• 제목/요약/키워드: ginseng preparation

검색결과 165건 처리시간 0.069초

Sophorose의 제조-II. 효모(Torulopsis bombicola) 배양액 및 회화나무(Sophora japonica)로부터 Sophorose의 제조 (Preparation of Sophorose-II. Preparation of Sophorose from the Culture Broth of Torulopsis bombicola and the Pod of Sophora japonica)

  • 이미자;이유희;박종대;김해영;김신일;백남인
    • Applied Biological Chemistry
    • /
    • 제40권2호
    • /
    • pp.163-166
    • /
    • 1997
  • 효모(Torulopsis bombicola)를 콩기름으로 강화한 배지에서 $25^{\circ}C$로 7일간 진탕배양하였다. 얻어진 배양액으로부터 sophorose-lipid를 분리하였고, 이를 알칼리처리하여 sophorose를 제조하였다. 또한 배양액중의 sophorose를 아세칠화한 후 silica gel column chromatography하여 아세칠화물을 분리하였고, 이를 실온에서 알칼리 처리하여 sophorose를 제조하였다. 한편, 회화나무(Sophora japonica)의 미숙과실의 MeOH 추출물을 용매분획한 후, 얻어진 n-BuOH 분획을 silica gel column chromatography하여 플라보노이드 배당체 분획을 분리하였고, 이를 $0.02\;N{\;}H_2SO_4$로 가수분해하여 sophorose를 제조하는 방법을 확립하였다.

  • PDF

원심분리 코팅방식을 이용한 홍삼농축액 환의 제조방법 (Manufacturing Method of Red Ginseng Extract Pills by Centrifugal Coating Granulating System)

  • 곽이성;최영기;권현정;김나미
    • Journal of Ginseng Research
    • /
    • 제33권3호
    • /
    • pp.229-233
    • /
    • 2009
  • 홍삼농축액분말을 발효주정을 이용하여 과립입자를 제조한 후 이것을 원심력에 의해 부유시키고 성장시켜 100% 홍삼농축액 환을 제조하는 새로운 원심분리 코팅방법을 개발하였다. 본 방법은 홍삼농축액을 순차적으로 분무하면서 흡입공기 온도 60$\sim$70$^{\circ}C$, 분무공기 압력 3.0$\sim$4.0 bar, 투입구 온도 20$\sim$50$^{\circ}C$, 투입속도 1$\sim$1,000 g/min, 회전판속도 1,000$\sim$1,500 rpm, 외부온도 (outlet temperature) 25$\sim$40$^{\circ}C$의 조건으로 제조하였다. 홍삼농축액환의 제조수율은 85% 이었고, 제조에 소요된 시간은 7$\sim$8 시간 이었다. 홍삼농축액환은 홍삼농축액분말에 비해 흡습성 내성이 매우 우수하였고, 비중감소에 의해 물에서의 용해시간도 1 분 이내로 우수하였다. 반면 홍삼의 활성 및 지표성분인 진세노사이드는 제조과정 중 큰 성분 분해없이 안정하였다.

Production of ginsenoside F1 using commercial enzyme Cellulase KN

  • Wang, Yu;Choi, Kang-Duk;Yu, Hongshan;Jin, Fengxie;Im, Wan-Taek
    • Journal of Ginseng Research
    • /
    • 제40권2호
    • /
    • pp.121-126
    • /
    • 2016
  • Background: Ginsenoside F1, a pharmaceutical component of ginseng, is known to have antiaging, antioxidant, anticancer, and keratinocyte protective effects. However, the usage of ginsenoside F1 is restricted owing to the small amount found in Korean ginseng. Methods: To enhance the production of ginsenoside F1 as a 10 g unit with high specificity, yield, and purity, an enzymatic bioconversion method was developed to adopt the commercial enzyme Cellulase KN from Aspergillus niger with food grade, which has ginsenoside-transforming ability. The proposed optimum reaction conditions of Cellulase KN were pH 5.0 and $50^{\circ}C$. Results: Cellulase KN could effectively transform the ginsenosides Re and Rg1 into F1. A scaled-up biotransformation reaction was performed in a 10 L jar fermenter at pH 5.0 and $50^{\circ}C$ for 48 h with protopanaxatriol-type ginsenoside mixture (at a concentration of 10 mg/mL) from ginseng roots. Finally, 13.0 g of F1 was produced from 50 g of protopanaxatriol-type ginsenoside mixture with $91.5{\pm}1.1%$ chromatographic purity. Conclusion: The results suggest that this enzymatic method could be exploited usefully for the preparation of ginsenoside F1 to be used in cosmetic, functional food, and pharmaceutical industries.

NEW PHARMACOLOGICAL, CLINICAL, MICROBIOLOGICAL AND ANALYTICAL TESTS MADE WITH VARIOUS GINSENG PREFARATIONS OF THE WORLD MARKET

  • Rueckert Karl Heinz
    • 고려인삼학회:학술대회논문집
    • /
    • 고려인삼학회 1978년도 학술대회지
    • /
    • pp.85-92
    • /
    • 1978
  • The aim of the double blind test was to assess the prophylactic and therapeutic efficacy of the preparation GINSANA, containing the standardized ginseng extract PHARMATON G115,. The determination was carried out with special emphasis on the following features : general physical condition, physical performance, mental performance, enjoyment of life/mood, concentration and memory, as well as sleeping habits. Sixty test persons took part in the study, men and women between the ages of 22 and 80. The 90-day test was carried out in the form of a double blind experiment. Experimental measurements were made and the persons were also questioned. The reaction time, the optical merging threshold, the coordination of both hands and the recovery quotients, as well as the recovery rates were analyzed. The results for the serum group were clearly better than those for the placebo group, particularly for the characteristics: general physical condition, physical performance and sleeping habits. The results of the test methods used, especially with regard to the reaction time, the coordination of both hands, the recovery quotient and the recovery period, permit the following conclusion to be drawn: when administered for several weeks, GINSANA has a positive action, in the sense of an activation of the entire personality by the ginseng glycosides contained in the standardized Extracts G115.

  • PDF

Ginsenoside Rg3의 함량증가를 위한 변환 기술 (Transformation Techniques for the Large Scale Production of Ginsenoside Rg3)

  • 남기열;최재을;박종대
    • 한국약용작물학회지
    • /
    • 제21권5호
    • /
    • pp.401-414
    • /
    • 2013
  • Ginsenoside Rg3 (G-Rg3) contained only in red ginseng has been found to show various pharmacological effects such as an anticancer, antiangiogenetic, antimetastastic, liver protective, neuroprotective immunomodulating, vasorelaxative, antidiabetic, insulin secretion promoting and antioxidant activities. It is well known that G-Rg3 could be divided into 20(R)-Rg3 and 20(S)-Rg3 according to the hydroxyl group attached to C-20 of aglycone, whose structural characteristics show different pharmacological activities. It has been reported that G-Rg3 is metabolized to G-Rh2 and protopanaxadiol by the conditions of the gastric acid or intestinal bacteria, thereby these metabolites could be absorbed, suggesting its absolute bioavailability (2.63%) to be very low. Therefore, we reviewed the chemical, physical and biological transformation methods for the production on a large scale of G-Rg3 with various pharmacological effects. We also examined the influence of acid and heat treatment-induced potentials on for the preparation method of higher G-Rg3 content in ginseng and ginseng products. Futhermore, the microbial and enzymatic bio-conversion technologies could be more efficient in terms of high selectivity, efficiency and productivity. The present review discusses the available technologies for G-Rg3 production on a large scale using chemical and biological transformation.

Sophorose의 제조-I. D-Glucose로부터 sophorose의 화학적 합성 (Preparation of Sophorose - I. Chemical Synthesis of Sophorose from D-Glucose)

  • ;박종대;이유희;김신일;백남인
    • Applied Biological Chemistry
    • /
    • 제39권6호
    • /
    • pp.512-516
    • /
    • 1996
  • Sophorose $(2-O-{\beta}-glucopyranosyl-D-glucopyranose)$를 2분자의 D-glucopyranose로부터 6단계의 화학반응과정을 통하여 21%의 수율로 합성하는 방법을 확립하였다. Sophorose 및 얻어진 중간생성물들에 대하여 NMR, IR 등의 스펙트럼 데이타를 해석하여 구조를 확인하였다.

  • PDF

인삼의 diol계 사포닌으로부터 새로운 배당체 (20E)-Ginsenoside $Rh_3$ 및 그의 입체이성체의 제조와 구조결정 (Preparation and Structure Determination of a New Glycoside, (20E)-Ginsenoside $Rh_3$, and its isomer from Diol-type Ginseng Saponins)

  • 김동선;백남인;박종대;이유희;정소영;이천배;김신일
    • 약학회지
    • /
    • 제39권1호
    • /
    • pp.85-93
    • /
    • 1995
  • Acidic and alkaline hydrolysis of diol-type ginseng saponins produced a new glycoside, (20E)-ginsenoside Rh$_{3}$, and its stereoisomer (20Z)-, which were further subjected to alkaline by drolysis to give their aglycones, (20E)- and (20Z)-3$\beta$, 12$\beta$-dihydroxy-dammar-20(22),24-diene. The ratio of stereoisomeric mixtures was estimated to be ca. 5:1 from intensities of the peaks in $^{1}$H- and $^{13}$C-NMR spectra. The $^{1}$H- and $^{13}$C-NMR signals of ginsenoside Rh$_{3}$, which have remained unclarified, were completely assigned by the extensive application of modern NMR techniques.

  • PDF

Molecular signaling of ginsenosides Rb1, Rg1, and Rg3 and their mode of actions

  • Mohanan, Padmanaban;Subramaniyam, Sathiyamoorthy;Mathiyalagan, Ramya;Yang, Deok-Chun
    • Journal of Ginseng Research
    • /
    • 제42권2호
    • /
    • pp.123-132
    • /
    • 2018
  • Ginseng has gained its popularity as an adaptogen since ancient days because of its triterpenoid saponins, known as ginsenosides. These triterpenoid saponins are unique and classified as protopanaxatriol and protopanaxadiol saponins based on their glycosylation patterns. They play many protective roles in humans and are under intense research as various groups continue to study their efficacy at the molecular level in various disorders. Ginsenosides Rb1 and Rg1 are the most abundant ginsenosides present in ginseng roots, and they confer the pharmacological properties of the plant, whereas ginsenoside Rg3 is abundantly present in Korean Red Ginseng preparation, which is highly known for its anticancer effects. These ginsenosides have a unique mode of action in modulating various signaling cascades and networks in different tissues. Their effect depends on the bioavailability and the physiological status of the cell. Mostly they amplify the response by stimulating phosphotidylinositol-4,5-bisphosphate 3-kinase/protein kinase B pathway, caspase-3/caspase-9-mediated apoptotic pathway, adenosine monophosphate-activated protein kinase, and nuclear factor kappa-light-chain-enhancer of activated B cells signaling. Furthermore, they trigger receptors such as estrogen receptor, glucocorticoid receptor, and N-methyl-$\text\tiny{D}$-aspartate receptor. This review critically evaluates the signaling pathways attenuated by ginsenosides Rb1, Rg1, and Rg3 in various tissues with emphasis on cancer, diabetes, cardiovascular diseases, and neurodegenerative disorders.

홍삼 추출물과 아미노산 복합제가 정상 Rat의 지구력 운동에 미치는 영향 (Effects of Red Ginseng and Amino Acid Complex in Exercise in the Rat)

  • 최현정;하정빈;유재환;전경륭
    • 대한한방내과학회지
    • /
    • 제40권6호
    • /
    • pp.1136-1144
    • /
    • 2019
  • Objective: Physical inactivity contributes to mortality rates and is now the fourth most frequent cause of death worldwide. Red ginseng is a medicinal herb that is often used as an ergogenic aid. In this study, red ginseng was administered to rats to test whether it affected their ability to exercise. Methods: Forty-five rats were randomly distributed and divided into five groups: normal (N, n=5), control (C, n=10), the group to which only red ginseng was administered (H, n=10), the group to which only amino acid complex was administered (A, n=10), and the group to which both red ginseng and amino acid complex were administered (HA, n=10). Once a day for three weeks, 333.3 mg/kg body weight per day (b.w./day) of red ginseng and 750 mg/kg b.w./day of amino acid preparation were administered to rats. After three weeks, body weight, swimming time, and the weight of the anterior tibialis muscle of rat were measured. Blood was taken for analysis using the cardiac puncture method. Results: The swimming time of group H (921.3±199.26 sec) showed significant improvement compared to that of group C (798.48±156.37 sec) (p<0.05). Conclusion: Red ginseng has improved swimming time in rat and can be used as an effective ergogenic aid.

프로바이오틱스 개발을 위한 홍삼 전분을 활용한 유산균 배양 (Cultivation of Lactic Acid Bacteria for the Development of Probiotic Products using Red Ginseng Starch)

  • 김영수;이환;김도연;김소영;이완규;이상명;박종대;손미례
    • 동아시아식생활학회지
    • /
    • 제23권6호
    • /
    • pp.818-826
    • /
    • 2013
  • To reduce the production cost of Lactobacillus, discarded red ginseng starch was collected from a factory of red ginseng extract in order to develop the Lactobacillus culture medium. According to the analysis of the gensenoside composition of red ginseng starch, the total gensenoside content of starch was 2.73 mg/g, and the gensenoside $Rb_1$, $Rb_2$ and $Rg_3$ contents were 0.1, 0.29 and 0.52 mg/g, respectively. For the preparation of the liquid media, red ginseng starch was added at rates of 0, 5, 10 and 20%. Further, Lactobacillus plantarum 15357 and Leuconostoc mesenteroides sub sp. strains were then inoculated to these prepared broths. With the red ginseng starch medium, the growth rates ($1.42{\times}10^7$ and $2.96{\times}10^{10}$ CFU/mL) and the final cell concentrations were higher than the MM medium ($1.0{\times}10^7$ CFU/mL). The optimal concentration of red ginseng starch and yeast extract as a medium were 20% and 10 g/L, respectively. Under these conditions, the cell mass of L. plantarum 15357 and L. mesenteroides sub sp. reached $5.11{\times}10^{10}$ and $8.17{\times}10^{10}$ CFU/mL. These results show a great possibility for the utilization of red ginseng starch as economic medium sources in the production of cell mass of lactic acid bacteria. This is the first trial of development of economic LAB growth medium using discarded red ginseng starch.