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Keywords = St. John’s wort

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13 pages, 25261 KB  
Data Descriptor
UAV-Hyp: UAV Dataset for Remote Sensing-Based Phenotyping of Hypericum perforatum
by Yujie Zhang, Ahmed EL Menuawy, Katrin Fitza, Frank Marthe and Sven Reichardt
Data 2026, 11(8), 208; https://doi.org/10.3390/data11080208 - 17 Aug 2026
Viewed by 2346
Abstract
Quantitative flowering phenotypes are needed to support breeding and harvest management in Hypericum perforatum L. (St. John’s wort), but manual flower assessment is slow and difficult to standardize under field conditions. UAV-Hyp is a multi-temporal UAV RGB dataset containing 12,653 high-resolution images acquired [...] Read more.
Quantitative flowering phenotypes are needed to support breeding and harvest management in Hypericum perforatum L. (St. John’s wort), but manual flower assessment is slow and difficult to standardize under field conditions. UAV-Hyp is a multi-temporal UAV RGB dataset containing 12,653 high-resolution images acquired at 26 measurement dates across the complete flowering period of 15 H. perforatum accessions. The images represent variable illumination, soil moisture, weed pressure, and developmental stages. The dataset provides 59,163 plant bounding boxes and 107,054 flower bounding boxes. As an application example, cascaded YOLOv8 plant and flower detectors achieved mAP@0.50:0.95 values of 0.977 and 0.950, respectively. UAV-Hyp supports scalable flower quantification and the development of time-series phenotyping methods for genotype comparison and quality-oriented medicinal-plant breeding. Full article
(This article belongs to the Section Spatial Data Science for Environment and Earth)
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30 pages, 26191 KB  
Review
Defined Natural Products as Adjunctive Therapies: Evidence-Gated Polypharmacology Across Molecular Targets, Human Exposure, Clinical Signals, and Safety Boundaries
by Yohan Seo and Joohan Woo
Int. J. Mol. Sci. 2026, 27(16), 7111; https://doi.org/10.3390/ijms27167111 - 8 Aug 2026
Viewed by 170
Abstract
Defined natural products are often framed as intrinsically safer multi-target alternatives to selective drugs, but this assumption is not pharmacologically justified. This critical review evaluates product-specific adjunctive evidence in respiratory allergy, inflammatory bowel disease, type 2 diabetes, depression, and insomnia. MEDLINE/PubMed records published [...] Read more.
Defined natural products are often framed as intrinsically safer multi-target alternatives to selective drugs, but this assumption is not pharmacologically justified. This critical review evaluates product-specific adjunctive evidence in respiratory allergy, inflammatory bowel disease, type 2 diabetes, depression, and insomnia. MEDLINE/PubMed records published from 2020 to 23 June 2026 were prioritized, while earlier pivotal randomized trials and quantitative safety studies were retained. Evidence was gated by product identity, human exposure, exposure-compatible target engagement, incremental efficacy, and safety boundaries. Nigella sativa oil improved Asthma Control Test scores by 1.5 points over placebo after 4 weeks, although the clinical importance is uncertain and FEV1 was not significantly improved. Curcumin plus mesalamine induced remission in mild-to-moderate ulcerative colitis (53.8% versus 0%), whereas indigo naturalis produced strong response rates but is constrained by pulmonary arterial hypertension. Berberine improves glycemic surrogates but lacks cardiovascular or renal outcome evidence and shows commercial potency variability. Saffron has a short-term antidepressant signal, while St John’s wort combines extract-dependent efficacy with CYP3A4/P-glycoprotein induction. Overall, selected defined natural products may merit narrow adjunctive roles, but undefined mixtures should not be treated as mechanistically established interventions without batch-level characterization, human pharmacokinetics, objective endpoints, and prospective interaction surveillance. Full article
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14 pages, 6305 KB  
Article
Metabolomic Profile of Aqueous Extracts of Commercial Samples of St John’s Wort (Hypericum perforatum) Determined by 1H NMR
by Erick Alejandro Herrera-Jurado, Estefanía de Jesús Terán-Sánchez, Elvia Becerra-Martínez and Luis Gerardo Zepeda-Vallejo
Int. J. Mol. Sci. 2026, 27(15), 6757; https://doi.org/10.3390/ijms27156757 - 28 Jul 2026
Viewed by 279
Abstract
This study aimed to characterize the metabolomic profile of aqueous extracts of Hypericum perforatum (St. John’s wort) commercial samples using 1H NMR spectroscopy, in order to evaluate their chemical composition as consumed in infusion form. Seven retail samples were extracted with water [...] Read more.
This study aimed to characterize the metabolomic profile of aqueous extracts of Hypericum perforatum (St. John’s wort) commercial samples using 1H NMR spectroscopy, in order to evaluate their chemical composition as consumed in infusion form. Seven retail samples were extracted with water under conditions simulating tea preparation and analyzed using 1H NMR. Metabolite identification and quantification were performed with Chenomx® software, followed by multivariate statistical analyses including PCA and OPLS-DA. A total of 37 metabolites were identified, predominantly primary metabolites such as sugars (glucose, fructose), amino acids (glycine, asparagine), short-chain organic acids (malic, citric, and acetic acids), secondary metabolites (trigonelline, chlorogenic acid) and metabolism products (methanol, ethanol, acetic acid and acetone). Notably, key bioactive compounds traditionally associated with H. perforatum, such as hypericin and hyperforin, were not detected under the experimental conditions employed. Multivariate analyses revealed significant variability among samples, suggesting differences in composition likely related to origin, processing, or potential adulteration. These findings demonstrate that aqueous preparations of St. John’s wort differ substantially from extracts used in clinical trials, being dominated by primary metabolism rather than specialized bioactive compounds. This has important implications for the interpretation of its therapeutic effects when consumed as tea. Furthermore, the study highlights the utility of NMR-based metabolomics as a robust tool for quality assessment and authentication of herbal products. Full article
(This article belongs to the Special Issue Metabolomics of Medicinal Plants)
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20 pages, 1183 KB  
Article
Antioxidant, Redox, and Immunomodulatory Effects of Hypericum perforatum in the Galleria mellonella: A 3R-Oriented Invertebrate Model
by Fatih Battal, Serhat Kaya and Hasan Ali Kiraz
Biomedicines 2026, 14(6), 1297; https://doi.org/10.3390/biomedicines14061297 - 7 Jun 2026
Cited by 1 | Viewed by 1180
Abstract
Background/Objectives: Hypericum perforatum L. (St. John’s Wort) is extensively utilized in ethnopharmacology due to its anti-inflammatory and immunomodulatory properties. However, its effects on the interaction between innate immunity and oxidative homeostasis remain incompletely characterized, particularly in alternative invertebrate models. This study aimed [...] Read more.
Background/Objectives: Hypericum perforatum L. (St. John’s Wort) is extensively utilized in ethnopharmacology due to its anti-inflammatory and immunomodulatory properties. However, its effects on the interaction between innate immunity and oxidative homeostasis remain incompletely characterized, particularly in alternative invertebrate models. This study aimed to evaluate the effects of H. perforatum extract on oxidative homeostasis and protein metabolism using the Galleria mellonella model, a 3R-compliant and ethically sustainable platform for preliminary immunological and redox-related screening. Methods: Last instar G. mellonella larvae were administered increasing concentrations of H. perforatum extract (0.001–20 mg mL−1) by intrahemocoelic injection. After 24 h, hemolymph samples were analyzed for total protein (TP), total hemocyte count (THC), encapsulation and melanization responses, superoxide dismutase (SOD) activity, catalase (CAT) activity, and malondialdehyde (MDA) levels. The phytochemical profile of the extract was additionally evaluated using GC–MS analysis. Results: Significant group-dependent alterations were observed in TP levels and THC values, with the HP-2 group demonstrating the highest hemocyte counts and enhanced strong encapsulation responses. Higher extract concentrations, particularly HP-4, were associated with increased weak encapsulation profiles, suggesting altered cellular immune organization. Melanization responses became significantly elevated at 24 h following treatment. In contrast, SOD activity, CAT activity, and MDA levels did not differ significantly among groups, indicating preservation of oxidative homeostasis under the tested conditions. Conclusions: H. perforatum extract induced dose-dependent modulation of cellular and humoral immune responses in G. mellonella without evidence of detectable oxidative disruption during acute exposure. These findings support the utility of the G. mellonella model for preliminary evaluation of botanical immunomodulators and suggest that H. perforatum may influence immunophysiological pathways independently of overt oxidative toxicity. Full article
(This article belongs to the Section Drug Discovery, Development and Delivery)
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16 pages, 2234 KB  
Article
Gelatin–St. John’s Wort Oil Matrices: Material Properties for Potential Biomedical Applications
by Mehlika Karamanlioglu
Polymers 2026, 18(11), 1360; https://doi.org/10.3390/polym18111360 - 30 May 2026
Viewed by 795
Abstract
This study investigates physicochemical, mechanical, and thermal effects of St. John’s wort (JW) oil on gelatin-based films for potential biomedical applications as there is limited research on gelatin biomaterials containing JW oil as sole bioactive component. Transparent films were fabricated at gelatin:JW oil [...] Read more.
This study investigates physicochemical, mechanical, and thermal effects of St. John’s wort (JW) oil on gelatin-based films for potential biomedical applications as there is limited research on gelatin biomaterials containing JW oil as sole bioactive component. Transparent films were fabricated at gelatin:JW oil ratios of 20:0, 20:1, 20:5 (w/w) designated as JW-0, JW-1, JW-2, respectively, via solution casting. Gas chromatography revealed that JW oil is rich in unsaturated fatty acids, predominantly linoleic and oleic acids, while FTIR confirmed their successful integration into the gelatin matrix through the fatty acid peak at 1743 cm−1. Oil droplets, increasing with oil content was shown by SEM. JW oil improved water durability by reducing water aging by up to 8%. JW oil acted as a plasticizer, raising elongation at break (EAB) from 188% in JW-0 to 231% and 209% in JW-1 and JW-2, respectively. DSC indicated a higher Tmax in JW-1 (116 °C) compared to JW-2 (110 °C), evidencing better thermal stability. In conclusion, JW oil can be effectively incorporated into gelatin as a single active component. Specifically, JW-1 formulation achieved an optimal balance between mechanical and structural integrity, flexibility, and thermal stability, underscoring its potential as a cost-effective, bioactive wound dressing material. Full article
(This article belongs to the Special Issue Natural Biopolymers for Biomedical Applications)
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17 pages, 956 KB  
Communication
Mendelian Randomization Identifies Lipidomic Signatures of Depression Risk That Are Partly Reflected in Cortisol-Induced Membrane Remodeling and Modulated by St. John’s Wort Extract (Ze 117)
by Virginie Freytag, Veronika Butterweck, Dominique J.-F. de Quervain, Georg Boonen and Andreas Papassotiropoulos
Int. J. Mol. Sci. 2026, 27(10), 4344; https://doi.org/10.3390/ijms27104344 - 13 May 2026
Viewed by 552
Abstract
Major depressive disorder (MDD) is associated with altered membrane lipids, but the causal species remain uncertain. Using two-sample Mendelian randomization (MR) on lipidomic GWAS data and the latest MDD meta-analysis (~400,000 cases; 1.5 million controls), we identified 49 lipid species linked to MDD [...] Read more.
Major depressive disorder (MDD) is associated with altered membrane lipids, but the causal species remain uncertain. Using two-sample Mendelian randomization (MR) on lipidomic GWAS data and the latest MDD meta-analysis (~400,000 cases; 1.5 million controls), we identified 49 lipid species linked to MDD risk, notably enriched for phosphatidylcholines. Protective lipids were enriched for long-chain polyunsaturated fatty acids (20:3–20:5), whereas shorter-chain or less unsaturated species, particularly 18:2-containing lipids, increased risk. These associations were also observed in a subset of clinically assessed MDD cases. Colocalization supported shared causal variants between many lipid traits and MDD, prominently at the FADS1/2 locus and additional loci, suggesting multiple entry points into lipid metabolism that differ partly from bipolar disorder. MR-implicated lipid shifts overlapped with cortisol-induced changes in a human cell stress model and were often reversed by co-treatment with St. John’s wort extract (Ze 117). Cholesteryl ester 20:3 emerged as a robust candidate marker, showing protective MR effects in two cohorts, colocalizing genetic support, normalization by Ze 117, and an inverse correlation with depressive symptom severity in a non-clinical sample. Together, these results define a depression-associated lipidomic signature centered on polyunsaturated fatty acid metabolism with biomarker and therapeutic potential. Full article
(This article belongs to the Section Molecular Genetics and Genomics)
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15 pages, 1075 KB  
Article
In Vitro Efficacy of Ultrasonic Debridement with Adjunctive St. John’s Wort on Multispecies Dental Biofilms
by Zaharia Cristian, Kis Andreea Mihaela, George Andrei Drăghici, Dragoş Vasile Nica, Stefania Dinu and Olariu Iustin
Medicina 2026, 62(3), 563; https://doi.org/10.3390/medicina62030563 - 18 Mar 2026
Cited by 1 | Viewed by 914
Abstract
Background and Objectives: The use of St. John’s wort (Hypericum perforatum) in periodontal therapy remains underexplored despite its anti-inflammatory, antimicrobial, and potential osteoregenerative effects. This was the first study aiming to determine the in vitro efficacy of ultrasonic debridement combined [...] Read more.
Background and Objectives: The use of St. John’s wort (Hypericum perforatum) in periodontal therapy remains underexplored despite its anti-inflammatory, antimicrobial, and potential osteoregenerative effects. This was the first study aiming to determine the in vitro efficacy of ultrasonic debridement combined with a H. perforatum extract against dental biofilms. Materials and Methods: A multispecies biofilm model comprising Streptococcus mutans, Porphyromonas gingivalis, Fusobacterium nucleatum, and Tannerella forsythia was established on bovine dentin discs. Biofilms were treated with saline solution (control), ultrasonic debridement alone, ultrasonic debridement combined with H. perforatum extract (0.5%), and ultrasonic debridement combined with chlorhexidine (0.12%). Biofilm biomass was quantified with the crystal violet assay, and total viable counts were determined by colony-forming unit (CFU) analysis. Quantitative PCR was used to assess the genomic load of P. gingivalis. Biofilm architecture and bacterial viability were further examined using confocal laser scanning microscopy (CLSM). Results: Ultrasonic debridement combined with H. perforatum extract significantly reduced biofilm biomass compared to saline irrigation (p < 0.001) and ultrasonic debridement alone (p < 0.01). Similar reductions were observed for viable bacterial counts and P. gingivalis genomic load. The antimicrobial effect of the plant extract was comparable to that of chlorhexidine, with only minor differences in efficacy. Confocal microscopy confirmed marked disruption of biofilm architecture and decreased bacterial viability following treatment with the plant extract. Conclusions: Within the limitations of this in vitro model, H. perforatum extract demonstrated measurable antibiofilm activity when used as an adjunct to ultrasonic debridement. These findings provide proof-of-concept evidence supporting the antimicrobial potential of this plant-derived extract under controlled laboratory conditions. Further preclinical studies and well-designed clinical investigations are required to determine its therapeutic relevance in periodontal treatment. Full article
(This article belongs to the Section Dentistry and Oral Health)
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21 pages, 1061 KB  
Article
Effects of Growth Phases and Intensification of Light on Secondary Metabolites and Agro-Morphological Traits of the St. John’s Wort (Hypericum perforatum L.)
by Mina Sadat Tabatabaei, Ahmad Sobhani, Morteza Khanahmadi, Sara Zare and Stefan Wanke
Plants 2026, 15(4), 663; https://doi.org/10.3390/plants15040663 - 22 Feb 2026
Viewed by 1159
Abstract
Light regime and growth phase are significant determinants of agro-morphological traits and secondary metabolite accumulation in plants. This study evaluated the effects of two light conditions on agro-morphological and phytochemical traits of two Hypericum perforatum genotypes (Topas and Mariana). Natural daylight and an [...] Read more.
Light regime and growth phase are significant determinants of agro-morphological traits and secondary metabolite accumulation in plants. This study evaluated the effects of two light conditions on agro-morphological and phytochemical traits of two Hypericum perforatum genotypes (Topas and Mariana). Natural daylight and an extended 19 h photoperiod with supplemental white fluorescent light were tested at two growth phases (vegetative versus reproductive (flowering)), based on leaf sampling at the respective phases. Analysis of variance showed significant effects of growth phase, light treatment, and genotype on most traits, with growth phase exerting the most decisive influence (p < 0.01). Significant genotype × growth phase interactions were observed for most traits, whereas genotype × light interactions mainly affected phytochemical parameters. Leaf area, gland number, and gland area increased during the reproductive phase, especially in Topas, and were further enhanced under the 19 h photoperiod. Leaf area increased markedly during the reproductive phase, reaching 118.81 mm2 in Topas under the 19 h photoperiod compared with 68.40 mm2 under natural light. Prolonged light exposure increased hypericin, pseudo-hypericin, hyperforin, flavonoids, and total phenolics. The highest sum of hypericins (4.67 mg g−1 DW), flavonoids (143.09 mg QE g−1 DW), and phenolics (242.74 mg GA g−1 DW) was observed in the Topas in the reproductive phase under the 19 h photoperiod, whereas hyperforin content peaked in vegetative Mariana (55.65 mg g−1 DW). In contrast, the lowest sum of hypericins (1.80 mg g−1 DW) occurred in vegetative Mariana under natural light, while the minimum flavonoids (74.45 mg QE g−1 DW) and phenolics (133.22 mg GA g−1 DW) contents were recorded in the vegetative Topas under natural light regim, and the lowest hyperforin concentration (19.65 mg g−1 DW) was found in the Mariana genotype under natural light regime and in the reproductive phase. Principal component analysis associated PC1 with agro-morphological traits and hypericin-related metabolites, and PC2 with hyperforin and white gland traits. Heatmap and correlation analyses supported these patterns. Overall, extended photoperiod and growth phase are critical drivers of medicinal compound accumulation in H. perforatum. Full article
(This article belongs to the Section Plant Physiology and Metabolism)
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19 pages, 3131 KB  
Article
Bacteriostatic Effect of Some Plant Extracts Against Crown Gall Caused by Agrobacterium tumefaciens L.
by Beata Jacek and Michał Miłek
Int. J. Mol. Sci. 2026, 27(2), 711; https://doi.org/10.3390/ijms27020711 - 10 Jan 2026
Viewed by 1197
Abstract
The agar diffusion method was used to test the antibacterial activity of 12 plant species against Agrobacterium tumefaciens, the bacterium that is responsible for crown gall disease. Leaf, root, or flower extracts were prepared, but not all parts were used for each [...] Read more.
The agar diffusion method was used to test the antibacterial activity of 12 plant species against Agrobacterium tumefaciens, the bacterium that is responsible for crown gall disease. Leaf, root, or flower extracts were prepared, but not all parts were used for each of the 12 plants listed. Plant extracts from leaves exhibited higher antibacterial activity than those from flowers and roots. Furthermore, the type of solvent had a significant influence on both the antibacterial activity and the flavonoid and polyphenol content. Acetone and alcohol extracts contained higher contents of these compounds than water extracts. The strongest bacteriostatic effect was of the leaf extracts of eucalyptus (Eucalyptus nicholii L.) and St. John’s wort (Hypericum perforatum L.). Based on HPTLC analysis, eucalyptus extracts contained, among others, chlorogenic acid, hyperoside, and quercetin, while St. John’s wort extracts contained rutin, hyperoside, and quercetin. The tansy leaf extracts (Tanacetum vulgare L.) were also rich in flavonoids and phenolic acids, such as kaempferol-3-glucoside, luteolin, chlorogenic acid, cynarine, and rutin. However, a moderate inhibitory effect against the tested bacterium was found in tansy extracts, as well as hop (Humulus lupulus L.), wormwood (Artemisia absinthium L.), peppermint (Mentha piperita L.), yarrow (Achillea millefolium L.), and nettle (Urtica dioica L.) extracts. The least effective were the root extracts of dandelion (Taraxacum officinale F.H. Wiggers coll.) and valerian (Valeriana officinalis L.), as well as the flower extracts of chamomile (Matricaria chamomilla L.) and marigold (Calendula officinalis L.). Given the lack of effective chemical products and the unavailability of commercially resistant cultivars, the use of plant-based extracts for protecting against crown gall appears to be of particular interest. The preliminary results are promising and suggest that eucalyptus and St. John’s wort extracts are the most promising for controlling A. tumefaciens. Full article
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3 pages, 165 KB  
Correction
Correction: Sathvika et al. Review of Case Study Results: Assessing the Effectiveness of Curcumin, St. John’s Wort, Valerian Root, Milk Thistle, and Ashwagandha in the Intervention for Obsessive-Compulsive Disorder. Drugs Drug Candidates 2024, 3, 838–859
by Veerabhadrappa Pallavi Sathvika, Prathibha Guttal Subhas, Debayan Bhattacharjee, Vejetha Nagaraj Koppad, Uday Samrat, Sindhu Bindapla Karibasappa and Kadappara Mallikarjun Sagar
Drugs Drug Candidates 2026, 5(1), 5; https://doi.org/10.3390/ddc5010005 - 8 Jan 2026
Viewed by 544
Abstract
In the original publication [...] Full article
17 pages, 330 KB  
Review
Plant-Derived Treatments for IBS: Clinical Outcomes, Mechanistic Insights, and Their Position in International Guidelines
by Ploutarchos Pastras, Ioanna Aggeletopoulou, Maria Bali and Christos Triantos
Nutrients 2026, 18(2), 183; https://doi.org/10.3390/nu18020183 - 6 Jan 2026
Cited by 1 | Viewed by 3760
Abstract
Irritable Bowel Syndrome (IBS) affects 4–15% of the global population, and the limited efficacy of existing pharmacologic therapies has driven growing interest in plant-based therapeutic options among both patients and clinicians. A comprehensive assessment of all plant extracts investigated in IBS is therefore [...] Read more.
Irritable Bowel Syndrome (IBS) affects 4–15% of the global population, and the limited efficacy of existing pharmacologic therapies has driven growing interest in plant-based therapeutic options among both patients and clinicians. A comprehensive assessment of all plant extracts investigated in IBS is therefore essential, given the limited effectiveness of conventional treatments and the increasing interest in complementary approaches. Evidence from recent systematic reviews and meta-analyses consistently indicates that peppermint oil is the most effective botanical agent, particularly for reducing abdominal pain and overall IBS symptom severity. Iberogast (STW-5 and STW-5 II) has also demonstrated clinical improvements across multiple trials, while curcumin shows mechanistic and preliminary clinical potential by modulating several IBS-related pathways. In contrast, extracts such as Curcuma xanthorrhiza, Fumaria officinalis, and various Ayurvedic formulations have not shown significant clinical benefit. Other agents, including Aloe vera, flavonoids, St John’s wort, and ginger, exhibit mixed or inconsistent results, reflecting heterogeneity in study designs and underlying mechanisms. A review of international guidelines reveals that peppermint oil is the only plant-based therapy consistently acknowledged across adult and pediatric recommendations. The aim of this review is to summarize, compare, and critically evaluate all plant extracts studied for the prevention and treatment of IBS, integrating mechanistic pathways, clinical evidence, and current international guideline recommendations to clarify their therapeutic relevance for clinical practice. Full article
(This article belongs to the Special Issue Plant Extracts in the Prevention and Treatment of Chronic Disease)
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19 pages, 2249 KB  
Article
Structural Determinants for the Antidepressant Activity of St. John’s Wort (Hypericum perforatum): A Combined Theoretical and Experimental Study
by Afrodite Tryfon, George Petsis, Panagiota Siafarika, Evanthia Soubasi and Angelos G. Kalampounias
Physchem 2025, 5(4), 56; https://doi.org/10.3390/physchem5040056 - 14 Dec 2025
Cited by 1 | Viewed by 2245
Abstract
This study presents a systematic investigation of the dynamic and structural characteristics of St. John’s wort (Hypericum perforatum) in alcoholic solutions using experimental and theoretical techniques. Ultrasonic relaxation spectroscopy was employed to investigate medium-range dynamic processes, while density functional theory (DFT) [...] Read more.
This study presents a systematic investigation of the dynamic and structural characteristics of St. John’s wort (Hypericum perforatum) in alcoholic solutions using experimental and theoretical techniques. Ultrasonic relaxation spectroscopy was employed to investigate medium-range dynamic processes, while density functional theory (DFT) calculations were employed to explore the molecular structure and vibrational properties of the system. Theoretical calculations revealed two Hyperforin conformers, a keto derivative, and three protonated species. Acoustic spectra revealed three distinct Debye-type relaxation processes, corresponding to conformational changes in hyperforin, enol-to-keto tautomerization, and proton transfer mechanisms. In addition, St. John’s wort oil (Oleum Hyperici) was studied, using attenuated total reflection (ATR) infrared spectroscopy for several extraction intervals. These spectra were compared with the theoretical IR spectra of hypericin, hyperforin, and its derivatives, confirming the presence of hyperforin, keto, and two protonated species in the oil. Besides structural and dynamical evaluations, the study assessed the toxicity and biological activity of hyperforin and all species found in the solutions, offering information about potential pharmaceutical uses, suggesting that hyperforin and its keto form have the best antidepressant activity. This comprehensive analysis enhances the understanding of hyperforin’s molecular behavior and strengthens the therapeutic potential of St. John’s wort as a natural antidepressant agent. Full article
(This article belongs to the Section Experimental and Computational Spectroscopy)
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17 pages, 1124 KB  
Review
St. John’s Wort for Depression: From Neurotransmitters to Membrane Plasticity
by Verena M. Merk, Georg Boonen and Veronika Butterweck
Int. J. Mol. Sci. 2025, 26(24), 11925; https://doi.org/10.3390/ijms262411925 - 10 Dec 2025
Cited by 2 | Viewed by 4165
Abstract
Depression is a multifactorial disorder shaped by genetic, psychosocial, and biological influences, with hypotheses ranging from monoamine deficiency and neuroplasticity deficits to inflammation and stress-induced dysregulation. St. John’s wort (Hypericum perforatum L.) has long been used as an herbal antidepressant and is [...] Read more.
Depression is a multifactorial disorder shaped by genetic, psychosocial, and biological influences, with hypotheses ranging from monoamine deficiency and neuroplasticity deficits to inflammation and stress-induced dysregulation. St. John’s wort (Hypericum perforatum L.) has long been used as an herbal antidepressant and is supported by clinical evidence for efficacy and safety in mild-to-moderate depression. While its multimodal mechanisms have been linked to neurotransmitter reuptake inhibition, neuroendocrine regulation, and modulation of neuroplasticity, recent findings suggest an additional role at the membrane level. Emerging lipidomic studies highlight that Ze 117, a low-hyperforin H. perforatum extract, counteracts stress- and glucocorticoid-induced increases in membrane fluidity by modulating lipid composition and cholesterol metabolism. These effects normalize receptor mobility and signal transduction, particularly of β1-adrenoceptors, and modulate glycerophospholipid metabolism in both cellular and animal models. Such membrane-stabilizing properties may represent a novel mechanistic pathway complementing classical neurochemical actions. This review revisits the mechanisms of St. John’s wort with a special focus on its impact on membrane lipids, positioning lipidomics as a promising tool for elucidating antidepressant activity. These insights may open avenues toward personalized therapeutic strategies in depression. Full article
(This article belongs to the Special Issue The Role of Lipids in Health and Diseases)
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22 pages, 10322 KB  
Article
Biochars Derived from Diverse Local Tunisian Feedstocks for Environmental Remediation: Physicochemical Properties and Adsorption Behaviour
by Asma Hmaied, Aïda Ben Hassen Trabelsi, Fethi Lachaal, Sandrine Negro and Claude Hammecker
Land 2025, 14(11), 2224; https://doi.org/10.3390/land14112224 - 10 Nov 2025
Cited by 1 | Viewed by 1265
Abstract
Water resource management and agricultural practices in the Mediterranean region, characterised by the excessive use of pesticides, pose significant environmental and human health challenges. As they can be easily and inexpensively produced from various biomass sources, biochars are frequently recommended as a low-cost [...] Read more.
Water resource management and agricultural practices in the Mediterranean region, characterised by the excessive use of pesticides, pose significant environmental and human health challenges. As they can be easily and inexpensively produced from various biomass sources, biochars are frequently recommended as a low-cost secondary decontamination strategy to address soil contamination problems. This study investigates the properties and sorption behaviours of biochars produced in a low-cost metallic kiln using local rosemary, giant reed, St. John’s wort, olive, cypress, and palm tree biomass residues to evaluate their potential for environmental remediation, with a special focus on the mobility and retention of contaminants. Analytical and experimental techniques were employed to characterise the biochars’ physicochemical attributes and sorptive capacities. The core analyses included measurement of basic physicochemical properties, including pH, electrical conductivity, functional group identification via Fourier transform infrared (FTIR) spectroscopy, and the molarity of ethanol droplet (MED) test to assess the surface hydrophobicity. Batch sorption experiments were conducted using methylene blue (MB) and two fluorescent tracers—uranine (UR) and sulforhodamine-B (SRB)—as proxies for organic contaminants to assess the adsorption efficiency and molecule–biochar interactions. Furthermore, the adsorption isotherms at 20 °C were fitted to different models to assess the biochars’ specific surface areas. Thermodynamic parameters were also evaluated to understand the nature and strength of the adsorption processes. The results highlight the influence of feedstock type on the resulting biochar’s properties, thus significantly affecting the mechanism of adsorption. Rosemary biochar was found to have the highest specific surface area (SSA) and cation exchange capacity (CEC), allowing it to adsorb a wide range of organic molecules. Giant reed and palm tree biochars showed similar properties. In contrast, wood-derived biochars generally showed very low SSA, moderate CEC, and low hydrophobicity. The contrasting properties of the three dyes—MB (cationic), UR (anionic), and SRB (zwitterionic)—enabled us to highlight the distinct interaction mechanisms between each dye and the surface functional groups of the different biochars. The reactivity and sorption efficiency of a biochar depend strongly on both the nature of the target molecule and the intrinsic properties of the biochar, particularly its pH. The findings of this study demonstrate the importance of matching biochar characteristics to specific contaminant types for optimised environmental applications, providing implications for the use of tailored biochars in pollutant mitigation strategies. Full article
(This article belongs to the Section Land, Soil and Water)
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22 pages, 4442 KB  
Article
A Polysaccharide-Rich Ingredient from Hypericum perforatum L. Ameliorates Depression-like and Post-Traumatic Stress Disorder-like Symptoms in Mouse Models
by Zi-Jia Jin, Shuai-Ming Zhu, Fu-Yao Luo, Yue Sun, Chun-Xue Gao, Ting Feng, Hao Ma, Rui Xue, Chang-Wei Li, Lei An and You-Zhi Zhang
Nutrients 2025, 17(20), 3222; https://doi.org/10.3390/nu17203222 - 14 Oct 2025
Cited by 4 | Viewed by 1606
Abstract
Background/Objectives: Hypericum perforatum L. (H. perforatum), commonly known as St. John’s wort, has been widely used in clinical practice to treat mental disorders. Previous studies and clinical applications have primarily focused on its alcohol-soluble ingredients. Our research was designed to [...] Read more.
Background/Objectives: Hypericum perforatum L. (H. perforatum), commonly known as St. John’s wort, has been widely used in clinical practice to treat mental disorders. Previous studies and clinical applications have primarily focused on its alcohol-soluble ingredients. Our research was designed to investigate the physicochemical properties, antidepressant-like effects, and anti-post-traumatic stress disorder (PTSD)-like effects of the alcohol-insoluble polysaccharide-rich ingredients from H. perforatum. Meanwhile, the underlying mechanisms were elucidated. Methods: The physicochemical properties of two polysaccharide-rich ingredients, designated as HPP1 and HPP2, were characterized using colorimetric assay, capillary electrophoresis, high-performance gel permeation chromatography, and fourier transform infrared spectroscopy. Behavioral despair tests were conducted to rapidly assess and compare their antidepressant-like effects in mice. Subsequently, behavioral despair mice and foot-shock mice were established to thoroughly explore the impact of HPP2 on depression-like and PTSD-like symptoms. The effects of HPP2 on cerebral pathological changes, neurotrophic factors, and gut microbiota in foot-shock mice were detected through hematoxylin & eosin staining, immunofluorescence staining, and 16S rDNA (V3 + V4 regions) gene sequencing. Results: HPP1 and HPP2 are predominantly composed of arabinose, glucose, galactose, mannose, and galacturonic acid. The molecular weight distribution of HPP1 ranges from 1133 to 67,278 Da, whereas that of HPP2 extends from 1493 to 38,407 Da. Acute pre-treatment with HPP1 or HPP2 (200 mg/kg, i.g.) could reduce mice’s immobility in behavioral despair tests, with HPP2 exhibiting superior efficacy. Additionally, both acute and sub-chronic pre-treatment with HPP2 (50, 200, and 800 mg/kg, i.g.) effectively alleviated depression-like symptoms in behavioral despair mice. Prolonged pre-treatment with HPP2 (200 mg/kg, i.g.) also mitigated the slow increase in body weight and behavioral abnormalities in foot-shock mice. Furthermore, HPP2 (200 mg/kg) successfully restored hippocampal histomorphological abnormalities, neurotrophic disturbance, and dysregulation of the gut microbiota in foot-shock mice. Conclusions: HPP2 exerts noteworthy antidepressant-like and anti-PTSD-like impact in mouse models via multiple targets, indicating a potential therapeutic candidate in depression and PTSD therapy. Full article
(This article belongs to the Special Issue Bioactive Ingredients in Plants Related to Human Health—2nd Edition)
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