• Title/Summary/Keyword: Cynanchum wilfordii

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Studies of Name and Herbal Origins of Ha-Soo-Oh (하수오(何首烏)와 백하수오(白何首烏)의 기원과 명칭에 대한 연구)

  • Choi, Hwan-Soo;Zhu, Mei-Fen;Kim, Chung-Sook;Lee, Je-Hyun
    • Korean Journal of Oriental Medicine
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    • v.9 no.1
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    • pp.81-89
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    • 2003
  • Polygoni multiflori Radix has been used as a tonic medicine. In Korea, Cynanchi wilfordii Radix have been used too. Their names are resembled, but their plant origines are different. Polygoni multiflori Radix is called 何首烏 or 赤何首烏, and Cynanchi wilfordii Radix is 白何首烏 or 白首烏. They are suggested that they had been confused using at the early days in drug history. Polygoni multiflori Radix is enclosed in the pharmacopoeias of Korea, North Korea, Chinese and Japan. The nomina of pharmacopoeias are 赤何首烏 at North Korea and 何首烏 at other countries; Korea, Chinese and Japan. Cynanchi wilfordii Radix is just enclosed in Korea and North Korea. It means that Cynanchi wilfordii Radix has been commonly prescribed in Korea and North Korea than other countries. The nomina of pharmacopoeias are 白首烏 in Korea and 白何首烏 in North Korea. The characteristics of 何首烏 in ancient herbal records are confused of Polygoni multiflori Radix and Cynanchi wilfordii Radix. But Polygoni multiflori Radix is fixed at 何首烏 later. In Korea (south and north) Cynanchi wilfordii Radix has been recorded to using in 東醫寶鑑 that was Korea traditional Medicinal book and wrote at 1613. The 白首烏 is named in chinese about 20 century, but 白何首烏 is in korea about 19 century. In these consequences, prescription of Cynanchi wilfordii Radix in Korea is earlier than Chinese and Japan, and more common consumption too. So the nomen of 白何首烏 is better properly than 白首烏 in Korean Herbal pharmacopoeia.

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The Origin, Changes and Compositive Principles of Baekhaoleejung-tang (백하오이중탕의 기원(基源), 변천(變遷), 구성(構成)에 대한 고찰(考察))

  • Shin, Hyun-Sang;Koh, Byung-Hee;Lee, Eui-Ju
    • Journal of Sasang Constitutional Medicine
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    • v.23 no.2
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    • pp.164-173
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    • 2011
  • 1. Objectives: The purpose of this study is to understand the origin, the progressive changes and the constructive principles of Packhaoleejung-tang (白何烏理中湯) 2. Methods: Packhaoleejung-tang and other related prescriptions were analyzed in terms of their pathological indications, based on "Donguisusebowon Chobongwon (東醫壽世保元 草本卷)", "Donguisusebowon Gabobon (東醫壽世保元 甲午本)", "Donguisusebowon Sinchukbon (東醫壽世保元 辛丑本)", "Dongmuyugo (東武遺稿)", "Shanghanlun (傷寒論)". 3. Results and Conclusions: (1) The origin of Packhaoleejung-tang is leejung-tang from "Shanghanlun (傷寒論)". Packhaoleejung-tang inherited some of the principles from "Shanghanlun (傷寒論)" Insamkeiji-tang (2) "Gabobon(甲午本)"'s one prescription Hyangsaleejung-tang emphasizes the effect of lossen up by using Pogostemonis Herb (藿香),Amomi Fructus(砂仁). "Gabobon(甲午本)"'s another prescription Packhaoleejungtang emphasizes the effect of warm up stomach by using Cinnamomum cassia Blume (桂枝), Allium sativum Linne (獨頭蒜), Cynanchum wilfordii(白何首烏). "Sinchukbon(辛丑本)"'s prescription Packhaobujaleejungtang emphasizes the effect of warm up stomach by using Aconitum carmichaeli(附子) (3) The Packhaoleejung-tang is composed of 7 herbs. Atractlodis Rhizoma White(白朮), Glycyrrhizae Radix(甘草), Paeoniae Radix Alba(白芍藥) support Soeumin's spleen root (脾元), and Zingiberis Rhizoma(乾薑),Cinnamomum cassia Blume (桂枝, Cynanchum wilfordii(白何首烏) warm up stomach. Citri Pericarpium(陳皮) circulate Qi and encourage the descension of Yin.

Multidrug-resistance Reversing Activity of Medicinal Plants (약용 식물의 암세포 다제내성 조절 활성 검색)

  • Kim, Se-Eun;Hwang, Bang-Yeon;Kim, Young-Ho;Kim, Young-Choong;Lee, Kyong-Soon;Lee, Jung-Joon
    • Korean Journal of Pharmacognosy
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    • v.28 no.4
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    • pp.174-178
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    • 1997
  • Methanol extracts from 450 plants were screened for muttidrug-resistance reversing activity using drug sensitive KB-3-1 and multidrug-resistant KB-Vl cells. Among them, the extracts of Cynanchum wilfordii, Torilis japonica, Celastrus orbiculatus, Melia toosendan and Teminialia chebula strongly potentiated vinblastine cytotoxicity in KB-Vl cells. But their cytotoxicities to both sensitive KB-3-1 and resistant KB-Vl cells were in the same order of magnitude. These results indicate that the above samples would contain the active principles which do not exert their ativity solely by cytotoxicity.

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Biotransformation of Pregnane Glycosides from Cynanchum wilfordii Roots by β-Glucosidase (당 분해효소를 이용한 백하수오 뿌리로부터 분리한 Pregnane Glycosides의 생전환)

  • Yoon, Mi-Young;Cuong, Mai Nguyen;Choi, Gyung-Ja;Choi, Yong-Ho;Jang, Kyoung-Soo;Cha, Byeong-Jin;Kim, Jin-Cheol
    • Research in Plant Disease
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    • v.18 no.3
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    • pp.186-193
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    • 2012
  • Biotransformation is an eco-friendly and efficient method for enhancing the bioavailability of biopesticide. To increase the antifungal activity of the crude extract of Cynanchum wilfordii roots against barely powdery mildew, we performed biotransformation of wilfoside C1G using ${\beta}$-glucosidase (cellobiase from Aspergillus niger). The mixture (G sample) of partially purified wilfoside C1G and cynauricuoside A (K1G) was treated with ${\beta}$-glucosidase to remove a glucopyranosyl moiety. The enzyme completely converted C1G to C1N and K1G to K1N. Optimal conditions for enzymatic biotransformation of G sample were determined to be 10% ethanol, 1,555 ${\mu}U$ ${\beta}$-glucosidase/ml, pH 5, and $45^{\circ}C$. In in vivo experiment, the G sample transformed by ${\beta}$-glucosidase showed stronger antifungal activity against barley powdery mildew than the non-treated G sample. These results suggest that ${\beta}$-glucosidase biotransformation can be applied to increase the antifungal activity of the crude extract of C. wilfordii roots against powdery mildews.

Microscopic Identification-keys for Cynanchi Wilfordii Radix and Cynanchi Auriculati Radix (白首烏와 耳葉牛皮消의 내부형태 감별기준)

  • Doh, Eui-Jeong;Kim, Jung-Hoon;Choi, Goya;Lee, Seung-Ho;Song, Ho-Joon;Ju, Young-Sung;Lee, Guem-San
    • The Korea Journal of Herbology
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    • v.30 no.4
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    • pp.65-69
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    • 2015
  • Objectives : The root ofCyanchum wifordii(CW) had been used as herbal medicine, 'Baeksuo', in Korea. However, the root ofCynanchum auriculatum(CA) had also been mis-used as 'Baeksuo' in herbal markets, due to its morphological similarity with CW. This study aimed to compare discriminative features and establish the identification-keys between two herbal medicines using microscopic methods.Methods : Microscopic preparations including fixation, rapid dehydration, paraffin infiltration, paraffin embedding, sectioning, mounting, and staining, were performed and the microscopic features between CW and CA samples were compared.Results : The starch grain of parenchymal cells, the amounts of calcium oxalate crystals, cell sizes, and the shape of phloem were not different between CW and CA samples. However, the clusters of stone cells which were conglomerated at outer cortex were apparently observed in CA sample (4~8 layers of stone cells), but not in CW sample (2~4 layers of stone cells, or not). Xylem of CW consisted of several vessels and fiber bundles which were formed as linear shapes and discontinuous radial lines, while that of CA, in which radial lines was not observed, were shaped as a wedge and scattered near cambium with comparatively few fiber bundles enclosed vessels. Especially, in the xylem of CA, fiber bundles located towards cambium were relatively more developed than those located outward cambium.Conclusions : The identification-keys established in this study would be helpful to discriminate microscopic features between CW and CA.

Effect of Planting Density on Growth and Yield in Cyanachum wilfordii (백가수도의 재식밀도에 따른 생육 및 수량)

  • 최인식
    • Korean Journal of Plant Resources
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    • v.8 no.2
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    • pp.209-215
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    • 1995
  • This experiment was carried out to elucidate the effect of row width and hill space on growth and yield in cynanchum wilfordii on experimental fields of chungbuk Provincial Rural Development Administration. Emergence date was May 25 and had no differences between planting density. Vine length was 219cm with row 40cm, 220cm, with 50cm and 225cm with 60cm, and in hill spaces, it was 225cm with hill space 10cm, 219cm with 15cm, and 218cm with 20cm. No. of leaves was same tendencies to vine length and was more increased as the hill space was narrower. Root length was longer about 0.9cm to 1.4cm as the hill space was wider, and no. of root had no difference between planting tensity. Yield was more increased row width was wider and was decreased hill space was wider. And the profitalble planting density was row width 50cm and hill space 10cm in the cultivation cynanchum wilfordii.

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Ethanol Extract of Cynanchum wilfordii Produces Endothelium-Dependent Relaxation in Rat Aorta and Anti-inflammatory Activity in Human Aortic Smooth Muscle Cells

  • Choi, Deok-Ho;Lee, Yun-Jung;Kim, Eun-Joo;Li, Xiang;Kim, Hye-Yoom;Hwang, Sun-Mi;Yoon, Jung-Joo;Lee, So-Min;Min, Eun-Kyeong;Kang, Dae-Gill;Lee, Ho-Sub
    • The Journal of Korean Medicine
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    • v.31 no.6
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    • pp.47-57
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    • 2010
  • Objective: The present study investigated the effect of ethanol extract of Cynanchum wilfordii (ECW) on vascular relaxation and vascular inflammation in rat artery isolated from rats and anti-inflammatory activity in human aortic smooth muscle cells (HASMC). Methods: Vascular tone and guanosine 3',5'-cyclic monophosphate (cGMP) production were examined in rat artery isolated from Sprague Dawley rats, in the presence of ECW. HASMC were incubated with tumor necrosis factor-alpha (TNF-${\alpha}$) or Angiotensin II for 24 h. Matrix metalloproteinase (MMP)-2 and anti-oxidant activity of ECW was investigated by pretreatment with ECW in HASMC. Results: Cumulative treatment of ECW relaxed aortic smooth muscles of rats in a dose-dependent manner. ECW-induced vasorelaxation was significantly decreased by pretreatment of L-arginine methyl ester (L-NAME) or oxadiazolo-quinoxalinone (ODQ). Furthermore, ECW treatment of thoracic aorta significantly increased cGMP production. Incubation of ECW with ODQ or L-NAME markedly decreased ECW-induced cGMP production. ECW treatment dose-dependently suppressed TNF-${\alpha}$- or Angiotensin II-induced increase in matrix metalloproteinase-2 expression in HASMC. Also, ECW exhibited 2,2-diphenyl-1-picrylhydrazyl radical scavenging activity in vitro and reduced TNF-${\alpha}$-induced increase in reactive oxygen species production in a dose-dependent manner. Conclusions: Taken together, the results suggest that ECW exerts vascular relaxation via NO/cGMP signaling pathway and decreases MMP-2 expression via anti-oxidant activity.

Effects of Seed Pre-treatment and Seedling Culture System on Germination and Subsequent Growth of Cynanchum wilfordii (종자 전처리 및 육묘방법이 큰조롱의 종자 발아 및 생육에 미치는 영향)

  • Lee, Su Gwang;Cho, Won Woo;Ku, Ja Jung;Kang, Ho Duck
    • Korean Journal of Plant Resources
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    • v.26 no.1
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    • pp.75-83
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    • 2013
  • The present study was examined seed germination and growth characteristics of Cynanchum wilfordii under the following conditions such as soaking temperature, concentrations of $GA_3$, trays and soil types, and shading conditions. In seed pre-treatment, germination rate was the highest at 93% when soaked in 100 ppm $GA_3$ at $20^{\circ}C$ and seedling growth was best in 50 plug cell tray. Physiological quality was best in the condition in which seeds were treated with 10 ppm $GA_3$ at $20^{\circ}C$. Taking into consideration the seedling growth, their physiological quality as well as economical aspects, seedlings with plant height (over 10 cm) and root length (over 10 cm) were grown vigorously 30-45 days after the seeds were sown in mid-April in TKS, TKS+perlite and TKS+rice hull of 128 or 200 plug cell tray.