• Title/Summary/Keyword: Glycyrrhiza uralensis Fischer

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The Effect of Medicinal Herb Extract on Antimicrobial Activity against Helicobacter pylori and Antioxidant Activity (약용식물 추출물의 Helicobacter pylori에 대한 항균 활성과 항산화 활성에 미치는 효과)

  • Park Young-Sook;Kim Yoon-Hee
    • Journal of the East Asian Society of Dietary Life
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    • v.16 no.2
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    • pp.199-206
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    • 2006
  • This study was designed to investigate the effect of medicinal herb extract on the antioxidant and antimicrobial activities against Helicobacter pylori, which is known as a ulcerogenic pathogen. The concentration of total phenolic compound of Scutellaria baicalensis(13.14%) was highest among water extracts and that of Ulmus parvifolia(15.12%) was highest among the ethanol extracts. The antioxidant activity of the water extract of Scutellaria baicalensis and of the ethanol extract of Ulmus parvifolia were 91.00% and 65.03%, respectively, in DPPH assay. The antioxidant activity of the water extract of Scutellaria baicalensis and of the ethanol extract of Ulmus parvifolia were 32.90% and 27.70%, respectively, in SOD assay. The antioxidant activity of the water extract of Ulmus parvifolia and of the ethanol extract of Glycyrrhiza uralensis Fischer was 2.15 and 2.17, respectively, in TBARS assay. In disc method, Scutellaria baicalensis showed the highest anti-microbial activity against H. pylori, followed by Glycyrrhiza uralensis Fischer among the water extracts and Glycyrrhiza uralensis Fischer showed the highest anti-microbial activity followed by Radix puerariae among ethanol extract.

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Antioxidative Activities and Contents of Polyphenolic Compound of Medicinal Herb Extracts (한약재 추출물의 폴리페놀 화합물과 항산화 활성)

  • 박영숙
    • Journal of the East Asian Society of Dietary Life
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    • v.12 no.1
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    • pp.23-31
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    • 2002
  • The antioxidative activity was measured on the substances of water and ethanol soluble extract from Astragalus membranaceus Bunge, Chrysanthemum morifolium Ramat, Lycium chinensis Miller, Glycyrrhiza uralensis Fischer, Angelica gigas Nakai, Zizyphus jojoba Miller, Paeonia lactiflora Pallas, Cnidium officinale Makino by four different in vitro experimental models of DPPH (a,a'-diphenyl-$\beta$-picrylhydrazyl) method, superoxide dismutase like activity, thiocyanate method, and TBARS (thiobarbituric acid reactive substances) method. The Lycium chinensis Miller contained the highest amount of polyphenolic compounds. The electron donating ability of water extract from Glycyrrhiza uralensis Fischer and ethanol extract from Chrysanthemum were higher than those of the others. The superoxide dismutase-like activity of water extract from Astragalus membranaceus Bunge was the highest among those of all the others. The water extract from Zizyphus jujuba Miller showed the highest antioxidative activity determined by TBARS method. Compared to the control, the inducing period associated with the oxidation degree was delayed up to 8 days in both the water extract from Chrysanthemum, Lycium chinensis Miller, Glycyrrhiza uralensis Fischer, and Paeonia lactiflora Pallas and the in ethanol extract from Chrysanthemum and Glycyrrhiz uralensis Fischer. These results support that water and ethanol extracts from 8 kinds of medicinal herbs contain antioxidative compounds.

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Induction of Glutathione S-transferase Activity by the Extracts of Glycyrrhiza uralensis Fischer (감초 추출물이 glutathione S-transferase의 유도 활성에 미치는 영향)

  • Yoon, Mi-Young;Jun, Kyung-Im;Son, Eun-Soon;Kim, Ji-Hyun;Kim, Yong-Seong;Park, Eun-Ju;Park, Hae-Ryong
    • Applied Biological Chemistry
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    • v.51 no.3
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    • pp.228-232
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    • 2008
  • In the present study, we investigated the glutathione S-transferase (GST) induction of medicinal plants using a cultured PC12 cells. The methanol extracts of Dendrobium nobile Lindley, Schizonepeta tenuifolia Briquet, Glycyrrhiza uralensis Fischer, Paenoia lactiflora Pall were tested. As the result, exposure of PC12 cells to G. uralensis resulted in the significant induction of GST. On the continuous experiment, G. uralensis was extracted with methanol, ethanol, and acetone. Among these extracts, methanol extracts showed the highest GST induction. The methanol extracts were further fractionated with hexane, diethyl ether, ethyl acetate, and water layer according to the degree of polarity. The diethyl ether layer showed the highest exhibited GST induction on PC12 cells. Based on these results suggest that the extracts of G. uralensis can be applicable for the development of a new antioxidant agent.

Simultaneous Quantitative Analysis of Natural Complex Extract of Codonopsis lanceolata (Siebold & Zucc.) Trautv., Platycodon grandiflorum A. De Candolle, Glycyrrhiza uralensis Fischer (더덕, 길경, 감초 복합추출물에 대한 지표성분 동시분석 및 함량평가)

  • Min Sung Ko;Chung Hyun Lee;Seul Lee;Ye Seul Kim;Ho Sik Yoon;So-Young Park
    • Korean Journal of Pharmacognosy
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    • v.54 no.1
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    • pp.44-51
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    • 2023
  • Fine dust has emerged as seriously hazardrous particles, which can cause respiratory and cardiovascular diseases. Thus, we have developed a natural complex extract consisted of Codonopsis lanceolata (Siebold & Zucc.) Trautv., Platycodon grandiflorum A. De Candolle, and Glycyrrhiza uralensis Fischer in the ratio of 3 : 5 : 2, which have a beneficial effect on respiratory system. In this study, simultaneous quantitative analysis of marker compounds, lobetyolin, platycodin D, and glycyrrhizic acid in the natural complex extract was developed and validated with high performance liquid chromatography-photodiode array detector. The marker compounds were shown in a large linearity with a correlation coefficient (R2) of 1.000. The limit of detection (LOD) of lobetyolin, platycodin D and glycyrrhizic acid were 5.40 ㎍/mL, 3.94 ㎍/mL and 5.86 ㎍/mL, respectively. The limit of quantification (LOQ) of lobetyolin, platycodin D and glycyrrhizic acid were 16.36 ㎍/mL, 11.94 ㎍/mL and 17.75 ㎍/mL, respectively. The content analysis revealed that the amounts of lobetyolin, platycodin D, and glycyrrhizic acid were 0.039±0.013 mg/g, 0.337±0.048 mg/g, and 1.171±0.003 mg/g, respectively, in the natural complex extract. Therefore, these results could be used as basic data for the standardization and quality control of the natural complex extract.

A Comparative Study of Physiological Activity and Ingredient Analysis of Glycyrrhiza uralensis Fischer Stems and Leaves Cultivated with Different Wavelength of LED Lights (LED광원에 따른 감초 지상부의 생리활성 및 성분 평가)

  • Bang, Keuk Soo;Chang, Young Nam;Jin, Jong Sik;Park, Sang A;Lim, Jae Soo;Park, Jeong Sub;Kim, Jong Sung;Lee, Jeong Ho
    • Korean Journal of Plant Resources
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    • v.28 no.1
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    • pp.126-134
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    • 2015
  • Glycyrrhiza uralensis Fischer is one of the most commonly used herbs. Recently, the stem and leave of the plant have been interested in physiological activities because the aerial parts have been thrown away. Finding out cultivation method of Glycyrrhiza uralensis Fischer to improve chemical ingredients and biological activities has been tried these days. In this study, different wavelengths of light emitting diode (LED) were used for a cultivation of Glycyrrhiza uralensis Fischer. Antioxidant activities and inhibitory effect on mutagenecity of samples were evaluated. The stem and leave cultivated under blue light (BL-0) showed the strongest antioxidant activities of $3.02{\pm}0.13{\mu}g/ml$ ($EC_{50}$) and $2.18{\pm}0.18{\mu}g/ml$ ($EC_{50}$) in DPPH and ABTS radical scavenging test, respectively. Total phenolic content of BL-0 was $2.93{\pm}0.11g/100g$, the highest value between cultivation conditions. However, antioxidant activities of the stem and leave cultivated under red light were the weakest between samples. All of the stem and leave used in this study showed inhibitory effect on mutagenecity of 1-nitropyrene. BL-0 showed stronger inhibitory effects on mutagenicity of Trp-P-1, Trp-P-2, and AFB1 than samples cultivated under other conditions. Only on mutagenecity of 2-aminoanthracene, the stem and leave cultivated at 1 m apart from red light (RL-1) showed the strongest inhibitory effect. These results indicate that blue LED might be the most effective condition for improvement of physiological activities for the aerial parts of Glycyrrhiza uralensis Fischer in cultivation. The components were identified with GC/MS. Cytidine was detected only in RL-1 at 25 min of retention time and 2-bromotrimethylene glycol was detected only in BL-0 at 37 min.

Effects of Cultural Soil Texture on Growth and Quality of Glycyrrhiza uralensis Fischer (감초 생육 및 품질에 미치는 재배 토성의 영향)

  • Nam, Sang Young;Kim, In Jae;Choi, Seong Yel;Kim, Min Ja;Kim, Young Ho;Song, In Gyu;Lee, Guang Jae;Park, Jae Ho;Kim, Tae Jung
    • Journal of the Korean Society of International Agriculture
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    • v.23 no.5
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    • pp.531-536
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    • 2011
  • This study was conducted to investigate the effects of cultural soil textures on growth and quality of Glycyrrhiza uralensis Fischer from 2009 to 2010. The obtained results from this study were summarized as follows; The growth of stem and leaf were superior to one year old G. uralensis, and surface runner and root growth tended to be better in 2 years old G. uralensis. The weight of stem and leaf were heavy in sandy loam, and plant height, branches, stem diameter in sandy clay loam were better than other soil texture. The growth characteristics, such as length, number and weight of surface runner, was better in order of sandy clay loam > sandy loam > loamy sand. The length of main and lateral root was longer in loamy sand soil than other treatments, and the diameter of main and lateral root was more thicker in sandy loam than others. The number of lateral root was higher in the sandy loam than other treatments. The yield of main and lateral root was in order of sandy loam > sandy clay loam > loamy sand soil. Marketable root yield of one year old and two year old G. uralensis were increased 57% and 71% in sandy loam compare to a loamy sand as 204 kg/10 a, respectively. The content of glycyrrhizinic acid was the hightest as 1.62% in sandy clay loam soil in one year old, and as 1.58% in sandy loam soil in two years old of G. uralensis, respectively.

Comparison of Physiological Properties of Gamma-Irradiated Root and Stolen Extracts of Gamcho (Licorice, Glycyrrhiza uralensis Fischer)

  • Cheorun ;Kim, Myung-Cheol;Kim, Kwan-Soo;Kang, Seong-Mo;Kim, Chi-Bong;Lee, Hyun-Ja;Byun, Myung-Woo
    • Preventive Nutrition and Food Science
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    • v.7 no.3
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    • pp.273-277
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    • 2002
  • Physiological properties of root and stolen of Gamcho (Licorice, Glycyrrhiza uralensis Fischer) were compared following irradiation at 20 kGy. The root and stolen of Gamcho were extracted with 70 % ethanol, irradiated and stoved in a 4"C refrigerator. Irradiation induced color changes, electron donating ability (EDA), and tyro-sinase inhibition effect (TIE) were investigated. The color of the non-irradiated stolen extract was darker than the non-irradiated root extract (p<0.05), but irradiation eliminated color differences between stolen and root extracts. Generally, irradiation did not affect EDA and TIE of either of the extracts. However, EDA and TIE were higher in stolen extract than in root extract, when the higher dilution factor was considered. These results indicate that the stolen of Gamcho, which is mostly wasted, is a valuable source of phytochemicals with greater EDA and TIE activities than Gamcho root.root.

Antibacterial and therapeutic effects of a combination of Sophora flavescens and Glycyrrhiza uralensis Fischer ethanol extracts on mice infected with Streptococcus pyogenes

  • Yu, Eun-Ah;Cha, Chun-Nam;Park, Eun-Kee;Yoo, Chang-Yeul;Kim, Suk;Lee, Hu-Jang
    • Korean Journal of Veterinary Research
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    • v.54 no.3
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    • pp.189-192
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    • 2014
  • This study evaluated the antibacterial effects of a mixture of Sophorae radix and Glycyrrhiza uralensis Fischer (1 : 1) ethanol extracts (SGE) on mice infected with Streptococcus (S.) pyogenes. The minimum inhibitory concentration (MIC) and minimum bactericidal concentration of SGE necessary for antibacterial effects against S. pyogenes were $20{\mu}g/mL$. Based on the time-kill curves for S. pyogenes, SGE was effective at $4{\times}$ MIC after 16 h. On Day 12 after challenge, the survival rate of mice treated with 2.0 mg/kg SGE was 60%. In conclusion, SGE had potent in vitro and in vivo antibacterial activities against S. pyogenes.

Analysis of Liquiritigenin, an Aglycone of Liquiritin in Licorice by High Performance Liquid Chromatography (감초 중 리퀴리티게닌 분석법 개발 및 함량분석)

  • Lee, Jong-Hwa;Ze, Keum-Ryon;Kim, Do-Hoon;Park, Ju-Young;Shim, Young-Hoon;Kim, Jong-Hwan;Lim, Sook;Shin, Jin-Seon;Kim, In-Seon;Kim, Ji-Yeon;Seong, Sang-Hyun;Jang, Seung-Yeup;Kim, Dong-Seup;Seong, Rack-Seon
    • Korean Journal of Pharmacognosy
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    • v.40 no.4
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    • pp.309-314
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    • 2009
  • Licorice(Glycyrrhizae Radix et Rhizoma) is recorded as the root of Glycyrrhiza uralensis Fischer or Glycyrrhiza glabra Linne or Glycyrrhiza inflata Bat.(Leguminosae) in Korean Pharmacopoeia $9^{th}$ edition (KP9) and Chinese Pharmacopoeia 2005(CP2005), Glycyrrhiza uralensis Fischer or Glycyrrhiza glabra Linne in Japanese Pharmacopoeia 2005(JP2005). It is established the content standard of Glycyrrhizin 2.5 % and liquiritin 1% in KP9 and CP2005. But, according to the reports, all Licorice species were not sufficient for content standard of liquiritin 1.0% for licorice in KP9 and CP2005. It shows different content of liquiritin among G. uralensis, G. glabra and G. inflata. Also, it was reported liquiritin, liquiritin apioside are transformed into liquiritigenin by human internal flora. Therefore, we have studied for the pre-treatment condition and analytical method of liquiritigenin; It was good efficinet in 2M HCl reflux(1 hr) for hydrolysis and in methylene chloride for solvent fractionation. And 1% acetic acid in DW(A) and acetonitrile(B) with gradient condition as a mobile phase was most effective in HPLC analytical condition. According to these experimental methods, we have anlayzed content of liquiritigenin about 77 Licorice sample. In this research, it was also examined the content of liquiritin and liquiritigenin for Glycyrrhizae Radix related growing area. According to the results, we suggested the content standard of glycyrrhizin more than 2.5%, liquiritigenin more than 0.7%(after hydrolysis) of licorice.