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Integrated phytochemical and bioactivity profiling of Xanthium strumarium fruits from Korea and China: Implications for origin-specific quality specification.

BACKGROUND: Geographic origin influences the phytochemical composition and biological activities of medicinal plant resources. Xanthium strumarium L. (XS) fruit is widely used in East Asian traditional medicine. However, current pharmacopeial standards primarily recognize Chinese-derived material, despite the availability and traditional use of XS in Korea. To address this gap and support origin-informed quality specification, we compared fruits from Korea (XS-K) and China (XS-C) using chloroplast genome sequencing, targeted phytochemical profiling (high-performance liquid chromatography (HPLC) for selected phenolics and gas chromatography-flame ionization detection (GC-FID) for fatty acids and phytosterols, and multivariate chemometric analysis. RESULTS: Chloroplast genome analysis revealed high overall similarity but localized divergence around the rpoC2 locus and a greater mutation burden in XS-C, supporting origin-associated genomic differentiation. Phytochemical profiling revealed distinct origin-dependent metabolic signatures. XS-K showed higher levels of phytosterols, chlorogenic acid, 4,5-dicaffeoylquinic acid (4,5-DCQ), and xanthatin was detected only in XS-K, whereas XS-C exhibited greater abundance of total fatty acids, particularly oleic acid. Unsupervised clustering and log2 fold-change ranking confirmed clear compositional separation, and variable importance in projection (VIP) analysis identified chlorogenic acid, β-sitosterol, oleic acid, 4,5-DCQ, and xanthatin as major discriminators between origins. Bioactivity assays demonstrated that XS-K exerted stronger antioxidant effects in ABTS, DPPH and FRAP assays, stronger skin-related enzyme inhibition, and greater antibacterial activity against Staphylococcus aureus, consistent with its enriched phenolic and sterol profile. CONCLUSION: Together, chloroplast sequence variation, targeted metabolite quantification, and screening bioassays consistently distinguished XS-K from XS-C. These findings support the use of candidate markers for the origin-based authentication and quality control of XS fruit-derived ingredients. © 2026 The Author(s). Journal of the Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Fruit

Mechanistic Perspectives From Genomics and Pangenomics of Medicinal and Aromatic Plants: Linking Genome Architecture to Phytochemical Diversity.

Medicinal and aromatic plants (MAPs) produce a remarkable diversity of specialized metabolites with significant pharmaceutical, nutraceutical, and industrial value. Although advances in long-read sequencing, chromosome-scale genome assembly, and pangenomics have greatly expanded genomic resources, the mechanistic links between genome architecture and phytochemical diversity remain incompletely understood. The present review synthesizes current evidence describing how structural genomic variation may contribute to phytochemical diversity, while acknowledging that many proposed genome-to-metabolite relationships require further experimental validation. Examples illustrate how genome architecture is associated with specialized-metabolite biosynthesis through multiple regulatory processes. However, the strength of supporting evidence varies considerably among MAP species. Moreover, relatively few genome-to-metabolite relationships have been confirmed through direct functional validation. We further discuss how pangenomics, multiomics integration, genome editing, synthetic biology, and artificial intelligence support the discovery, validation, and engineering of specialized metabolic pathways. Casual conclusions are evaluated according to the strength of available evidence, highlighting where causal relationships have been experimentally established and where conclusions remain primarily association-based. Overall, this review provides an integrated conceptual and evidence-based perspective summarizing proposed relationships between genome architecture and phytochemical diversity and outlines future priorities for functional genomics, precision breeding, metabolic engineering, and sustainable utilization of MAPs.

artificial intelligence

Phytochemical mimicry of reproductive hormones and modulation of herbivore fertility by phytoestrogens.

Plants have physical and chemical mechanisms for defense from attack by animals. Phytochemical defenses that protect plants from attack by insects include antifeedants, insecticides, and insect growth regulators. Phytochemical options exist by which plants can modulate the fertility of the other major group of plant predators, vertebrate herbivores, and thereby reduce cumulative attacks by those herbivores. The success of such a defense depends upon phytochemical mimicry of vertebrate reproductive hormones. Phytoestrogens do mimic reproductive hormones and are proposed to be defensive substances produced by plants to modulate the fertility of herbivores.

Animals

Phytochemical Characterization and Effects of Randia monantha Benth. Leaf and Fruit Extracts on the Viability of Human Cancer Cell Lines.

Randia monantha, commonly known as crucetillo, is a medicinal plant traditionally used in Mexico to treat conditions such as diabetes, venomous animal bites, and cancer; however, its effects on cancer cell viability remain underexplored. In this study, hexane, ethyl acetate, and methanolic extracts from the leaves and fruits of Randia monantha were phytochemically characterized and evaluated for their effects on cell viability in HeLa cervical cancer and DU-145 prostate cancer cell lines using the MTT assay. Phytochemical analyses revealed differences in metabolite composition across solvents of varying polarity and plant tissues. Methanolic leaf extracts contained higher levels of terpenoids and polyphenols and produced the greatest reduction in HeLa cell viability, with an estimated IC50 of 4.87 µg/mL after 48 h of treatment. In contrast, DU-145 cells exhibited a different response pattern depending on the extract evaluated. Correlation analysis suggested that flavonoids were associated with reduced HeLa cell viability. Overall, leaf extracts produced greater reductions in cancer cell viability than fruit extracts, highlighting leaves as a promising but comparatively underexplored source of bioactive compounds in Randia monantha.

Humans

Metabolic Dysfunction-Associated Carcinogenesis: Molecular Mechanisms and the Preventive Roles of Phytochemicals Part I: Pathophysiological Mechanisms Linking Metabolic Dysfunction to Cancer.

The global cancer burden is projected to escalate to 27 million new cases annually by 2040, a trajectory that parallels the rising prevalence of obesity, metabolic dysfunction, and related metabolic disorders. While genetic and environmental factors are well-recognized, the systemic metabolic environment is increasingly identified as a critical determinant of tumorigenesis. This review (Part I) systematically delineates the molecular and cellular framework through which metabolic dysfunction orchestrates a tumor-permissive landscape. We evaluate six primary pathophysiological axes: (1) chronic low-grade inflammation that fuels a protumorigenic milieu, (2) oxidative stress and redox imbalance leading to genomic instability, (3) insulin resistance and insulin-like growth factor axis activation which stimulate mitogenic pathways, (4) aberrant lipid metabolism and lipotoxicity-driven cell transformation, (5) gut microbiota dysbiosis and its modulation of the tumor microenvironment, and (6) metabolism-associated epigenetic remodeling that sustains oncogenic gene expression. Unlike previous literature that has focused on isolated pathways, this synthesis emphasizes the synergistic crosstalk among these mechanisms, illustrating how they collectively reinforce cancer initiation and progression. Furthermore, this mechanistic framework provides a biological rationale for targeting metabolism-associated carcinogenesis through dietary phytochemicals and bioactive compounds, which will be comprehensively discussed in Part II. By providing an integrated overview of the metabolic dysfunction-cancer axis, this work establishes a mechanistic foundation for the preventive potential of phytochemicals. These insights are crucial for developing multitarget dietary strategies against metabolism-associated malignancies.

carcinogenesis

Phytochemicals potentiate interleukin-2 generated lymphokine-activated killer cell cytotoxicity against murine renal cell carcinoma.

The success of adoptive immunotherapy using recombinant interleukin-2 (rIL-2) and lymphokine-activated killer (LAK) cells in several cancers has been hampered by severe toxicity associated with high doses of rIL-2. Methods that reduce the dosage of rIL-2 without loss of clinical efficacy are needed. In this study we determined the in vitro effect of a phytochemical immune modulator, Astragalus membranaceus (AM), and two fractions isolated by high-performance liquid chromatography on the cytotoxicity of rIL-2-generated LAK cells against a murine renal cell carcinoma. Our results indicated a 10-fold potentiation of rIL-2-generated LAK cell cytotoxicity manifested by tumor cell lysis of 88% in the group with 100 U/ml of rIL-2 plus AM versus 86% in the group with 1,000 U/ml of rIL-2 alone. Potentiation was obtained with the purified fractions as well. A significantly reduced number of LAK cells was required to achieve the tumor cytotoxicity after LAK cell generation with rIL-2 plus the phytochemicals as compared with rIL-2 alone. Our data indicate that AM is an effective immune modulator, capable of potentiating in vitro the antitumor activity of rIL-2-generated LAK cells.

Adjuvants, Immunologic

Proteomic regulation of anti-proliferative and anti-migratory activity by potent phytochemicals from Pistacia integerrima J.L. Steward Ex Brandis via PI3K, AKT1, and KRAS for Lung Cancer.

BACKGROUND: Non-small cell lung cancer (NSCLC) is the leading cause of mortality worldwide and remains a major therapeutic challenge due to high metastasis, drug resistance and limited treatments. Pistacia integerrima J.L. Steward Ex Brandis (PI) consists of flavonoids, steroids, terpenoids and phenolic compounds reported for pharmacological activities. The efficacy of potent bioactives from P. integerrima may be ascertained employing cytotoxic, antiproliferative, anti-migratory, and anti-metastatic evaluations in A549 NSCLC cells with proteomic profiling, molecular docking, and dynamics simulation study. METHODS AND RESULTS: PI EtAc produced significant dose-dependent cytotoxicity in A549 cells (100&#xa0;&#xb5;g/mL, p&#x2009;<&#x2009;0.0001 in the MTT assay. There was a pronounced decrease in colony formation after treatment with EtAc, with 18.41% (p&#x2009;<&#x2009;0.002), and markedly. Furthermore. PI EtAC markedly inhibited cell migration emphasized by wound healing and Transwell migration (p&#x2009;<&#x2009;0.01) assays, indicating reduced metastatic migratory potential. Proteomic analysis demonstrated significant downregulation of Endoglin (CD105), KLK5 and MMP-2, indicating suppression of angiogenic and metastatic signalling pathways in the Human XL Oncology protein array. The interaction of major PI phytochemicals with key NSCLC-associated targets was recorded in Molecular docking, revealing favourable binding affinities of kaempferol, &#x3b2;- sitosterol, luteolin, and quercetin towards several oncogenic targets, including AKT1(-&#x2009;7.6&#xa0;kcal/mol), PI3K(-&#x2009;9.4&#xa0;kcal/mol), KRAS (-&#x2009;8.5&#xa0;kcal/mol) and MMP9 (-&#x2009;8.1&#xa0;kcal/mol). Molecular dynamics simulation confirmed the structural stability of the kaempferol -AKT1 complex throughout the 100 ns simulation. CONCLUSION: Pistacia integerrima bioactives exhibited significant anti-proliferative, anti-migratory, and anti-metastatic activities in vitro, which may provide scientific rationale identifying newer promising candidates for NSCLC.

Humans

Phytochemical and nutritional studies on pigeon pea and kidney bean cultivated in Egypt.

1. The preliminary phytochemical screening of the two seeds established the presence of carbohydrates and/or glycosides, flavnoids, unsaturated sterols and/or triterpenes, saponins, trypsin inhibitors and haemagglutinins. In addition, it established the absence of cardenolides, tannins, alkaloids and oxidase enzyme. 2. Certain pharmacopoeial constants, including moisture, ash, acid-insoluble ash, water-soluble ash and crude fibre were determined. 3. The two seeds were subjected to successive extractions with different organic solvents such as petroleum ether (50-70 degrees C), diethyl ether, chloroform and ethyl alcohol. The successive yields of extractives were determined. Examination of the crude extracts showed that petroleum ether extract contained sterols and/or triterpenes, while ether, chloroform, and ethyl alcohol extracts contained reducing substances. 4. General analysis of the two seeds for proteins, fats, carbohydrates, fibre and ash contents were carried out and the results were given in g/100 g dry seeds. Pigeon pea contained 25.2 g protein, 170 mg calcium and 8.9 mg iron. The protein content of kidney bean was 23 g, while calcium and iron contents were 134 mg and 8.02 mg respectively. 5. Extractions of the proteins using different solvents such as cold water, hot water, saline buffer pH 7 and sodium hydroxide was the best extractant. 6. The amino-acid content of the two seeds, whether raw or cooked, showed that they were deficient in methionine, cystine and tryptophan. Other essential amino acids were present in amounts higher than that given by the FAO provisional pattern. 7. Cooking the seeds by the popular methods used in the country resulted in an increase in the amounts of the amino acids, threonine, leucine and isoleucine, while the other amino acids present remained unchanged or decreased. It was also observed that cooking the seeds destroyed the trypsin inhibitors and haemagglutinins found in the two seeds.

Amino Acids

Simple high-performance liquid chromatographic method for the determination of a new phytochemical drug, fellavine, and its metabolites in human and rat plasma and urine.

The use of a small precolumn instead of an injection loop for the determination of a new phytochemical drug, fellavine, and its metabolites is described. The method combines the direct injection of plasma and urine into the reversed-phase precolumn with separation on a Spheri-5 RP-18 analytical column. Different sorbents in the precolumn were compared. A recovery of fellavine and its metabolites from biological fluids except rat plasma of almost 100% was achieved on Chrompack RP (30-40 microns) and LiChrosorb RP-18 (7 microns). For rat plasma only the last sorbent gave 80% fellavine recovery. The influence of the protein binding on the fellavine recovery was examined. The limit of detection was equal to 0.05 micrograms/ml fellavine for plasma and 0.02 micrograms/ml for urine. To enhance the limit of detection longer precolumns were perferred.

Animals

Preliminary phytochemical, pharmacological and antibacterial studies of the alkaloidal extracts of the leaves of Synclisia scabrida Miers.

Preliminary phytochemical investigation of the leaves of Synclisia scabrida indicated the presence of two alkaloids in the water extracts and five alkaloids in the ethanol extracts. The alkaloidal fraction obtained from the cold ethanol extract furnished on column-chromatography, a homogeneous amorphous solid which has been designated as alkaloid C. Alkaloid C showed positive test for alkaloids. The UV and IR spectra and colour reactions of alkaloid C indicated that the compound may be a phenolic bisbenzylisoquinoline alkaloid. All the extracts delayed the onset and shortened the duration of apomorphine-induced stereotyped behaviour in chicks. In addition, 40 mg kg-1 i.p. of the ethanolic extract induced catalepsy in rats. The cold water extract (CWE) synchronized the EEG of the hyperstriatum, optic tectum and the reticular formation while the EMG activity was slightly enhanced. The hot ethanol alkaloidal extract (HEE) inhibited the growth of Pseudomonas aeruginosa and Staphylococcus aureus. The minimum inhibitory concentration of HEE on Pseudomonas aeruginosa strains I and II were 5 and 2.5 micrograms/ml while for Staphylococcus aureus strains I and II were 5 and 10 micrograms/ml, respectively. Up to 1 g kg-1 i.p. of the extract failed to induce any lethal effect in chicks and rats. These effects of the leaf extracts of Synclisia scabrida Miers support some of the local uses of the plant by traditional medical practitioners.

Alkaloids

Ethnopharmacologic and phytochemical studies of the Thymelaeaceae.

The ethnobotany, ethnopharmacology and phytochemistry of the Thymelaeaceae are reviewed. Some members of this family find wide use commercially whilst others are used as deadly poisons or possess extreme irritant properties. The phytochemical evidence thus far available indicates that the daphnane and tigliane diterpene esters are clearly responsible for the toxic reactions observed, but chemotaxonomically it is not possible to predict which additional genera are likely to contain these toxins. Caution should therefore be exercised when studying members of this plant family.

Animals

Some phytochemical aspects of medicinal plant research.

Various aspects of medicinal plant research, i.e. collection of data, screening for biological activity and isolation and identification of active compounds are briefly discussed with special reference to phytochemical aspects. Based upon this some topics for further methodological research are presented. A strategy for the isolation of pure compounds is outlined. The spectroscopic methods for the identification and structure elucidation of isolated natural products are briefly discussed. The role of each of these methods is a general strategy for product identification and structure elucidation is described.

Ethnology

Phytochemical screening of a Warao pharmacopoeia employed to treat gastrointestinal disorders.

A three-year medical-ethnobotanical investigation among the Warao of the Orinoco Delta in eastern Venezuela documented a pharmacopoeia of 100 plant species representing 45 families. Warao phytotherapists manipulate these plants in diverse manners to produce 259 remedies of various complexities to treat 52 classes of diseases/disorders. National health statistics indicate that gastrointestinal disease ranks as a principal cause of morbidity and mortality in this part of the country. Ten plant species, specifically employed by the Indians against these disorders, were subjected to phytochemical screening. Test results are listed together with the ethnoepidemiological protocol that governs the selection and administration of these medicinal plants in Warao society.

Gastrointestinal Agents

Echinacea: anatomy, phytochemical pattern, and germination of the achene.

The achenes (fruits) of the therapeutically used Echinacea species E. purpurea, E. angustifolia, and E. pallida can be differentiated structurally (shape, anatomy) as well as phytochemically (essential oil components, alkamides). During germination in all three species dodeca-2E, 4E, 8Z, 10E(10Z)-tetraenoic acid isobutylamide (8/9) is mainly formed. Besides this a number of alkamides typical for the root of E. purpurea are synthesized in moderate amounts. Also, alkene derivatives of isovalerianic acid are produced. It is an interesting fact that neither 2-monoene alkalmides nor polyacetylenes could be detected during achene germination.

Plants, Medicinal

Phytochemical investigation of xanthones of Eustoma grandiflorum (Raf.) Shinners.

Six polyoxygenated xanthones were isolated from the roots of Eustoma grandiflorum (Raf.) Shinners collected in Texas. Structural elucidation of five of these xanthones (1-hydroxy-3,7-dimethoxyxanthone, 1-hydroxy-3,5-dimethoxyxanthone, 1-hydroxy-3,5,6,7-tetramethoxyxanthone, 1-hydroxy-3,5,6,7,8-pentamethoxyxanthone, and 1-hydroxy-3,7,8-trimethoxyxanthone) was accomplished via UV, IR, NMR, and mass spectrometry; traditional physical-chemical methods; or direct comparison with a prepared derivative. The sixth xanthone derivative was characterized incompletely. The pentamethoxyxanthone is a new compound and has been designated generically as eustomin. The probable occurrence of these six xanthone compounds in the plant as glycosides is reported.

Chemical Phenomena