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Keywords = sulfur infusion

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22 pages, 4602 KB  
Article
Dissolution Behavior of Mineral Elements in Dahongpao Tea, Its Association with Flavor Quality, and Potential Contribution of Infusions to Dietary Reference Intakes
by Miao Jia, Miaoen Qiu, Yuhua Wang, Aiqi Wang, Xiaoli Jia, Jianghua Ye, Haibin Wang and Zeyan Wu
Foods 2026, 15(17), 3119; https://doi.org/10.3390/foods15173119 - 2 Sep 2026
Viewed by 180
Abstract
Mineral elements affect tea nutritional and flavor quality, but systematic research on their dissolution behavior and links to volatile and taste profiles in Dahongpao tea is lacking, as is evidence regarding contribution to mineral intake for different populations. In this study, nine Dahongpao [...] Read more.
Mineral elements affect tea nutritional and flavor quality, but systematic research on their dissolution behavior and links to volatile and taste profiles in Dahongpao tea is lacking, as is evidence regarding contribution to mineral intake for different populations. In this study, nine Dahongpao teas were brewed five times. Eleven elements were measured by inductively coupled plasma mass spectrometry (ICP-MS) with first-order kinetic fitting; volatile profiles were analyzed by electronic nose and taste attributes by electronic tongue; the contribution of tea infusions to dietary reference intakes was estimated from Chinese Dietary Reference Intakes (2023). The results showed that electronic nose analysis revealed distinct variation in volatile compound classes among the nine samples, with broad range and sulfur–organic compounds showing the highest response intensities. Electronic tongue analysis showed clear differences in taste profiles, particularly in astringency, umami, and sweetness, across the nine samples. Regarding dissolution behavior, Mg had the highest dissolution rate (67.24–70.94%), while Fe, Ca, K, and Zn were below 10%; dissolution followed first-order kinetics and total dissolved amounts correlated with total contents except for Fe. Network analysis integrating element data with volatile and taste profiles demonstrated that Mg and Mo contents were positively correlated with multiple volatile classes (e.g., sulfur–organic, broad range), while Ca, Mg, and Fe dissolution rates significantly correlated with richness and aftertaste-A, and Mo inversely correlated with sourness and saltiness. Contribution assessment showed that only Ca, K, Mg, and Se could be marginally supplemented, but the tea amounts needed far exceeded typical intake. In summary, element dissolution in Dahongpao tea is co-regulated by brew count and total content, with complex element–flavor interactions. Tea is not a primary mineral source; consumption should be individualized by age and physiological status. Full article
(This article belongs to the Section Food Nutrition)
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18 pages, 3778 KB  
Article
The Chronic Elevated Consumption of Hibiscus sabdariffa Linnaeus Results in Kidney Damage Associated with Excess H2S
by Linaloe Manzano-Pech, María Elena Soto, Vicente Castrejón-Tellez, Elizabeth Soria-Castro, Verónica Guarner-Lans, Sara Caballero-Chacón, Raúl Martínez-Memije, Juan Carlos Torres-Narváez, Mohammed El-Hafidi and Israel Pérez-Torres
Int. J. Mol. Sci. 2026, 27(5), 2190; https://doi.org/10.3390/ijms27052190 - 26 Feb 2026
Cited by 2 | Viewed by 1626
Abstract
Hydrogen sulfide (H2S) is essential for renal function; however, it is toxic at high concentrations. H2S is increased during reductive stress (RS). Increased antioxidant capacity and reduced/oxidized glutathione (GSH/GSSG) characterize a rat model of RS associated with chronic consumption [...] Read more.
Hydrogen sulfide (H2S) is essential for renal function; however, it is toxic at high concentrations. H2S is increased during reductive stress (RS). Increased antioxidant capacity and reduced/oxidized glutathione (GSH/GSSG) characterize a rat model of RS associated with chronic consumption of 6% Hibiscus sabdariffa Linnaeus (HSL). Here, we evaluate if chronic consumption of an infusion of HSL causes kidney damage associated with an increase in H2S. Twenty-one Wistar rats were divided into three groups. Group 1: rats received plain tap water ad libitum (G1); Group 2: rats received an ad libitum infusion of 6% HSL for one month (G2); and Group 3: rats consumed a 6% HSL infusion for one month and were then given natural water for another month (G3). We evaluated renal vasodilatation, cystathionine–β–synthase (CBS), cystathionine–γ–lyase (CSE), 3–mercaptopyruvate-sulfur-transferase (3–MST), γ-glutamylcysteine synthetase (GCLC), Nrf2, total OXPHOS, H2S concentration, GSH/GSSG and oxidized/reduced thiols in the kidney. Renal vasodilatation and total OXPHOS in complex IV and I and oxidized/reduced thiols were decreased (p ≤ 0.01) but H2S, CBS, SCE, GCLC, and NrF2 expression and GSH/GSSG were increased (p ≤ 0.04). The HSL infusion provided cysteine that was metabolized by CBS and CSE, elevating chronic H2S and favoring renal damage. Full article
(This article belongs to the Section Molecular Endocrinology and Metabolism)
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14 pages, 5390 KB  
Article
An S-Infused/S, F-Codoped PVDF-Derived Carbon as a High-Performance Anode for Sodium-Ion Batteries
by Jianjiao Wang, Qian Zhang, Pengyu Han, Jiakun Luo and Kui-Qing Peng
Materials 2025, 18(17), 4018; https://doi.org/10.3390/ma18174018 - 27 Aug 2025
Cited by 2 | Viewed by 1085
Abstract
Heteroatom doping is an effective strategy for improving the sodium storage performance of hard carbon. However, the use of sulfur and fluorine codoped carbon materials as anodes for sodium-ion batteries has not been reported. Here, an S-infused/S, F-codoped PVDF-derived carbon SFC5 was prepared [...] Read more.
Heteroatom doping is an effective strategy for improving the sodium storage performance of hard carbon. However, the use of sulfur and fluorine codoped carbon materials as anodes for sodium-ion batteries has not been reported. Here, an S-infused/S, F-codoped PVDF-derived carbon SFC5 was prepared by one-step carbonization of PVDF and synchronously used as an anode for a sodium-ion battery. The prepared SFC5 containing 10.11 at% S and 9.54 at% F is a short-range ordered amorphous carbon with a microporous structure. Owing to the structural advantages of S, F codoping, and the high specific capacity of S, SFC5 exhibited an outstanding sodium storage performance of 365 mAh g−1 after 200 cycles at 50 mA g−1 and 212 mAh g−1 after 500 cycles at 400 mA g−1. Moreover, theoretical calculations based on density functional theory (DFT) verify that S and F codoping can considerably reduce the Na+ adsorption energy and increase the electronic conductivity of SFC5. The current study presents a viable and facile approach to prepare high-performance, low-cost anode materials for SIBs, supported by empirical evidence and theoretical computations. Full article
(This article belongs to the Special Issue Low Dimensional Materials for Batteries and Supercapacitors)
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17 pages, 1282 KB  
Article
Static and Dynamic Assessments of a Sulfur-Triglyceride Composite for Antimicrobial Surface Applications
by Shalini K. Wijeyatunga, Perla Y. Sauceda-Oloño, Nawoda L. Kapuge Dona, Bárbara G. S. Guinati, Katelyn M. Derr, Katelyn A. Tisdale, Ashlyn D. Smith, Andrew G. Tennyson and Rhett C. Smith
Molecules 2025, 30(7), 1614; https://doi.org/10.3390/molecules30071614 - 4 Apr 2025
Cited by 9 | Viewed by 1942
Abstract
Over 80 MT of elemental sulfur, a byproduct of fossil fuel desulfurization, are generated annually. This has spurred the development of high sulfur content materials (HSMs) via inverse vulcanization as a productive pathway towards sulfur utilization. In this study, we evaluate the antimicrobial [...] Read more.
Over 80 MT of elemental sulfur, a byproduct of fossil fuel desulfurization, are generated annually. This has spurred the development of high sulfur content materials (HSMs) via inverse vulcanization as a productive pathway towards sulfur utilization. In this study, we evaluate the antimicrobial performance of SunBG90, an HSM made from brown grease and sulfur, as tiles or infused into fabric squares. The static antimicrobial activity of SunBG90 tiles was assessed, revealing excellent efficacy against Gram-positive bacteria, with reductions of 96.84% for Staphylococcus aureus and 91.52% for Listeria monocytogenes. The tiles also exhibited strong antifungal activity, reducing Candida auris by 96.20% and mold (fumigatus) by 83.77%. In contrast, efficacy against Gram-negative bacteria was more variable, with moderate reductions for Escherichia coli (61.10%) and Salmonella enteritidis (62.15%), lower activity against Campylobacter jejuni and Salmonella typhi, and no effect on Clostridium perfringens. Under dynamic conditions, SunBG90-infused fabrics achieved a near-complete inhibition of L. monocytogenes (99.91%) and high reduction of E. coli (98.49%), along with a 96.24% inhibition of Candida auris. These results highlight the potential and limitations of SunBG90 for antimicrobial applications, emphasizing the need for further optimization to achieve consistent broad-spectrum activity. Full article
(This article belongs to the Special Issue Organosulfur and Organoselenium Chemistry II)
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34 pages, 7313 KB  
Review
Sodium Thiosulfate: An Innovative Multi-Target Repurposed Treatment Strategy for Late-Onset Alzheimer’s Disease
by Melvin R. Hayden and Neetu Tyagi
Pharmaceuticals 2024, 17(12), 1741; https://doi.org/10.3390/ph17121741 - 23 Dec 2024
Cited by 10 | Viewed by 6167
Abstract
Late-onset Alzheimer’s disease (LOAD) is a chronic, multifactorial, and progressive neurodegenerative disease that associates with aging and is highly prevalent in our older population (≥65 years of age). This hypothesis generating this narrative review will examine the important role for the use of [...] Read more.
Late-onset Alzheimer’s disease (LOAD) is a chronic, multifactorial, and progressive neurodegenerative disease that associates with aging and is highly prevalent in our older population (≥65 years of age). This hypothesis generating this narrative review will examine the important role for the use of sodium thiosulfate (STS) as a possible multi-targeting treatment option for LOAD. Sulfur is widely available in our environment and is responsible for forming organosulfur compounds that are known to be associated with a wide range of biological activities in the brain. STS is known to have (i) antioxidant and (ii) anti-inflammatory properties; (iii) chelation properties for calcium and the pro-oxidative cation metals such as iron and copper; (iv) donor properties for hydrogen sulfide production; (v) possible restorative properties for brain endothelial-cell-derived bioavailable nitric oxide. Thus, it becomes apparent that STS has the potential for neuroprotection and neuromodulation and may allow for an attenuation of the progressive nature of neurodegeneration and impaired cognition in LOAD. STS has been successfully used to prevent cisplatin oxidative-stress-induced ototoxicity in the treatment of head and neck and solid cancers, cyanide and arsenic poisoning, and fungal skin diseases. Most recently, intravenous STS has become part of the treatment plan for calciphylaxis globally due to vascular calcification and ischemia-induced skin necrosis and ulceration. Side effects have been minimal with reports of metabolic acidosis and increased anion gap; as with any drug treatment, there is also the possibility of allergic reactions, possible long-term osteoporosis from animal studies to date, and minor side-effects of nausea, headache, and rhinorrhea if infused too rapidly. While STS poorly penetrates the intact blood–brain barrier(s) (BBBs), it could readily penetrate BBBs that are dysfunctional and disrupted to deliver its neuroprotective and neuromodulating effects in addition to its ability to penetrate the blood–cerebrospinal fluid barrier of the choroid plexus. Novel strategies such as the future use of nano-technology may be helpful in allowing an increased entry of STS into the brain. Full article
(This article belongs to the Special Issue Novel Therapeutic Strategies for Alzheimer’s Disease Treatment)
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18 pages, 1916 KB  
Article
SF6 Tracer Technique to Estimate Methane Emission in a Dual-Flow Continuous Culture System: Test and Application
by Richard R. Lobo, Gerald Salas-Solis, Juan Vargas, Alyce Monteiro, Sarah S. da Silva, Kaliu Silva, Jose Arce-Cordero, Diwakar Vyas, Nicolas DiLorenzo, Jhones O. Sarturi and Antonio P. Faciola
Fermentation 2024, 10(8), 394; https://doi.org/10.3390/fermentation10080394 - 31 Jul 2024
Viewed by 3214
Abstract
This study aimed to evaluate the sulfur hexafluoride (SF6) tracer technique for estimating methane (CH4) emissions in dual-flow continuous culture systems (DFCCS). In experiment 1 (Exp1), fermenters were filled with water, and known CH4 concentrations (0, 1.35, 2.93, [...] Read more.
This study aimed to evaluate the sulfur hexafluoride (SF6) tracer technique for estimating methane (CH4) emissions in dual-flow continuous culture systems (DFCCS). In experiment 1 (Exp1), fermenters were filled with water, and known CH4 concentrations (0, 1.35, 2.93, or 4.43 g/d) were injected using permeation tubes with SF6 release rates (3.30 or 9.65 mg/d). Headspace gas was collected using canisters, and the SF6 technique estimated CH4 recovery. Experiment 2 (Exp2) involved a DFCCS fermentation trial with ruminal fluid from three Holstein cows, testing diets with soybean meal or its partial replacement (50%) by Chlorella or Spirulina. Headspace gas was collected at intervals post-feeding. Standard curves for SF6 and CH4 quantification were inadequate for DFCCS samples, with the CH4:SF6 ratio differing from standards, indicating the data needs further SF6 release rate evaluation. In Exp1, a high correlation (r = 0.97) was found between infused and calculated CH4, indicating good repeatability. Low and high SF6 rates performed similarly at low CH4 infusion, but high SF6 overestimated CH4 at high infusion. Exp2 showed CH4 emissions irrespective of SF6 rate and indicated reduced CH4 emissions and increased NDF degradation with algae-containing diets. Further evaluation of the SF6 tracer technique is warranted for DFCCS. Full article
(This article belongs to the Special Issue In Vitro Digestibility and Ruminal Fermentation Profile, 2nd Edition)
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16 pages, 3463 KB  
Article
Genome-Wide Identification of Selenium-Responsive MicroRNAs in Tea Plant (Camellia sinensis L. O. Kuntze)
by Dan Cao, Juan Li, Linlong Ma, Yanli Liu, Jianan Huang and Xiaofang Jin
Horticulturae 2023, 9(12), 1278; https://doi.org/10.3390/horticulturae9121278 - 28 Nov 2023
Cited by 6 | Viewed by 2417
Abstract
Anadequate selenium (Se) intake can enhance human immunity and prevent diseases development. About one billion people in the world have varying degrees of Se deficiency in the world. Organic Se from tea infusion is the most easily absorbed and utilized Se form by [...] Read more.
Anadequate selenium (Se) intake can enhance human immunity and prevent diseases development. About one billion people in the world have varying degrees of Se deficiency in the world. Organic Se from tea infusion is the most easily absorbed and utilized Se form by the human body. Therefore the production of tea plants rich in Se is an effective way to increase Se dietary intake, but there are few studies on the involvement and functions of miRNAs in the responses of tea plants after Se treatment. MicroRNAs (miRNAs) are endogenous (non-coding) single-stranded RNAs that play crucial roles in regulating plant nutrient element acquisition and accumulation. Physiological analysis discovered that the total Se content in tea plant roots markedly increased under 0.05 mmol·L−1 selenite treatment, with no toxicity symptoms in the leaves and roots. To screen the miRNAs responsive to Se treatment in tea plants, miRNA libraries were constructed from the tea cultivar “Echa 1”. Using high-throughput sequencing, 455 known miRNAs and 203 novel miRNAs were identified in this study. In total, 13 miRNAs were selected that were differentially expressed in tea plants’ roots under 0.05 mmol·L−1 selenite treatments. Gene Ontology enrichment analysis revealed that the target genes of the differentially expressed miRNAs mainly belonged to the metabolic process, membrane, and catalytic activity ontologies. Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis suggested that beta-alanine, taurine, hypotaurine, and sulfur metabolism were the most enriched pathways among the differentially expressed miRNAs, implying their involvement in Se accumulation and tolerance in tea plants. Further characterization of the data revealed that the number of novel miRNAs was comparable to that of known miRNAs, indicating that novel miRNAs significantly contributed to the regulation of Se accumulation in tea plant roots. Thisstudy lays the foundation for further research on the regulatory mechanisms underlying Se accumulation and tolerance in tea plants, providing targets to molecular breeding strategies for improving tea nutritional properties. Full article
(This article belongs to the Special Issue Tea Tree: Cultivation, Breeding and Their Processing Innovation)
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15 pages, 7898 KB  
Article
Enhancing Conversion Efficiency of Direct Ink Write Printed Copper (I) Sulfide Thermoelectrics via Sulfur Infusion Process
by Raden Gustinvil, William Jordan Wright, Giuseppe L. Di Benedetto, Donald Skelton, Samuel Stuart, John W. Drazin and Emrah Celik
Machines 2023, 11(9), 881; https://doi.org/10.3390/machines11090881 - 1 Sep 2023
Cited by 7 | Viewed by 2608
Abstract
Copper (I) sulfide (Cu2S) is a low-cost, earth-abundant, and non-toxic thermoelectric material for applications in the middle–high temperature range (>650 K). Although 3D printing these materials can simplify their manufacturing, elevated temperatures observed during sintering impair their crystal structure and energy [...] Read more.
Copper (I) sulfide (Cu2S) is a low-cost, earth-abundant, and non-toxic thermoelectric material for applications in the middle–high temperature range (>650 K). Although 3D printing these materials can simplify their manufacturing, elevated temperatures observed during sintering impair their crystal structure and energy conversion efficiency. In this study, we demonstrated a novel post-processing methodology to revert the thermoelectric properties of the 3D printed Cu2-xS materials back to the unimpaired state via sulfur infusion. After printing and sintering, sulfur was infused into the specimens under vacuum to optimize their crystal structure and achieve high thermoelectric efficiency. Chemical analysis and X-ray Diffraction (XRD) tests showed that after the sulfur infusion process, the Cu/S ratio was reverted close to the stoichiometric level. The 3D printed Cu2-xS showed p-type thermoelectric behavior with electrical conductivity peaking at 143 S-cm−1 at 750 K and Seebeck coefficient of 175 µV-K−1 at 627 K. The figure of merit (ZT) value of 1.0 at 780 K was achieved, which is the highest value ever reported for a 3D printed Cu2-xS thermoelectrics at this temperature. The fabrication of environmentally friendly thermoelectric materials with extended dimensional freedom and conversion efficiency has the potential to impact the thermoelectric industry with new energy conversion applications and lowered manufacturing costs. Full article
(This article belongs to the Special Issue Editorial Board Members’ Collection Series: Additive Manufacturing)
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23 pages, 2007 KB  
Article
Extraction, Chemical Composition, Antiradical Capacity, and Photoprotective Effect of Inonotus obliquus from Eastern Canada
by Yolande A. Wontcheu Fotso, Sara Ghazi, Anissa Belkaid, Jason Soucy, Luc Tremblay, Simon Lamarre, Olivier Clarisse and Mohamed Touaibia
Nutraceuticals 2023, 3(3), 380-402; https://doi.org/10.3390/nutraceuticals3030029 - 2 Aug 2023
Cited by 7 | Viewed by 10342
Abstract
To promote the rational use of Inonotus obliquus (chaga) from Eastern Canada, a mushroom consumed in infusion as a health drink, the extraction of its constituents was investigated. The extraction was carried out with water or ethanol at room temperature or by heating [...] Read more.
To promote the rational use of Inonotus obliquus (chaga) from Eastern Canada, a mushroom consumed in infusion as a health drink, the extraction of its constituents was investigated. The extraction was carried out with water or ethanol at room temperature or by heating as well as following exposure to ultrasound. The extracts of the four seasons obtained with the four extraction methods were compared for their contents in carbon, nitrogen (N), sulfur (S), potassium (K), betulin, betulinic acid, potassium, flavonoids, and polyphenols. The antiradical effect as well as the photoprotective effects of all extracts were also investigated. The results show that there is no difference between the quantities extracted from the extracts of the 4 seasons. The results show a significant difference between the mass of the extracts obtained with water and ethanol. Betulinic acid was found to be more abundant in the extracts obtained with water while betulin was more abundant in the extracts obtained with ethanol. The mushroom and the extracts had high C contents, but low N and S contents, typical of protein-poor and carbohydrate-rich materials. Extracts were particularly rich in potassium, five times more than bananas. Heating favors the extraction of polyphenols and flavonoids. The aqueous extracts of chaga harvested in winter had the highest antiradical capacity. With a Sun Protection Factor (SPF) higher than 30 in the UVB wavelength, chaga extracts might be used as sunscreen. Extracts obtained with water had the highest SPF in general. The analysis of this mushroom further highlights this local product that deserves more attention for its potential benefits as a functional food/nutraceutical product. In addition to its nutritional values, this mushroom can also be used for its cosmetic qualities as it can be used as a sunscreen. Full article
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12 pages, 1262 KB  
Article
The Entrapment of Somatostatin in a Lipid Formulation: Retarded Release and Free Radical Reactivity
by Anna Vita Larocca, Gianluca Toniolo, Silvia Tortorella, Marios G. Krokidis, Georgia Menounou, Giuseppe Di Bella, Chryssostomos Chatgilialoglu and Carla Ferreri
Molecules 2019, 24(17), 3085; https://doi.org/10.3390/molecules24173085 - 25 Aug 2019
Cited by 4 | Viewed by 4978
Abstract
The natural peptide somatostatin has hormonal and cytostatic effects exerted by the binding to specific receptors in various tissues. Therapeutic uses are strongly prevented by its very short biological half-life of 1–2 min due to enzymatic hydrolysis, therefore encapsulation methodologies are explored to [...] Read more.
The natural peptide somatostatin has hormonal and cytostatic effects exerted by the binding to specific receptors in various tissues. Therapeutic uses are strongly prevented by its very short biological half-life of 1–2 min due to enzymatic hydrolysis, therefore encapsulation methodologies are explored to overcome the need for continuous infusion regimes. Multilamellar liposomes made of natural phosphatidylcholine were used for the incorporation of a mixture of somatostatin and sorbitol dissolved in citrate buffer at pH = 5. Lyophilization and reconstitution of the suspension were carried out, showing the flexibility of this preparation. Full characterization of this suspension was obtained as particle size, encapsulation efficiency and retarded release properties in aqueous medium and human plasma. Liposomal somatostatin incubated at 37 °C in the presence of Fe(II) and (III) salts were used as a biomimetic model of drug-cell membrane interaction, evidencing the free radical processes of peroxidation and isomerization that transform the unsaturated fatty acid moieties of the lipid vesicles. This study offers new insights into a liposomal delivery system and highlights molecular reactivity of sulfur-containing drugs with its carrier or biological membranes for pharmacological applications. Full article
(This article belongs to the Special Issue Biomimetic Radical Chemistry and Applications)
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