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Search Results (812)

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Keywords = water toxicity measurements

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21 pages, 9241 KB  
Article
Apigenin Derivatives Alleviate OVA-Induced Oxidative Stress in Bronchial Asthma: A Structure-Activity Relationship Study
by Chenliang Li, Lijin Xiao, Wei Wu, Lingyang Kong, Shuyuan Yue, Zhijie Zhan, Jiao Xu and Wei Ma
Molecules 2026, 31(16), 2768; https://doi.org/10.3390/molecules31162768 - 9 Aug 2026
Abstract
Apigenin (API) is a flavonoid compound widely distributed in nature. The global prevalence of asthma is increasing year by year, influenced by various factors and difficult to cure completely, and new drugs and therapies are constantly emerging. Although API is a low-toxicity flavonoid [...] Read more.
Apigenin (API) is a flavonoid compound widely distributed in nature. The global prevalence of asthma is increasing year by year, influenced by various factors and difficult to cure completely, and new drugs and therapies are constantly emerging. Although API is a low-toxicity flavonoid compound, its poor water solubility and low bioavailability present limitations in the treatment of asthma. In this study, the structure of API was chemically modified by introducing acyl and alkyl groups while preserving its original structure. The structures were identified using FT-IR, 1H-NMR and 13C-NMR spectroscopy, yielding derivatives (A–J). To further investigate the effects of structural modifications on API’s biological activity, an ovalbumin (OVA)-induced asthma model was established in mice to evaluate the antioxidants’ activity. Hematoxylin-eosin staining was used to observe pathological changes in lung tissue, and oxidative stress-related parameters, including ROS, SOD, and MDA, were measured to assess the derivatives’ protective effects against oxidative damage. The results showed that the 10 synthetic derivatives exhibited varying degrees of oxidative stress during treatment. Compared with the model group, the API derivative treatment group significantly reduced ROS and MDA levels and increased SOD activity. Moreover, treatment with the compounds reduced the levels of pro-inflammatory cytokines, including TNF-α, IL-6, and IL-1β, and decreased serum IgE levels. Histopathological examination further demonstrated that the compounds alleviated inflammatory cell infiltration and tissue damage in the lungs. Structure-activity analysis indicated that, among the 10 derivatives, the tri-substituted API derivatives exhibited superior antioxidant activity compared to the di-substituted API derivatives. By modifying the chemical structure of API, its antioxidant activity in OVA-induced bronchial asthma was significantly enhanced. 5,7,4′-O-triethyl API and 5,7,4′-O-triacetyl API demonstrated therapeutic effects comparable to those of dexamethasone and show promise as lead compounds for the development of novel asthma treatments. Full article
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20 pages, 1302 KB  
Review
Copper-Based Nanopesticides at the Benthic Interface: Transformation, Speciation, Invertebrate Exposure, and Food-Web Risks
by Xin Wu, Yuling Dong, Ao Li and Changjian Xie
Toxics 2026, 14(8), 681; https://doi.org/10.3390/toxics14080681 - 3 Aug 2026
Viewed by 215
Abstract
Copper-based nanopesticides are increasingly explored as nano-enabled alternatives to conventional copper pesticides because they may improve deposition, antimicrobial efficacy, and material-use efficiency. Their environmental risk, however, cannot be inferred from total copper concentration or from the toxicity of pristine particles alone. After agricultural [...] Read more.
Copper-based nanopesticides are increasingly explored as nano-enabled alternatives to conventional copper pesticides because they may improve deposition, antimicrobial efficacy, and material-use efficiency. Their environmental risk, however, cannot be inferred from total copper concentration or from the toxicity of pristine particles alone. After agricultural application, copper-based nanoforms may be transported to soils, drainage waters, wetlands, and sediments, where aggregation, dissolution, aging, sulfidation, organic complexation, and biological processing reshape their speciation and bioavailability. This review critically examines copper-based nanopesticides at the benthic interface, with emphasis on environmental transformation, synchrotron-resolved speciation, lower-trophic invertebrate exposure, trophic transfer, and food-web risk. We highlight that sediment-associated organisms are not only toxicity endpoints but also biological processors and vectors of transformed copper species. Evidence from stable-isotope tracing, dietary exposure studies, mesocosms, and micro-food-web experiments shows that copper-based nanoforms can enter aquatic, benthic, and terrestrial food chains. However, most studies demonstrate transfer or accumulation rather than consistent biomagnification across trophic levels. We further argue that future risk assessment should move beyond single-material and single-endpoint testing toward transformation-aware, route-specific, and food-web-relevant frameworks. Integrating total copper analysis with particle-specific measurements, synchrotron-based speciation where analytically feasible, realistic lower-trophic exposure models, and ecosystem-level endpoints will be essential for evaluating the long-term risks of copper-based nanopesticides. Full article
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16 pages, 9863 KB  
Article
Biocomposites Made from Cocos nucifera L. Fibres and Polyhydroxybutyrate (PHB) for Water Treatment Applications
by Rodrigo Ortega Toro, Joaquín Hernández-Fernández, Gian Torres-Fernández, Ángel Villabona-Ortiz and Candelaria Tejada-Tovar
J. Compos. Sci. 2026, 10(8), 395; https://doi.org/10.3390/jcs10080395 - 28 Jul 2026
Viewed by 229
Abstract
Cr(VI) is considered one of the most dangerous pollutants due to its bioaccumulation and toxicity, which has driven the search for sustainable and effective solutions for its removal from wastewater. In this regard, the aim of this research was to develop a material [...] Read more.
Cr(VI) is considered one of the most dangerous pollutants due to its bioaccumulation and toxicity, which has driven the search for sustainable and effective solutions for its removal from wastewater. In this regard, the aim of this research was to develop a material based on cellulose acetate (CA) extracted from Cocos nucifera L. fibres and polyhydroxybutyrate (PHB) for the removal of Cr(VI). The biocomposite (PHB/CA) was synthesised using the casting method; its adsorption capacity was evaluated in batch systems and its efficiency measured at different contaminant concentrations. The characterisation results indicated interactions between the fibres and the PHB, resulting in a porous material containing hydroxyl, amino, ether/alcohol, carbonyl and alkane/alkyl functional groups. Cr(VI) removal tests indicated that the optimal operating conditions were achieved at a pH of 3 and a concentration of 15 mg/L, yielding an adsorption efficiency of 44.5%, and showing a trend consistent with the Elovich kinetic model and the Langmuir isotherm. In conclusion, this research proposes the exploration of new bioadsorbents derived from coconut agro-industrial waste combined with biopolymers for the remediation of contaminated water, thereby expanding our understanding of the relationship between the structure of bio-composites of renewable origin and their performance in heavy metal adsorption processes. Full article
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24 pages, 3148 KB  
Review
Horticultural Salinity-Stress Phenotyping and Tolerance Inference: A Critical Evidence Map and Validation Framework for AI-Related Claims
by Xiongwei Liang, Shaopeng Yu, Yongfu Ju, Yingning Wang and Dawei Yin
Horticulturae 2026, 12(8), 921; https://doi.org/10.3390/horticulturae12080921 - 25 Jul 2026
Viewed by 358
Abstract
Salinity stress constrains horticultural production in protected cultivation, hydroponics, coastal agriculture and reclaimed-water irrigation. This critical narrative review and evidence map synthesizes a DOI-verified core corpus of 160 peer-reviewed journal articles to ask how artificial intelligence (AI) can support, rather than overstate, salinity-stress [...] Read more.
Salinity stress constrains horticultural production in protected cultivation, hydroponics, coastal agriculture and reclaimed-water irrigation. This critical narrative review and evidence map synthesizes a DOI-verified core corpus of 160 peer-reviewed journal articles to ask how artificial intelligence (AI) can support, rather than overstate, salinity-stress inference in horticultural crops. The evidence base is uneven: 22 retained records were AI-, sensing- or phenotyping-relevant, six treated ML, deep learning, edge intelligence or agentic AI as a central method, and four directly tested salinity- or water-stress AI/sensor phenotyping in a crop-relevant system. Among the six explicit-AI records, none externally validated a salinity-specific AI model; one distinguished salinity from drought, and none reported a prospective AI-guided intervention trial. Accordingly, this article is framed as a validation and reporting framework, not as a quantitative meta-analysis of model or intervention efficacy. Across the broader corpus, evidence for salinity tolerance centres on osmotic limitation, Na+ and Cl toxicity, K+ retention, ROS regulation, photosynthetic protection, hormonal signalling, root hydraulics, rhizosphere processes and metabolic reprogramming. The review links these mechanisms to measurable traits and to claim-specific AI validation requirements. We propose a mechanism-to-AI map, a validation ladder, an intervention maturity framework and a reporting checklist. The conclusion is deliberately conservative: AI can improve salinity research when it is constrained by rigorous metadata, physiological grounding, external validation, stress-confusion testing and explicit uncertainty, but current evidence is insufficient to support autonomous, economically validated or field-ready AI-based salinity management. Full article
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21 pages, 3501 KB  
Article
Transferosomes Containing 20-Hydroxyecdysone for Psoriasis Treatment: Preparation, Characterization, and In Vitro and In Vivo Toxicity Assessment
by Pawel Bakun, Dariusz T. Mlynarczyk, Kacper Durowicz, Szymon Tomczak, Jolanta Dlugaszewska, Daniel Ziental, Robert Kleszcz, Aleksandra Majchrzak-Celińska, Ewelina Musielak, Mateusz de Mezer, Mikołaj Baranowski, Aneta Wozniak-Braszak, Emilia Cicha, Violetta Krajka-Kuzniak, Anna Jelinska, Tomasz Goslinski and Ludwika Piwowarczyk
Pharmaceuticals 2026, 19(8), 1157; https://doi.org/10.3390/ph19081157 - 25 Jul 2026
Viewed by 345
Abstract
Background/Objectives: Psoriasis is a chronic, immune-mediated inflammatory skin disorder affecting millions of individuals worldwide. It remains a therapeutic challenge due to the limited skin penetration of many drugs, adverse systemic effects, and the need for long-term management. Transferosomal nanoformulations containing natural products [...] Read more.
Background/Objectives: Psoriasis is a chronic, immune-mediated inflammatory skin disorder affecting millions of individuals worldwide. It remains a therapeutic challenge due to the limited skin penetration of many drugs, adverse systemic effects, and the need for long-term management. Transferosomal nanoformulations containing natural products were proposed as a potential therapeutic tool. Methods: Transferosomes containing 20-hydroxyecdysone and resveratrol were prepared using the thin-film hydration method followed by probe ultrasonication, generating several formulation variants differing in composition. The vesicles were characterized by dynamic light scattering (DLS) and nanoparticle tracking analysis (NTA) to determine size, polydispersity index (PDI), and zeta potential. Furthermore, time-domain nuclear magnetic resonance (TD-NMR) relaxation measurements were employed to evaluate local molecular dynamics and membrane fluidity, providing deeper insights into the structural integrity and elasticity of the transferosomal systems. The stability of the nanoformulations was assessed for one month in water and phosphate-buffered saline (PBS). Viability was evaluated in vitro using the MTS assay on human epidermal keratinocyte (HEK) and psoriasis-patient derived human epidermal keratinocyte (PHEK) cell lines, alongside antimicrobial profiling against four representative human skin microbiome strains. Acute toxicity was further examined in vivo using the Danio rerio FET test. Results: The formulations demonstrated high physicochemical stability over the tested period, maintained desirable particle sizes within 100–200 nm, and showed no cytotoxicity toward skin-associated bacteria or in the zebrafish model. Conclusions: The developed nanoformulations present suitable properties in terms of safety and stability and can be considered for potential use in psoriasis treatment. Full article
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19 pages, 2704 KB  
Article
Phytochemical Analysis and Bioactivities of Dombeya rotundifolia and Lippia javanica
by Matsilane L. Mashilo, Mashilo M. Matotoka, Ofentse Mazimba and Peter Masoko
Plants 2026, 15(14), 2233; https://doi.org/10.3390/plants15142233 - 22 Jul 2026
Viewed by 413
Abstract
Tuberculosis (TB) remains a major global health challenge, compounded by rising drug resistance. Traditional medicinal plants used for TB-related symptoms represent a valuable yet underexplored source of potential antimycobacterial agents. In this study, the phytochemical content and biological activities of Dombeya rotundifolia and [...] Read more.
Tuberculosis (TB) remains a major global health challenge, compounded by rising drug resistance. Traditional medicinal plants used for TB-related symptoms represent a valuable yet underexplored source of potential antimycobacterial agents. In this study, the phytochemical content and biological activities of Dombeya rotundifolia and Lippia javanica were evaluated, and antimycobacterial compounds were isolated through bioassay-guided fractionation. Plant leaves were collected, extracted with solvents of varying polarity, and screened for phenolics and flavonoids. Antioxidant activity was assessed using DPPH and ferric reducing power assays, antimycobacterial activity was tested against Mycobacterium smegmatis, anti-inflammatory activity was determined by the egg albumin denaturation method, and cytotoxicity was evaluated in THP-1 cells using the MTT assay. Extraction yields varied, with water extracts of L. javanica showing the highest yield and hexane extracts of D. rotundifolia the lowest. Both plants contained bioactive phytochemicals with measurable antioxidant activity, while acetone and dichloromethane extracts of D. rotundifolia displayed the strongest antimycobacterial activity with MIC values of 0.16 mg/mL. Cytotoxicity assays indicated moderate toxicity at higher extract concentrations. Bioassay-guided isolation led to the identification of two fatty acid fractions with tentative characterization, which showed notable antimycobacterial activity (MIC 0.25 mg/mL). These findings provide preliminary support for the ethnomedicinal use of D. rotundifolia in respiratory conditions traditionally associated with tuberculosis and suggest a potential contribution of its fatty acids to its observed antimycobacterial activity. Full article
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25 pages, 3544 KB  
Article
Choline Lactate Photocured Hydrogels for Sustainable Low-Temperature Supercapacitors
by Joanna Fijałkowska, Julianna Czerniawska, Beata Sikora, Wiktoria Patz, Julia Marecka, Łukasz Popenda, Piotr Gajewski, Katarzyna Szcześniak and Agnieszka Marcinkowska
Gels 2026, 12(7), 623; https://doi.org/10.3390/gels12070623 - 10 Jul 2026
Viewed by 412
Abstract
The growing demand for flexible and environmentally friendly energy storage systems has increased interest in new electrolyte materials capable of operating at low temperatures. In this work, hydrogel polymer electrolytes based on aqueous choline lactate solutions were developed and evaluated for supercapacitor applications. [...] Read more.
The growing demand for flexible and environmentally friendly energy storage systems has increased interest in new electrolyte materials capable of operating at low temperatures. In this work, hydrogel polymer electrolytes based on aqueous choline lactate solutions were developed and evaluated for supercapacitor applications. Choline lactate was synthesized from biodegradable and low-toxicity substrates and characterized using spectroscopic and thermal analysis methods. A series of aqueous electrolytes with different salt concentrations was prepared, and their viscosity, density, and ionic conductivity were investigated to determine the optimal composition for hydrogel preparation. The obtained hydrogels were synthesized by photopolymerization and showed good flexibility, transparency, and structural stability without electrolyte leakage. Thermal analysis revealed that the presence of choline lactate effectively suppressed water crystallization, reducing the phase transition temperature of the hydrogel systems below −44 °C. Ionic conductivity increased with electrolyte content and reached 22.3 mS·cm−1 at room temperature for the hydrogel containing 90 wt% electrolyte. Mechanical measurements showed that increasing electrolyte concentration improved flexibility but reduced stiffness and compressive strength. Electrochemical tests demonstrated stable supercapacitor operation in the temperature range from 25 °C to −20 °C, although lower temperatures led to decreased capacitance and increased internal resistance. The results indicate that choline lactate-based hydrogels are promising candidates for sustainable low-temperature energy storage devices. Full article
(This article belongs to the Special Issue Recent Advances in Gel Polymer Electrolytes)
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19 pages, 5371 KB  
Article
Bisphenol F-Associated Repeated Breeding Syndrome in Cows: Epidemiological Evidence and Protective Effects of Phillyrin Against Granulosa Cell Injury
by Yueqi Wang, Boyang Zhang, Rui Yang, Yan Zhang, Daozhen Jiang, Yifei Mao, Bo Tang and Xueming Zhang
Vet. Sci. 2026, 13(7), 670; https://doi.org/10.3390/vetsci13070670 - 9 Jul 2026
Viewed by 268
Abstract
Repeat breeding syndrome (RBS), characterized by repeated artificial insemination failure, is associated with ovarian dysfunction in ruminants and causes economic losses. Environmental endocrine-disrupting chemicals (EDCs), such as bisphenol F (BPF), may contribute to RBS, but the relationship between BPF exposure and RBS in [...] Read more.
Repeat breeding syndrome (RBS), characterized by repeated artificial insemination failure, is associated with ovarian dysfunction in ruminants and causes economic losses. Environmental endocrine-disrupting chemicals (EDCs), such as bisphenol F (BPF), may contribute to RBS, but the relationship between BPF exposure and RBS in cows remains unclear. In this study, we conducted an epidemiological investigation and clinical examinations in 111 adult Simmental cows, including 7 cows diagnosed with RBS, from two local farms, and measured the BPF levels in the drinking water, feed, and the serum samples. We further evaluated the protective effects of phillyrin, a bioactive compound derived from Forsythia suspensa, against BPF-induced ovarian toxicity using cow granulosa cells (CGCs). RBS mainly occurred in young cows with two or more parities. RBS cows showed signs of potential liver dysfunction, kidney injury, anemia, and fecal abnormalities suggestive of altered gut health, together with higher serum BPF levels and lower estradiol levels. Detectable BPF contamination in the drinking water and feed suggested environmental exposure as a possible contributor to RBS in cows. In vitro, BPF induced inflammatory and apoptotic responses in CGCs by upregulating pro-inflammatory and pro-apoptotic mediators, whereas phillyrin pretreatment markedly alleviated these effects. These findings suggest that BPF exposure might be associated with RBS in cows and phillyrin could be used as a promising natural agent for mitigating BPF-related reproductive toxicity. Full article
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15 pages, 1931 KB  
Article
Toxicity Effects of Fine Particulate Matter (PM2.5) from Incomplete Solid Fuel Burning in Caenorhabditis elegans
by Zhenyu Lu, Bingbo Huang, Xiaoming Liu, Wankang Chen, Xiaoyu Cai and Mindong Chen
Toxics 2026, 14(7), 597; https://doi.org/10.3390/toxics14070597 - 8 Jul 2026
Viewed by 511
Abstract
Although the health risks associated with the use of biomass fuels have received widespread attention, there has been insufficient detailed research conducted on the toxic effects and toxicity generation mechanisms of PM2.5 produced by the use of different sources of solid organic [...] Read more.
Although the health risks associated with the use of biomass fuels have received widespread attention, there has been insufficient detailed research conducted on the toxic effects and toxicity generation mechanisms of PM2.5 produced by the use of different sources of solid organic fuels. In this study, the synchronized L4-stage Caenorhabditis elegans (C. elegans) were exposed to the suspensions of the PM2.5 samples collected from incomplete combustion products of rice straw, wheat straw, peanut straw, rapeseed straw and the branch of poplar and paulownia. Body length, the number of fertilized eggs, accumulation of lipofuscin, and levels of reactive oxygen species (ROSs) were measured to characterize developmental toxicity, reproductive toxicity, intestinal damage, and oxidative stress. The types and mass proportions of organic carbon (OC), elemental carbon (EC), water-soluble inorganic ions, and polycyclic aromatic hydrocarbons (PAHs) in PM2.5 were determined. The results show that PM2.5 generated from the combustion of the straw of oilseed crops such as peanuts and rapeseed has the most severe toxic effects on C. elegans. The toxicological mechanism was mainly mediated by severe oxidative stress and excessive generation of ROSs. The chemical characteristics of PM2.5 have strong source-specificity, and its toxic effects are closely related to the high content of lipid-soluble PAHs in PM2.5 from oilseed crop sources. Full article
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29 pages, 4965 KB  
Article
Modeling the Invisible Threat: Software-Assisted Assessment of Landfill Leachate Impacts to Receiving Water Bodies
by Dejan Vasovic, Natalija Petrovic, Nemanja Petrovic, Carmen Maftei and Ashok Vaseashta
Water 2026, 18(13), 1619; https://doi.org/10.3390/w18131619 - 3 Jul 2026
Viewed by 513
Abstract
Landfill leachate represents a long-term source of contamination that may significantly affect groundwater and receiving water bodies through the migration of organic, inorganic, and toxic pollutants. This study evaluated the long-term migration of landfill leachate and its potential environmental impacts using the LandSim [...] Read more.
Landfill leachate represents a long-term source of contamination that may significantly affect groundwater and receiving water bodies through the migration of organic, inorganic, and toxic pollutants. This study evaluated the long-term migration of landfill leachate and its potential environmental impacts using the LandSim Release 2 probabilistic software model applied to two municipal waste landfills in the Republic of Serbia: the regional sanitary landfill “Gigoš” in Jagodina and the sanitary landfill “Meteris” in Vranje. The modelling framework integrated laboratory leachate analyses, hydrogeological conditions, engineered barrier system characteristics, and receptor-oriented contaminant transport assessment. Model validation was performed through comparison of simulated and laboratory-measured concentrations. Two scenarios were analyzed for each site: an engineered sanitary landfill scenario with a functional containment system and a conservative barrier-failure scenario representing complete loss of engineered barrier functionality. Ten representative leachate parameters were included, covering nitrogen compounds, inorganic ions, toxic substances, and heavy metals/metalloids. The results showed that engineered protection systems significantly delay contaminant migration and reduce receptor concentrations, while barrier-failure conditions lead to earlier pollutant breakthrough and higher environmental risk. The simulations demonstrated that under the engineered sanitary landfill scenario, receptor concentrations of all analyzed contaminants remained below the corresponding maximum allowable concentrations, with contaminant migration occurring only after several centuries. In contrast, the conservative barrier-failure scenario resulted in substantially earlier contaminant breakthrough, with nitrogen compounds and phenols representing the greatest environmental concern due to their rapid migration and exceedance of regulatory thresholds, while the “Meteris” landfill generally exhibited higher receptor concentrations than the “Gigoš” landfill. These findings highlight the importance of predictive modelling and long-term monitoring for sustainable landfill management and groundwater protection. Full article
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9 pages, 2700 KB  
Protocol
A Miniaturised Protocol for Feeding Measurements in Daphnids
by Izabela Antepowicz, Antonia Despotidi, Emma Rowan, Mbuyiselwa Shadrack Moloi, Silke Aulhorn, Harry Esmonde, Konstantinos Grintzalis and Eberhard Küster
Methods Protoc. 2026, 9(4), 102; https://doi.org/10.3390/mps9040102 - 1 Jul 2026
Viewed by 471
Abstract
Daphnids, commonly known as water fleas, are freshwater planktonic microcrustacean species used as model organisms in ecotoxicology, particularly in regulatory frameworks that adhere to OECD and ISO standards. Mortality is the most common endpoint in toxicity testing; however, more sensitive indicators are required [...] Read more.
Daphnids, commonly known as water fleas, are freshwater planktonic microcrustacean species used as model organisms in ecotoxicology, particularly in regulatory frameworks that adhere to OECD and ISO standards. Mortality is the most common endpoint in toxicity testing; however, more sensitive indicators are required to assess sublethal acute effects of pollutants. The use of feeding impairment as a toxicity phenotypic endpoint in daphnids is considered a cost-effective approach that aligns with the 3Rs principle (Replace, Reduce, Refine) and is more physiologically and environmentally relevant. Current feeding methods are inefficient due to the large test volumes and extended incubation periods required. In this paper, we present a miniaturised protocol to assess feeding behaviour following exposure to chemicals in daphnids. The method is based on the consumption of algae, which is measured with chlorophyll fluorescence. The optimised protocol is more robust and rapid, and results can be obtained in 30 min and in a 96-well plate. Responses in feeding rate were investigated using this miniaturised protocol following exposure to a range of prevalent pollutants, which include two metals and, as a more realistic sample, a leachate from smoked cigarette filters. All three pollutants were tested at sublethal concentrations. This method provides an efficient approach to assess the toxicity of chemicals and water quality. Full article
(This article belongs to the Section Biomedical Sciences and Physiology)
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15 pages, 1543 KB  
Article
Distribution, Polymer Composition, and Exposure Risks of Microplastics in Bottled and Tap Water Distribution
by Mariana Silva, Pedro Ideia, Carolina Pimenta-Fernandes, Ricardo Sousa, José S. Câmara and Rosa Perestrelo
Molecules 2026, 31(13), 2237; https://doi.org/10.3390/molecules31132237 - 25 Jun 2026
Viewed by 674
Abstract
Microplastic (MP) pollution in bottled and tap water poses escalating environmental and public health challenges due to MPs’ capacity to act as vectors for toxicants and pathogens. This study constitutes the first comprehensive evaluation of MPs in drinking water from Madeira Island, integrating [...] Read more.
Microplastic (MP) pollution in bottled and tap water poses escalating environmental and public health challenges due to MPs’ capacity to act as vectors for toxicants and pathogens. This study constitutes the first comprehensive evaluation of MPs in drinking water from Madeira Island, integrating detailed chemical and morphological characterisations alongside human exposure estimations. A total of 22 samples, comprising 10 bottled (four mineral, six flavoured) and 12 tap waters, were analysed via stereomicroscopy and micro-Fourier transform infrared (µ-FTIR) spectroscopy. Of the 428 particles detected, 65 were confirmed MPs, 223 were non-plastics, and 140 were indeterminate. Bottled waters were predominantly contaminated by polyethylene terephthalate (PET), polypropylene (PP), and polyethylene (PE), whereas tap waters exhibited a notable presence of PE, PP, polyester, and polyamide (PA). MPs predominantly measured under 400 µm and were transparent; fragments were the main form in bottled water, contrasting with fibres dominating tap waters. Concentrations ranged from 0.5 to 6 MPs/L, with flavoured waters exhibiting the highest average levels (2.00 ± 1.83 MPs/L), followed by tap (1.30 ± 0.80 MPs/L) and mineral waters (0.59 ± 0.37 MPs/L). Estimated daily intake (EDI) spanned 0.01–0.19 MPs/kg/day for adults and 0.05–0.68 MPs/kg/day for children, the latter exhibiting a 3.6-fold greater exposure. Although concentrations were lower than those in many global reports, the ubiquity of MPs underscores the critical need for standardised monitoring protocols, enhanced production standards, and rigorous risk assessments addressing chronic low-level human exposure, especially in insular environments. Full article
(This article belongs to the Special Issue Advances in Microplastics and Nanoplastics Analysis, 2nd Edition)
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27 pages, 1900 KB  
Article
Bioaccumulation and Human Health Risk Assessment of Potentially Toxic Elements in Commercial Fish Species (Oreochromis niloticus, Clarias gariepinus, Mugil cephalus) from Slaughterhouse Wastewater-Impacted Rivers in Nigeria
by Onyedikachi Uchechi Bliss, Edene Osemudiamen Anao, Paul Promise Chibuike, Ugorji Chizoba Agatha, Peter Chinedu Agu and Emmanuel Anuoluwapo Oke
Int. J. Environ. Res. Public Health 2026, 23(7), 827; https://doi.org/10.3390/ijerph23070827 - 23 Jun 2026
Viewed by 513
Abstract
Slaughterhouse wastewater introduces potentially toxic elements into aquatic ecosystems, yet bioaccumulation patterns in commercial fish species and associated human health risks remain underexplored in West Africa. This study quantified zinc (Zn), lead (Pb), iron (Fe), magnesium (Mg), chromium (Cr), and cadmium (Cd) in [...] Read more.
Slaughterhouse wastewater introduces potentially toxic elements into aquatic ecosystems, yet bioaccumulation patterns in commercial fish species and associated human health risks remain underexplored in West Africa. This study quantified zinc (Zn), lead (Pb), iron (Fe), magnesium (Mg), chromium (Cr), and cadmium (Cd) in three ecologically distinct fish species—Oreochromis niloticus (Nile tilapia), Clarias gariepinus (African sharptooth catfish), and Mugil cephalus (Flathead grey mullet)—from two slaughterhouse-impacted rivers (Transamadi and Mgbuosimini) and a control site (Iwofe) in Rivers State, Nigeria. Metal concentrations were measured using atomic absorption spectrophotometry. Two-way ANOVA assessed species and location effects. Principal component analysis (PCA) was performed, with Mg used as a potential geogenic tracer, as its loading pattern was independent of Pb and Cd and consistent with the natural background. A Water Quality Index (WQI) classified Mgboshimini and Iwofe as having poor water quality (WQI > 75), while Transamadi had medium quality. Health risks were evaluated using estimated daily intake (EDI), target hazard quotients (THQ), and hazard indices (HI) following USEPA guidelines. Metal levels varied significantly by species and location (p < 0.001). Flathead grey mullet from Mgbuosimini had the highest Pb (1.50 ± 0.05 mg/kg) and Cd (0.41 ± 0.02 mg/kg), exceeding EU maximum levels for fish muscle (Pb 0.30 mg/kg, Cd 0.05 mg/kg) by 500% and 800%, respectively. PCA explained 77.5% of the variance, with Pb and Cd clustering as anthropogenic sources, while Mg loaded independently. THQ for Pb approached unity in Flathead grey mullet (0.88), and THQ for Cd reached 0.97. HI exceeded 1.0 in all species from Mgbuosimini, peaking at 2.07 in Flathead grey mullet. Uncertainty analysis (using ±SD) gave a HI range of 1.89–2.25 for this species, all above the safety threshold. Carcinogenic risk for Flathead grey mullet (3.97 × 10−4) approached the upper acceptable limit. Slaughterhouse effluent appears to elevate Pb and Cd burdens in fish, with detritivorous Flathead grey mullet posing the highest health risk. Exceedance of safety thresholds and HI > 1.0 indicate potential non-carcinogenic and carcinogenic risks. We recommend improved wastewater treatment and species-specific consumption advisories. Full article
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20 pages, 9222 KB  
Article
Integrated Assessment of Potentially Toxic Elements in Soils and Irrigation Water and Human Health Risk in a Gold Mining-Impacted Area of Southern Ecuador
by Juan González-Menéndez, Carlos Hugo Bustamante-Torres, Bryan Salgado-Almeida, Giannella Muriel-Granda, Samantha Jiménez-Oyola and Kenny Escobar-Segovia
Resources 2026, 15(6), 81; https://doi.org/10.3390/resources15060081 - 22 Jun 2026
Viewed by 724
Abstract
Areas where mining activities overlap with agricultural production may promote the mobilization of potentially toxic elements (PTEs) into soils and water resources, thereby creating exposure pathways for populations living or working in these environments. This study analyzes the concentration of PTEs in agricultural [...] Read more.
Areas where mining activities overlap with agricultural production may promote the mobilization of potentially toxic elements (PTEs) into soils and water resources, thereby creating exposure pathways for populations living or working in these environments. This study analyzes the concentration of PTEs in agricultural soils and irrigation water from Santa Rosa, southern Ecuador, and assesses the associated health risks for exposed agricultural workers. For this purpose, 35 soil samples were collected from farms and 12 water samples from the irrigation canal during the dry season of 2025. The concentration of PTEs in soil and water was determined using X-ray fluorescence (XRF) and inductively coupled plasma mass spectrometry (ICP-MS), respectively. The PTE concentration in both matrices was compared with the maximum permissible limits (MPL) established by Ecuadorian regulations. Non-carcinogenic hazard indices (HI) and carcinogenic risk (TCR) were estimated following the U.S. EPA methodology. In soil, As and Cr were the PTEs of greatest concern, exceeding the MPL in 93% of the samples and by up to 4.4 and 2.4 times, respectively, while in water, all PTEs were below the MPL. Non-carcinogenic risk was below the recommended limit for soil and water (HIsoil = 3.00 × 10−2 and HIwater = 2.00 × 10−3), with As as the dominant contributor. Cancer risk was tolerable in soil (TCRsoil = 4.34 × 10−5), while in water it remained at a low level (TCRwater = 1.65 × 10−6). These findings identify As and Cr as priority contaminants and support targeted monitoring and source-control measures in mining-influenced agricultural areas. Overall, by integrating agricultural soil and irrigation water quality with an occupational health risk assessment in Santa Rosa, this study contributes evidence to support future research in mining–agriculture coexistence areas. Full article
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Article
Fully Aqueous Electrospinning of Binary PVP/Sodium-Alginate and PVP/Riboflavin Nanofibres: Additive Effects and UV-Assisted Processing
by Julia C. Andrade, Gilmar P. Thim, Fernando Cabral, Frank Jorg Clemens and Marcio Fredel
Polymers 2026, 18(12), 1536; https://doi.org/10.3390/polym18121536 - 20 Jun 2026
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Abstract
Electrospinning (ES) can produce nonwoven fibrous mats with high surface area and interconnected porosity, making them attractive for biomedical and functional material applications. However, conventional ES often relies on volatile organic solvents, raising safety, environmental, and translational concerns. Fully aqueous (“green”) ES offers [...] Read more.
Electrospinning (ES) can produce nonwoven fibrous mats with high surface area and interconnected porosity, making them attractive for biomedical and functional material applications. However, conventional ES often relies on volatile organic solvents, raising safety, environmental, and translational concerns. Fully aqueous (“green”) ES offers an appealing alternative, although many water-soluble polymers remain difficult to spin and may show limited stability under hydrated conditions. In this study, two fully aqueous binary systems, poly(vinylpyrrolidone)–sodium alginate (PVP–SA) and poly(vinylpyrrolidone)–riboflavin (PVP–RF), were investigated to decouple the roles of sodium alginate (SA) and riboflavin (RF) on solution behaviour, fibre formation, morphology, dry-state mechanical properties, and surface chemistry. Aqueous PVP solutions (20% w/v; molecular weight 1.3 MDa) were blended with SA (1–5 wt% relative to PVP) or RF (1–10 wt% relative to PVP). Electrical conductivity and rheological properties were evaluated prior to ES under controlled conditions, with simultaneous ultraviolet (UV) exposure at 344 nm during fibre collection. RF did not significantly alter conductivity (~0.74–0.75 µS·cm−1), whereas SA increased conductivity up to 2.75 ± 0.03 µS·cm−1 at 5 wt%. All formulations exhibited shear-thinning behaviour, while 10 wt% RF increased the zero-shear viscosity relative to neat PVP. Morphological analysis showed that low SA contents produced uniform fibres, whereas higher SA levels (4–5 wt%) led to bead defects and reduced fibre diameter (down to 85 ± 25 nm). Dry-state mechanical performance decreased with increasing SA content, while 10 wt% RF improved tensile strength and toughness, reaching an ultimate tensile strength of 5.21 ± 0.15 MPa and toughness of 40.51 ± 1.53 MJ·m−3. Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) indicated subtle UV-driven redistribution of surface chemical states, consistent with mild photo-oxidative microstructural modification rather than extensive covalent network formation. Because the UV irradiance was not directly measured and wet-state stability was not assessed, the UV-related findings are interpreted as preliminary chemical evidence rather than confirmation of stabilized fibre mats. Overall, this work establishes a solvent-free aqueous ES platform in which ionic and photoactive additives can be used to tailor fibre morphology, dry-state mechanical behaviour, and surface characteristics without toxic reagents. Full article
(This article belongs to the Special Issue Advances in Electrospun Polymeric Nanofibers)
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