ArticleAMB Express2025
Phytochemical analysis and antimicrobial activity of Silybum marianum L. via multi-solvent extraction.
Article in AMB Express, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 14 papers.
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14 citing papers in PubMed.
- Green extraction routes for conversion of Nerium oleander L. biomass into bioactive agents: phytochemical insights and antimicrobial promise.BMC complementary medicine and therapies · 2026Article
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- Phytochemical profile and in vitro antimicrobial, antiviral, and anticancer activities of Echium angustifolium ethanolic extract.Scientific reports · 2026Article
- From Ethnobotany to Pharmacology: A Comprehensive Review of Selected Asteraceae Species Highlighting Phytochemical Composition, Traditional Uses, and Diverse Pharmacological Activities.Pharmaceuticals (Basel, Switzerland) · 2026Review
- Evaluation of the Antioxidant, Anti-Inflammatory, and Antimicrobial Activity of aInternational journal of molecular sciences · 2026Article
- Nutritional assessment, multi-platform phytochemical profiling, and biological activities of Centaurea calcitrapa L. based on GC-MS and HPLC analysis.Scientific reports · 2026Article
- Investigation of antioxidant, antimicrobial, cytotoxic, wound-healing properties, bio element levels and phytochemical profiles of aqueous extracts of Verbascum splendidum leaf and aboveground parts.BMC complementary medicine and therapies · 2026Article
- Phytochemical Profile and Bioactive Potential ofCurrent issues in molecular biology · 2026Article
- Polyurethane nanofibrous scaffolds for wound repair: from electrospinning fabrication to biological performance evaluation.BMC biotechnology · 2026Article
- Comparative Evaluation of Green Extraction Technologies for Phenolic Compounds from Algerian Blackthorn (Foods (Basel, Switzerland) · 2026Article
- Chemoinformatic Approaches to Identify Bioactive Inhibitors Against Type I Dehydroquinase (DHQ1) Enzyme of TyphoidalBioinformatics and biology insights · 2026Article
- Control of Dental Plaque and Gingival Inflammation by Natural Ingredients-Based Mouthwash.Dentistry journal · 2025Article
- Impact of phytochemical constituents of milk thistle extract on body score and hematological and biochemical parameters in dromedary camels (Open veterinary journal · 2025Article
- Antidiabetic Potential ofPlants (Basel, Switzerland) · 2025Review
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2 authors.
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Abstract
Milk thistle (Silybum marianum L.) is an essential medicinal plant belonging to the family Asteraceae. The active ingredient of milk thistle is silymarin, a key component used to treat numerous physical and biological ailments. This study aimed to compare the nutritional composition, total phenolic, flavonoid, and tannin contents, and the antimicrobial activities of S. marianum stems, leaves, and flowers extracted using five different solvents. Phytochemical assays were used to evaluate the total phenolic, flavonoid, and tannin contents in petroleum ether, ethyl acetate, acetone, methanol, and water extracts from different plant parts. The proximate composition showed that the leaves had a higher percentage of moisture (11.53%). In contrast, the flowers showed increased lipid content, carbohydrate, and protein concentration (5.17, 69.86, and 10.03%, respectively), and stems showed elevated ash content (28.67%) compared to leaves and flowers. In S. marianum, the highest yield was obtained from the flowers, while the leaves and stems produced progressively lower amounts, respectively. Among the solvents tested, extraction with water made the largest yield, followed in decreasing order by methanol, acetone, ethyl acetate, and petroleum ether. The findings of the study revealed that alkaloids, tannins, flavonoids, glycosides, steroids, quinones, phenols, anthraquinones, cardiac glycosides, and terpenoids were found by phytochemical analysis of S. marianum in different parts. At the same time, saponins and anthocyanins were completely absent in all parts. On the other hand, coumarins are present in leaves and flowers and are completely lacking in stems. The highest levels of phenol content, tannins, and flavonoids were found in the methanol extract of the flowers (183.12 ± 11.02 mg gallic acid equivalent/g (mg GAE/g), 187.43 ± 15.91 mg quercetin equivalents/g (mg QE/g), and 94.40 ± 16.04 mg TAE/g, respectively). In contrast, the water extract of stems had the lowest amount (5.45 ± 1.32 mg GAE/g, 9.60 ± 1.5 mg QE/g, and 3.27 ± 1.53 mg TAE/g, respectively). Antimicrobial tests revealed the extract's ability to inhibit several Gram-positive bacteria (S. aureus ATCC 6538 and B.subtilis ATCC 6633), Gram-negative bacteria (P. aeruginosa ATCC 9027, S. typhimurium ATCC 14028, E. coli ATCC 11229), and eukaryotic strains such as unicellular fungi (C.albicans ATCC 10231). These results confirm the potential of milk thistle extract as a naturally occurring antimicrobial agent.
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