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In vitro incorporation of selenomethionine into protein by astragalus polysomes.

Selenium-accumulator plants synthesize selenium compounds that differ from those produced by nonaccumulators. To determine if there are any subcellular differences between accumulators and nonaccumulators in the use of selenomethionine in vitro, polysomes from Astragalus crotalariae (accumulator) and Astragalus lentiginosis (nonaccumulator) were translated in the presence of selenomethionine. Polysomes from both species efficiently used selenomethionine in vitro during the translation process. Inasmuch as no differences in the incorporation of selenomethionine into protein were observed between polysomes from the two types of Astragalus, it can be inferred that in accumulators there exists a mechanism that either prevents synthesis of selenomethionine or modifies this selenocompound to a derivative that cannot be incorporated into protein.

Journal Article↗

On the mechanism of selenium tolerance in selenium-accumulating plants. Purification and characterization of a specific selenocysteine methyltransferase from cultured cells of Astragalus bisculatus.

Selected members of the genus Astragalus (Fabaceae) are known for their ability to accumulate high levels of selenium, mainly in the form of Se-methyl-selenocysteine. With the aid of cell cultures we have investigated the molecular basis for selenium tolerance of these plants. It is shown that cultured cells from a selenium-accumulating Astragalus species synthesize Se-methyl-selenocysteine in contrast to those of a non-accumulating species and do not unspecifically incorporate selenium into proteins. The purification and biochemical characterization of a selenocysteine methyltransferase from cultured Astragalus bisculatus cells is described, which does not accept cysteine as a substrate. We propose that this enzyme plays a crucial role in conferring selenium tolerance.

Adaptation, Physiological↗

Our experience in the treatment of fractures of the astragalus.

The authors evaluate the results of a series of cases treated by surgery for fractures of the astragalus at the IInd Orthopaedic Division of the University of Pisa between 1978 and 1998. Treatment consisted in reduction and stabilization of the fractures by percutaneous route or by anterolateral approach. Prognosis for fractures of the neck worsens as the Hawkins radiographic classification of degrees increases. Based on the Hawkins clinical evaluation form, excellent and good results were obtained in 56% of cases. Radiographic evaluation confirmed the effectiveness of the Hawkins sign for the prediction of necrosis of the body; this necrosis occurred in 37.5% of cases; arthrosis of the astragalus developed in about half of the patients, which was, however, not always associated with stiffness of this joint. A stiff astragalus was the most fastidious complication, after necrosis of the astragalar body.

Adult↗

[The effect of honey-frying on anti-oxidation activity of Astragalus mongholicus Bunge].

The anti-free radical effects of water extracts of crude Astragalus mongholicus (CAWE) and honey-fried Astragalus mongholicus (HAWE) have been studied. Both extracts have similar effects in scavenging 0.2 in Xan/Xo system. The effect of CAWE is stronger than that of HAWE in scavenging reactive oxygen species (ROS) produced by PMA and stimulated by PMN and also in scavenging OH engendered by Fentons reaction. This suggests that frying process may decrease the ROS scavenging activities of Astragalus mongholicus.

Animals↗

[Experimental study of the protective effects of astragalus and salvia miltiorrhiza bunge on glycerol induced acute renal failure in rabbits].

The astragalus and salvia miltiorrhiza bunge alcohol extracts were used in preventive treatment of glycerol induced acute renal failure (ARF) in rabbits. The experimental rabbits were divided: astragalus group (AB), salvia miltiorrhia bunge group (SM), two extracts mixture group (ABSM), and normol saline control group (C). The extracts, mixtures and normol saline were administrated before and after the induced ARF. The counts of Na, K, creatinine in urine and blood and urinary AAP, NAG were determinated during 24-14 days periodically in all 4 groups, and the renal tissues were taken from same periods for pathomorphological studies by microscopy and transmission electromicroscopy. The damage of the glycerol induced ARF was not only in the convolute tubules but also in the glomerulus. The glomerulor filtration rate reduced abruptly, and oligouria or auria developed. The study of renal functions and renal morphogy showed that the AB and ABSM groups were damaged more lesser and promptely repaired than the SM and C groups in the early stage. No glomerular sclerosis was noted in the AB, ABSM groups in later stage, but it occurred sporadically or diffusely in the SM, C groups. Therefore, astragalus is an ideal protective drug of traditional chinese medicine for ARF.

Acute Kidney Injury↗

The effect of Echinacea purpurea, Astragalus membranaceus and Glycyrrhiza glabra on CD69 expression and immune cell activation in humans.

The increasing use of medicinal herbs among the general public has piqued the need for scientific-based research to determine the mechanism of action of herbs administered orally in human subjects. The ability of three herbs, Echinacea purpurea, Astragalus membranaceus and Glycyrrhiza glabra, to activate immune cells in human subjects was assessed in this pilot study. The effect of these herbs when ingested for 7 days was measured both when administered singly, and in combination, using flow cytometry. The primary cell activation marker measured was CD69. The results demonstrate that Echinacea, Astragalus and Glycyrrhiza herbal tinctures stimulated immune cells as quantified by CD69 expression on CD4 and CD8 T cells. This activation took place within 24 h of ingestion, and continued for at least 7 days. In addition, these three herbs had an additive effect on CD69 expression when used in combination.

Adjuvants, Immunologic↗

Effect of astragalus on the endothelin in rats with acute lung injury.

The effect of astragalus on the endothelin in serum and lung of the rats with acute lung injury was studied. The results demonstrated that the concentration of endothelin in the lung of the rats in therapy group was lower than that of the injured rats (64.36 +/- 5.37 ng/L vs 103.32 +/- 4.99 ng/L, P < 0.001), and level of serum endothelin was also lower than that of the injured rats (85.35 ng/L vs 113.35 ng/L, P < 0.01). PaO2, serum SOD, lung coefficient, ratio of lung wet weight/dry weight in two groups were also significantly different (P < 0.01) respectively, and the lung pathological injury in the treatment group were less than that of injury group. So it is concluded that astragalus could inhibit the increase of serum and lung endothelin, thereby playing a protective role in the rats with acute lung injury.

Animals↗

A study on the immune receptors for polysaccharides from the roots of Astragalus membranaceus, a Chinese medicinal herb.

The immunopotentiating effect of the roots of Astragalus membranaceus, a medicinal herb, has been associated with its polysaccharide fractions (Astragalus polysaccharides, APS). We herein demonstrate that APS activates mouse B cells and macrophages, but not T cells, in terms of proliferation or cytokine production. Fluorescence-labeled APS (fl-APS) was able to selectively stain murine B cells, macrophages and a also human tumor cell line, THP-1, as determined in flow cytometric analysis and confocal laser scanning microscopy. The specific binding of APS to B cells and macrophages was competitively inhibited by bacterial lipopolysaccharides. Rabbit-anti-mouse immunoglobulin (Ig) antibody was able to inhibit APS-induced proliferation of, and APS binding to, mouse B cells. Additionally, APS effectively stimulated the proliferation of splenic B cells from C3H/HeJ mice that have a mutated TLR4 molecule incapable of signal transduction. These results indicate that APS activates B cells via membrane Ig in a TLR4-independent manner. Interestingly, macrophages from C3H/HeJ mice were unable to respond to APS stimulation, suggesting a positive involvement of the TLR4 molecule in APS-mediated macrophage activation. Monoclonal Ab against mouse TLR4 partially inhibited APS binding with macrophages, implying direct interaction between APS and TLR4 on cell surface. These results may have important implications for our understanding on the molecular mechanisms of immunopotentiating polysaccharides from medicinal herbs.

Animals↗

Preparation and suppressive effect of astragalus polysaccharide in glomerulonephritis rats.

Astragalus membranaceus (AM) has been widely used for treating kidney diseases in traditional Chinese medicine. In this study, the Astragalus polysaccharide (APS), the main active ingredient was isolated and purified from the Rhizomes of AM, which consisted of d-glucopyranose and had the molecular weight of 3.6x10(4) Da. The effect of APS on glomerulonephritis rats induced by cationic Bovine Serum Albumin(C-BSA) was evaluated by flow cytometry using Nuclear Transcription Factor-kappaB (NF-kappaB) as marker. Interleukin-2 (IL-2), Interleukin-6 (IL-6) and Tumor Necrosis Factor-alpha (TNF-alpha) were determined by the ELISA method. The rats (model group and treatment group) were injected subcutaneously with C-BSA plus incomplete Freund's adjuvant on day 0, C-BSA was injected through the caudal vein from week 2 to week 7 to induce glomerulonephritis. The rats (treatment group) were given APS by intraperitoneal injection from week 2 to week 7. The expression of NF-kappaB and the concentration of IL-2, IL-6 and TNF-alpha were significantly decreased in the treatment group. This study clearly suggests that APS is effective in protecting against glomerulonephritis induced by C-BSA through the inhibition of NF-kappaB mediated-cytokine pathway.

Animals↗

Cycloartane and oleanane saponins from egyptian astragalus spp. as modulators of lymphocyte proliferation.

From the roots of Astragalus kahiricus DC., three known saponins, namely, astraversianin VI, astraversianin X, astragaloside VIII, and a new saponin were isolated and identified by spectral data. The structure of the latter was elucidated by spectral means and assigned as cycloastragenol 3- O-[ beta- D-(2',3'-diacetyl, 4'- trans-2-butenoyl)-xylopyranosyl], 6- O- beta- D-xylopyranoside (kahiricoside I). From the aerial parts of A. hamosus L., the known compounds azukisaponin V and peregrinoside I were isolated. As judged by in vitro tests, the saponins isolated from Astragalus spp. endemic to Egypt were not cytotoxic against a variety of human cancer cells. However, dose-related modulation of lymphocyte proliferation was observed, and structure-activity relationships are described.

Adjuvants, Immunologic↗

Differential effects of isoflavones, from Astragalus membranaceus and Pueraria thomsonii, on the activation of PPARalpha, PPARgamma, and adipocyte differentiation in vitro.

Compounds that target the peroxisome proliferator-activated receptors PPARalpha and PPARgamma are used to correct dyslipidemia and to restore glycemic balance, respectively. Because the majority of diabetic patients suffer from atherogenic lipid abnormalities, in addition to insulin resistance, ligands are required that can activate both PPARalpha and PPARgamma. In this study, we used chimeric PPARalpha/gamma reporter-gene bioassays to screen herbal extracts with purported antidiabetic properties. Extracts of Astragalus membranaceus and Pueraria thomsonii significantly activated PPARalpha and PPARgamma. Bioassay-guided fractionation resulted in the isolation of the isoflavones, formononetin, and calycosin from Astragalus membranaceus, and daidzein from Pueraria thomsonii as the PPAR-activating compounds. We investigated the effects of these and 2 common isoflavones, genistein and biochanin A, using chimeric and full-length PPAR constructs in vitro. Biochanin A and formononectin were potent activators of both PPAR receptors (EC50 = 1-4 micromol/L) with PPARalpha/PPARgamma activity ratios of 1:3 in the chimeric and almost 1:1 in the full-length assay, comparable to those observed for synthetic dual PPAR-activating compounds under pharmaceutical development. There was a subtle hierarchy of PPARalpha/gamma activities, indicating that biochanin A, formononetin, and genistein were more potent than calycosin and daidzein in chimeric as well as full-length receptor assays. At low doses, only biochanin A and formononetin, but not genistein, calycosin, or daidzein, activated PPARgamma-driven reporter-gene activity and induced differentiation of 3T3-L1 preadipocytes. Our data suggest the potential value of isoflavones, especially biochanin A and their parent botanicals, as antidiabetic agents and for use in regulating lipid metabolism.

3T3-L1 Cells↗

Hypoglycemic effect of Astragalus polysaccharide and its effect on PTP1B.

AIM: To examine the effects of Astragalus polysaccharide (APS), a component of an aqueous extract of Astragalus membranaceus roots, on protein tyrosine phosphatase 1B (PTP1B), a negative regulator of insulin-receptor (IR) signal transduction, and its potential role in the amelioration of insulin resistance. METHODS: Ten-week-old fat-fed streptozotocin (STZ)-treated rats, an animal model of type II diabetes mellitus (TIIDM), were treated with APS (400 mg/kg p.o.) for 5 weeks. Insulin sensitivity was identified by the insulin-tolerance test. Further analyses on the possible changes in insulin signaling occurring in skeletal muscle and liver were performed by immunoprecipitation or Western blotting. PTP1B activity was measured by an assay kit. RESULTS: The diabetic rats responded to APS with a significant decrease in body weight, plasma glucose, and improved insulin sensitivity. The activity and expression of PTP1B were elevated in the skeletal muscle and liver of TIIDM rats. Thus the insulin signaling in target tissues was diminished. APS reduced both PTP1B protein level and activity in the muscle, but not in the liver of TIIDM rats. Insulin-induced tyrosine phosphorylation of the IR beta-subunit and insulin receptor substrate-1 (IRS-1) were increased in the muscle, but not in the liver of APS-treated TIIDM rats. There was no change in the activity or expression of PTP1B in APS-treated normal rats, and blood insulin levels did not change in TIIDM rats after treatment with APS. CONCLUSION: APS enables insulin-sensitizing and hypoglycemic activity at least in part by decreasing the elevated expression and activity of PTP1B in the skeletal muscles of TIIDM rats.

Animals↗

Astragalus membranaceus and Polygonum multiflorum protect rat heart mitochondria against lipid peroxidation.

We isolated rat heart mitochondria and induced lipid peroxidation with ADP and FeSO4. Oxygen consumption and MDA formation were measured for quantitating the amount of lipid peroxidation. Using these methods, we screened the water extracts of 14 Chinese medicinal herbs for their effect on lipid peroxidation. It was found that Astragalus membranaceus inhibited 42.1 +/- 3.4% of oxygen consumption and 39.8 +/- 3.2% of MDA production at concentration of 2 mg dried herb/ml mitochondrial suspension. At the same concentration, Polygonum multiflorum inhibited 52.1 +/- 7.3% of oxygen consumption and 50.9 +/- 5.3% of MDA production. Other herbs did not inhibit lipid peroxidation to 50% of control at concentration up to 6 mg dried herb/ml mitochondrial suspension. Purification and identification of the active component(s) in Astragalus membranaceus and Polygonum multiflorum as well as their clinical application await further studies.

Adenosine Diphosphate↗

Protective effects of Astragalus saponin I on early stage of diabetic nephropathy in rats.

Diabetic nephropathy (DN) has become the leading cause of end stage failure, but no renoprotective treatment has been very available for use in DN. Astragalus saponin I (AS I), a component extracted from Astragalus membranaceus BUNGE, was studied in experimental DN induced by administration of streptozotocin in male rats. The early DN rats were treated with 3 doses of AS I for 8 weeks to analyze its efficacy with different parameters. By comparison with vehicle-treated DN rats, the renal hypertrophy, the oxidative stress intensity, and the blood glucose level of DN rats were ameliorated by AS I. Also, the microalbuminuria level, advanced glycated end-products either in serum or in kidney cortex, and the aldose reductase activity were significantly reduced. Furthermore, the expression of transforming growth factor beta1 mRNA in kidney cortex by RT-PCR analysis was markedly declined. Both the relative grade of mesangium hyperplasia by microscopical observation and the thickness of glomerular base membrane by electron microscope measurement were decreased significantly. Therefore, the results suggest that AS I has therapeutic effects on several pharmacological targets in the progress of DN and is a potential drug for prevention of early stage DN.

Albuminuria↗

Volatiles from four Astragalus species: phenological changes and their chemotaxonomical application.

This paper shows the changes of the volatile compounds from four Astragalus species at three phenological stages: leaf development, flowering and fructification, which might be connected with the plant defense. After GC/MS analyses of Astragalus glycyphyllos L., A. hamosus L., A. cicer L. and A. spruneri Boiss., different groups of volatile compounds were found: hydrocarbons, alcohols, aldehydes and ketones, esters, terpenes, chlorinated compounds, etc. Identified volatiles were used for a cluster analysis in order to make chemotaxonomic conclusions for these evolutionary different species.

Alcohols↗

[Determination of 6 isoflavonoids in the hairy root cultures of Astragalus membranaceus by HPLC].

An accurate RP-HPLC method for the determination of 10-hydroxy-3, 9-dimethoxypeterocarpan, (3R) 8,2'-dihydroxy-7,4'-dimethoxyisoflavan, formonenetin (7-hydroxy-4'-methoxyisoflavone), 8, 3'-dihydroxy-7, 4'-dimethoxy-isoflavone, 2'-hydroxy-3', 4'-dimethoxyisoflavan-7-O-glucopyranoside and alycosin (7,3'-dihydroxy-4'-methoxyisoflavone) in the hairy root cultures of Astragalus membranaceus was developed. Among them, 10-hydroxy-3, 9-dimethoxypeterocarpan, (3R) 8,2'-dihydroxy-7,4'-dimethoxyisoflavan and 8,3'-dihydroxy-7,4'-dimethoxyisoflavone were new compounds in Astragalus membranaceus. The analytical column was Nucleosil C18. The mobile phases were methanol-water = 3:2 and 1:1 (v/v). The detection wavelengths were 254 nm and 280 nm. Calibration graphs were rectilinear between 2.5 micrograms and 12.5 micrograms. The recoveries were between 96.47% and 103.33%. The relative standard deviations (RSDs) of measurement precision test were 2.57%-6.52%. The flavonoid contents in the hairy root cultures were between 0.0005% and 0.0065% (dry weight).

Astragalus propinquus↗

[Scavenging effects of Astragalus and Gynostemma pentaphyllum with its product on O2-. and .OH].

The scavenging effects of Astragalus and Gynostemma pentaphyllum with its products on O2-. (produced by the autoxidation of pyrogallol) and .OH (generated from the Fenton reaction) were investigated by electrochemical method. The results showed that they could scavenge the active oxygen free radicals effectively, however, their scavenge ability was different for O2-. and .OH. The inhibitory effect of Ginsenoside Rb1 and Astragaloside IV on O2-. and .OH was the most strongest. Their IC50 values were calculated respectively. The scavenging ability of Astragalus samples on O2-. was in the order of the following: astragaloside IV > crude radix astragali > mongolia radix astragali > hebei radix astragali > radix astragali > radix astragali mixfry with honey; and the scavenging effect on .OH was: astragaloside IV > hebei radix astragali > radix astragali mix-fry with honey > radix astragali > crude radix astragali > mongolia radix astragali. The scavenging activity of gynostemma samples on O2-. was: ginsenoside Rb1 > gynostemma jujube tea > tabellae Jiaogulanosidi > anguo market gynostemma > hebei qingxian gynostemma; while on .OH, the inhibitory ability was: ginsenoside Rb1 > gynostemma jujube tea > anguo market gynostemma > hebei qingxian gynostemma > tabellae Jiaogulanosidi.

Astragalus Plant↗

[Effect of Astragalus injection on platelet function and plasma endothelin in patients with early stage diabetic nephropathy].

OBJECTIVE: To study the therapeutic effect of Astragalus injection (AI) in treating early stage diabetic nephropathy (DN) patients. METHODS: The total of 136 early diabetic nephropathy patients were randomly divided into two groups, 50 cases in the conventional treated group and 86 in the AI treated group, the therapeutic course being 3 weeks. Levels of plasma endothelin-1 (ET-1), 24 hrs urinary albumin excretion rate (uAER), and platelet granule membrane protein (GMP-140), 6-keto-prostaglandin F1 alpha(6-keto-PGF1 alpha), and thromboxane B2(TXB2) before and after treatment were determined by radioimmunoassay (RIA) and enzyme-linked immunosorbent assay (ELISA) respectively. Moreover, the above-mentioned criteria in 26 healthy subjects were also measured for control. RESULTS: The plasma ET-1, GMP-140, TXB2 and uAER levels in DN patients were higher, but 6-keto-PGF1 alpha level was lower than those in healthy subjects. The above elevated criteria in DN patients could be lowered by AI treatment. CONCLUSION: The pathogenesis and development of DN might be closely associated with the changes of plasma ET-1 level and platelet function. Astragalus could improve the above-mentioned changes in patients of early stage DN.

6-Ketoprostaglandin F1 alpha↗