1.Preliminary phytochemical analysis, antibacterial and anti-biofilm activities of Curcuma zedoaria (Christm.) Roscoe extracts
Malaysian Journal of Microbiology 2022;18(4):344-353
Aims:
Plant extracts are a rich source of natural compounds that have some degree of antimicrobial efficacy and have less side effects compared to antibiotics. The aim of this research was to screen the phytochemical compounds and investigate the potency of Curcuma zedoaria (Christm.) Roscoe rhizome (CZR) extracts to inhibit the growth and biofilm formation of some pathogenic bacteria.
Methodology and results:
Antimicrobial and antibiofilm effects of CZR extracts in different solvents were examined by agar well diffusion and the broth microdilution method after phytochemical screening. The 95% ethanolic extract of CZR exhibited broad-spectrum antibacterial properties against Gram-negative and Gram-positive bacteria with inhibition zones of 7.25 ± 0.58-12.00 ± 0.26 mm and MIC values ranging from 50-200 mg/mL. The extract also showed rapid bacteriostatic and bactericidal activities towards Enterococcus faecalis DMST 4736 and Staphylococcus aureus ATCC 25923 by time-kill assays. Moreover, the 95% ethanolic extracts of CZR also acted as a potent anti-biofilm agent against E. faecalis DMST 4736, S. aureus ATCC 25923, S. epidermidis, Escherichia coli ATCC 25922, Klebsiella pneumoniae, Pseudomonas aeruginosa ATCC 27853 and Proteus mirabilis DMST 8212 (54.62 ± 0.30-71.25 ± 0.20% inhibition of biofilm formation). The bioactive potency of compounds of the crude 95% ethanolic extract (tannins, flavonoids, cardiac glycosides, steroids, terpenoids and alkaloids) play important roles in the observed antibacterial and anti-biofilm activities.
Conclusion, significance and impact of study
Curcuma zedoaria (Christm.) Roscoe extract had broad-spectrum antibacterial activity. The ethanolic CZR extract revealed bacteriostatic and bactericidal capacities, depending on time of exposure and concentration of the extracts. Thus, the present results indicate that C. zedoaria (Christm.) Roscoe rhizomes are a potential natural alternative antibacterial agent for preventing bacterial diseases.
Phytochemicals--analysis
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Curcuma
2.Chemical constituents from ethyl acetate extraction of Prunus mume.
Can-Can WANG ; Wei ZHANG ; De-Ling WU ; Feng-Qing XU ; Jin-Song LIU ; Jin-Wei QIAO
China Journal of Chinese Materia Medica 2020;45(2):347-351
Eight compounds were isolated from the ethyl acetate extraction of Prunus mume by column chromatography. On the basis of physicochemical properties and spectrum analysis, these compounds were identified as isoquercitrin-6″-O-benzoate(1), pinoresinol(2), naringin(3), ethyl-β-D-glucopyranoside(4), astragalin(5), quercetin(6), hypericin(7), and rutin(8). Among them, compound 1 was a new natural product, and compounds 2-5 were isolated from this plant for the first time. In vitro study, compounds 1, 3, 5-8 could significantly increase the cell survival ratio.
Acetates
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Phytochemicals/analysis*
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Plant Extracts/chemistry*
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Prunus/chemistry*
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Solvents
3.Effects of planting density on yield and quality of Chrysanthemum morifolium.
Yang XU ; Yin LIU ; Lan-Ping GUO ; Da-Hui LIU
China Journal of Chinese Materia Medica 2020;45(1):59-64
In this paper, five field density treatments were set up in the field plot experiment, which were 2 500,3 000,5 000,6 660,8 000 plants/mu(1 mu≈667 m~2). The agronomic traits, economic traits, mineral element absorption and the content of effective components of Chrysanthemum morifolium under different densities were studied. The results showed that dense planting could significantly reduce the number of secondary branches of Ch. morifolium and the yield per plant, but significantly increase the population yield of Ch. morifolium. The yield of Ch. morifolium was the highest when the density was 8 000 plants/mu, but the effect of increasing yield would gradually decrease with the increase of planting density. With the increase of planting density, the N, P and Mg elements in flowers firstly increased and then decreased. The N element content in leaves increased gradually, which showed that increasing the planting density within a certain range could increase the absorption of N, P and Mg elements in flowers and leaves of Ch. morifolium. The contents of rutin, chlorogenic acid and 3,5-O-dicaffeoyl quinic acid in Ch. morifolium showed a trend of first increasing and then decreasing with the increase of planting density. When the planting density was 5 500,5 000,3 750 plants/mu, the content of chlorogenic acid, rutin and 3,5-O-dicaffeyl quinic acid had the maximum value. The content of luteolin in Ch. morifolium decreased gradually with the increase of planting density. When the planting density was 7 143 plants/mu, the content of luteolin was the minimum. Considering factors such as yield and active ingredient content, the cultivation density of 5 000 plants/mu(row spacing 40 cm×30 cm) can be selected for standard planting of Ch. morifolium.
Chrysanthemum/growth & development*
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Flowers/chemistry*
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Phytochemicals/analysis*
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Plant Leaves/chemistry*
4.Effects of different application amounts of potassium fulvic acid on yield and quality of Fritillaria thunbergii.
Xiao-Ping LANG ; Jian SUN ; Xiao-Xia SHEN ; Zhi-An WANG
China Journal of Chinese Materia Medica 2020;45(1):72-77
Fritillaria thunbergii is a commonly used traditional Chinese medicine, which has the effects of clearing heat and resolving stagnation, eliminating phlegm and relieving cough. At present, it is mostly produced by cultivation, and the cultivation process requires application of base fertilizer, winter fertilizer, seedling fertilizer and late top dressing. Now farmyard manure or organic fertilizer can be used to replace the base fertilizer and winter fertilizer, but the research on the replacement of organic fertilizer has not been completed for the late top dressing. Potassium fulvate is a kind of fulvate fertilizer, which can not only regulate the growth of crops but also supplement potassium necessary for the growth of crops. In this paper, using F. thunbergii as a model plant with mature cultivation techniques, the effect of potassium fulvate on the quality and yield of rhizome traditional Chinese medicine F. thunbergii was systematically studied for the first time. HPLC-ELSD was used to determine the contents of peimine A and peimine B, hot dip method was used to determine the content of alcohol extract, and the SPAD-502 Plus chlorophyll meter was used to detect SPAD value. The results showed that applying 1.5 to 2.25 kg·hm~(-2) of potassium fulvic acid per hectare could effectively improve the yield of F. thunbergii and there was significantly difference between potassium phosphate monobasic and potassium fulvic acid in terms of quality. After the application of range 1.5 to 2.25 kg·hm~(-2) of potassium fulvic acid per hectare, the content of alcohol soluble extract of F. thunbergii was ranged 21.61% to 22.27%, the total amount of peimine A and peimine B were ranged 0.09% to 0.10%. Applying 1.5 to 2.25 kg·hm~(-2) of potassium fulvic acid per hectare could replace the conventional pure chemical fertilizer potassium phosphate monobasic, which could be used as top dressing fertilizer for the cultivation of F. thunbergii.
Benzopyrans/administration & dosage*
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Fertilizers
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Fritillaria/chemistry*
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Phytochemicals/analysis*
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Potassium/administration & dosage*
5.Comparison of 12 constituents of Astragali Radix directionally processed with organic acid by UPLC-MS.
Peng-Peng LIU ; Guo-Shun SHAN ; Fan ZHANG ; Ji SHI ; Tian-Zhu JIA
China Journal of Chinese Materia Medica 2020;45(1):113-118
To establish an UPLC-MS method for the simultaneous content determination of 4 saponins and 8 flavonoids, in order to analyze the effect of Astragali Radix directionally processed with organic acid on the content of glycosides and aglycones. The separation was carried out on ACQUITY UPLC HSS T_3(2.1 mm×100 mm, 1.8 μm), the mobile phase was eluted with the mixture of 0.1 mol·L~(-1) formic acid water solution and 0.1 mol·L~(-1) formic acid acetonitril in a gradient mode. The detection wavelength was 260 nm, the flow rate was 0.5 mL·min~(-1), the column temperature was 30 ℃, and the injection volume was 2 μL. Mass spectrometry analysis was performed with an electrospray ionization(ESI) source in a positive ion mode. The 12 constituents showed good linear relations within their own ranges(R~2≥0.999 2),with good average recoveries. The results showed no significant change in saponins but both qualitative and quantitative changes in flavonoids after directional processing of Astragali Radix with organic acid. The established method can provide methodological reference for analyzing the effect of Astragali Radix directionally processed with organic acid on glycosides and aglycones.
Astragalus propinquus
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Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal/chemistry*
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Phytochemicals/analysis*
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Spectrometry, Mass, Electrospray Ionization
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Tandem Mass Spectrometry
6.Study on chemical constituents of Cinnamomi Ramulus.
Dan WANG ; Xi-Min WU ; Dong-Dong ZHANG ; Bo-Rong ZHU ; Shun-Chun WANG ; Chen-Xing WANG ; Qi JIA ; Yi-Ming LI
China Journal of Chinese Materia Medica 2020;45(1):124-132
The chemical constituents of Cinnamomi Ramulus were investigated in this study. Twenty-two compounds were isolated by silica gel, Sephadex LH-20 gel column chromatographies and preparative HPLC and their structures were identified by various spectral analyses as dihydrorosavin(1), rosavin(2), 1-phenyl-propane-1,2,3-triol(3), patchoulol(4), graphostromane B(5),(+)-lyoniresinol-3 a-O-β-D-glucopyranoside(6),(-)-lyoniresinol-3 a-O-β-D-glucopyranoside(7), cinnacaside(8), subaveniumin A(9), 3-phenyl-2-propenyl-6-O-L-arabinopyranosyl-β-glucopyranoside(10), 2-phenylethyl-β-vicianoside(11), cinnacasol(12), [(2R,3S,4S,5R,6R)-6-(benzyloxy)-3,4,5-trihydroxytetrahydro-2H-pyran-2-yl] methyl hydrogen sulfate(13), coniferyl aldehyde(14),(2R,3R)-5,7-dimethoxy-3',4'-methylenedioxyflavan-3-ol(15), cinnacassin L(16), E-cinnamic alcohol(17),(E)-3-(2-methoxyphenyl)-2-propen-1-ol(18), 2-hydroxyphenylpropanol(19), cinnamomulactone(20),(+)-syringaresinol(21) and cinnamomumolide(22), respectively. Among them, 1 is a new compound and 3-7, 9-11, 13, 15, 18 and 19 were isolated from the plant for the first time.
Chromatography, High Pressure Liquid
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Cinnamomum/chemistry*
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Drugs, Chinese Herbal
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Phytochemicals/analysis*
7.Simultaneous determination of four anthraquinones in Polygonum multiflorum by QAMS.
Wen-Wen HOU ; Yan-Hong SHI ; Yan SONG ; Yu-Lian ZHANG ; Guang-Hang QU ; Zheng-Tao WANG ; Li YANG
China Journal of Chinese Materia Medica 2020;45(1):133-141
A simple, specific and selective quantitative analysis of multi-components by single marker(QAMS) method for simultaneous determination of anthraquinones and anthraquinone glycosides in Polygonum multiflorum was developed. Four main anthraquinones and its glycosides, emodin, emodin-8-O-β-D-glucoside, physcion and physcion-8-O-β-D-glucoside were selected as analytes to evaluate the quality of P. multiflorum. Emodin was used as the internal standard, and the relative correction factors(RCFs) between emodin and the other three anthraquinones were calculated. Comparison of the contents of the four components in 30 batches of P. multiflorum from different regions and 12 batches decoction pieces from different manufacturers by QAMS and external standard method(ESM) showed that there was no significant difference between QAMS and ESM for quantification of the four main components by using relative error results, and the QAMS method was accurate and reliable, and had a good repeatability. In addition, compared with the results calculated by the difference method between total anthraquinone and free anthraquinone in the content determination of P. multiflorum in Chinese Pharmacopoeia, the results of direct determination combined anthraquinone by QAMS were very close to that by measured the external standard method. Therefore, simultaneous quantification of four main anthraquinones by using QAMS is suitable to evaluate the quality of P. multiflorum. Then the optimized assay method of the combined anthraquinone contents showed simple and feasible, which could be replaced and improved the quantification method of the combined anthraquinone in the current Chinese Pharmacopeia.
Anthraquinones/analysis*
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Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal/analysis*
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Fallopia multiflora/chemistry*
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Glucosides
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Phytochemicals/analysis*
8.Study on non-flavonoids chemical constituents from Spatholobi Caulis.
Xiao-Yan LIU ; Wei XU ; Xiu-Wei YANG ; Peng ZHANG ; Wei ZHAO ; Yun GONG ; Ni-Fu LIU
China Journal of Chinese Materia Medica 2020;45(5):1120-1127
To study the non-flavonoids chemical constituents in water extract of Spatholobi Caulis. Some purification and analysis techniques like silica gel, D101-macroporous adsorptive resins, and Sephadex LH-20 column chromatographies as well as reversed phase high-performance liquid chromatography were used to isolate and analyze the phenolic acid esters and other type compounds from Spatholobi Caulis integrally. The structures of these compounds were identified by spectroscopic techniques such as nuclear magnetic resonance and high resolution mass spectrometries. Twenty-seven compounds, including phenolic acid, coumarin, lignan, terpene, alkaloid, and steroid compounds, were isolated from ethyl acetate and n-butanol fractions in water extract of Spatholobi Caulis, and they were identified as β-sitosterol(1), feruli acid methyl ester(2), syringaresinol(3),(+)-medioresinol(4),(+)-epipinoresinol(5), p-acetylphenol(6), bolusanthin Ⅳ(7), evofolin B(8), salicylic acid(9), trans-p-hydroxy-cinnamic acid(10), abscisic acid(11), m-hydroxyphenol(12), C-veratroylglycol(13), p-hydroquinone(14), 8,9-dihydroxymegastigma-4,6-dien-3-one(15), p-hydroxybenzoic acid(16), 6,9-dihydroxymegastigma-4,7-dien-3-one(17), protocatechuic acid(18), protocatechuic acid methyl ester(19), 5,7-dihydroxycoumarin(20), isolariciresinol(21), nicotinic acid(22), daucosterol(23),(+)-pinoresinol(24), stigmasterol(25), allantoin(26) and koaburaside(27), respectively. Furthermore, compounds 2-15, 19-22, 24 and 26 were isolated from genus Spatholobus for the first time.
Drugs, Chinese Herbal/analysis*
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Esters/analysis*
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Fabaceae/chemistry*
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Hydroxybenzoates/analysis*
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Mass Spectrometry
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Phytochemicals/analysis*
9.Correlation between growth characteristics and quality of rhizomes of Notopterygium incisum under wild tending.
Ping YANG ; Hong-Lan WANG ; Hui SUN ; Wen-Tao ZHU ; Tao QIU ; Jiu-Zhen DU ; Hong-Bing SUN ; Yi ZHOU ; Shun-Yuan JIANG
China Journal of Chinese Materia Medica 2020;45(4):739-745
Study the growth and development process of rhizomes(bamboo-like part) of Notopterygium incisum and the changes of carbohydrate, endogenous hormones and secondary metabolites, and provide theoretical guidance for the formation of high-quality N. incisum medicinal commodities under artificial cultivation. The One-year-old seedlings were transplanted to the original habitat,and the growth and physiological characteristics of N. incisum were dynamically monitored. The results showed that: ① Seedlings transplanted to the original habitat in spring could form rhizomes(bamboo-like part) in the same year. ② After 60 days of transplantation, the root length and root diameter of underground part of N. incisum had increased rapidly, and carbohydrate content in roots and rhizomes had accumulated rapidly. After 120 days of transplantation, the roots and rhizomes of underground part had grown slowly, and starch content in roots and rhizomes increased continuously, while sucrose and total soluble sugar content decreased gradually. ③ The content of abscisic acid(ABA) in rhizomes decreased firstly and then increased, while the indole acetic acid(IAA) content stabilized firstly and then increased rapidly, and the contents of gibberellin(GA_3) and zeatin riboside(ZR) continued to increase. ④ The content of notopterol in rhizomes was higher than that in roots, while the content of isoimperatorin was lower than that in roots, but the total content of the both in rhizomes was higher than that in roots. Therefore, N. incisum can form rhizomes with high content of secondary metabolites under wild tending, and the growth and development of rhizomes are closely related to changes in carbohydrates and are regulated by related endogenous hormones.
Apiaceae/growth & development*
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Ecosystem
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Phytochemicals/analysis*
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Plant Roots/growth & development*
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Plants, Medicinal/growth & development*
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Rhizome/growth & development*
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Secondary Metabolism
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Seedlings/growth & development*
10.Chemome profiling of Citri Reticulatae Pericarpium using UHPLC-IT-TOF-MS.
Ke ZHANG ; Xia XU ; Ting LI ; Yue-Lin SONG ; Jun LI ; Yun-Fang ZHAO ; Qing-Qing SONG ; Peng-Fei TU
China Journal of Chinese Materia Medica 2020;45(4):899-909
Citri Reticulatae Pericarpium(CRP, Chinese name: Chenpi) is one of the most famous edible traditional Chinese medicines(TCMs). CRP was first recorded as top grade TCM in Shennong Bencao Jing attributing to the benefits such as regulating Qi, tonifying spleen, eliminating dampness and eliminating phlegm, and has been widely utilized for the treatments of abdominal fullness and distention, vomiting and diarrhea, as well as phlegm cough. CRP is also widely popular as spice in food industry. Because of the wide cultivation, a number of brands that exhibit extensive price range can be found in the market, resulting in a great challenge for grading. Herein, an attempt was made to in-depth chemome profiling for the sake of providing meaningful information of the universal quality control of CRP. A new core-shell column packed with adamantylethyl substituted silica gel particles was deployed for chromatographic separations and IT-TOF-MS that is advantageous at providing abundant high resolution molecular and fragment ions was employed for qualitative detection. A total of 62 components were observed and 61 ones were structurally annotated according to proposing mass fragmentation patterns, matching with reference compounds and relevant databases, and the chemical families included flavone, limonin, etc. In particular, ten compounds bearing 3-hydroxy-3-methylglutarate substitute were detected from CRP for the first time. Above all, the chemical profile of CRP was characterized and the findings are meaningful for the in-depth quality assessment and efficacy material clarification of CRP.
Chromatography, High Pressure Liquid
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Citrus/chemistry*
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Drugs, Chinese Herbal/chemistry*
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Mass Spectrometry
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Medicine, Chinese Traditional
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Phytochemicals/analysis*


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