• Title/Summary/Keyword: Mori Cortex Radicis

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Antifungal Actions of Crude Drug Water Extracts on Candida albicans(I) (Candida albicans에 대한 생약의 항진균성에 관한 연구(I))

  • Yoo, Seung-Cho;Suh, Jung-Sik
    • Korean Journal of Pharmacognosy
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    • v.5 no.3
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    • pp.147-154
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    • 1974
  • Some crude drugs in ancient literatures have been used as traditional therapeutic agent of leucorrhea mainly caused by Trichomonas vaginalis and Candida albicans. Sixty six kinds of crude drugs in ancient literatures and ten constituents were selected as sample drugs. Trichomycin standard was tested to compare with the above drugs. To determine the anti-fungal effect of these drugs on Candida albicans Yu 1200, a test organism, screening test was conducted. Antifungal activities of crude drug water extracts were observed by means of two test methods : firstly through the agar slant method and secondly the counting chamber method which was used for acknowledged drug agents upon the result of the agar slant method. And in order to improve the fungicidal effect, the organisms were stained with 0.02% methylene blue solution. The results of the above test indicated that Fritillariae Rhizoma has antifungal action in the concentration of 310mcg/ml, Coptidis Rhizoma in 620mcg/ml, Meliae Cortex, Scutellariae Radix both in 5,000mcg/ml. Baicalin, catechol among the pure isolated constituents inhibited in the range of 50mcg/ml. This score was based on 50% inhibition in comparison with amounts of control organisms. Rhei Rhizoma, Mori Radicis Cortex, Linderae Radix, and Amomi globosi Fructus showed the antifungal effect moderately in 5,000mcg/ml, and baicalein and pectolinarin in 50mcg/ml in the limit of between 35% and 50% antifungal activity. Staining with 0.02% methylene blue showed that any of the crude drug extracts was unable to stain the cells, but trichomycin in 0.86unit/ml able to stain 12% of the cells. This result means that crude drugs probably do not have fungicidal but fungistatic action.

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A study on The Medicines Effected on The Spleen in The 'Bowel-Viscus Classification' of An Introduction to Medical Science ("의학입문(醫學入門) . 장부조분(臟腑條分)"중(中) 비장(脾臟)에 작용하는 약물(藥物)에 대한 연구(硏究))

  • Lee, Seok-Jae;Keum, Kyung-Soo
    • Journal of Korean Medical classics
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    • v.20 no.4
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    • pp.45-63
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    • 2007
  • In this dissertation, I will focus on the channel entry, the effect and the treatment throughout books of oriental medicine from ancient to modern in order to classify the medicines of the Spleen as main or supplementary organ. The results are as follows: 1. The medicines which work on the Spleen(本臟) chiefly were 38, which were Gingseng Radix(人蔘), Astragali Radix, Hoelen, Atractylodis Rhizoma alba(白朮), Glycyrrhizae Radix(甘草), Atractyodis Rhizoma(蒼朮), Aurantii Nobilis Pericarpium(陳皮), Pinelliae Rhizoma(半夏), Nelumbinis Semen(蓮肉), Semen Euryacles, Crataegi Fructus, Dolichoris Semen(扁豆), Hordei Fructus Germinatus(麥芽), Dioscoreae Radix(山藥), Paeoniae Radix(白芍藥), Zingiberis Rhizoma(乾薑), Arecae Pericarpium(大腹皮), Cimicifugae Rhizoma(升麻), Aurantii Fructus(枳殼), Tiglii Semen(巴豆), Scirpi Rhizoma(三稜), Paeoniae Radix rubra(赤芍藥), Amydae Carapax(鱉甲), (Coptidis Rhizoma(黃連), Dioscoreae Radix(萎藥), Amomi Semen(砂仁), Zingiberis Rhizoma(生薑), Saussureae Radix(木香), Cinnamomi Cortex Spissus(肉桂), Myristicae Semen, Alpiniae Fructus(益智仁), Evodiae Fructus(吳萸), Caryophylli Flos(丁香), Agastachis Herba(藿香), Fructus Piperis Nigri Seu Albi(胡椒), Acontii Tuber(附子), Alpiniae Officinari Rhizoma(良薑), Fructus Galangae. 2. The medicines which work on the other viscera(他臟) chiefly were 12, which were Talcum(滑石), Bupleuri Radix(柴胡), Semen Lepidii Seu Descurainiae, Mori Cotex Radicis(桑白皮), Aurantii lmmaturi Pericarpium(靑皮), Gardeniae Fructus(梔子), Forsythiae Frucus(連翹), Antelopis cornu(羚羊角), Alimatis Rhizoma(澤瀉), Epimedii Herba(仙靈脾), Cyperi Rhizoma(香附子), Rhizome Chuanxiong(川芎). 3. medicines, effected on the Spleen functioned through any other viscera were as follows: Talcum(滑石) works to treat renal heat Entering the Spleen(腎熱入脾) Bupleuri Radix(柴胡) works to treat Hepatic Asthenia Entering the Spleen(肝虛入脾) Semen Lepidii Seu Descurainiae and Mori Cotex Radicis(桑白皮) works to treat Pulmonary gi Entering the Spleen(肺氣入脾) Aurantii lmmaturi Pericarpium(靑皮) works to treat Hepatic gi Entering the Spleen(肝氣入脾) Gardeniae Fructus(梔子) and Forsythiae Frucus(連翹) works to treat Cardiac Heat Entering the Spleen(心熱入脾) Antelopis cornu(羚羊角) works to treat Hepatic wind Entering the Spleen(肝風人脾) Alimatis Rhizoma(澤瀉) works to treat Hepatic heat Entering the Spleen(肝熱入脾) Epimedii Herba(仙靈脾) works to treat Renal asthenia Entering the Spleen(腎虛入脾) Cyperi Rhizoma(香附子) 와 Rhizome Chuanxiong(川芎) works to treat Hepatic gi Entering the Spleen(肝氣入脾) In the study of concerning the medicines effected on the spleen, It is considered that it dedicated to development of the medicines related to the spleen and making efficient use of the medicines.

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A Literature Study of Dermatosurgical Diseases in the ImJeungJiNamUiAn (臨證指南醫案에 나타난 피부외과 질환에 대한 문헌고찰)

  • Cho, Jae-Hun;Chae, Byung-Yoon;Kim, Yoon-Bum
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.15 no.2
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    • pp.271-288
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    • 2002
  • Authors investigated the pathogenesis and treatment of dennatosurgical diseases in the ImJeungJiNamUiAn(臨證指南醫案). 1. The symptoms and diseases of dermatosurgery were as follows; 1) BanSaJinRa(반사진라) : eczema, atopic dermatitis, seborrheic dermatitis, psoriasis, lichen planus, pityriasis rosea, hives, dermographism, angioedema, cholinergic urticaria, urticaria pigmentosa, acne, milium, syringoma, keratosis pilaris, discoid lupus erythematosus, hypersensitivity vasculitis, drug eruption, polymorphic light eruption, rheumatic fever, juvenile rheumatoid arthritis(Still's disease), acute febrile neutrophilic dermatosis(Sweet's syndrome), Paget's disease, folliculitis, viral exanthems, molluscum contagiosum, tinea, tinea versicolor, lymphoma, lymphadenitis, lymphangitis, granuloma annulare, cherry angioma 2) ChangYang(瘡瘍) : acute stage eczema, seborrheic dermatitis, stasis ulcer, intertrigo, xerosis, psoriasis, lichen planus, ichthyosis, pityriasis rosea, rosacea, acne, keratosis pilaris, dyshidrosis, dermatitis herpetiformis, herpes gestationis, bullae in diabetics, pemphigus, lupus erythematosus, fixed drug eruption, erythema multiforme, toxic epidermal necrolysis, toxic shock syndrome, staphylococcal scaled skin syndrome, scarlet fever, folliculitis, impetigo, pyoderma gangrenosum, tinea, candidiasis, scabies, herpes simplex, herpes zoster, chicken pox, Kawasaki syndrome, lipoma, goiter, thyroid nodule, thyroiditis, hyperthyroidism, thyroid cancer, benign breast disorder, breast carcinoma, hepatic abscess, appendicitis, hemorrhoid 3) Yeok(疫) : scarlet fever, chicken pox, measles, rubella, exanthem subitum, erythema infectiosum, Epstein-Barr virus infection, cytomegalovirus infection, hand-foot-mouth disease, Kawasaki disease 4) Han(汗) : hyperhidrosis 2. The pathogenesis and treatment of dermatosurgery were as follows; 1) When the pathogenesis of BalSa(발사), BalJin(發疹), BalLa(발라) and HangJong(項腫) are wind-warm(風溫), exogenous cold with endogenous heat(外寒內熱), wind-damp(風濕), the treatment of evaporation(解表) with Menthae Herba(薄荷), Arctii Fructus(牛蒡子), Forsythiae Fructus(連翹) Mori Cortex(桑白皮), Fritillariae Cirrhosae Bulbus(貝母), Armeniaoae Amarum Semen(杏仁), Ephedrae Herba(麻黃), Cinnamomi Ramulus(桂枝), Curcumae Longae Rhizoma(薑黃), etc can be applied. 2) When the pathogenesis of BuYang(부양), ChangI(瘡痍) and ChangJilGaeSeon(瘡疾疥癬) are wind-heat(風熱), blood fever with wind transformation(血熱風動), wind-damp(風濕), the treatment of wind-dispelling(疏風) with Arctii Fructus(牛蒡子), Schizonepetae Herba(荊芥), Ledebouriellae Radix(防風), Dictamni Radicis Cortex(白鮮皮), Bombyx Batrytioatus(白??), etc can be applied. 3) When the pathogenesis of SaHuHaeSu(사후해수), SaJin(사진), BalJin(發疹), EunJin(은진) and BuYang(부양) are wind-heat(風熱), exogenous cold with endogenous heat(外寒內熱), exogenous warm pathogen with endogenous damp-heat(溫邪外感 濕熱內蘊), warm pathogen's penetration(溫邪內陷), insidious heat's penetration of pericardium(伏熱入包絡), the treatment of Ki-cooling(淸氣) with TongSeongHwan(通聖丸), Praeparatum(豆?), Phyllostachys Folium(竹葉), Mori Cortex(桑白皮), Tetrapanacis Medulla(通草), etc can be applied. 4) When the pathogenesis of JeokBan(적반), BalLa(발라), GuChang(久瘡), GyeolHaek(結核), DamHaek(痰核), Yeong(?), YuJu(流注), Breast Diseases(乳房疾患) and DoHan(盜汗) are stagnancy's injury of Ki and blood(鬱傷氣血), gallbladder fire with stomach damp(膽火胃濕), deficiency of Yin in stomach with Kwolum's check (胃陰虛 厥陰乘), heat's penetration of blood collaterals with disharmony of liver and stomach(熱入血絡 肝胃不和), insidious pathogen in Kwolum(邪伏厥陰), the treatment of mediation(和解) with Prunellae Spica(夏枯草), Chrysanthemi Flos(菊花), Mori Folium (桑葉), Bupleuri Radix(柴胡), Coptidis Rhizoma(黃連), Scutellariae Radix(黃芩), Gardeniae Fructus(梔子), Cyperi Rhizoma(香附子), Toosendan Fructus(川?子), Curcumae Radix(鬱金), Moutan Cortex(牧丹皮), Paeoniae Radix Rubra(赤芍藥), Unoariae Ramulus Et Uncus(釣鉤藤), Cinnamorni Ramulus(桂枝), Paeoniae Radix Alba(白芍藥), Polygoni Multiflori Radix (何首烏), Cannabis Fructus (胡麻子), Ostreae Concha(牡蠣), Zizyphi Spinosae Semen(酸棗仁), Pinelliae Rhizoma(半夏), Poria(백복령). etc can be applied. 5) When the pathogenesis of BanJin(반진), BalLa(발라), ChangI(瘡痍), NamgChang(膿瘡). ChangJilGaeSeon(瘡疾疥癬), ChangYang(瘡瘍), SeoYang(署瘍), NongYang(膿瘍) and GweYang(潰瘍) are wind-damp(風濕), summer heat-damp(暑濕), damp-warm(濕溫), downward flow of damp-heat(濕熱下垂), damp-heat with phlegm transformation(濕熱化痰), gallbladder fire with stomach damp(膽火胃濕), overdose of cold herbs(寒凉之樂 過服), the treatment of damp-resolving(化濕) with Pinelliae Rhizoma(半夏), armeniacae Amarum Semen(杏仁), Arecae Pericarpium(大腹皮), Poria(백복령), Coicis Semen(薏苡仁), Talcum(滑石), Glauberitum(寒水石), Dioscoreae Tokoro Rhizoma(??), Alismatis Rhizoma(澤瀉), Phellodendri Cortex(黃柏), Phaseoli Radiati Semen(?豆皮), Bombycis Excrementum(?沙), Bombyx Batryticatus(白??), Stephaniae Tetrandrae Radix(防己), etc can be applied. 6) When the pathogenesis of ChangPo(瘡泡), hepatic abscess(肝癰) and appendicitis(腸癰) are food poisoning(食物中毒), Ki obstruction & blood stasis in the interior(기비혈어재과), damp-heat stagnation with six Bu organs suspension(濕熱結聚 六腑不通), the treatment of purgation(通下) with DaeHwangMokDanPiTang(大黃牧丹皮湯), Manitis Squama(穿山甲), Curcumae Radix(鬱金), Curcumae Longae Rhizoma(薑黃), Tetrapanacis Medulla(通草), etc can be applied. 7) When the pathogenesis of JeokBan(적반), BanJin(반진), EunJin(은진). BuYang(부양), ChangI(瘡痍), ChangPo(瘡泡), GuChang(久瘡), NongYang(膿瘍), GweYang(潰瘍), Jeong(정), Jeol(癤), YeokRyeo(疫?) and YeokRyeolpDan(疫?入?) are wind-heat stagnation(風熱久未解), blood fever in Yangmyong(陽明血熱), blood fever with transformation(血熱風動), heat's penetration of blood collaterals(熱入血絡). fever in blood(血分有熱), insidious heat in triple energizer(三焦伏熱), pathogen's penetration of pericardium(心包受邪), deficiency of Yong(營虛), epidemic pathogen(感受穢濁), the treatment of Yong & blood-cooling(淸營凉血) with SeoGakJiHwangTang(犀角地黃湯), Scrophulariae Radix(玄參), Salviae Miltiorrhizae Radix(丹參), Angelicae Gigantis Radix(當歸), Polygoni Multiflori Radix(何首烏), Cannabis Fructus(胡麻子), Biotae Semen(柏子仁), Liriopis Tuber(麥門冬), Phaseoli Semen(赤豆皮), Forsythiae Fructus(連翹), SaJin(사진), YangDok(瘍毒) and YeokRyeoIpDan(역려입단) are insidious heat's penetration of pericardium(伏熱入包絡), damp-warm's penetration of blood collaterals(濕溫入血絡), epidemic pathogen's penetration of pericardium(심포감수역려), the treatment of resuscitation(開竅) with JiBoDan(至寶丹), UHwangHwan(牛黃丸), Forsythiae Fructus(連翹), Curcumae Radix(鬱金), Tetrapanacis Medulla(通草), Acori Graminei Rhizoma(石菖蒲), etc can be applied. 9) When the pathogenesis of SaHuSinTong(사후신통), SaHuYeolBuJi(사후열부지), ChangI(瘡痍), YangSon(瘍損) and DoHan(盜汗) are deficiency of Yin in Yangmyong stomach(陽明胃陰虛), deficiency of Yin(陰虛), the treatment of Yin-replenishing(滋陰) with MaekMunDongTang(麥門冬湯), GyeongOkGo(瓊玉膏), Schizandrae Fructus(五味子), Adenophorae Radix(沙參), Lycii Radicis Cortex (地骨皮), Polygonati Odorati Rhizoma(玉竹), Dindrobii Herba(石斛), Paeoniae Radix Alba(白芍藥), Ligustri Lucidi Fructus (女貞子), etc can be applied. 10) When the pathogenesis of RuYang(漏瘍) is endogenous wind in Yang collaterals(陽絡內風), the treatment of endogenous wind-calming(息風) with Mume Fructus(烏梅), Paeoniae Radix Alba (白芍藥), etc be applied. 11) When the pathogenesis of GuChang(久瘡), GweYang(潰瘍), RuYang(漏瘍), ChiChang(痔瘡), JaHan(自汗) and OSimHan(五心汗) are consumption of stomach(胃損), consumption of Ki & blood(氣血耗盡), overexertion of heart vitality(勞傷心神), deficiency of Yong(營虛), deficiency of Wi(衛虛), deficiency of Yang(陽虛), the treatment of Yang-restoring & exhaustion-arresting(回陽固脫) with RijungTang(理中湯), jinMuTang(眞武湯), SaengMaekSaGunjaTang(生脈四君子湯), Astragali Radix (황기), Ledebouriellae Radix(防風), Cinnamomi Ramulus(桂枝), Angelicae Gigantis Radix(當歸), Ostreae Concha(牡蠣), Zanthoxyli Fructus(川椒), Cuscutae Semen(兎絲子), etc can be applied.

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The Growth Inhibiting Effect of Vibrio parahaemolyticus KCTC 2471 by the Natural Products Bearing Antioxidative Capacity (Vibrio Parahaemolyticus KCTC 2471에 대한 항산화 천연산물의 성장 억제 효과)

  • 김종덕
    • Journal of Life Science
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    • v.12 no.6
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    • pp.731-739
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    • 2002
  • The growth of V. parahaemolyticus was inhibited by the combination of natural products having antioxidative capacity. The growth of V. parahaemolyticus was controlled effectively by each or the combination of Paeonia japonica, Acanthodanacis cortex, Phellodendri cortex, Mori cortex radicis, Theae folium, Galla rhois, Coptidis rhizomn and Astragali radix. The growth inhibition ratio of the combination of Astragali radix, Phellodendri cortex, Coptidis rhizotna and Paeonia japonica was 95%, and its antioxidative capacity was also 5.4 times higher, and the elimination ratio of hydroxyl radical was more than 80% compared with control. As natural products might activate some parts of human body, they could be utilized as pharmaceuitcal applications, functional foods, antiaging tea, and multifunctional fermentative beverages.

The Growth Inhibiting Effect of Enterobacteria, Clostridium pefringens KCTC 5014, by the Combination of Natural Products (Clostridium perfringens KCTC 5014의 성장 억제를 위한 항산화 천연산물의 효과)

  • 김종덕
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.6
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    • pp.1119-1125
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    • 2002
  • The growth of C. pefringens was inhibited by the combination of natural products which have antioxidative capacity C. perfringens was controlled very effectively by each or the combination of Paeonia japonica, Atractylodis rhizome alba, Epimedii herba, Acori graminei rhizoma, Schizandraefructus, Lyciifructus, Cinnamomi cortex Sophorae flos Phellodendri cortex, Nelumbo nuclfera gaertner, Asparagi tuber, Mori cortex radicis, Astrafali radix and Coptidis rhizome The combination of Phellodendri cortex, Epimedii herba, Astragali radtx and Glycyrrhizae radix inhibited the growth of C. pefringen by 75% and increased the antioxidative activity by 4.4 times. This combination also eliminated more than 80% of hydroxyl radical. These natural products can be utilized as pharmaceuticals, functional foods, antiaging tea, and multifunctional fermentative beverages.

Antioxidant Activity and Anti-hyperglycemic Activity of Medicinal Herbal Extracts According to Extraction Methods (약용식물의 추출방법에 따른 항산화 및 항당뇨 활성)

  • Jeong, Hyun-Jin;Lee, Sung-Gyu;Lee, Eun-Ju;Park, Woo-Dong;Kim, Jong-Boo;Kim, Hyun-Jeong
    • Korean Journal of Food Science and Technology
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    • v.42 no.5
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    • pp.571-577
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    • 2010
  • Korean traditional medicinal herbs have been reported to possess antioxidant and anti-hyperglycemic activities. We tested the antioxidant and anti-hyperglycemic activities of 6 kinds of medicinal herbs: Angelica gigas N., Poria cocos, Mori radicis Cortex, Mori folium, Aralia elata Cortex, and Panax ginseng, prepared as hot water, ethanol, and sonication extracts. The antioxidant activities of the extracts were examined by performing total polyphenol, total flavonoid, and ${\alpha}$,${\alpha}$-diphenyl-${\beta}$-picrylhydrazyl (DPPH) assays. For M. folium, the ethanol extract showed the strongest effects in DPPH radical scavenging activity among the three extraction methods. In addition, sonication extracts of M. radicis Cortex and M. folium showed the highest inhibitory activities for ${\alpha}$-glucosidase among the different extracts. The ethanol extracts of M. folium had the highest inhibition effects against ${\alpha}$-amylase. A direct correlation between antioxidant and anti-hyperglycemic inhibition activity was found in the ethanol and sonication extracts. From the results, it is considered that these six medicinal herbal extracts have antioxidative, anti-hyperglycemic, and correlation effects based on different extraction methods.

Anti-Obesitic Effect of Mulberry Root-Bark (Mori radicis Cortex) in Zucker Rats with High Lipid Diet Induced-Obesity (고지방식이에 의해 비만이 유도된 Zucker Rats에서 상백피분말의 비만 개선효과)

  • Hong, Seong-Hee;Kim, Dong-Kyu;Lee, Nam-Jin;Cho, Jung-Hee;Kang, Jong-Koo;Kim, Yun-Bae;Park, Jung-Hui;Hwang, Seock-Yeon
    • Korean Journal of Clinical Laboratory Science
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    • v.37 no.2
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    • pp.129-137
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    • 2005
  • This study was performed to investigate the anti-obesitic effect of mulberry root-bark on male and female Zucker FA/FA or FA/fa rats. Obesity in the rats was induced by feeding high-lipid diet contained 3% corn oil and 1% cholesterol. Experimental groups in male and female rats were assigned to normal diet group (normal control), high-lipid diet group(positive control) and 3% mulberry root-bark powder in high-lipid diet group (MRC). The mulberry treated-group showed decreases of body weight, FER (food efficiency ratio) value and lipid peroxidation in the liver and increase of high density lipoprotein cholesterol (HDL-C) value, compared with positive control groups. Our findings suggest that mulberry root-bark has a potential role in preventing or improving obesity from the following points of view, body weight, serum lipids and antioxidant enzyme activities.

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Acute Toxicity of $P_2$, $B_1$, $T_{0}$, and $O_1$ in Rats and Mice

  • Yoon, Suh-young;Yoo, Kyeong-seok;Yim, Jae-woong;Kim, Bak-kwang;Cheong, Jae-hoon
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1998.11a
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    • pp.190-190
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    • 1998
  • $_2$(5,7-dipropoxychrysin), $B_1$(chrysin7-O-toluate), $T_{0}$(5-hydroxy-7-butoxy-chrysin), and $O_1$(5- hydroxy-7 -octoxychrysin) are chrysin derivatives which have isolated from Mori Cortex Radicis. They exhibited strong hypoglycemic effect, so they can be developed for hypoglycemic agents. In this study, we evaluated the acute toxicity of $P_2$, $B_1$, $T_{0}$, and $O_1$ by a single oral administration in rats and mice. The male SD rats and the male ICR mice were divided into 5 groups, and each group was treated orally with 500mg/kg $P_2$, $B_1$, $T_{0}$, and $O_1$, and control respectively. 500mg/kg is the highest dosage which can be administered to mouse. Each group of mice were subdivided as the dosage, 5mg/kg, 20mg/kg, l00mg/kg, and 500mg/kg. After oral administration, we examined food consumption, clinical signs and mortality of each group for 12 days. We also examined body weight increment of animals before and after treatment. Then organ weights were examined on 13th day. There was no toxic effect in mortality, body weight changes, food consumption, clinical signs and organ weights. We found out that the $LD_{50}$ of $P_2$, $B_1$, $T_{0}$, and $O_1$ is more than 500mg/kg in rats.

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Comparative study on the antimicrobial and antiinflammatory activity of commercially available toothpastes (수종의 상용 세치제들의 향균 및 향염효과 비교연구)

  • Rhyu, In-Chul
    • Journal of Periodontal and Implant Science
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    • v.26 no.2
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    • pp.557-566
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    • 1996
  • It is known that some natural extracts from plants have a various range of antimicrobial and antiinflammatory activity. There are lots of clinical trials to develop toothpastes containing natural extracts for prevention of dental caries and gingival inflammation. The purpose of this study was to evaluate antimicrobial and antiinflammatory activity of magnolol containing toothpastes and other commercial toothpastes. Eleven kinds oftoothpastes were used. They include magnolol, sanguinarine, Myrrha, Mori radicis cortex,Cimicifugae rhizoma, sodium fluoride, aminocaprolactic acid etc. Six strains of bacteria were used for this test, ego Porphylomonas gingivalis, Prevotellain-termedia, Actinobacillus actinomy cetemcomitans, Streptococcus mutans, Stretococcus sanguis, and Actinomyces species. Antimicrobial activity was determined by an agar dillution method and a broth microdillution method. Antiinflammatory activity was assessed by the inhibition of $PGE_2$ production from gingival fibroblast with the addition of rHIL-1 and centrifuged solution of toothpastes. Control group was only rHIL-1 additive sample. $PGE_2$ enzyme immunoassay systemfAmersham, In. Buckinghamshire, U.K). $PGE_2$ level was measured by ELISA reader with 450 nm, The results from the study revealed that toothpastes containing natural extracts generally had high antimicrobial and antiinflammatory activity. Especially magnolol containing toothpaste showed higher antimicrobial activity than other toothpastes, and sanguinarine containing toothpaste showed particularly high antimicrobial activity in A. actinomicetemcomitans and A. viscosus. In some degree all toothpastes inhibited $PGE_2$ production, but magnolol containing toothpaste was potent inhibitor of $PGE_2$. Sodium chloride containing toothpaste had also effective result. The results suggested that toothpastes containing natural extracts were promising in plaque control and prevention of dental caries and gingivitis.

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Effects of Sabaiksan on the Compound 48/80 Induced Anaphylatic Shock and Cutaneous Reaction (사백산(瀉白散)이 Compound 48/80에 의하여 유도(誘導)된 Anaphylatic shock와 피하반응(皮下反應)에 미치는 영향(影響))

  • Kim, Min-Ho;Han, Sang-Whan;Jeon, Byeong-Deuk
    • The Journal of Internal Korean Medicine
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    • v.11 no.2
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    • pp.22-42
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    • 1990
  • Sabaiksan has been prescribed to treat various allergic diseases in herbal medicine which were induced by various vasoactive amine released from the mast cells. The constituents of Sabaiksan are Mori Cortex Radices(MCR), Lycii Cortex Radicis(LCR) and Glycyrrhizae Radix(GR). Recently, simple models of compound 48/80 induced anaphylactic shock and cutaneous reaction in vivo were developed to test various agents employed in the field of allergy and toxicology research. The purpose of this study is to evaluate the effects of Sabaiksan on compound 48/80 induced anaphylactic stock, cutaneous reaction and mesenteric mast cell degranulation rate in ICR mice, and on compound 48/80 induced peritoneal mast cell degranulation and histamine release in vitro. Groups of ICR mice were intraperitoneally pretreated with $100{\mu}{\ell}$ of saline, $MCR(2g/m{\ell}),\;LCR(2g/m{\ell}),\;GR(g/m{\ell})$ or Sabaiksan itself(MCR+LCR+GR) at 24, 12 and 1 hour before compound 48/80 solution ($10{\mu}{\ell}/gm$ B. W) were peritoneally given into them, and then mortality within 72 hours after the compound 48/80 injection, and mesenteric mast cell degranulation rate at 15 minutes after compound 48/80 injection were calculated. In vitro experiment, $400{\mu}{\ell}$ of rat peritoneal mast cell suspension$(10^6cell/m{\ell})$ were pretreated with $50{\mu}{\ell}$ of saline, $MCR(2g/m{\ell}),\;LCR(2g/m{\ell}),\;GR(g/m{\ell})$ or Sabaiksan itself at room temperature for 30 minutes, and then $50{\mu}{\ell}$ of compound 48/80 solution $(100{\mu}g/m{\ell})$ were added into it. 30 minutes after the addition of compound 48/80 solution, histamine release assay in the supernatant of peritoneal mast cell suspension were performed employing radioisotope enzymatic assay and morphologic changes of mast cells in each regular time point were photographed. Compared with controls, compound 48/80 induced anaphylactic shock was significantly inhibited by MCR and GR pretreatment into the ICR mice. Significant inhibition of compound 48/80 induced cutaneous reaction, mesenteric mast cell degranulation rate in vivo and histamine release from the rat peritoneal mast cells in vitro was observed only in MCR pretreated group. From the above results, it is suggested that MCR component of Sabaiksan may playa key role to suppress mast cell function since it has been applied to various allergic diseases.

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