층의 유실분포는 참당귀와 중국당귀에서 관찰되었다. 또한 참당귀에서만 속성후벽세포가 다량 관찰되었다. 잎의 표피세포는 중국당귀가 가장 컸으며 세포표면의 형태는 참당귀와 중국당귀는 거친 주름이져 있었고, 왜당귀는 완만한 굴곡이 관찰되었다. 3종의 기공은 모두 불규칙형 부세포를 가지고 있었고 참당귀가 $mm^2$당 600개 이상으로 가장 많은 기공이 분포하고 있었다. 모용은 참당귀에서만 원뿔형으로 관찰되었다. 엽병은 3종식물에서 모두 유조직이 잘 발달된 형태였고 환상으로 병립유관속이 발달하고 있었다. 국내 유통 당귀류 약재의 판별에 있어서 해부형태적 특징을 정리하여 간단한 동정 KEY를 적용하여 만든 검색표가 유용하게 활용될 수 있었다. 검색표를 이용하여 전국 7개 지점에서 수집한 약재를 판별한 결과, 당귀 (국산) 또는 토당귀로 유통되는 약재는 참당귀 (A. gigas)로 동정되었고, 일당귀로 유통되는 약재는 왜당귀(A. acutiloba)로 동정되었다. 중국당귀는 현재 시중 유통되지 않고 있으며 본연구에서 사용된 약재 중국당귀는 중국 현지에서 직접 구입해 온 것으로 중국당귀 (A. sinensis)의 뿌리와 동일한 횡단면 형태를 관찰할 수 있었다. 그러므로, 현재 국내 유통되는 당귀류 약재는 (토)당귀의 경우는 KP에서 규정하는 것과 동일기원이었으며, 일당귀는 일본약국방(JP,2001)에서 규정하는 것과 동일한 기원으로 당귀류 유통약재의 기원상에 오류는 없었다.

한국 ${\cdot}$ 중국 ${\cdot}$ 일본 당귀(當歸)의 HepG2 세포 독성 비교 연구 (Cytotoxicity of Angelicae Radix from Korea, China, and Japan on HepG2 Cells)

  • 박완수;오명숙;장문석;양웅모;이병희;김원남;이학철;강순아;박성규
    • 동의생리병리학회지
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    • 제20권5호
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    • pp.1155-1158
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    • 2006
  • The purpose of this study is to examine the cytotoxicity of species of Angelica (Angelicas Radix; the root of Angelica gigas Nakai, A. sinensis (Oliv.) Diels, and A. acutiloba Kitag.) on HepG2 cells. The water extracts of roots of Angelica gigas (WAG), A. sinensis (WAS), and A. acutiloba (WAA) were studied for HepG2 cell viability by a modified MTT assay in the concentrations of 5, 10, 50, 100, 250, 500 ug/ml for 24, 48, 72 h. WAG and WAS did not reduced the cell viability significantly. But WAA reduced the cell viability in the concentration of 500 ug/ml for 24 h (85.45%), 48 h (75.01%). In conclusion, WAG and WAS have not the significant cytotoxicity on HepG2 cells in the suitable dose.