• Title/Summary/Keyword: Korean Pharmacopoeia

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Analysis of health food consumers' online purchase search trend of herbal medicines and natural products (건강식품 소비자의 한약 및 천연물 온라인 구입 검색 동향 분석 및 고찰)

  • Anna, Kim;Young-Sik, Kim;Seungho, Lee
    • Herbal Formula Science
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    • v.31 no.1
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    • pp.67-79
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    • 2023
  • Objectives : The purpose of this study was to confirm the consumption trends of Korean medicine for health food consumption of consumers by using the Naver DataLab Shopping Insight service. Methods : In this study, the search data for the category of Korean herbal ingredients in the health food field of Naver Datalab shopping insight site was collected and sorted in order of frequency from August 1st, 2017 to June 22nd, 2022. The frequently searched keywords were organized based on the inclusion of Korean Pharmacopoeia (KP), Korean Herbal Pharmacopoeia (KHP), and Food Code. Results : 67,804 keywords were collected, and the most frequent keywords appearing for more than 200 days among the top 500 were 827 (1.184%). Among the frequent keywords, there were 149 keywords related to traditional medicine names included in the KP and KHP, and five prescriptions were included. 60 keywords were not included in the KP and KHP, and the keyword with the highest search frequency was "kujibbongnamu" (Maclura tricuspidata). Conclusions : The findings of this study provide information on the consumer's interest in traditional korean medicine (TKM) and natural products (NP), and can be used as a basis for understanding the demand for TKM and NP in the online shopping market.

Review of the taxonomy and CITES species lists in musk deer (CITES 분류에 의한 사향(麝香)의 기원 동물 분류 및 특성에 대한 고찰)

  • Chang, Mun Seog;Kim, Do Rim;Kim, Hyun Chul;Park, Seong Kyu
    • Herbal Formula Science
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    • v.24 no.4
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    • pp.323-333
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    • 2016
  • Objectives : The purpose of this study was to investigate musk deer in taxonomic status and genus species. We investigated the characteristic of musk deer for medicinal usages. Methods : To identifications of musk deer on the taxonomic status and genus species, the literary investigation were conducted on the Korean, China, and Japan pharmacopoeia and published herbal books, CITES Species Lists too. Results : Musk deer placement in a separate family status is the Moschidae. M. chrysogaster Hodgson and M. sifanicus Przewalski was the same species. So, Alpine musk deer revised M. chrysogaster Hodgson[=M. sifanicus Przewalski]. Geographic distribution of M. moschiferus L. divided Sibirica group and himalaica group. Group himalaica contains three subspecies: Korean musk deer(M. moschiferus parvipes Hol.), Chinese musk deer(M. chrysogaster Hodgson), and Himalayan musk deer(M. leucogaster Hodgson). The genetic divergence between M. moschiferus L. and other species was clearly distinguished from the others. M. berezovskii Flerove was less than the others. However, the divergence among M. chrysogaster Hodgson, M. fuscus Li, and M. leucogaster Hodgson were quite low. Musk deers are mostly distributed around the high-plateau. Moschus were from Nepal, Bhutan, Russia, China. Forest musk deer(M. berezovskii Flerove) farming was conducted in China from 1950s. In the Korean hebal pharmacopoeia, Moschus include l-muscone($C_{16}H_{30}O$ : 238.40) over 2% for quantitative test. Conclusions : There are three species of musk deer, Siberian musk deer(M. moschiferus L.), forest musk deer(M. berezovskii Flerove), and Alpine musk deer(M. chrysogaster Hodgson) for medicinal usages.

Studies on the Crude Drugs of Atractylodis Species (출류(朮類) 대조 생약에 관한 연구)

  • Kim, Ho-Hyun;Chon, In-Ju;Kang, In-Ho;Ham, In-Hye;Ze, Keam-Ryon;Whang, Wan-Kyunn;Cho, Hyoung-Kwon
    • Korean Journal of Pharmacognosy
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    • v.34 no.2 s.133
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    • pp.123-127
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    • 2003
  • Atrartylodis Rhizoma(蒼朮)'s origin plants are Atratylodes lancea and A. Chinensis in Chinese, Japanese and Korean pharmacopoeia. A. Japonica is only indigenous in Korea, it is actually used as Atractylodis Rhizoma in Korean market. A. lancea is used in Hunan province, China and A. Chinensis is used in Hubei province, China. It is impossible to distinguish with species differency as macro- and micro-morphology. We tried to distinguish with species differency by HPLC and GC-Mass spectra. Atractylone(mw. 216) which is a marker compound in Atractylodis Rhizoma Alba(白朮) was detected in A. japonica. Atractylodin (mw.182) was detected in A. lancea and two eudesmadien derivatives (mw. 204) were detected in A. chinensis. HPLC chromatogram showed the same patterns. As a result, we propose that A. japonica will be added as Atractylodis Rhizoma (蒼朮)'s origin plant in Korean Pharmacopoeia. Atractylodis Rhizoma Alba(白朮)'s origin plants are A. macrocephala in China, and A. Japonica and A. ovata in Korea and Japan. In GC-Mass analysis, all samples showed same patterns and the main compound was atractylone.

A Literature Review on the Origin of Dipsaci Radix and Phlomidis Radix (천속단(川續斷)과 한속단(韓續斷)의 기원에 관한 문헌 고찰)

  • Shin, Sangmun;Doh, Eui-Jeong;Song, Ho-Joon;Park, Sung-Joo;Lee, Guemsan
    • The Korea Journal of Herbology
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    • v.35 no.2
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    • pp.15-29
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    • 2020
  • Objectives : This study aimed to review the change in the origin of Sokdan(續斷) by diachronically analyzing literature data from Korea and China. Methods : Literature records describing the origin(synonyms, location of production, description) of Sokdan were collected, records were divided into periods. The main contents were included in the results, and original texts were edited and summarized in the table. Results : Sokdan, whose leaves resemble Jeoma(苧麻)(SJ), was first recorded in 《Xinxiubencao(新修本草)》, and described in detail in 《Bencaotujing(本草圖經)》 during the Tang and Song dynasties in China. In modern times, SJ was assumed to be genus Phlomoides or Lamium; however, records of the plant have decreased. Finally, SJ was not included in the 《Pharmacopoeia of the People's Republic of China》 as Sokdan. However, 《Diannanbencao(滇南本草)》, 《Diannanbencaotushuo(滇南本草圖說)》, 《Zhiwumingshitukao(植物名實圖考)》 described Sokdan of dian(滇). It was assumed genus Dipsacus. From the 1950s onwards, Sokdan is described in the literature as a member of the genus Dipsacus. In korea, SJ was recorded in 《Hyangyakjipseongbang(鄕藥集成方)》 and 《Dongeuibogam(東醫寶鑑)》 during the Joseon dynasty. In modern times, the genera Phlomoides and Lamium were mostly recorded as the origin of Sokdan. Conclusions : Several species have been described as Sokdan over the years in China, but since the 1950s, the genus Dipsacus was noted as the origin of Sokdan. In Korea, SJ was used in the past, thus Sokdan was recorded as P. umbrosa in 《The Korean Herbal Pharmacopoeia(KHP)·1985》. However, 《KHP·1998》 referred to P. umbrosa as Hansokdan and D. asperoides as Sokdan.

Development of the Standard Analytical Methods for Compound Hawthorn Berry 60% Ethanol Extract, Ginkgo Biloba Leaf Extract and Garlic Oil Capsules (복방서양산사60%에탄올엑스.은행엽엑스.마늘유캡슐의 기준 및 시험법과 규격 설정)

  • Cho, Chang-Hee;Kim, Ji-Sun;Whang, Ji-Sang;Baek, Ju-Hyun;Park, Ju-Young;Shim, Young-Hoon;Seong, Rack-Seon;Kim, Dong-Sup;Lee, Jong-Phill;Lee, Joo-Hyeun;Sohn, Su-Jung
    • Korean Journal of Pharmacognosy
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    • v.41 no.1
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    • pp.67-72
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    • 2010
  • In the recent version of the Korea Pharmacopoeia(KP) and the Korean Herbal Pharmacopoeia(KHP), there are 563 items(181 in KP, 381 in KHP) of herbal medicines including finished drugs. Also, approximately 507 items including herbal extracts and herbal medicinal products was published in the 3th edition of Korea Pharmaceutical Codex (KPC). These items help the persons working in the pharmaceutical manufacturing field to register the drug and in research fields to develop the new drug considering as a standard specifications. This study was carried out to establish standard analytical methods for 'Compound Hawthorn Berry 60% Ethanol Extract, Ginkgo Biloba Leaf Extract and Garlic Oil Capsules' in the 3th edition of Korea Pharmaceutical Codex. Ginkgo flavonoid and terpene lactone were employed as reference compounds for analytical method. Analytical methods established in this study could be applied to a reasonable and unified quality control of G. biloba leaf extract and hawthorn berry extract.

Cultivation and Characteristics of Licorice F1 (Glycyrrhiza glabra × G. uralensis) Lines

  • Lee, Sang-Hoon;Kim, Yeon Bok;Lee, Jeong-Min;Lee, Jeong-Hoon;Park, Chung-Berm;Bang, Jae-Wook;Choi, Hae-Woon;Hur, Yoonkang;Park, Chun-Geon
    • Horticultural Science & Technology
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    • v.35 no.2
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    • pp.276-286
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    • 2017
  • Licorice, a traditional Korean medicinal plant, is recognized for its main active ingredient, glycyrrhizin. The level of glycyrrhizin in Chinese licorice (Glycyrrhiza uralensis) is lower than the reference level (2.5%) set by the Korean Pharmacopoeia, reducing its value as a medicinal herb. In this study, we aimed to overcome this problem by generating an interspecific licorice hybrid by crossing European licorice (G. glabra) with Chinese licorice, resulting in the production of 32 $F_1$ lines. A comparison of genetic traits revealed variations in glycyrrhizin content among lines, ranging from 1.5 to 5.6%, with a mean value of 3.2%; these values are higher than that of the parental plants. Additionally, 25 lines (78.1%) had a glycyrrhizin content greater than 2.5%, which is higher than the reference level set by the Korean Pharmacopoeia. Four of these lines had glycyrrhizin levels higher than the WHO recommended level of 4.0%. A comparison of phenotypic characteristics showed that the leaves of the hybrids possessed all of the characteristics of European and Chinese licorice; however, the stems of most hybrids had characteristics of European licorice. Finally, we determined the genetic distances of 34 samples of Glycyrrhiza plants (parents, 32 $F_1$ lines) by random amplified polymorphic DNA (RAPD); the $F_1$ lines showed a close genetic distance. We plan to develop to a cultivar using five of these lines (glycyrrhizin content < 4.0%).

Distribution of Medicinal Plants and Vascular Plants Growing at Yangsan Region of Nakdong River, Korea (낙동강 하류 양산천 일대에 자생하는 관속식물상 및 약용식물의 분포 특성)

  • Ahn, Young Sup;Lee, Jeong Hoon;An, Tae Jin;Park, Chung Berm;Moon, Sung Gi;Kim, Myeong Seok;Seo, Joung Seok;Lee, Cheol Hee
    • Korean Journal of Medicinal Crop Science
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    • v.20 no.6
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    • pp.421-433
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    • 2012
  • This study was carried out to survey the vascular plants in 6 regions including around Hopo-Bridge of Yangsan region at waterfronts of Nakdong river, Korea. Distributed plants were surveyed from April to November, 2011. The vascular plants in 6 regions (around Mulgeum-chuisujang, Mulgeum-station, Jeungsan-ri, Hopo-bridge, Kumoh-bridge and lower part of Yangsan-stream) were total 135 taxa of 3 divisions, 4 classes, 37 orders, 66 families, 116 genera, 114 species, 2 subspecies and 19 varieties. The most number of species is Campanulales of 14.1% in Dicotyledoneae of 81.5% among total species. Regional distribution of species is mainly around Mulgeum-chuisujang and Jeungsan-ri as 61% among total species, and other regions is in 24 ~ 44%. Ecologically, there were herbaceous plants 75% and woody plants 25%, and 9 species of aquatic plants in herbaceous plants. Medicinal (herbal) plants included in KP (The Korean Pharmacopoeia) and KHP (The Korean Herbal Pharmacopoeia) were 56 species including Platycodon grandiflorum (Jacq.) A. De Candolle, Peucedanum japonicum Thunberg and etc., and folk herb plants were 14 species including Metaplexis japonica Makino, Commelina communis Linn$\acute{e}$ and etc. among total 135 species.

Vasorelaxant or hypotensive effects of herbal medicines belong to Umbelliferae family: a review (수종 산형과 한약재의 혈관이완 및 혈압강하 효능에 대한 문헌고찰)

  • Kim, Bumjung;Choi, Ho-Young
    • The Korea Journal of Herbology
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    • v.37 no.6
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    • pp.29-36
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    • 2022
  • Objectives : The objective of this study was to investigate the possibility for the treatment of hypertension of herbal medicines belong to Umbelliferae family. Methods : Domestic and international articles about Herbology were investigated. A review was performed via the database (DB) search engines such as Pubmed, Korean studies Information Service System (KISS), KoreaScience, and Google Scholar. Hypertension-related terms including "vasorelaxation", "vasorelaxant", "vasodilation", "vasodilatory", "vasodilative", "hypotension", and "hypotensive" were performed as search terms. Results : A list was made about herbal medicines and origin plants belonging to the Umbelliferae family in Korean Pharmacopoeia 12 and Korean Herbal Pharmacopoeia. 14 herbal medicine and 22 origin plants were searched. Ostericum koreanum root and rhizome, Notopterygium incisum root and rhizome, N. forbesii root and rhizome, Ligusticum tenuissimum root and rhizome, L. jeholense root and rhizome, Angelica gigas root, A. dahurica root, A. dahurica var. formosana root, Bupleurum falcatum root, Peucedanum japonicum root, P. praeruptorum root, A. decursiva root, Cnidium officinale rhizome, L. chuanxiong rhizome, Foeniculum vulgare fruit, and Ferula assa-foetida resin and stem showed significant vasorelaxant or hypotensive effects. Conclusion : These review results showed that Osterici seu Notopterygii Radix et Rhizoma, Ligustici Tenuissimi Rhizoma et Radix, Angelicae Gigantis Radix, Angelicae Dahuricae Radix, Bupleuri Radix, Peucedani Japonici Radix, Peucedani Radix, Cnidii Rhizoma, Foeniculi Fructus, and Ferulae Resina had vasorelaxant or hypotensive effects. The results are expected as basic data in clinical trials and experimental researches for the treatment of hypertension of herbal medicines.

Determination of Thiamine in Pharmaceutical Preparations by Reverse Phase Liquid Chromatography Without Use of Organic Solvent

  • Suh, Joon Hyuk;Kim, Junghyun;Jung, Juhee;Kim, Kyunghyun;Lee, Seul Gi;Cho, Hyun-Deok;Jung, Yura;Han, Sang Beom
    • Bulletin of the Korean Chemical Society
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    • v.34 no.6
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    • pp.1745-1750
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    • 2013
  • A novel green aqueous mobile phase modified with room temperature ionic liquids (RTILs) was employed in the absence of volatile organic solvents or ion-pairing reagents to analyze thiamine, a very polar compound, by reverse phase high performance liquid chromatography (RP-HPLC). Due to its strongly hydrophilic nature, thiamine was eluted near the column dead time ($t_0$) using a mobile phase without adding RTILs or ion-pairing reagents, even if a 100% aqueous mobile phase, which has weak elution power under reverse phase conditions, was used. Thus, 1-ethyl-3-methyl-imidazolium hexafluorophosphate ([EMIM][$PF_6$]), which has the strongest chaotropic effect, was selected as a mobile phase additive to improve retention and avoid baseline disturbances at $t_0$. Various mobile phase parameters such as cation moiety, chaotropic anion moiety, pH and concentration of RTILs were optimized to determine thiamine at the proper retention time. Method validation was performed to assess linearity, intra- and inter-day accuracy and precision, recovery and repeatability; all results were found to be satisfactory. The developed method was also compared to the current official United States Pharmacopoeia (USP) and Korean Pharmacopoeia (KP) methods using an organic mobile phase containing an ionpairing reagent by means of evaluating various chromatographic parameters such as the capacity factor, theoretical plate number, peak asymmetry and tailing factor. The results indicated that the proposed method exhibited better efficiency of thiamine analysis than the official methods, and it was successfully applied to quantify thiamine in pharmaceutical preparations.

Clean Analysis Not to Use Harmful Solvent for TLC Identification Test of the Herbal Medicine (생약의 확인시험법에 대한 유해용매 대체시험법 설정)

  • Kim, Ji-Yeon;Park, Ju-Young;Shim, Young-Hoon;Cho, Chang-Hee;Lee, Jong-Hwa;Lee, Dong-Jin;Kim, Bo-Joon;Kim, Dong-Sup;Seong, Rack-Seon;Kim, Jong-Hwan;Lim, Sook;Shin, Jin-Seon;Jang, Seung-Yeup
    • Korean Journal of Pharmacognosy
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    • v.41 no.2
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    • pp.136-140
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    • 2010
  • This study was carried out to utilize non-toxic solvents instead of harmful solvents for the TLC(Thin Layer Chromatography) identification test of herbal medicines. It is recommended not to use harmful solvent such as chloroform at a viewpoint of clean analysis. In this study, we revised the identification test of 10 items in the Korea Pharmacopoeia(KP) and the Korean Herbal Pharmacopoeia(KHP) such as Cornus officinalis S. containing the harmful solvents on the developing solvent and established identification test that is utilized non-toxic solvents by HPTLC(High Performance Thin Layer Chromatography).