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Effects of the Chinese herbal medicines Bupleuri radix, Ginseng radix, and Zingiberis rhizoma on lymphatic vessel activity in rats.

The aim of the present study was to determine the effects of the Chinese herbal medicines Bupleuri radix, Ginseng radix and Zingiberis rhizoma on spontaneous lymphatic vessel activity. The effect of each herbal medicine on in vivo lymphatic flow was examined by injection of dye into the femoral regions of rats after feeding with the herbal medicines. In an in vitro study, spontaneous changes in diameter of the rat thoracic duct were monitored, and each segment was exposed to each herbal medicine. In the in vivo study, 100% of the right iliac lymphatic node were positively stained in the herbal medicine group, whereas only 40% of the node were positively stained in the control group. In the in vitro study, Bupleuri radix and Ginseng radix increased the amplitude of spontaneous activity of lymphatic vessels in a concentration-dependent manner with or without L-NAME, an NO synthase inhibitor. The results indicated that the herbal medicines Bupleuri radix and Ginseng radix activated spontaneous lymphatic vasomotion and lymph flow, and the mechanisms of this effect seem to be independent of endothelial cells.

Animals↗

Ginseng: its history, dispersion, and folk tradition.

This article presents a historical comparison of the traditions surrounding and uses of ginseng in Asia and in North America, with a focus on the triangle formed by the Chinese, the North American Indians, and the white American residents. The medicinal and folkloric applications of ginseng by the Chinese were remarkably similar to those independently developed by various North American Indian tribes. White Americans, however, largely disregarded the herbal root medicinal qualities in favor of the lucrative economic gains available from the export of ginseng to supply the Chinese market. Information was gathered primarily from Western sources and whenever possible was either drawn from or corroborated by original eighteenth and nineteenth century publications.

Canada↗

Ultrastructural studies on the effects of Korean Panax ginseng on the theca interna of rat ovary.

An investigation was conducted to delineate the fine structure of steroid-producing ovarian theca interna cells following administration of Korean Panax ginseng to rats for 60 days. The cytoplasmic changes were observed in the ginseng-treated theca interna cells, increased number, size and density of the mitochondria, and increased size of the smooth surfaced endoplasmic reticulum, the rough surfaced endoplasmic reticulum and the Golgi apparatus. The nucleus and nucleolus were slightly enlarged and increased numbers of dense bodies were seen whereas lipid droplets were decreased in number. The changes may result from hyperfunction of the steroid-producing cells. Morphologic changes seen may represent stimulating effects on the steroid-producing cells of the theca interna in ginseng-treated animals.

Adipose Tissue↗

Immunopharmacology of Chinese medicine 1, ginseng induced immunosuppression in virus-infected mice.

Total saponins extracted from Panax ginseng, when injected into mice at a dose of approximately 10 mg/kg body weight, have no significant effect on the generation of cytotoxic T cell activity, induction of natural killer cell activity and humoral antibody production in mice infected subsequently with A/WSN influenza virus. The saponins, however, selectively suppressed the delayed-type hypersensitivity responses to the virus when administered to the animals before but not after virus sensitization. Thus, ginseng pretreatment can induce immunological unresponsiveness in one arm of the immune system. Such selective immunosuppression effect of the total saponins of ginseng may be related to their steroid-like structure.

Animals↗

Inhibitory effects of a fermented ginseng extract, BST204, on the expression of inducible nitric oxide synthase and nitric oxide production in lipopolysaccharide-activated murine macrophages.

In this study, the effects of BST204, a fermented ginseng extract, on the expression of inducible nitric oxide synthase (iNOS) and nitric oxide (NO) production are looked into. Crude ginseng extract was incubated with ginsenoside-beta-glucosidase to prepare BST204. BST204, unlike lipopolysaccharide (LPS) and crude ginseng extract, did not affect the level of iNOS protein and NO production in unstimulated RAW 264.7 cells. However, it suppressed the level of iNOS protein and NO production in LPS-stimulated RAW 264.7 cells but did not manifest the same effect on the iNOS mRNA level. An investigation of the activating phosphorylation of p70 S6 kinase and 4E-BP1, which are important for translation, was conducted to investigate the suppressive mechanism of iNOS protein. LPS increased the phosphorylation of p70 S6 kinase, but not 4E-BP1, in a time-dependent manner, and BST204 inhibited it in a dose-dependent manner. The expression of iNOS protein, however, was partially suppressed by rapamycin, an upstream inhibitor of p70 S6 kinase. Therefore, this paper suggests that the suppression of iNOS protein by BST204 was partially correlated with the inhibition of p70 S6 kinase activation.

Animals↗

Protective effect of ginseng saponins against impaired brain growth in neonatal rats exposed to ethanol.

This study was performed to determine the active constituents of the root of Panax ginseng C. A. Mayer in the amelioration of ethanol-induced impediment of brain growth in the neonatal stage. To establish an animal model of the brain growth impediment caused by ethanol, ethanol (6 g/kg s.c.) was administered to rat pups on postnatal day 6, which corresponded to the third trimester of pregnancy for humans. Brain weight, especially cerebellar weight, was significantly reduced in the ethanol-exposed pups. In contrast, neither separation from dams nor pentobarbital treatment affected brain weight. A saponin fraction of ginseng extract prevented this ethanol-induced reduction of brain weight. Some ginseng saponins including ginsenosides Rg1, Rb2, Rd, Rf and Re effected stimulated a potent recovery of cerebellum growth in this animal model.

Animals↗

Panax ginseng extract improves the performance of aged Fischer 344 rats in radial maze task but not in operant brightness discrimination task.

The effect of Panax ginseng extract on the learning performance of aged Fischer 344 rats using the 8-arm radial maze task and the operant discrimination task was examined. Aged rats showed significantly impaired learning performance in both tasks. Daily administration of ginseng extract (8 g/kg/d, p.o. for 12-33 d) ameliorated the impairment of learning performance in the radial maze task but not in the operant discrimination task. These results suggest that subchronic treatment with ginseng extract improves spatial cognitive impairment in aged rats.

Aging↗

Application of PCR-RFLP and MASA analyses on 18S ribosomal RNA gene sequence for the identification of three Ginseng drugs.

In order to develop convenient and reproducible methods for the identification of Ginseng drugs at a DNA level, PCR-Restriction fragment length polymorphism (PCR-RFLP) and Mutant allele specific amplification (MASA) analyses were applied, based on differences of the 18S rRNA gene sequence among three Panax species. The PCR product of each species on the 18S rRNA gene was digested with the restriction enzymes Ban II and Dde I. Each fragment gave unique electrophoretic profiles for each species (PCR-RFLP analysis). The extracted DNA of each species was amplified by PCR using a designed species-specific oligonucleotide primer. The expected size of the fragments corresponding to each species were detected only when the optimum temperature and reaction time for annealing and extension were established (MASA analysis). These two analytical methods were carried out on three Ginseng drugs and the same results as in their original plants were obtained. The results suggest that PCR-RFLP and MASA analyses under the established conditions are convenient for identifying three Ginseng drugs. Moreover, to insure completion of the identification, a partial sequence of the plastid gene matK was determined in addition to the 18S rRNA gene. The gene sequences of three Panax species were of 1259 base pairs and that of P. quinquefolius was different from the other two at nucleotide position 102.

Panax↗

Effect of ginseng saponins on a rat visceral hypersensitivity model.

The 5-hydroxytryptamine3A (5-HT3) receptor is closely related with irritable bowel syndrome (IBS) in enteric nervous systems. We previously demonstrated that ginseng total saponins (GTS, also called ginsenosides), the active ingredients of Panax ginseng, inhibit the activity of 5-HT3A receptor channels expressed in Xenopus laevis oocytes. Here, we further investigated whether the in vitro inhibitory effect of ginsenosides on 5-HT3A receptor channel activity is coupled to in vivo attenuation of IBS. A rat model of IBS was induced by colorectal distention (CRD) and intracolonic infusion of 0.6% acetic acid (CRD-acetic acid), and visceral hypersensitivity was assessed by counting the contractions in the external oblique muscles of conscious rats during the 10 min distention period. We found that oral administration of GTS significantly and dose-dependently inhibited CRD-acetic acid-induced visceral hypersensitivity. The EC50 was 5.5+/-4.7 mg/kg (95% confidence intervals: 1.2-15.7) and the inhibitory effect of GTS against visceral hypersensitivity persisted for 4 h. When we compared the effects of protopanaxadiol (PD) ginsenosides and protopanaxatriol (PT) ginsenosides against CRD-acetic acid-induced visceral hypersensitivity, we found that PT but not PD ginsenosides significantly attenuated the CRD-acetic acid-induced visceral hypersensitivity. These results indicate that PT ginsenosides of Panax ginseng might be the main active components for the attenuation of experimentally CRD-acetic acid-induced visceral hypersensitivity, and may be clinically relevant for the future treatment of IBS.

Animals↗

Ginseng saponins diminish adverse vascular effects associated with chronic methionine-induced hyperhomocysteinemia.

Recent studies have shown that Panax ginseng has a variety of beneficial effects on the cardiovascular systems. Homocysteine (Hcy), which is derived from L-methionine (Met), has been closely associated with the increased risk of cardiovascular diseases. In the present study, we examined whether in vivo long-term administration of ginseng saponins (GS), active ingredients of Panax ginseng, attenuate adverse vascular effects associated with chronic Met-induced hyperhomocysteinemia (H-Hcy). We found that plasma Hcy level, which was measured after 30 and 60 d, in GS (100 mg/kg)+Met co-administration group was significantly reduced when it was compared with Met alone treatment group. We could also observe the alleviation of endothelial damages of aortic artery vessels in GS (100 mg/kg)+Met co-administration group compared with Met alone treatment group. We compared aortic vasocontractile and vasodilatory responses between Met alone and GS (100 mg/kg)+Met co-treatment groups. We found that norepinephrine-induced vasocontractile responses were greatly decreased in GS (100 mg/kg)+Met co-treatment group and that carbachol-induced dilatory responses were greatly enhanced in GS (100 mg/kg)+Met co-administration groups as compared with Met alone treatment group. The present results indicate that in vivo long-term administration of GS attenuates adverse vascular effects associated with chronic Met-induced H-Hcy in rats.

Animals↗

A non-opioid mechanism in the inhibitory effect of ginseng saponins on electrically evoked contractions of guinea-pig ileum and mouse vas deferens.

Both ginseng total saponins (GTS) and one of its constituents, protopanaxatriol saponins (PT), inhibited the electrically evoked contractions of guinea-pig ileum (GPI) in a concentration dependent manner in a range of 1-100 micrograms/ml, and this effect was irreversible at high concentrations of the saponins. Protopanaxadiol saponins (PD) had a transient and weak effect. On the other hand, in mouse vas deferens (MVD), the contractions were increased by PT and PD, however, GTS was almost without effect. The inhibitory effect of morphine was arithmetically increased by pretreatment with 100 micrograms/ml of these saponins in GPI preparations, while the inhibitory effect of the contractions was potentiated in MVD preparations. Neither the inhibition of contractions in the GPI preparation nor the facilitation of contractions in the MVD preparation by these ginseng saponins was reversed by 1 microM naloxone, in contrast to naloxone antagonism of morphine-induced contractions in both preparations. GTS and PT caused a dose-dependent inhibition of BaCl2-induced contraction of GPI. It is concluded that the mechanism on the inhibitory or facilitated effect of ginseng saponins on electrically evoked contractions in GPI and MVD preparations may be separated from the effect of opioids, and the mechanism may be based on the direct action of the saponins on smooth muscles preparations.

Animals↗

Studies on the panaxytriol of Panax ginseng C. A. Meyer. Isolation, determination and antitumor activity.

An antitumor-active substance was obtained from the residue of the ethyl acetate extract of red ginseng, a traditional Chinese medicine, by chromatography on a silica gel column. From the proton and carbon-13 nuclear magnetic resonance spectra, it was identified as heptadeca-1-ene-4,6-diyne-3,9,10-triol (panaxytriol). The panaxytriol contents of red ginseng and white ginseng, determined by gas chromatography after solvent extraction and formation of trimethylsilyl derivatives, were 0.38 and 0.25 mg/g, respectively. Panaxytriol showed a growth-inhibitory activity against several tumor cell lines.

Alkynes↗

Simultaneous determination of triterpene saponins in ginseng drugs by high-performance liquid chromatography.

A HPLC method for the simultaneous determination of 11 triterpene saponins with four-type aglycones (protopanaxadiol, protopanaxatriol, ocotillol and oleanolic acid types) in Ginseng drugs was developed and validated. Using a gradient of acetonitrile and 10 mM K-phosphate buffer (pH 5.80) as the mobile phase and UV detection at 196 nm, more than 18 ginsenosides with different aglycones were separated satisfactorily within 60 min. The detection limits (signal/noise> or =3) were 0.1 microg for ginsenosides Rb1, Rc, Rd, Re and Rg1, chikusetsusaponin III, and notoginsenoside R2, 0.2 microg for gisenoside Ro and chikusetsusaponin IVa, 0.3 microg for chikusetsusaponin IV, and 3 microg for majonoside R2. The calibration curve of each saponin had a correlation coefficient close to 1. Intra- and interday precisions were less than 2.1% (n=5) and 3.3% (n=15), respectively. The recovery rates of extraction were in the range of 96.4-102.7% for all ginsenosides. By adopting this method, the determinations of 11 ginsenosides in three Ginseng drugs derived from Panax ginseng, Panax vietnamensis var. fuscidiscus and Panax japonicus (Japan) were achieved.

Calibration↗

[Effects of ginseng saponins on receptor stimulation-responses].

We investigated the effects of root of Panax ginseng C. A. Meyer on the secretion of catecholamines (CAs) from bovine adrenal chromaffin cells stimulated by acetylcholine (ACh). In two major parts, nonsaponin and crude saponin fractions from the root, the crude saponin but not the non-saponin greatly reduced the ACh-evoked secretion. Furthermore, various purified ginseng saponins (ginsenosides) had a tendency to reduce the secretion. Most effective saponin was ginsenoside (G) RG2. GRg2 also inhibited the ACh-evoked Na+ and Ca2+ influxes into the cells. The GRg2 inhibition of the secretion was overcome by increasing the external Na+ but not Ca2+ concentrations. However, GRg2 did not affect the secretion from the cells induced by high K+, which is regarded as directly depolarizing the cell membranes and causing Ca2+ influx through voltage-sensitive Ca2+ channels. Therefore, the root of Panax ginseng contains ingredients, that is saponins, which inhibit the secretion of catecholamines from the cells stimulated by ACh. The inhibition is probably due to the antagonism of nicotinic acetylcholine receptor-operated cation channels. GRg2 had no effects on other receptor stimulation-responses but GRg3 inhibited them. These may be why the root of Panax gingseng has a variety of pharmacological effects.

Acetylcholine↗

Axonal and dendritic extension by protopanaxadiol-type saponins from ginseng drugs in SK-N-SH cells.

Extension of axons and dendrites in neurons may compensate for and repair damaged neuronal networks in the dementia brain. To find out drugs capable of regenerating the neuronal network, we focused on several herbal drugs belonging to the genus Panax, kinds of Ginseng, and investigated neurite outgrowth activity of their extracts and compounds. We found that the methanol extracts of Ginseng (root of P. ginseng), Notoginseng (root of P. notoginseng) and Ye-Sanchi in Chinese (rhizome of a relative to P. vietnamensis) increased neurite outgrowth in SK-N-SH cells. The protopanaxadiol-type saponins, ginsenosides Rb(1) and Rb(3), and notoginsenosides R(4) and Fa isolated from Ye-Sanchi extract extended neurites, while protopanaxatriol-, ocotillol- and oleanane-type saponins had no effect on the neurite outgrowth. The percentage of cells with multipolar neurites and number of varicosities were intensely high in cells treated with the methanol extract of Ye-Sanchi as well as ginsenosides Rb(1) and Rb(3), and notoginsenosides R(4) and Fa. Both phosphorylated NF-H-expressing neurites and MAP2-expressing ones were extended by treatment with those saponins and the extract. Especially, longer neurites were mainly positive for phosphorylated NF-H. These results suggest that protopanaxadiol-type saponins enhance axonal and dendritic formation activity.

Axons↗

Identification of basic fibroblast growth factor-like immunoreactivity in panax ginseng extract: investigation of its molecular properties.

Basic fibroblast growth factor (bFGF)-like immunoreactivity was detected in extracts of Panax ginseng root by using a sensitive two-site enzyme immunoassay specific for human bFGF (hbFGF). In an investigation of the molecular properties of this bFGF-like molecule (bFGF-LI), the bFGF-LI and hbFGF were found to be equivalent with respect to antigenicity, molecular weight, isoelectric point, affinity for binding to heparin, and mitogenic activity toward BALB/c3T3 fibroblasts. The identification of this bFGF-LI molecule in Panax ginseng root helps to explain various activities of the traditional Chinese medicine ginseng.

3T3 Cells↗

Inhibition of adrenaline-induced lipolysis by ginseng polypeptide and its modified peptides.

The anti-lipolysis by ginseng polypeptide and its modified peptides was examined using porcine adipose cells. Ginseng polypeptides modified by amino acid substitution or proteolyzation reduced or lost the inhibiting activity of adrenalin-induced lipolysis. Correlation between the anti-lipolytic activity of ginseng polypeptide and its Mg(2+)- and ribose-binding activities is discussed.

Adipose Tissue↗

Genetic identification of Panax ginseng and Panax quinquefolius by pyrosequencing methods.

This study was performed to determine whether two ginseng species (Panax ginseng and Panax quinquefolius) can be identified by genetic analysis and to verify pyrosequencing analysis, which was used to assess genetic variation. The pyrosequencing results constituted clear data. Panax quinquefolius showed a very different pattern than Panax ginseng. Pyrosequencing analysis might be able to identify the Panax species.

Hot Temperature↗