Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Salvia”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Chemical composition and antifungal activity of Salvia macrochlamys and Salvia recognita essential oils.

Essential oils of Salvia macrochlamys and Salvia recognita were obtained by hydrodistillation of dried aerial parts and characterized by gas chromatography and gas chromatography-mass spectrometry. One hundred and twenty identified constituents representing 97.7% in S. macrochlamys and 96.4% in S. recognita were characterized, and 1,8-cineole, borneol, and camphor were identified as major components of the essential oils. The oils were evaluated for their antimalarial, antimicrobial, and antifungal activities. Antifungal activity of the essential oils from both Salvia species was nonselective at inhibiting growth and development of reproductive stroma of the plant pathogens Colletotrichum acutatum, Colletotrichum fragariae, and Colletotrichum gloeosporioides. S. macrochlamys oil had good antimycobacterial activity against Mycobacterium intracellulare; however, the oils showed no antimicrobial activity against human pathogenic bacteria or fungi up to a concentration of 200 microg/mL. S. recognita oil exhibited a weak antimalarial activity against Plasmodium falciparum.

Anti-Infective Agents↗

DNA methylation controls the expression of tanshinone synthesis genes and the tanshinone accumulation in Salvia miltiorrhiza and Salvia bowleyana.

DNA methylation plays pivotal roles in regulating gene expression and the secondary metabolism in plants. Salvia miltiorrhiza and Salvia bowleyana are traditional Chinese medicinal plants with roots enriched with tanshinone components. However, the regulatory mechanism of DNA methylation on tanshinone production remains elusive. Here, we analyzed 30-day-old hairy roots of S. miltiorrhiza and S. bowleyana using targeted high-performance liquid chromatography analysis and found significantly higher tanshinone content in S. miltiorrhiza. Whole-genome bisulfite sequencing revealed elevated DNA methylation levels in S. miltiorrhiza, potentially due to the upregulation of methylation-related genes, including DOMAINS REARRANGED METHYLTRANSFERASE 1 (DRM1), DECREASE IN DNA METHYLATION 1 (DDM1), CHROMOMETHYLASE 2 (CMT1), and CHROMOMETHYLASE 3 (CMT3), alongside the low expression of the demethylase gene REPRESSOR OF SILENCING 1 (ROS1) in S. miltiorrhiza. Additionally, four genes that are involved in tanshinone biosynthesis, including 1-DEOXY-D-XYLULOSE-5-PHOSPHATE REDUCTASE (DXS1), GERANYLGERANYL DIPHOSPHATE SYNTHASE (GGPPS2), 4-HYDROXY-3-METHYLBUT-2-ENYL PYROPHOSPHATE REDUCTASE (HDR2), and COPALYL PYROPHOSPHATE SYNTHASE (CPS3), showed lower methylation levels in the promoters of DXS1, GGPPS2, and CPS3 and a higher DNA methylation level in the gene body of HDR2 in S. miltiorrhiza, which may lead to their high expression and the accumulation of tanshinones. Consistently, overexpression of the SmCMT3 in S. miltiorrhiza significantly reduced the contents of cryptotanshinone, tanshinone I, and tanshinone IIA. Transcriptomic and methylome analyses confirmed that the expression levels of the tanshinone biosynthesis-related genes, including SmMK, SmCPS1, SmDXS2, and SmAACT1, were correlated with their promoter or gene body DNA methylation levels. Our findings reveal that DNA methylation critically regulates tanshinone biosynthesis in S. miltiorrhiza and S. bowleyana, offering valuable insights for breeding.

Abietanes↗

Kinetics of ultrasonic extraction of extractive substances from garden (Salvia officinalis L.) and glutinous (Salvia glutinosa L.) sage.

The kinetics of ultrasonic extraction of extractive substances (ES) from dry herbs of garden (Salvia officinalis L.) and glutinous (Salvia glutinosa L.) sage using petroleum ether, 70% ethanol or water at 40 degrees C, as well as the composition of dry extracts, were studied. The mechanism of ultrasonic extraction is confirmed to occur in two steps: first, dissolution of the ES near the particle surface (washing) and, second, diffusion from the solid particles to the bulk of the liquid extract (slow extraction). The process is described mathematically using three concepts of the unsteady diffusion through plant material, the film theory and the empirical equation of Ponomaryov. The yield of ES increases with increasing solvent polarity, and nearly the maximum concentration of ES in liquid extracts is achieved for about 20 min. The composition of extracts depends on both the extraction conditions applied and the plant material.

Kinetics↗

Dynamics of yield components and essential oil production in a commercial hybrid sage (Salvia officinalis x Salvia fruticosa cv. Newe Ya'ar no. 4).

The fresh yields, the essential oil content, and the quality of a sage hybrid (Salvia officinalis x Salvia fruticosa, cv. Newe Ya'ar No. 4, Lamiaceae) as affected by development and harvest time were determined. Marked increases in plant height and in the number of nodes developed per plant together with a modest increase in leaf size were accompanied by dramatic increases (more than 20-fold) in the fresh yields throughout a 50-day growth period. No major changes in the essential oil content per fresh weight and its composition were detected throughout the growth period. In contrast, the compositions of the essential oils obtained from stems, as compared to leaves and leaf-primordia, had marked differences. Developmentally controlled changes in the extractives from individual leaf pairs from the same plant were also noted. In upper young leaves, the oxygenated diterpene manool and the sesquiterpene hydrocarbons alpha-humulene and beta-caryophyllene constituted up to 20%, 8%, and 4% of the total extractives, respectively. In older leaves, the abundance of these components steadily dropped to roughly half their levels in young leaves. Conversely, the proportions of the monoterpenes, particularly the ketones camphor and alpha-thujone, steadily increased with leaf position. Minor changes in the levels of other extractives were also recorded. These studies imply independent regulatory patterns for di-, sesqui-, and monoterpenes in this sage hybrid, and suggest possible agrotechnical means to obtain preferred chemical compositions of its essential oil.

Gas Chromatography-Mass Spectrometry↗

Experimental pharmacological study of three species from genus Salvia.

Fifteen extracts isolated from three species of genus Salvia were studied: two from Salvia officinalis, seven from Salvia triloba and six from Salvia verbenaca. Their effects on the blood pressure of cats and spontaneously hypertensive rats were examined. The smooth-muscle effects of the extracts were studied on isolated segments of guinea-pig ileum. The effects of some of the extracts on hexobarbital anaesthesia were investigated. Applied intravenously and duodenally, aqueous-alcohol extract of Salvia officinalis causes moderate but prolonged lowering of the blood pressure in cats. Decoction of Salvia triloba also possesses a similar effect (in experiments on spontaneously hypertensive rats). Most of the extracts isolated from Salvia officinalis and Salvia triloba inhibit to various degrees smooth-muscle contractions induced by acetylcholine, histamine, serotonin and BaCl2, whereas extracts of Salvia verbenaca usually potentiate them. Substances isolated from Salvia triloba prolong hexobarbital sleep. Future studies of substances isolated from Salvia officinalis and Salvia triloba are promising with a view to their spasmolytic and hypotensive actions. There exist marked interspecies differences in the pharmacological effects of biologically active substances isolated from genus Salvia.

Anesthesia↗

In vitro antiproliferative effect of six Salvia species on human tumor cell lines.

This study was designed to examine the in vitro antiproliferative activity of the methanol crude extracts of six Salvia species: Salvia dominica L. leaves, Salvia lanigera Desf. aerial parts, Salvia menthaefolia Ten. roots, Salvia palaestina Benth. aerial parts, Salvia sclarea L. roots and Salvia spinosa L. aerial parts. Extracts were screened for their possible antitumoral activity by MTT test on nine human cancer cell lines: glioblastoma (DBTRG-05MG, T98G, U-87MG), colorectal adenocarcinoma (WiDr and HT-29), prostate adenocarcinoma (MDA Pca2b), choriocarcinoma (JEG-3), endometrium adenocarcinoma (HEC-1A) and B lymphoblast (CIR). IC(50) values were determined for only five extracts and ranged from 90 to 400 microg/mL approximately. Salvia menthaefolia extract exhibited marked antiproliferative activity against all tumor cell lines showing lower IC(50) values, while S. spinosa, S. sclarea and S. dominica extracts showed a degree cytotoxic activity dependent on the cell line type. Finally S. palaestina extract revealed a moderate antiproliferative effect only against three cell lines. Salvia lanigera extract displayed toxic activity at all concentrations tested. The results strengthen the evidence that the genus Salvia could be considered a natural resource of potential antitumor agents.

Antineoplastic Agents↗

The in vitro pharmacological activities and a chemical investigation of three South African Salvia species.

Salvia species (sage) are well known in folk medicine throughout the world. In South Africa sage is used against fever and digestive disorders. Three closely related South African species (Salvia stenophylla, Salvia repens and Salvia runcinata) were investigated for their anti-oxidant (DPPH assay); anti-inflammatory (5-lipoxygenase and cyclo-oxygenase assays); antimalarial (tritiated hypoxanthine incorporation assay); antimicrobial (disc diffusion and micro-dilution assays) properties and toxicity profile (tetrazolium-based assay). The solvent extracts exhibited anti-oxidant, antimalarial and antibacterial and poor anti-inflammatory properties. The essential oils exhibited anti-inflammatory and antimalarial properties, but displayed poor anti-oxidant and antimicrobial activity. The extract of Salviastenophylla and the essential oil of Salvia runcinata displayed the highest toxicity profile. Overall, Salvia runcinata displayed the most favorable activity of all three taxa tested with an IC(50) value of 6.09 (anti-oxidant); 29.05 (antimalarial) and 22.82 microg/ml (anti-inflammatory). Analytical procedures (GC-MS and HPLC-UV) were employed to generate chromatographic profiles for the essential oils and solvent extracts respectively. The HPLC analysis revealed the presence of rosmarinic acid in all three taxa while carnosic acid was only present in Salvia repens and Salvia stenophylla. The GC-MS analysis showed that oils were qualitatively and quantitatively variable. beta-Caryophyllene was present in large amounts in all three taxa. Other components present include camphor, alpha-pinene and alpha-bisabolol. The results of the in vitro pharmacological activities provide a scientific basis to validate the use of these Salvia species in traditional medicine in South Africa.

Anti-Infective Agents↗

Staminal evolution in the genus Salvia (Lamiaceae): molecular phylogenetic evidence for multiple origins of the staminal lever.

BACKGROUND AND AIMS: The genus Salvia has traditionally included any member of the tribe Mentheae (Lamiaceae) with only two stamens and with each stamen expressing an elongate connective. The recent demonstration of the non-monophyly of the genus presents interesting implications for staminal evolution in the tribe Mentheae. In the context of a molecular phylogeny, the staminal morphology of the various lineages of Salvia and related genera is characterized and an evolutionary interpretation of staminal variation within the tribe Mentheae is presented. METHODS: Two molecular analyses are presented in order to investigate phylogenetic relationships in the tribe Mentheae and the genus Salvia. The first presents a tribal survey of the Mentheae and the second concentrates on Salvia and related genera. Schematic sketches are presented for the staminal morphology of each major lineage of Salvia and related genera. KEY RESULTS: These analyses suggest an independent origin of the staminal elongate connective on at least three different occasions within the tribe Mentheae, each time with a distinct morphology. Each independent origin of the lever mechanism shows a similar progression of staminal change from slight elongation of the connective tissue separating two fertile thecae to abortion of the posterior thecae and fusion of adjacent posterior thecae. A monophyletic lineage within the Mentheae is characterized consisting of the genera Lepechinia, Melissa, Salvia, Dorystaechas, Meriandra, Zhumeria, Perovskia and Rosmarinus. CONCLUSIONS: Based on these results the following are characterized: (1) the independent origin of the staminal lever mechanism on at least three different occasions in Salvia, (2) that Salvia is clearly polyphyletic, with five other genera intercalated within it, and (3) staminal evolution has proceeded in different ways in each of the three lineages of Salvia but has resulted in remarkably similar staminal morphologies.

Evolution, Molecular↗

Reducing effect of Salvia miltiorrhiza extracts on alcohol intake: influence of vehicle.

A previous study demonstrated that an extract of Salvia miltiorrhiza, a medicinal herb highly valued in Chinese folk medicine for the treatment of different pathologies, including insomnia, was capable of reducing voluntary alcohol intake in selectively bred Sardinian alcohol-preferring (sP) rats. The present study was designed to evaluate the suitability of different emulsifying, suspending agents and solvents as vehicles through which Salvia miltiorrhiza extracts can exert their reducing effect on alcohol intake. A single dose (100 mg/kg) of a standardised extract of Salvia miltiorrhiza was dissolved in either pure Polysorbate 80, arachis oil, PEG 400, or Polyoxyl 35 castor oil, or suspended in 0.5% CMC in water, and administered acutely by gavage to sP rats. A significant and specific reduction in alcohol intake was recorded only in rats treated with the combination of Polysorbate 80 plus the Salvia miltiorrhiza extract. A further experiment demonstrated that the ability of the combination of Polysorbate 80 in water plus the Salvia miltiorrhiza extract to decrease alcohol intake was dependent upon the concentration of Polysorbate 80. The results of the present study demonstrate that Polysorbate 80 is a proper vehicle for unravelling the reducing effect of Salvia miltiorrhiza extracts on alcohol intake. The ability of Polysorbate 80 to form micelles with the active ingredient(s) of the Salvia miltiorrhiza may explain these results. They may also offer relevant information for pharmaceutical preparation of Salvia miltiorrhiza extract to be used in future clinical trials.

Alcohol Drinking↗

Inhibitory effect of the water-soluble extract of Salvia miltiorrhiza on neutrophil-endothelial adhesion.

The effect of the water-soluble extract (WSE) of Salvia miltiorrhiza on neutrophil-endothelial cell adhesion was investigated. Cell adhesion was evaluated by testing neutrophil myeloperoxidase activity: expression of adhesion molecules in human umbilical vein endothelial cells (HUVEC) was measured by ELISA: the neutrophil activation rate induced by N-formyl-methionyl-leucyl-phenylalanine (fMLP) was tested by the method of nitroblue tetrazolium (NBT) reduction. The results showed that the adhesion rate of neutrophils to unstimulated HUVEC was very low. TNFalpha (50 - 800 U/ml) increased the adhesion of neutrophils to TNFalpha-stimulated HUVEC in a concentration- and time-dependent manner. The WSE of Salvia miltiorrhiza (0.01 - 1 mg/ml) dose-dependently inhibited the adhesion of neutrophils. The inhibitory rate of the WSE of Salvia miltiorrhiza at 0.01, 0.1 and 1 mg/ml was 6.2%, 17.0% and 28.0%, respectively. fMLP (10(-9) - 10(-5) M) increased the activation rate of neutrophils concentration-dependently. The WSE of Salvia miltiorrhiza also concentration-dependently inhibited the adhesion of fMLP-activated neutrophils to HUVEC. The inhibitory rate of the WSE of Salvia miltiorrhiza at 0.001, 0.01 and 0.1 mg/ml was 5.3%, 26.3% and 28.9%, respectively. Moreover, TNFalpha upregulated expression of adhesion molecule E-selectin, ICAM-1 and VCAM-1. The WSE of Salvia miltiorrhiza had an inhibitory effect on TNF alpha-induced expression of these molecules. These results indicated that the WSE of Salvia miltiorrhiza inhibited neutrophil-endothelial adhesion. The action mechanism of the WSE of Salvia miltiorrhiza was partly related to suppressing the expression of adhesion molecules.

Animals↗

[Effects of Salvia miltiorrhiza on serum levels of inflammatory cytokines in patients with severe acute pancreatitis].

OBJECTIVE: To study the effects of Salvia miltiorrhiza on serum levels of cytokines including interleukin-6 (IL-6), interleukin-8 (IL-8) and tumor necrosis factor-alpha (TNF-alpha) in patients with severe acute pancreatitis (SAP). METHODS: Thirty-six SAP patients were randomly divided into Salvia miltiorrhiza-treated group and non-Salvia miltiorrhiza-treated group with eighteen patients in each group. Fourteen age-matched healthy volunteers were assigned to control group. Serum levels of IL-6, IL-8, and TNF-alpha were tested within 24 hours of admission and 7 days after admission. RESULTS: Compared with those of the healthy volunteers, serum levels of the three cytokines of the SAP patients were significantly elevated (P<0.05). Serum levels of the three cytokines were significantly decreased in both Salvia miltiorrhiza-treated group and non-Salvia miltiorrhiza-treated group after 7-day treatment (P<0.05). The declining of the serum levels of the three cytokines in Salvia miltiorrhiza-treated group was more obvious than that in non-Salvia miltiorrhiza-treated group. CONCLUSION: Salvia miltiorrhiza can treat SAP patients by reducing the serum levels of IL-6, IL-8, and TNF-alpha.

Adult↗

Comparison of protocatechuic aldchyde in Radix Salvia miltiorrhiza and corresponding pharmacological sera from normal and fibrotic rats by high performance liquid chromatography.

AIM: To observe the effect of protocatechuic aldchyde on the proliferation of hepatic stellate cells (HSCs). METHODS: Liver fibrosis was induced in rats by carbon tetrachloride (CCl4). Then normal and fibrotic drug sera were extracted from rats. The effects of protocatechuic aldchyde, raw Radix Salvia miltiorrhiza and drug sera of Salvia miltiorrhiza on HSC growth were determined by CCK-8. The protocatechuic aldchyde was separated by high performance liquid chromatography (HPLC) in a Alltima C18 column (250 mm mult 4.6 mm, 5 microm) with a mobile phase of acetonitrile-4% glacial acetic acid solution (gradient elution) at the wavelength of 281 nm. RESULTS: Protocatechuic aldchyde, raw Radix Salvia miltiorrhiza and drug sera of Salvia miltiorrhiza were found to have inhibitory effects on proliferation of rat HSCs. Raw Radix Salvia miltiorrhiza had a stronger inhibitory effect than the drug sera. The fibrotic drug sera showed a higher suppressive effect than the normal drug sera (P < 0.05). Protocatechuic aldchyde was found in crude materials of both Radix Salvia miltiorrhiza and its corresponding drug sera. The average recovery (n = 6) was 110.5% for raw Salvia miltiorrhiza Bge, 102% for normal drug sera and 105.2% for fibrotic drug sera. The relative standard devitation (RSD) was 0.37%, 1.96% and 1.51%, respectively (n = 6). The contents of protocatechuic aldchyde were 0.22%, 0.15% and 0.19%, respectively (n = 6) (P < 0.05). The RSD was 0.33%, 0.75% and 1.24% (n = 6) for raw material of Radix Salvia miltiorrhiza, normal drug sera and fibrotic drug sera, respectively. The samples were stable for 6 d. CONCLUSION: Protocatechuic aldchyde can inhibit the growth of HSCs. HPLC is suitable for the determination of virtual bioactive components of Chinese herbal medicines in vitro.

Animals↗

A variety of volatile compounds as markers in unifloral honey from dalmatian sage (Salvia officinalis L.).

Volatile compounds of unifloral Salvia officinalis L. honey has been investigated for the first time. The botanical origin of ten unifloral Salvia honey samples has been ascertained by pollen analysis (the honey samples displayed 23-60% of Salvia pollen). Fifty-four volatile compounds were identified by GC and GC/MS in ten Salvia honey extracts obtained by ultrasound-assisted extraction (USE) with pentane/Et(2)O 1 : 2. The yield of isolated volatiles varied from 25.7 to 30.5 mg kg(-1). Salvia honey could be distinguished on the basis of the high percentage of benzoic acid (6.4-14.8%), and especially phenylacetic acid (5.7-18.4%). Minor, but floral-origin important volatiles were identified such as shikimate pathway derivatives, 'degraded-carotenoid-like' structures (3,5,5-trimethylcyclohex-2-ene derivatives) and 2,6,6-trimethylcyclohex-2-ene derivatives. Compounds from other metabolic pathways such as aliphatic acids and higher linear hydrocarbons, as well as heterocycles (pyrans, furans, and pyrroles), were also present. Most of the identified compounds do not constitute specific Salvia honey markers, due to their presence in honeys of other botanical origins; however, their ratio in different honeys could be useful to distinguish floral origin. Salvia-honey volatile markers were: benzoic acid, phenylacetic acid, p-anisaldehyde, alpha-isophorone, 4-ketoisophorone, dehydrovomifoliol, 2,6,6-trimethyl-4-oxocyclohex-2-ene-1-carbaldehyde, 2,2,6-trimethylcyclohexane-1,4-dione, and coumaran.

Chemistry↗