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Studies on absorption, distribution, excretion and metabolism of ginseng saponins. VIII. Isotope labeling of ginsenoside Rb2.

To clarify the pharmacokinetics of absorption, distribution and excretion of ginsenoside Rb2 (Rb2), one of the major saponins of the root of Panax ginseng, following oral administration to rats, a tritium (3H) labeling of Rb2 was examined. The C-12 position of Rb2 was labeled with 3H-sodium borohydride (3H-NaBH4) and 12-3H Rb2 and 12-3H-epi Rb2 was synthesized. This method of specific position labeling of Rb2 may be applicable to other ginsenosides. In the near future, the pharmacokinetics of Rb2 in rats may be clarified with 3H labeled Rb2.

Animals↗

Bioactive saponins and glycosides. XI. Structures of new dammarane-type triterpene oligoglycosides, quinquenosides I, II, III, IV, and V, from American ginseng, the roots of Panax quinquefolium L.

The methanolic extract and 1-butanol-soluble fraction of American ginseng, the roots of Panax quinquefolium L., were found to exhibit a protective effect on liver injury induced by D-galactosamine and lipopolysaccharide. Five new dammarane-type triterpene oligoglycosides called quinquenosides I, II, III, IV, and V were isolated together with fourteen known dammarane-type triterpene oligoglycosides such as chikusetsusaponin IVa, pseudo-ginsenoside-RC1, malonyl-ginsenoside-Rb1, and notoginsenosides-A,-C, and -K from the 1-butanol-soluble fraction. From the ethyl acetate-soluble fraction, four known acetylenic compounds and 6'-O-acetyl ginsenoside-Rg1 were isolated. The structures of quinquenosides I, II, III, IV, and V were determined on the basis of chemical and physicochemical evidence as 3-O-[6-O-(E)-2-butenoyl-beta-D-glucopyranosyl(1-->2)-beta-D- glucopyranosyl]-20-O-(beta-D-glucopyranosyl) 20(S)-protopanaxadiol (quinquenoside I), 3-O-[6-O-(E)-2-octenoyl-beta-D- glucopyranosyl(1-->2)-beta-D-glucopyranosyl]-20-O-[beta-D-glucopyranosyl (1-->6)-beta-D-glucopyranosyl] 20(S)-protopanaxadiol (quinquenoside II), 3-O-[beta-D-glucopyranosyl (1-->2)-6-O-acetyl-beta-D-glucopyranosyl]-20-O-(beta-D-glucopyranosyl) 20(S)-protopanaxadiol (quinquenoside III), 3-O-[beta-D-glucopyranosyl(1-->2)-beta-D-glucopyranosyl]-20-O-beta-D- glucopyranosyl(1-->6)-beta-D-glucopyranosyl]-3 beta, 7 beta, 20(S)-trihydroxydammar-5,24-diene (quinquenoside IV), and 3-O-[beta-D-glucopyranosyl(1-->2)-beta-D-glucopyranosyl]-20-O-[alpha-D- glucopyranosyl(1-->4)-beta-D-glucopyranosyl(1-->6)-beta-D-glucopyranosyl ] 20(S)-protopanaxadiol (quinquenoside V).

Animals↗

Six new dammarane-type triterpene saponins from the leaves of Panax ginseng.

Six new minor saponins, together with known ginsenosides, were isolated from the leaves of Panax ginseng. The new saponins were named as ginsenoside-Rh5, -Rh6, -Rh7 -Rh8, -Rh9 and -Rg7, and their structures were elucidated on the basis of chemical and physicochemical evidence to be as follows: ginsenoside-Rh5: 3beta,6alpha,12beta,24zeta-tetrahydroxy-dammar-20(22),25-diene 6-O-beta-D-glucopyranoside (1), -Rh6: 3beta,6alpha12beta,20(S)-tetrahydroxy-25-hydroperoxy-dammar-23-ene 20-O-beta-D-glucopyranoside (2), -Rh7: 3beta,7beta,12beta,20(S)-tetrahydroxy-dammar-5,24-diene 20-O-beta-D-glucopyranoside (3), -Rh8: 3beta,6alpha,20(S)-trihydroxy-dammar-24-ene-12-one 20-O-beta-D-glucopyranoside (4), -Rh9: 3beta,6alpha,20(S)-trihydroxy-12beta,23-epoxy-dammar-24-ene 20-O-beta-D-glucopyranoside (5) and -Rg7: 3-O-beta-D-glucopyranosyl 3beta,12beta,20(S),24(R)-tetrahydroxy-dammar-25-ene 20-O-beta-D-glucopyranoside (6).

Chemical Phenomena↗

Purification and characterization of ginsenoside-beta-glucosidase from ginseng.

The ginsenoside-beta-glucosidase that hydrolyzes the beta-(1-->2)-glucoside of the ginsenoside Rg3 sugar moiety to ginsenoside Rh2 was isolated from the ginseng root, and the enzyme was purified and characterized. The enzyme was purified to one spot in SDS polyacrylamide gel electrophoresis, and its molecular weight was about 59 kDa. The optimum temperature of the ginsenoside-beta-glucosidase was 60 degrees C, and the optimum pH was 5.0. Ca2+ ion had positive effect on ginsenoside-beta-glucosidase, while Cu2+ had negative effect on it. The ginsenoside-beta-glucosidase may be a special beta-glucosidase that is different from the original exocellulase such as beta-glucosidase (EC 3.2.1.21).

Chromatography, DEAE-Cellulose↗

Cytotoxic dammarane glycosides from processed ginseng.

Steaming ginseng at high temperature increased its cytotoxicity to SK-Hep-1 hepatoma cancer cells. HPLC separation and fractionation followed by MTT assay revealed that ginsenosides Rg3, Rg5, Rk1, Rs5, and Rs4 are the active principles. Their 50% growth inhibition concentration (GI50) values were 41, 11, 13, 37, and 13 microM, respectively. Cisplatin had a GI50 of 84 microM in the same assay conditions.

Antineoplastic Agents, Phytogenic↗

[Pharmacological studies of Reiousan, a drug containing bezoar and ginseng--effects on the blood rheology].

Effects of Reiousan, a crude drug preparation consisting of bezoar and ginseng, on blood rheology were studied. Reiousan improved the deformability of rat erythrocytes exposed to hyperosmorality and treated with phenylhydrazine. The ATP depletion in erythrocytes, the polybrene-induced erythrocyte aggregation and the oxidation of low density lipoprotein were suppressed by Reiousan. Oral administration of Reiousan also improved the erythrocyte deformability in phenylhydrazine-treated rats and delayed the thromboembolic death induced by arachidonic acid in mice. These results suggest that Reiousan has an ameliorative effect on blood rheology related to "Oketsu" syndrome in Kampo diagnostics.

Adenosine Triphosphate↗

[Pharmacological studies of reiousan which contains bezoar and ginseng: III. Effects on experimental cerebral ischemia].

Pharmacological effects of Reiousan, a crude drug preparation consisting of bezoar and ginseng, on experimental cerebral ischemia and anoxia were studied. After administration of Reiousan, the survival time of mice subjected to hypobaric hypoxia and the gasping duration of isolated rat head tended to increase. Reiousan inhibited all the following: lipid peroxides production in rat brain homogenate, tissue swelling induced by the xanthine-xanthine oxidase system in rat brain cortical slices, rat brain swelling induced by freezing, lipid peroxides production in the rat brain after ligation of bilateral common carotid arteries, and lipid peroxides production in Mongolian gerbil brain after reperfusion following ligation of bilateral common carotid arteries. These effects may result from antioxidant activity of bilirubin, a constituent of bezoar.

Animals↗

Effects of Panax Ginseng root on acquisition of sound discrimination behaviour in rats.

Pole-climbing and shuttle-avoidance tests were employed to study the acquisition of conditioned avoidance response (CAR) and discrimination behaviour (DB) in male Wistar rats which had been given extracts from Panax Ginseng root intraperitoneally or orally. Neither a lipid soluble fraction (GNo. 5) nor a ginsenoside Rg fraction (GRg) produced significant changes in the acquisition of CAR. GRg given intraperitoneally produced a significant acceleration in the acquisition of DB between a 500 Hz signal sound followed by an electric shock (SD) and a 1000 Hz signal sound without a shock (S delta) in rats which had learned to avoid the shock following SD at a rate of over 95%. Small doses of GNo. 5 produced a significant depression in the acquisition of DB.

Animals↗

Immunomodulating activity of ginsenoside Rg1 from Panax ginseng.

The immunomodulatory activity of ginsenoside Rg1 from Panax ginseng was studied in mice using sheep red cells as the antigen. It was found that ginsenoside Rg1 at a dose of 10 mg/kg administered for three consecutive days before immunization increased the number of spleen plaque-forming cell, the titers of sera hemagglutinins as well as the number of antigen-reactive T-cells. Ginsenoside Rg1 also increased the number of T-helper cells with respect to the whole T-cell number and the splenocyte natural killer activity. Ginsenoside Rg1 induced an augmentation of the production of IL-1 by macrophages and exerted a direct mitogenic effect on microcultured thymus cells. Ginsenoside Rg1 also partly restored the impaired immune reactivity by cyclophosphamide treatment.

Animals↗

Anti-stress effect of ginseng on the inhibition of the development of morphine tolerance in stressed mice.

We examined how the ginseng extract (GE) acts on the antinociceptive effect induced by footshock (FS)-, psychological (PSY)- and forced swimming (SW)-stress (stress-induced analgesia, SIA), and also on the suppression by FS- and PSY-stress of the development of tolerance to morphine in mice. Neither an acute treatment nor 5 daily pretreatments with GE at 100 mg/kg, p.o. affected each SIA. Pretreatment with GE at 100 mg/kg, p.o. for 5 days followed by the treatment in combination with the exposure to stresses for another 5 days caused no appreciable changes in the development of tolerance to FS- and SW-SIA, but suppressed the development of tolerance to PSY-SIA. When mice were pretreated with GE for 5 days and given GE daily prior to morphine at 10 mg/kg/day, with stress exposure for another 5 days, the inhibitory effect of FS-stress on the development of tolerance to morphine was completely eliminated. The present results suggest that GE, by improving the general metabolism in the body, directs toward normalization of the adaptability which is impaired by stress exposure, while not compromising morphine antinociceptive activity or the SIA, another adaptability produced in confrontation to abnormal environmental stimuli. In addition, the differences in the mechanism underlying the FS- and PSY-stress effect which we have previously demonstrated are also reconfirmed.

Analgesics↗

Blockade by ginseng extract of the development of reverse tolerance to the ambulation-accelerating effect of methamphetamine in mice.

Daily repeated administration of methamphetamine (MAP) developed reverse tolerance to its ambulation-accelerating effect. After pretreatment of mice daily with ginseng extract (GE) for 5 days, concomitant injections of MAP and GE suppressed the development of reverse tolerance to the effect of MAP, although GE itself did not affect the spontaneous motor activity of the naive mice. These results provide evidence that GE may be useful for prevention and therapy of the adverse action of MAP.

Animals↗

Effect of crude saponin of Korean red ginseng on high-fat diet-induced obesity in the rat.

The anti-obesity effects of crude saponin (CS) of Korean red ginseng (KRG) were investigated in the rat fed a high-fat (HF) diet. Male Sprague-Dawley (SD) rats became obese by feeding the HF diet over 5 weeks, while the control rats were fed a normal diet, and then both groups were treated with CS (200 mg/kg, i.p.) for 3 weeks. The body weight, food consumption, adipose tissues, and expression of appetite peptides such as leptin and neuropeptide Y (NPY) were investigated in rats fed normal and HF diet after treatment of CS. Administration of CS reduced body weight, food intake, and fat content in HF diet rats in a manner similar to those of the normal diet fed rats. The hypothalamic NPY expression and serum leptin level were reduced in HF diet rats after CS treatment. Our results suggest that CS may be useful in the treatment of obesity and related disorders as anti-obesity agents.

Adipose Tissue↗

The effect of Korean red ginseng on liver regeneration after 70% hepatectomy in rats.

The effect of Korean red ginseng (KRG) on morphologic change and function of the liver was investigated after 70% hepatectomy in rats. The liver weight and hepatocyte proliferation of the KRG treated groups significantly increased compared to those of the control group. KRG inhibited the increase of aspartate aminotransferase (AST) and alanine aminotransferase (ALT) levels, and the number and area of lipid droplets. On the basis of these results, it could be concluded that KRG accelerated the liver regeneration and ameliorated liver injury after hepatectomy in rats.

Alanine Transaminase↗

Effects of inoculum conditions on growth of hairy roots of Panax ginseng C.A. Meyer.

Plants have a potential to produce a large number of important metabolites such as pharmaceuticals, food additives, pigments, flavors, fragrances, and fine chemicals. Large-scale plant cell and tissue cultures for producing useful products has been considered an attractive alternative to whole plant extraction for obtaining valuable chemicals. In plant cell and tissue cultures, cell growth and metabolite production are influenced by nutritional and environmental conditions as well as physical properties of the culture system. To obtain a high growth rate of plant cell and tissue cultures, the culture conditions should be maintained at an optimum level. We studied the relationship between inoculum conditions and the growth of Panax ginseng hairy root culture, and found that the growth rate varied with the inoculum conditions such as the number of root tips, the length of root tips, the part of root tips, and the inoculum size and age of hairy roots.

Biotechnology↗

Studies on mass production of transformed Panax ginseng hairy roots in bioreactor.

The growth properties of Panax ginseng hairy roots transformed by Agrobacterium rhizogenes were compared between flask and aerated column or stirred bioreactor. In flask cultures, sucrose, initially 30 g/L, was nearly exhausted after 45 d of culture. The pH of the medium dropped from 5.5 to 4.96 after 10 d, but afterward it gradually increased to 6.4. After 45 d, hairy roots grew about 16-folds. The growth rate of hairy roots in air-bubble column or stirred bioreactor cultures was 1.13 (1.11) to 1.23 (1.20) g fresh wt (dry wt)/(g of cells x d), respectively. For both bioreactors, growth was about three times as high as in the flask cultivation.

Air↗

Optimum conditions for transformed Panax ginseng hairy roots in flask culture.

Panax ginseng hairy roots were transformed by Agrobacterium rhizogenes KTCT 2744. They showed an active branching pattern and fast growth in hormone-free medium, and good growth at 23 degrees C, pH 5.8, 1/2 MS medium, and 3% sucrose. Sucrose provided the highest growth among seven carbon sources tested. Six complex media were also tested. In the combined sugar study, hairy roots grew better on sucrose without glucose or fructose than with glucose or fructose. In the 1/2 MS basal medium, 30 mM in nitrogen and 0.62 mM phosphate salt concentration was the optimum. The growth ratio was maximal at an inoculum size of 0.4% (w/v). Crude saponin and polysaccharide levels were also measured.

Biomass↗