• Title/Summary/Keyword: Decoction

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Concentration of Hazardous Substances of before/after a Decoction in Prescription of Herbal Medicine -In Prescription of tonify Yang and tonify Yin- (한방처방의 전탕 전과 후의 위해물질 농도변화 -보양.보음 처방을 중심으로 -)

  • Seo, Chang-Seob;Huang, Dae-Sun;Lee, Jun-Kyoung;Ha, Hye-Kyoung;Chun, Jin-Mi;Um, Young-Ran;Jang, Seol;Shin, Hyeun-Kyoo
    • Herbal Formula Science
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    • v.17 no.2
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    • pp.53-63
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    • 2009
  • Objective : To compare the contents of heavy metals, residual pesticides and sulfur dioxide before/after a decoction. Methods : The heavy metal contents before/after a decoction were measured by Inductively Coupled Plasma Atomic Emission Spectrometer (ICP-AES) and mercury analyzer. In order to analyze pesticides in 4 samples we used simultaneous multi-residue analysis of pesticides by GC/ECD, which was followed by GC/MSD analysis to confirm the identity of the detected pesticide in each sample. In addition, the contents of sulfur dioxide ($SO_2$) were performed by Monier-Williams distillation method. Results: 1. The mean values of heavy metal contents (mg/kg) for the samples were as follows: Jaeumganghwa-tang (before decoction - Pb; 1.190, Cd; 0.184, As; 0.099 and Hg; 0.028, after decoction - Pb; .033, Cd; 0.003, As; 0.005 and Hg; 0.001), Yukmijiwhang-tang (before decoction - Pb; 0.484, Cd; 0.133, As; 0.053 and Hg; 0.009, after decoction - Pb; 0.065, Cd; 0.008, As; 0.007 and Hg; not detected), Bojungikgi-tang (before decoction - Pb; 0.863, Cd; 0.197, As; below 0.016 and Hg; 0.011, after decoction - Pb; 0.071, Cd; 0.009, As; 0.004 and Hg; 0.001) and Ssangwha-tang (before decoction - Pb; 1.511, Cd; 0.212, As; 0.094 and Hg; 0.016, after decoction - Pb; 0.029, Cd; 0.006, As; 0.005 and Hg; 0.0004). 2. Contents (mg/kg) of sulfur dioxide ($SO_2$) before a decoction in Jaeumganghwa-tang, Yukmijiwhang-tang and Ssangwha-tang exhibited 22.7, 107.3 and 5.5, respectively. However, contents of sulfur dioxide after a decoction in all samples were not detected. 3. Contents (mg/kg) of residual pesticides before/after a decoction in all samples were not detected. Conclusion : These results will be used to establish a criterion of heavy metals, residual pesticides and sulfur dioxide.

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Concentration of Heavy Metals, Residual Pesticides and Sulfur Dioxide before/after a Decoction - In Prescription consist of Sipjeondaebo-tang - (전탕 전과 후의 중금속, 잔류농약 및 잔류이산화황의 농도변화 - 십전대보탕 구성처방을 중심으로 -)

  • Seo, Chang-Seob;Huang, Dae-Sun;Lee, Jun-Kyoung;Ha, Hye-Kyung;Chun, Jin-Mi;Um, Young-Ran;Jang, Seol;Shin, Hyeun-Kyoo
    • The Journal of Korean Medicine
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    • v.30 no.4
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    • pp.108-117
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    • 2009
  • Objective: To compare the contents of heavy metals, residual pesticides and sulfur dioxide before/after a decoction. Methods: The heavy metal contents before/after a decoction were measured by inductively-coupled plasma atomic emission spectrometer (ICP-AES) and mercury analyzer. In order to analyze pesticides in 5 samples we used simultaneous multi-residue analysis of pesticides by GC/ECD, which was followed by GC/MSD analysis to confirm the identity of the detected pesticide in each sample. In addition, the contents of sulfur dioxide ($SO_2$) were performed by Monier-Williams distillation method. Results: 1. The mean values of heavy metal contents (mg/kg) for the samples were as follows: Sipjeondaebo-tang (before decoction - Pb; 1.163, Cd; 0.257, As; 0.080 and Hg; 0.016, after decoction - Pb; 0.059, Cd; 0.007, As; 0.006 and Hg; 0.0003), Palmul-tang (before decoction - Pb; 1.181, Cd; 0.242, As; 0.152 and Hg; 0.014, after decoction - Pb; 0.067, Cd; 0.008, As; 0.008 and Hg; 0.0003), Sagunja-tang (before decoction - Pb; 1.285, Cd; 0.283, As; 0.063 and Hg; 0.012, after decoction - Pb; 0.047, Cd; 0.009, As; 0.004 and Hg; not detected) and Samul-tang (before decoction - Pb; 1.025, Cd; 0.169, As; 0.099 and Hg; 0.013, after decoction - Pb; 0.065, Cd; 0.007, As; 0.010 and Hg; 0.001). 2. Contents (mg/kg) of residual pesticides before/after a decoction were not detected in any samples. 3. Contents (mg/kg) of sulfur dioxide ($SO_2$) before a decoction in Sipjeondaebo-tang, Palmul-tang, Sagunja-tang and Samul-tang exhibited 5.0, 6.0, 14.0 and 6.9, respectively. However, contents of sulfur dioxide after a decoction were not detected in any samples. Conclusion: These results will be used to establish a criterion for heavy metals, residual pesticides and sulfur dioxide.

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A study on the application of Sanghallon prescription for febrile disease by Wu-Tang (열성전염병(熱性傳染病)에 대한 오당의 상한론처방(傷寒論處方) 활용법(活用法) 연구(硏究))

  • Jeong, Chang-Hyun
    • Journal of Korean Medical classics
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    • v.20 no.3
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    • pp.33-48
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    • 2007
  • Before the advent of febrile disease theory, people had used Sanghallon's theory to cure febril disease. Therefore, Wu-Tang both suggested new prescription and used the former prescription of Sanghallon(傷寒論) in curing febrile disease. However, he didn't use the original prescription of Sanghallon and modified the quantity and ingredients properly. Through this process, the fault of Sanghallon was supplemented and the method of curing febrile disease was advanced. To research about this, it will be much easier to understand prescription of Sanghallon and even the treatments and views of Wu-Tang about febrile disease. In this study, I researched the way Wu-Tang applied prescription of Sanghallon, focusing on Decoction for Purgation, White Tiger Decoction, Decoction for Restoring Pulse which was used by Wu-Tang in various ways and applied in treatment of febrile disease.

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Development of Hazardous Materials Management Standard for Decoction Type of Personalized Herbal Medicine

  • Jeong, Hye-In;Kim, Kyeong-Han;Won, Jae-Hee;Sung, Gi-Un;Kim, Ji-Won;Han, Ji-eun;Sung, Angela Dong-Min;Park, Eun-Jung;Sung, Soo-Hyun
    • Journal of Pharmacopuncture
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    • v.23 no.2
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    • pp.71-78
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    • 2020
  • Objectives: This study was conducted to development of hazardous materials management standards for the decoction type of personalized herbal medicines (PHMs). Methods: This study was conducted in two stages. We searched documents about criteria to use words such as 'Herb', 'Herbal medicine', and 'Botanical Drug' and summarized the results. We organized the committee consisted of seven experts, and held two meetings to reach an agreement on hazardous management standards of the decoction type of PHMs. Results: The seven documents were presented in the literature review and six items related to hazardous management standards of decoction were identified. The second expert meeting brought that a total of six items, including heavy metal, pesticide residues, sulfur dioxide, benzopyrene, mycotoxin, and micro-organism limits, were selected for safety management of decoction type of PHMs. Also, the criteria and test methods for each standard were suggested for monitoring the decoction type of PHMs. Conclusion: The study suggested hazardous material management standards and criteria for the decoction types of PHMs. In the future, it would be necessary to conduct a pilot test to ensure the validity and credibility of the safety management standard and criteria. Furthermore, the government level safety management system should be introduced to verify the safety of decoction medicines.

A Case Report of Menopausal Syndrome treated by Herbal medicine based on Shanghanlun provisions (『상한론(傷寒論)』 변병진단체계(辨病診斷體系)에 준거하여 한약 투여 후 호전된 갱년기 증후군 1례 임상 보고)

  • Park, Jae Kyung
    • 대한상한금궤의학회지
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    • v.8 no.1
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    • pp.87-97
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    • 2016
  • Objective : This case report aims to demonstrate the effect of Herbal medicine on menopausal syndrome. Methods : A 54 years woman suffered from menopausal syndrome with hot flush, insomnia and dyspepsia. According to Diagnostic system based on Shanghanlun provisions, the patient was diagnosed with Taeyang-byung and treated by Sosiho-tang decoction at first. But the next time the patient visited, she was treated by Oryeong-san decoction. The result of administrations were evaluated by Kupperman's index(KI), Menopause rating scale(MRS). Results : After administration of Sosiho-tang decoction for 35 days, KI was decreased from 50 to 19, MRS was decreased from 9 to 4. But her chronic dyspepsia wasn't getting better. So the KMD prescribed Oryeong-san decoction. After administration of Oryeong-san decoction for 14 days, KI was decreased from 19 to 0, MRS was decreased from 4 to 1. And her chronic dyspepsia was functionally improved. Conclusions : The patient completely recovered from menopausal syndrome and dyspepsia as treated by Sosiho-tang decoction and Oryeong-san decoction according to Diagnostic system based on Shanghanlun provisions.

Concentration of Heavy Metals, Residual Pesticides and Sulfur Dioxide of before/after Decoction (중금속, 잔류농약 및 잔류이산화황의 전탕 전, 후의 농도 변화 - 다빈도 태음인 사상처방을 중심으로 -)

  • Seo, Chang-Seob;Huang, Dae-Sun;Lee, Jun-Kyoung;Ha, Hye-Kyoung;Chun, Jin-Mi;Um, Young-Ran;Jang, Seol;Kim, Jong-Yeol;Lee, Si-Woo;Shin, Hyun-Kyoo
    • Journal of Sasang Constitutional Medicine
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    • v.21 no.1
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    • pp.237-246
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    • 2009
  • 1. Objectives To compare the contents of heavy metals, residual pesticides and sulfur dioxide before/after decoction. 2. Methods The heavy metal contents before/after decoction were measured by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES) and mercury analyzer. In order to analyze pesticides in 3 samples we used simultaneous multi-residue analysis of pesticides by GC/ECD, followed by GC/MSD analysis to confirm the identity of the detected pesticide in each sample. In addition, the contents of sulfur dioxide (SO2) were performed by Monier-Williams distillation method. 3. Results 1) The mean values of heavy metal contents (mg/kg) for the samples were as follows: Yuldahanso-tang (before decoction - Pb; 1.85, Cd; 0.148, As; 0.042 and Hg; 0.003, after decoction - Pb; 0.096, Cd; 0.006, As; 0.006 and Hg; 0.002), Chongsimyonja-tang (before decoction - Pb; 1.193, Cd; 0.094, As; 0.084 and Hg; 0.008, after decoction - Pb; 0.053, Cd; 0.007, As; 0.011 and Hg; not detected) and Taeyeumjowee-tang (before decoction - Pb; 0.878, Cd; 0.078, As; 0.302 and Hg; 0.004, after decoction - Pb; 0.079, Cd; 0.005, As; 0.006 and Hg; not dectcted). 2) Contents (mg/kg) of residual pesticides before/after decoction in all samples were not detected. 3) Contents (mg/kg) of sulfur dioxide (SO2) before decoction in Yuldahanso-tang, Chongsimyonja-tang and Taeyeumjowee-tang exhibited 6.1, 37.8, 31.5 and 19.7, respectively. However, contents of sulfur dioxide after decoction in all samples were not detected. 4. Conclusion These results will be used to establish a criterion of heavy metals, residual pesticides and sulfur dioxide.

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Comparative study on stability and efficacy of Banhasasim-tang decoction depending on the preservation temperature and periods (반하사심탕 전탕액의 보관 온도 및 기간에 따른 안정성 및 유효성 연구)

  • Jin, Seong Eun;Kim, Ohn Soon;Seo, Chang-Seob;Shin, Hyeun-Kyoo;Jeong, Soo-Jin
    • The Journal of Korean Medicine
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    • v.37 no.1
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    • pp.21-33
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    • 2016
  • This study aimed to investigate the stability and biological activities of BHSST decoction depending on the preservation temperature and periods. Methods: BHSST decoction was preserved at room temperatures (R/T, $23{\pm}1^{\circ}C$) or refrigeration ($4^{\circ}C$) for 0, 30, 60 and 90 days. To evaluate the stability of BHSST decoction, pH and sugar content were estimated. In addition, high-performance liquid chromatography (HPLC) analysis was performed to determine marker compounds of BHSST decoction. To evaluate anti-inflammatory effect, nitric oxide (NO) and prostaglandin $E_2$ ($PGE_2$) productions were measured in LPS-stimulated RAW 264.7 macrophages. Antioxidant activity was examined using the assays for 3-ethyl-benzothiazoline-6-sulfonic acid (ABTS) and 1-1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activities. Results: There was no change in pH and sugar content depending on the preservation temperature and periods of BHSST decoction. Among the major components of BHSST, contents of liquiritin, baicalein and wogonin was reduced time-dependently both at R/T and $4^{\circ}C$. Inhibitory effects of BHSST decoction on NO and PGE2 productions were slightly decreased in a time-dependent manner by 90 days of preservation. In addition, BHSST decoction maintained ABTS and DPPH radical scavenging activities by 60 days while significantly reducing the activities in 90 days of preservation at R/T. By contrast, BHSST decoction had no significant change of ABTS and DPPH radical scavenging activities by 90 days at $4^{\circ}C$. Conclusions: Our results suggest that the stability and efficacy of BHSST decoction are maintained for 60 days at $4^{\circ}C$ rather than R/T.

Comparative Study on Biological Activities of Gwakhyangjeonggi-san Decoction According to the Preservation Periods (곽향정기산 전탕액의 보관 기간에 따른 항염증 및 항산화 효능 비교 연구)

  • Jin, Seong Eun;Kim, Ohn Soon;Shin, Hyeun-Kyoo;Jeong, Soo-Jin
    • The Journal of Korean Medicine
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    • v.35 no.3
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    • pp.60-69
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    • 2014
  • Background: Herbal formulas are generally served as a type of decoction. However, there is no scientific evidence for determining preservation and circulation period of herbal medicine decoctions. Thus, we investigated anti-inflammatory and anti-oxidative effects of the Gwakhyangjeonggi-san decoction according to its preservation period. Methods: Gwakhyangjeonggi-san decoction was stored for 0, 1, 2 or 3 months at room temperature. To evaluate anti-inflammatory effects, enzyme-linked immunosorbent assays (ELISAs) for tumor necrosis factor-alpha (TNF-${\alpha}$) and interleukin-6 (IL-6), and nitric oxide (NO) assay were conducted using the culture supernatant from RAW 264.7 cells stimulated with lipopolysaccharide (LPS). The antioxidant activities were studied by measuring free radical scavenging activities on ABTS and DPPH. Results: Gwakhyangjeonggi-san decoction maintained the inhibitory effects on TNF-${\alpha}$, IL-6 and NO productions after up to 2 months of storage in LPS-treated RAW 264.7 cells. No inflammatory response was observed in 3 months of storage. In addition, the scavenging activities on ABTS and DPPH of Gwakhyangjeonggi-san decoction were reduced time-dependently and showed less than 50% inhibition after 3 months of storage. Conclusions: Our results suggest that preservation period of Gwakhyangjeonggi-san decoction is recommended within 2 months after storage.

Some Toxic Heavy Metals Transferring Rates to Decoction of Five Most Generally Adopting Herbal Medicinal Prescriptions (다섯 가지 다용한약처방의 전탕 전후 유해 중금속 이행률 조사)

  • Kim, Kee Dong
    • Journal of Society of Preventive Korean Medicine
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    • v.19 no.3
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    • pp.103-113
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    • 2015
  • Objective : Five most generally adopting basic oriental prescriptions (yookmijihwangtang, ojeoksan, sipjeondaebotang, samultang, bojoongikgitang) samples were collected from 10 oriental hospitals nationwide and the transferring ratio to aqueous phase (TRAP) were calculated. Method : The samples are grounded evenly and the decocted at $120^{\circ}C$ for 12 min on hot plate and then filtered. The concentrations of As, Cd, Co, Cr and Pb in before and after decoction were measure by ICP/MS and the TRAPs were calculated. Results : The concentrations of As, Cr and Pb in the ground samples before decoction were all below criteria level, and TRAP values were also very low (<10%). For Cd, although some ground samples before decoction showed relatively high concentration level compare to the criteria level, because of their low TRAP (~3%), the actual concentrations in the decoction were quite low compare the criteria level. The Co's concentrations in the ground samples before decoction were all relatively low level. However, the TRAP of Co was astonishingly high value of around 40% average. Conclusion : The toxic heavy metal concentrations in the decoction were very low compare to the criteria level. The TRAPs are less than <10% except Co. The toxic heavy metals in the prescriptions are mainly remained in the residue and the only very small fraction may transferred to the decoctions. Therefore the toxicity of the oriental herbal medicine about the toxic heavy metal may be overstressed. The Co's TRAP turned out to be quite high value (40% average). Since the criteria level wes not established yet, the safety of decoctions according to Co was not fully confirmed.

Comparative Study of Pyungwi-san extracted by Different Decoction Extractor and Extraction Time (전탕장비 및 전탕시간 변화에 의한 평위산(平胃散) 전탕액 비교)

  • Seok, Ga Hyeong;Moon, Jung Min;Cho, Su In
    • The Korea Journal of Herbology
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    • v.27 no.6
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    • pp.63-69
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    • 2012
  • Objectives : Decoction, in Korean Medicine, is a pharmacological method of extraction, by boiling, of dissolved chemicals, or herbal prescriptions, which may include stems, roots, bark and rhizomes. Decoctions differ from most teas, infusions, in that they are usually boiled. This study was performed to compare the difference of water decoctions extracted by different decoction extractor and extraction time and to analyze the reason of decoctions extracted by each decoction extractor have different taste. Methods : With water decoction samples by Pressure extractor, Non-pressure extractor and Ultrasonic waves merge extractor for 1 hr, 2 hr and 3 hr were investigated the yield and the concentration of hesperidin and glycyrrhizin by HPLC/DAD system in Pyungwi-san decoction. Results : The samples of each extractor were gradually increased the yield and the concentration of hesperidin and glycyrrhizin. The HPLC pattern of samples is similar. The yield and the concentration of hesperidin and glycyrrhizin of Ultrasonic waves merge extractor was most highest of the three. The rate of increase of the yield and the hesperidin concentration of between 1 hr and 2 hr in Pressure extractor was the most highest of the three. But the concentration of glycyrrhizin in Pressure extractor was relatively similar to Non-pressure extractor. Conclusions : The yield and the concentration of reference compounds in Pyungwi-san water decoction was influenced by extracting method and extracting time. For scientific movement and standardization of extracting medicinal herbs method need to study of extractor validation and to study in vitro and in vivo.