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Insulin secretion is stimulated by ethanol extract of Anemarrhena asphodeloides in isolated islet of healthy Wistar and diabetic Goto-Kakizaki Rats.

BACKGROUND: The hypoglycemic effect of extract of Anemarrhena asphodeloides has been accounted for by the substance mangiferin which increases insulin sensitivity. The present study aimed to investigate whether an ethanol extract of Anemarrhena asphodeloides would stimulate insulin secretion and if so, further elucidate the mechanism behind this effect. METHODS: Isolated pancreatic islets of normal Wistar rats and spontaneously diabetic Goto-Kakizaki (GK) rats were batch incubated or perifused to study effect of Anemarrhena asphodeloides extract (TH2) on insulin release. RESULTS: At 3.3 mM glucose, 2, 4, and 8 mg/ml TH2 increased the insulin release of Wistar rat islets 2.5-, 4.1-, and 5.7-fold, respectively (p < 0.05) and of GK rat islets 1.7-, 3.0-, and 6.3-fold, respectively (p < 0.01). Similarly at 16.7 mM glucose, 2, 4 and 8 mg/ml TH2 increased insulin release of Wistar rat islets 1.5-, 2.2-, and 3.8-fold, respectively (p < 0.05) and of GK rat 2.5-, 4.2-, and 11.9-fold, respectively (p < 0.01). In perifusions of islets, TH2 also increased insulin secretion that returned to basal levels when TH2 was omitted from the perifusate. Mangiferin had no effect on insulin secretion of islets. In islets depolarized by 30 mM KCl and B-cell K-ATP channels kept open by 0.25 mM diazoxide, TH2 (8 mg/ml) further enhanced insulin secretion at 3.3 but not at 16.7 mM glucose. Pertussis toxin suppressed the insulin stimulating effect of 2 and 8 mg/ml TH2 by 35 % and 47 % (p < 0.05 and p < 0.001, respectively). CONCLUSIONS: Ethanol extract of the roots of Anemarrhena asphodeloides contains a substance, TH2, that stimulates insulin secretion both at 3.3 and 16.7 mM glucose in islets of normal Wistar and diabetic GK rats. The mechanism behind TH2-stimulated insulin secretion involves an effect on the exocytotic machinery of the B-cell, mediated via pertussis toxin-sensitive Gi- (or Ge-) proteins.

Anemarrhena↗

Combined potentiating effect of byakko-ka-ninjin-to, its constituents, rhizomes of Anemarrhena asphodeloides, tomosaponin A-III, and calcium on pilocarpine-induced saliva secretion in streptozocin-diabetic mice.

The effects on pilocarpine-induced saliva secretion by a hot aqueous extract of Byakko-ka-ninjin-to (BN), its constituents, rhizomes of Anemarrhena asphodeloides, three saponins (pseudoproto-timosaponin-AIII (An-S-1), proto-timosaponin-AIII (An-S-2) and timosaponin-AIII (An-S-3)) and calcium were examined in streptozocin (STZ)-induced diabetic and normal mice. The hot aqueous extracts of BN (250 and 500 mg/kg, i.p.) and Anemarrhena (170 and 340) mg/kg, i.p.) significantly promoted salivary flow in the diabetic animals, but suppressed it in the normal controls. An-S-2 and An-S-3 but not An-S-1 (10 mg/kg, i.p.), significantly promoted salivary How in the diabetic animals. The potency order was An-S-3 >> An-S-2 >> extract. The hot aqueous extracts of BN and Anemarrhena increased the protein content of saliva in a dose-dependent manner. Combination of An-S-3 (0.1 mg/kg, i.p.) with CaCl2 (2 and 4 mg/kg, i.p.) potentiated salivary flow compared with the respective effect of each on its own. These results demonstrated that 1) An-S-3 was mainly responsible for saliva secretion of the hot aqueous extract, and 2) the effect of An-S-3 was potentiated by combination with calcium, suggesting combined effects of Byakko-ka-ninjin-to containing Anemarrhena asphodeloides and gypsum fiber (calcium).

Animals↗

[Two new furostanol saponins from the rhizomes of Anemarrhena asphodeloides].

AIM: To investigate the chemical constituents of the rhizomes of Anemarrhena asphodeloides Bunge. METHODS: The compounds were separated by means of solvent extraction, chromatography on absorbent resin SP825 and silica gel C18 repeatedly, and their structures were elucidated on the basis of chemical methods and spectral analyses (FAB-MS, 1H NMR, 13C NMR, 1H-1H COSY). RESULTS: Six steroidal saponins were isolated from the rhizomes of Anemarrhena asphodeloides Bunge. They were identified as (25S)-26-O-beta-D-glucopyranosyl-22-hydroxy-5beta-furostane-2beta, 3beta, 26-triol-3-O-beta-D-glucopyranosyl-(1 --> 2)-beta-D-galactopyranoside (timosaponin N, 1), timosaponin E1 (2), (25S)-26-O-beta-D-glucopyranosyl-22-methoxy-5beta-furostane-2beta, 3beta, 26-triol-3-O-beta-D-glucopyranosyl-(1 --> 2)-beta-D-galactopyranoside (timosaponin O, 3) , timosaponin E2 (4), (25R) -26-O-beta-D-glucopyranosyl-22-hydroxy-5alpha-furostane-2alpha, 3beta, 26-triol-3-O-beta-D-glucopyranosyl-(1 --> 2)-[beta-D-xylpyranosyl-(1 --> 3)]-beta-D-glucopyranosyl-(1 --> 4)-beta-D-galactopyranoside (purpureagitosid, 5) and marcogenin-3-O-beta-D-glucopyranosyl-(1 --> 2)-beta-D-galactopyranoside (6). CONCLUSION: Compound 1 and compound 3 are new compounds, and compound 5 was isolated from the rhizomes of Anemarrhena asphodeloides Bunge for the first time.

Anemarrhena↗

Protective effect of steroidal saponins from rhizome of Anemarrhena asphodeloides on ovariectomy-induced bone loss in rats.

AIM: To investigate the protective effect of steroidal saponins from Anemarrhena asphodeloides (ATS) on ovariectomy (OVX)-induced bone loss. METHODS: Sprague-Dawley rats were divided into sham and OVX groups. The OVX rats were treated with vehicle, nylestriol or steroidal saponins extract for 12 weeks. Serum calcium, phosphorus, estradiol (E(2)), osteocalcin concentration and serum alkaline phosphatase activity were measured. Bone density was assayed by dual-energy X-ray absorptiometry. The undecalcified longitudinal proximal tibial metaphysical (PTM) sections were cut and stained for histomorphometric analysis of the bone. RESULTS: In OVX rats, alkaline phosphatase activities in serum were markedly increased and concentrations of osteocalcin were decreased by ATS treatment, which had no influence on the body weight. Meanwhile, atrophy of the uterus and descent of bone mineral density (BMD) was suppressed by treatment with ATS. In addition, ATS completely corrected the decreased the concentration of calcium and E(2) in serum observed in OVX rats. Histological results showed ATS prevented decreases in trabecular thickness and increases in trabecular separation of proximal tibia metaphysis (PTM) in OVX rats. However, it did not alter osteoclast number in OVX rats. Moreover, ATS (300 mg/kg) had a remarkable effect on promoting bone formation action in OVX rats. Nylestriol treatment decreased the bone formation rate and mineral apposition rate. CONCLUSION: An adequate supply of steroidal saponins of Anemarrhena asphodeloides prevented OVX-induced bone loss in rats through the promotion of bone formation but not the inhibition of bone resorption.

Alkaline Phosphatase↗

7-hydroxy-3-(4-hydroxybenzyl)chroman and broussonin b: neurotrophic compounds, isolated from Anemarrhena asphodeloides BUNGE, function as proteasome inhibitors.

The extract of Anemarrhenae Rhizoma (rhizomes of Anemarrhena asphodeloides BUNGE) showed neurotrophic activity toward rat pheochromocytoma (PC-12) cells. Bioassay-guided purification afforded four compounds, 2,6,4'-trihydroxy-4-methoxybenzophenone (1), 7-hydroxy-3-(4-hydroxybenzyl)chroman (2), broussonin B (3), and cis-hinokiresinol (4). Compounds 1-3 induced neurite outgrowth in PC-12 cells at concentration of 50 microg/ml, while 4 was less active. In addition, compounds 2-4 showed moderate inhibitory activities against a chymotrypsin-like activity of the proteasome.

Alkanes↗

Effects of Anemarrhena asphodeloides on focal ischemic brain injury induced by middle cerebral artery occlusion in rats.

The preventive effect of Anemarrhena asphodeloides Bunge (Liliaceae), a traditional Chinese medicine, on ischemia-reperfusion-induced brain injury was evaluated in the rat brain. Ischemia was induced by intraluminal occlusion of the right middle cerebral artery for 2 h and reperfusion was continued for 22 h. Water extract of Anemarrhena asphodeloides (WEAA) was orally administered promptly prior to and 2 h after reperfusion. Total infarct volume and edema in the ipsilateral hemispheres of ischemia-reperfusion rats were significantly reduced by treatment with WEAA in a dose-dependent manner (p<0.05). The therapeutic time window of WEAA was 3 h in this ischemia-reperfusion rat model. WEAA also significantly inhibited increased neutrophil infiltration of ischemic brain tissue as estimated by myeloperoxidase (MPO) activity and immunohistochemical analysis. MPO-positive cells were markedly reduced by WEAA administration in striatal and cortical areas. These findings suggest that WEAA plays a crucial protective role in ischemia-induced brain injury, and suggest that WEAA could serve as a lead medicinal herb for the development of neuroprotective agents following transient focal ischemic brain injury.

Anemarrhena↗

Inhibitory effects of saponins from Anemarrhena asphodeloides Bunge on the growth of vascular smooth muscle cells.

OBJECTIVE: To investigate the effects of saponins from Anemarrhena asphodeloides Bunge (SAaB) (Botanical Name: Anemarrhena Asphodeloidis Rhizoma) on the growth of vascular smooth muscle cells (VSMCs). METHODS: Cell proliferation was measured by a newly developed cell proliferation reagent, WST-1. Cell apoptosis was assayed by flow cytometry through detecting annexin V. Nitric oxide production was evaluated using confocal laser scanning microscopy with diaminofluorescein diacetate (DAF-2, DA). Cell aldose reductase (AR) activity, as well as the effect of Epalrestat and interleukin-1beta were also explored. RESULTS: WST assay showed that cell proliferation induced by serum was significantly inhibited by SAaB (P<0.01). Flow cytometry analysis revealed that SAaB could enhance apoptotic rate of VSMCs (P<0.01). Nitric oxide production was significantly enhanced after administration of SAaB and interleukin-1beta. Moreover, AR activity of VSMCs was also remarkably inhibited by both SAaB and Epalrestat (P<0.01). CONCLUSION: SAaB can inhibit proliferation and enhance apoptosis of VSMCs. It may protect vascular cells by inhibiting VSMC proliferation and augmenting apoptotic rate of VSMCs via NO-dependent pathway.

Anemarrhena↗

Effect of six steroidal saponins isolated from anemarrhenae rhizoma on platelet aggregation and hemolysis in human blood.

Six steroidal saponins were isolated from Anemarrhena asphodeloides Bunge (Liliaceae), a traditional chinese medicine, and named anemarrhenasaponin I (An-I), anemarrhenasaponin Ia (An-Ia), timosaponin B-I (TB-I), timosaponin B-II (TB-II), timosaponin B-III (TB-III), and timosaponin A-III (TA-III). The effects of these six compounds on platelet aggregation and hemolysis in human blood were studied. All these compounds provoked remarkable inhibiting effect on platelet aggregation, and activated partial thromboplastin times (APTT) are sensitive to the presence of these six compounds. Using an in vitro system, APTT was delayed with the increment of the concentrations of these six compounds. In these six compounds, only timosaponin A-III appeared a strong effect on hemolysis, and anemarrhenasaponin Ia had a slight effect on hemolysis, other had no effect on hemolysis. These results suggested that these steroidal saponins isolated from Anemarrhena asphodeloides Bunge (Liliaceae) might be used as a novel antithrombotic therapeutic agents in post-myocardial infarction.

Antithrombins↗

Testosterone 5alpha-reductase inhibitory active constituents from Anemarrhenae Rhizoma.

The diethyl ether extract of Anemarrhenae Rhizoma (rhizomes of Anemarrhena asphodeloides Bunge) showed testosterone 5alpha-reductase inhibitory activity. Two major constituents, cis-hinokiresinol (1) and 2,6,4'-trihydroxy-4-methoxybenzophenone (2) were identified as the active principles. The inhibitory activity of 1 was superior to that of ethinylestradiol, but that of 2 was weak.

5-alpha Reductase Inhibitors↗

Preparative isolation and purification of four compounds from the Chinese medicinal herb rhizoma Anemarrhenae by high-speed counter-current chromatography.

High-speed counter-current chromatography (HSCCC) was applied to the separation and purification of mangiferin, neomangiferin, cis-hinkiresinol and (-)-4'-O-methylnyasol from the Chinese medicinal herb rhizoma Anemarrhenae. Five hundred milligrams of crude extracts were separated by using n-butanol-acetic acid (1%) (1:1, v/v) as the two-phase solvent system and yielded 35.3 mg of neomangiferin and 245.4 mg of mangiferin. During this separation, cis-hinkiresinol and (-)-4'-O-methylnyasol were still maintained in the stationary phase. The stationary phase was collected, evaporated to dryness and separated with light petroleum-ethyl acetate-methanol-water (1:1:1.2:0.8, v/v) and 1:1:1.4:0.6 (v/v) in gradient elution, which yielded 17.2 mg of cis-hinkiresinol and 12.4 mg of (-)-4'-O-methylnyasol. The purities of mangiferin, neomangiferin, cis-hinkiresinol and (-)-4'-O-methylnyasol were 96.3, 98.0, 97.3 and 98.2%, respectively, as determined by HPLC. The chemical structures of these components were identified by 1H NMR and 13C NMR.

Anemarrhena↗

Isolation and anti-oomycete activity of nyasol from Anemarrhena asphodeloides rhizomes.

The methanol extract of Anemarrhena asphodeloides rhizomes exhibited strong antifungal activity against the plant pathogenic fungi Magnaphothe grisea, Rhizoctonia solani, and the plant pathogenic oomycete Phytophthora capsici. The antifungal substance isolated from the rhizomes of A. asphodeloides was identified to be nyasol, (Z)-1,3-bis(4-hydroxyphenyl)-1,4-pentadiene by NMR and mass spectral analysis. Nyasol effectively inhibited the mycelial growth of Colletotrichum orbiculare, P. capsici, Pythium ultimum, R. solani, and Cladosporium cucumerinum in a range of 1-50 mug/ml, but did not affect the growth of bacteria and yeast. In a greenhouse test, treatment with the antifungal compound nyasol was significantly effective in suppressing the Phytophthora blight on pepper plants.

Alanine↗

cis-hinokiresinol, a norlignan from Anemarrhena asphodeloides, inhibits angiogenic response in vitro and in vivo.

cis-Hinokiresinol (CHR) is a norlignan constituent from Anemarrhena asphodeloides BUNGE (Liliaceae), which shows hyaluronidase inhibitory activity. In the present studies, we have demonstrated that CHR selectively inhibited endothelial cell proliferation compared with cancer cells, and especially basic fibroblast growth factor (bFGF) or vascular endothelial growth factor (VEGF)-induced endothelial cell proliferation. Furthermore, endothelial cell migration and tube formation, two important steps in the angiogenic process, were also inhibited by CHR. Moreover, CHR reduced the vessel growth induced by VEGF in the mouse corneal neovascularization model. These results suggest that CHR may prove useful for the development of a novel angiogenesis inhibitor.

Anemarrhena↗

Antidepressant-like effects of sarsasapogenin from Anemarrhena asphodeloides BUNGE (Liliaceae).

The aim of this study was to investigate the effects of sarsasapogenin from Anemarrhena asphodeloides BUNGE (Liliaceae) on the forced swimming test, and the central noradrenergic, dopaminergic and serotonergic activities in mice. Our results showed that sarsasapogenin treatment at 12.5, 25 and 50 mg/kg (p.o.) for 14 d significantly reduced the duration of immobility in the forced swimming test. These doses that affected the immobile response did not affect locomotor activity. In addition, the neurochemical assays showed that sarsasapogenin produced a marked increase of noradrenaline and serotonin levels at 50 mg/kg in both the hypothalamus and the hippocampus. Moreover, sarsasapogenin showed a monoamine oxidase inhibitory activity in the mouse brain. These findings suggest that the antidepressant activity of sarsasapogenin may involve the central monoaminergic neurotransmitter systems.

Anemarrhena↗

[Determination of sarsasapogenin in Anemarrhena asphodeloides Bunge by GC].

OBJECTIVE: To determine sarsasapogenin in Anemarrhena asphodeloides. METHOD: Chloromethane extract (1 microliter) with cholesterol as internal standard was analyzed on HP-1 column, operated at 270 degrees C with N2 as carrier gas and FID. RESULT: The method was linear within the range of 0.245-2.94 micrograms.microliter-1, with a correlation coefficient of 0.9996. The average recovery was 95.52% +/- 1.77%, CONCLUSION: The method is reproducible, rapid and sensitive.

Anemarrhena↗

[The morphological variation in species of Anemarrhena asphodeloides].

In this paper, morphological studies modified the description in some literatures. The features of Anemarrhena asphodeloides Bunge growing in different districts vary. Carefully observation under Scanning Electron Microscope (SEM) showed that surface characters of leaves at the same developing stage, which were collected from cultivated plants formerly growing in different districts, vary greatly but regularly. It was found that the morphology of pollen grains were similar.

Anemarrhena↗

[Investigations on the molecular mechanisms of saponins from Anemarrhena asphodeloides Bunge using oligonucleotide microarrays].

AIM: To investigate the molecular mechanisms of saponins from the rhizome of Anemarrhena asphodeloides Bunge. METHODS: Oligonucleotide microarrays consisting of 87 probes representing 87 human cardiovascular disease-related genes were constructed. Effects of saponins on gene expression in human umbilical vein endothelial cells were analyzed by comparing hybridization of Cy 5-labeled cDNAs from saponins-treated human umbilical vein endothelial cells and Cy 3-labeled cDNAs from untreated human umbilical vein endothelial cells. RESULTS: The results indicate that angiotensinogen gene, alpha 2A-adrenoceptor gene and endothelin-converting enzyme 1 gene were downregulated 2.8, 1.9 and 3.1 folds respectively after human umbilical vein endothelial cells were incubated in medium containing 80 mg.L-1 saponins. CONCLUSION: These results suggest that saponins may have beneficial effect on cardiovascular diseases by modulating the function of vein endothial cells and microarray can be used to investigate the biological action of extracts from traditional Chinese medicine.

Anemarrhena↗

[Analysis of volatile constituents from Anemarrhena asphodeloides by GC-MS].

OBJECTIVE: To study the chemical constituents of the volatile oil from the rhizome of Anemarrhena asphodeloides. METHOD: The volatile oil was steam distillation. Chemical constituents were separated and analyzed by GC-MS. The relative content of each component was determined by area nomalization. RESULT: 24 volatile compounds were isolated and identified for the first time, representing 70.83% of the total oil. CONCLUSION: The main constituents of this oil were aldehydes (31.15%), terpene and their oxide (20.66%), alkyls (8.35%), Furan heterocyclic compounds (6.41%), non terpene alcohol (4.26%). There are 12 compounds with contents over 3%. Among them, borneol has the highest content (9.35%).

Aldehydes↗