• Title/Summary/Keyword: parishin

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Three Phenolic Glycosides from Gastrodia elata

  • Chae, Sung-Wook;Lee, A-Yeong;Lee, Hye-Won;Yoon, Tae-Sook;Moon, Byeong-Cheol;Choo, Byung-Kil;Kim, Ho-Kyoung
    • Journal of Applied Biological Chemistry
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    • v.51 no.2
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    • pp.61-65
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    • 2008
  • Three phenolic glycosides, gastrodin (1), parishin (2), and parishin B (3) were isolated from the n-BuOH fraction of Gastrodia elata (Orchidaseae) by medium pressure liquid chromatography. Their chemical structures were identified by the interpretation of their spectral data and direct comparison with literature values. Gastrodin and parishin were isolated as the major constituents in G. elata. Gastrodin may be a suitable index component for quality control of G. elata.

Changes of Off-Odor Constituent and Parishin Derivatives of Fermentation of Gastrodia elata Rhizome by Lactic Acid Bacteria Strains (천마의 젖산발효에 따른 이취성분 및 Parishin 유도체의 변화)

  • Song, Young Eun;Lee, In Sok;Song, Eun Ju;Choi, Min Kyung;Han, Hyun Ah;Shin, So Hee;Choi, So Ra;Lee, Ki Kwon;Kim, Myung Kon;Park, Shin Young
    • The Korean Journal of Food And Nutrition
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    • v.30 no.5
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    • pp.973-982
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    • 2017
  • Gastrodia elata Blume often has been used for the treatment of headaches, convulsions, hypertension, and neurodegenerative diseases. The main active constituents are gastrodin, 4-hydroxybenzyl alcohol, vanillyl alcohol, 4-hydroxybenzylaldehyde and parishin A, B, C and E. Because Gastrodia elata has also unacceptable off-odor (swine barnyard-like) for food, there is a need to reduce it as well as allow for greater utilization as a functional food materials. In this study, a major off-odor producing substance of Gastrodia elata was fractionated by steam distillation and silica gel column chromatography. The substance was identified as p-cresol(4-methyl phenol) by GC-MS analysis and comparison of the retention time with that of an authentic compound in GC. The content of p-cresol in fermented Gastrodia elata was decreased. A fermented sample of Latobacillus sakei for 2 days was reduced to 54.7%, when compared with a unfermented sample. The five parishin derivatives in Gastrodia elata were identified by HPLC-MS analyses, and a comparison of HPLC retention times with those of authentic compounds. When compared with parishin derivatives of an unfermented Gastrodia elata, those of Gastrodia elata fermented by L. sakei, increased to 18.3% for 2 days. Increases of about 14.0~38.4% of the total phenolic compounds and 57.4~77.3% total flavonoids were found in fermented extracts, by 3 lactic acid bacteria strains. They were compared with $97.1{\pm}2.9{\mu}g/g$ and $40.9{\pm}2.0{\mu}g/g$ in the unfermented control, respectively. The extracts of Gastrodia elata Blume that were fermented by lactic acid bacteria had higher DPPH free radical scavenging activity and FRAP reducing power than the unfermented control.

Enhanced Yield of Extraction from Gastrodia elata Blume by Ultrasonication and Enzyme Reaction

  • Kim, Hyun-Jong;Kwak, In-Seob;Lee, Bong-Soo;Oh, Seung-Bae;Lee, Hyun-Chul;Lee, Eun-Mi;Lim, Ja-Young;Yun, Yeoung-Sang;Chung, Bong-Woo
    • Natural Product Sciences
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    • v.11 no.3
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    • pp.123-126
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    • 2005
  • Gastrodia elata Blume (Chunma) belongs to Orchidaceae, which is a perennial parasitic herbaceous plant and grows in the woods of the central provinces of China, Korea and Japan. Recently, the constituents of the tubers of this plant have been investigated by researchers who have revealed the presence of phenolic compounds including gastrodin as a major constituent, together with 4-hydroxybenzaldehyde, 4-hydroxybenzyl alcohol, parishin, 4,4-dihydroxybenzyl sulfoxide, vanillin, vanillyl alcohol, beta-sitosterol, organic acids and polysaccharides, etc. In this study, we used ultrasonicator and two kinds of enzymes for enhancement of extraction yield. We also used electronic nose for the aroma pattern analysis of Chunma extracts. The concentrations of glucose and functional constituents (gastrodin, vanillin, 4-hydroxybenzaldehyde and 4-hydroxybenzyl alcohol) were measured by biochemistry analyzer and HPLC, respectively. Therefore, we showed that the yield of extraction was increased and discomfortable odor was reduced.

Sleep Inducing Effect of Gastrodia elata Fermented with Lactic Acid Bacteria (유산균 발효 천마의 수면유도 효과)

  • Lee, Keyong Ho;Rhee, Ki-Hyeong;Kim, Byung-Soo;Choi, Yong-Ho;Kim, Choong-Hwan
    • Korean Journal of Pharmacognosy
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    • v.44 no.3
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    • pp.281-285
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    • 2013
  • Ethanol extract of Gastrodia elata fermented with Lactobacillus brevis was highly effective on the duration of pentobarbital hypnosis in mice. Pretreatment of mice with ethanol extract of the fermented Gastrodia elata (200 mg/kg, p.o.) prolonged markedly the duration of pentobarbital sleeping time and reduced the sleep latency. The mechanism of the extract of the fermented Gastrodia elata was investigated to inhibit the binding of $^3H$-Flumazenil, a selective benzodiazepine receptor antagonist, to benzodiazepine receptor of mice cortices. $IC_{50}$ value from displacement of $^3H$-Flumazenil binding was 62 ${\mu}g/mL$ at the treatment of the fermented Gastrodia elata. Therefore, these finding, such as increase of sleeping time and reduction of sleep latency, was examined by elevated concentration of GABA and parishin C, which were increased by Lactobacillus brevis.

Quality Characteristics of Fresh Gastrodia elata according to Different Steaming Time (증자시간에 따른 생천마의 품질특성 변화)

  • Young Eun Song;Eun Ju Kim;Hyun Ah Han;Song Yee Lee;Chang Su Kim;Min Sil Ahn
    • The Korean Journal of Food And Nutrition
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    • v.37 no.1
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    • pp.40-47
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    • 2024
  • Gastrodia elata has been used in traditional Chinese medicine for treating headaches, dizziness, and convulsive illness for centuries. G. elata has traditionally been processed by steaming or blanching to increase the content and quality of its main ingredients. This study aimed to identify changes in physicochemical properties and active ingredients of G. elata depending on the steaming time. Data of this study could be used to develop traditional medicine and health foods. No steaming was used as a control. Steaming time was 5, 10, 20, 30, 60, or 120 min. The drying yield according to the steaming time ranged from 20.2% to 22.9%, with the lowest drying yield at 120 min. As the steaming time increased, gastrodin content increased more than that in fresh G. elatadue to inhibition of β-glucosidase enzyme activity, 4-hydroxybenzyl alcohol condensation, and parishin decomposition. Steamed G. elatadid not show higher total polyphenols, total flavonoids, or ABTS radical scavenging activities than fresh G. elata even with an increase of steaming time. The steaming time to improve the quality of G. elata may varied depending on the size of G. elata. Thus, it is important to set the steaming time taking these characteristics into consideration.