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Search Results (327)

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19 pages, 3294 KB  
Article
Polyvinyl Chloride and Polypropylene Model Nanoplastics Exhibit Distinct Interaction Patterns and Cellular Responses in Human Umbilical Vein Endothelial (HUVECs) Cells
by Sara Bozzer, Cristina Tufoni, Murielle Salomé, Alessandra Gianoncelli, Clement Holé, Hiram Castillo-Michel, Giuseppe Ricci and Lorella Pascolo
Toxics 2026, 14(9), 750; https://doi.org/10.3390/toxics14090750 - 26 Aug 2026
Viewed by 174
Abstract
Micro- and nanoplastics (MNPs) are increasingly detected in human tissues, yet their polymer-specific effects on endothelial cells remain poorly understood, particularly at the placental and fetal level. We compared cadmium selenide quantum dot-labelled polypropylene (PP) and polyvinyl chloride (PVC) model nanoplastics (NPs) in [...] Read more.
Micro- and nanoplastics (MNPs) are increasingly detected in human tissues, yet their polymer-specific effects on endothelial cells remain poorly understood, particularly at the placental and fetal level. We compared cadmium selenide quantum dot-labelled polypropylene (PP) and polyvinyl chloride (PVC) model nanoplastics (NPs) in human umbilical vein endothelial cells (HUVECs) using particle characterization, MTT assays, flow cytometry, confocal microscopy, apoptosis analysis, and synchrotron nano-X-ray fluorescence imaging. PP nanoplastics caused an early reduction in metabolic activity, showed the strongest cell-associated fluorescence, and produced the greatest increase in membrane permeability and late apoptotic/necrotic populations. PVC nanoplastics displayed a more punctate distribution with greater overlap with membrane-associated regions and induced a stronger increase in LC3B-positive vesicular structures. Nano-XRF detected Cd-enriched signals associated with the labelled particles and a polymer-specific Cd–Cl spatial association in PVC-exposed cells. Sulfur mapping further revealed localized sulfur-poor regions along the cell periphery in exposed cells, suggesting localized remodeling of peripheral membranes. These findings indicate that PP and PVC NPs interact differently with endothelial cells and elicit distinct structural and functional responses. Polymer composition should therefore be considered when assessing the vascular and prenatal effects of MNP exposure. Full article
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14 pages, 3292 KB  
Article
Lateral Flow Immunochromatographic Assay for Detection of Antibodies Against a Recombinant Human Adenovirus Type 3 Hexon Fragment Using Gold Nanoparticles and Quantum Dots
by Kanatbek Mukantayev, Kanat Tursunov, Laura Tokhtarova and Bisultan Abirbekov
Diagnostics 2026, 16(16), 2670; https://doi.org/10.3390/diagnostics16162670 - 21 Aug 2026
Viewed by 163
Abstract
Background/Objectives: Human adenoviruses (HAdVs) are widely used as vectors for vaccines and gene therapy; however, pre-existing immunity can reduce their efficacy. Therefore, rapid and accessible serological methods are required to assess antibody levels against adenoviruses. Lateral flow immunochromatographic assay (LFIA) sensitivity depends [...] Read more.
Background/Objectives: Human adenoviruses (HAdVs) are widely used as vectors for vaccines and gene therapy; however, pre-existing immunity can reduce their efficacy. Therefore, rapid and accessible serological methods are required to assess antibody levels against adenoviruses. Lateral flow immunochromatographic assay (LFIA) sensitivity depends on the label and antigen. In this study, we aimed to develop and evaluate LFIA systems based on gold nanoparticles (GNPs) and quantum dots (QDs) using a recombinant HAdV hexon protein. Methods: A recombinant HAdV hexon protein fragment (rhHAdV, 35 kDa; amino acids A120-R316) was expressed in Escherichia coli and purified using Ni2+ affinity chromatography. Protein identity was confirmed using sodium dodecyl sulfate–polyacrylamide gel electrophoresis, Western blotting, and liquid chromatography–tandem mass spectrometry analyses. Two LFIA formats were developed using Protein G-conjugated GNPs (GNP-G) and QDs (QD-G). Agreement with the reference ELISA was evaluated using 90 human serum samples. Results: The rhHAdV antigen demonstrated reactivity with anti-adenovirus-positive human sera in ELISA. Antibody detection was achieved at serum dilutions of up to 1:300 and 1:1000 for the GNP- and QD-based LFIA, respectively. The GNP-G and QD-G LFIA formats demonstrated positive percent agreements of 96.9% and 100%, respectively, while both assays showed a negative percent agreement of 98.2% compared with the reference ELISA. Conclusions: The findings demonstrate the feasibility of a QD-based LFIA for qualitative detection of antibodies reactive with the recombinant HAdV-B3 hexon fragment. Full article
(This article belongs to the Section Clinical Laboratory Medicine)
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28 pages, 398 KB  
Article
Task-Specific QLoRA Adaptation in RAG-Based Information Extraction from Research Articles
by Yılmaz Dikilitaş, Ahmet Sayar and Furkan Göz
Appl. Sci. 2026, 16(16), 8294; https://doi.org/10.3390/app16168294 - 20 Aug 2026
Viewed by 296
Abstract
Large Language Models have shown considerable potential for academic document understanding, but their use in information extraction remains limited by hallucination and incomplete evidence grounding. This study presents an end-to-end Retrieval-Augmented Generation framework using a domain-adapted Llama 3.1 8B Instruct model. Generation reliability [...] Read more.
Large Language Models have shown considerable potential for academic document understanding, but their use in information extraction remains limited by hallucination and incomplete evidence grounding. This study presents an end-to-end Retrieval-Augmented Generation framework using a domain-adapted Llama 3.1 8B Instruct model. Generation reliability is evaluated through faithfulness, answer relevancy, context precision, and context recall, while retrieval relevance is measured using a rank-based percentile score that supports comparison across cosine, dot-product, and Euclidean similarity functions. Context recall is computed through a reference-free and answer-dependent procedure and is therefore interpreted as the extent to which the information expressed in an answer is accounted for by the supplied context. Experiments were conducted on 100 research articles using three tasks: research objective extraction, methodological information extraction, and experimental result interpretation. A separate QLoRA adapter was trained for each task, and the base and adapted models were evaluated under identical retrieval and generation conditions across three embedding models and three similarity functions. Under the highest-scoring configuration for each task, the composite score increased from 0.809 to 0.821, from 0.807 to 0.818, and from 0.795 to 0.814, respectively. The adapted model achieved a composite score in 26 of 27 task–retrieval configurations, although only the experimental-result task remained statistically significant after false discovery rate correction. Error analysis showed fewer fabricated statements and less task drift than the base model. Full article
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40 pages, 690 KB  
Review
Large Language Models: From Internal Architecture and Distributed Training Optimisation to Adaptation Strategies
by Martin Lukáč, František Duchoň, Jakub Ivan, Martin Dekan, Eduard Zelenay, Maroš Kocúr, Izabela Trepáčová, Tomáš Jurov and Radoslav Pšenka
Appl. Sci. 2026, 16(15), 7849; https://doi.org/10.3390/app16157849 - 6 Aug 2026
Viewed by 433
Abstract
This paper presents a unified technical survey of Large Language Models (LLMs), connecting three layers of the modelling pipeline that existing surveys address in isolation: internal architecture, distributed training optimisation, and downstream adaptation. Its organising principle is the dependency between these layers—how a [...] Read more.
This paper presents a unified technical survey of Large Language Models (LLMs), connecting three layers of the modelling pipeline that existing surveys address in isolation: internal architecture, distributed training optimisation, and downstream adaptation. Its organising principle is the dependency between these layers—how a choice at one constrains what remains feasible at the next. The survey examines fundamental mechanisms (tokenisation, scaled dot-product attention, activation functions, and normalisation, including RMSNorm and pre- versus post-normalisation placement), then the engineering of training at scale: data, tensor, and pipeline parallelism, hybrid schemes, mixed-precision training with BF16 and FP8, ZeRO-Offload memory management, activation checkpointing, and compute-optimal scaling laws together with the conditions under which they fail. The adaptation section covers supervised and instruction fine-tuning, a comparison of parameter-efficient methods (LoRA, QLoRA, adapters, prefix and prompt tuning), Reinforcement Learning from Human Feedback with its reward-hacking failure mode, alternatives including DPO, KTO and Constitutional AI, Retrieval-Augmented Generation beyond the basic pipeline, and decoding strategies. Practical configuration guidance is given for 7B, 70B and trillion-parameter regimes. Dedicated treatments of Mixture-of-Experts architectures, long-context modelling, and hardware-aware co-design close the survey, with open challenges classified by origin and severity. Full article
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19 pages, 2096 KB  
Article
Photoconversion Covers Based on CdSe/CdS-ZnS Quantum Dots Improve Photosynthetic Performance and Vegetative Growth of Tomato Plants (Solanum lycopersicum)
by Denis V. Yanykin, Mark O. Paskhin, Sergey A. Shumeyko, Dmitry A. Zakharov, Grigorii A. Oloviannikov, Nikita S. Parashchuk, Denis N. Chausov, Yurii Trutnev, Sergey V. Gudkov and Valeriy A. Kozlov
AgriEngineering 2026, 8(8), 322; https://doi.org/10.3390/agriengineering8080322 - 3 Aug 2026
Viewed by 401
Abstract
The effect of light spectrum conversion using photoconversion covers (PCCs) containing CdSe/CdS-ZnS quantum dots (PCC-QDs) on the growth and photosynthesis of tomato plants was studied. Luminophore-free covers and covers containing rhodamine B as a luminophore (PCC-RB) were used as reference covers. The obtained [...] Read more.
The effect of light spectrum conversion using photoconversion covers (PCCs) containing CdSe/CdS-ZnS quantum dots (PCC-QDs) on the growth and photosynthesis of tomato plants was studied. Luminophore-free covers and covers containing rhodamine B as a luminophore (PCC-RB) were used as reference covers. The obtained covers had a luminescence maximum in the red region (618 nm for PCC-QDs and 615 nm for PCC-RBs). It was shown that both types of PCC promoted plant growth, with PCC-QDs increasing leaf number by 28% and chlorophyll content by 6%, while PCC-RB enhanced stem length (17%) and leaf number (23%), with no effect on chlorophyll content after a reduction in the thermal dissipation of absorbed light energy and intensifying electron transfer in the photosynthetic electron transport chain, which was accompanied by a 40–50% increase in the hydrogen peroxide content in plant tissues and a 2–3-fold increase in ascorbate peroxidase activity. Light-induced activation of transpiration in PCC plants was found to occur within 1–2 min, while control plants exhibited greater stomatal inertia with a 4–5 min delay in response to light. It is assumed that changes in the light spectrum induced by PCCs led to the optimization of electron transport in chloroplasts, triggering H2O2-mediated activation of gas exchange in leaves. Full article
(This article belongs to the Section Sustainable Bioresource and Bioprocess Engineering)
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14 pages, 4539 KB  
Article
A Co2+ Fluorescent Probe Based on Surface Complexation for On-Site Feed Detection
by Jingjing He, Min Ye, Huiting Lian and Xuexia Lin
Chemosensors 2026, 14(7), 168; https://doi.org/10.3390/chemosensors14070168 - 16 Jul 2026
Viewed by 312
Abstract
As a core component of vitamin B12, Co2+ is closely associated with the health, life performance, and productivity of ruminants. Therefore, the selective and sensitive detection of Co2+ is of great significance. In this work, using the Au–S bond as an [...] Read more.
As a core component of vitamin B12, Co2+ is closely associated with the health, life performance, and productivity of ruminants. Therefore, the selective and sensitive detection of Co2+ is of great significance. In this work, using the Au–S bond as an “anchor”, a ternary nanocomposite (CDs-AuNPs-GSH) with synergistic functions was constructed by combining gold nanoparticles (AuNPs) with glutathione (GSH) through hydrogen bonding and electrostatic interactions with functional groups on the surface of carbon dots (CDs). The resulting nanocomposite was employed as a fluorescence sensor for Co2+ detection. Under optimal conditions at pH 6.0, the sensor exhibited a good linear relationship over the Co2+ concentration range of 0.5–125.0 mM, with a limit of detection (LOD) of 0.38 mM. The interaction mechanism between Co2+ and the composite was systematically investigated using various characterization methods. The results indicated that Co2+, owing to its strong coordination ability, enriches on the surface of the composite, subsequently triggering dynamic fluorescence quenching via an electron transfer pathway. The sensor was successfully applied to determine Co2+ in mixed livestock and poultry feed samples, with recovery rates ranging from 89.4% to 103.9%, demonstrating its potential for on-site detection in feed analysis. Full article
(This article belongs to the Special Issue Fluorescent Probes for Highly Sensitive Ion and Compound Detection)
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28 pages, 660 KB  
Systematic Review
Eye-Tracking and Borderline Personality Disorder: A Systematic Review
by Marcelo Leiva-Bianchi and Marcelo Nvo-Fernández
Brain Sci. 2026, 16(7), 712; https://doi.org/10.3390/brainsci16070712 - 1 Jul 2026
Viewed by 690
Abstract
Background/Objectives: Borderline personality disorder (BPD) is a severe mental disorder characterised by emotion dysregulation, impulsivity and interpersonal hypersensitivity. Its prevalence ranges from 0.5% to 6.4%. Eye tracking and pupillometry provide objective indices of social attention and inhibitory control, but the BPD literature [...] Read more.
Background/Objectives: Borderline personality disorder (BPD) is a severe mental disorder characterised by emotion dysregulation, impulsivity and interpersonal hypersensitivity. Its prevalence ranges from 0.5% to 6.4%. Eye tracking and pupillometry provide objective indices of social attention and inhibitory control, but the BPD literature using these techniques has not been systematically reviewed. The aim of this work was to synthesise the empirical evidence on visuo-attentional and pupillary alterations in BPD. Methods: Following the PRISMA 2020 statement, Web of Science, Scopus and PubMed were searched up to 13 March 2026, with no date or language restrictions. Search terms combined borderline personality disorder and eye-tracking constructs. Two reviewers independently screened records with complete inter-rater agreement at the title-and-abstract stage (Cohen’s κ = 1.00); two generative artificial-intelligence assistants (ChatGPT, NotebookLM) were additionally consulted as a non-systematic plausibility check and returned no eligible studies beyond the database search. Risk of bias was appraised with the framework appropriate to each study design (RoB 2 for randomised trials and Newcastle–Ottawa Scale logic for observational studies, with ROBINS-I held in reserve for non-randomised intervention designs). Results: Seventeen studies met the inclusion criteria, with sample sizes ranging from 19 to 164 participants and predominantly adult female samples. Designs included antisaccade and oculomotor tasks, free-viewing, dot-probe, affective priming and pharmacological challenge. Four findings recurred across studies. First, patients with BPD showed an early reflexive vigilance to the eye region of emotional and neutral faces, followed by reduced time on positive stimuli during longer presentations. Second, self-reported impulsivity was elevated, but laboratory inhibition was largely preserved; the deficits that did emerge were limited to preparatory control and were greater in patients with comorbid ADHD or under induced negative affect. Third, autonomic dysregulation was indexed by lower heart-rate variability and a larger baseline pupil size; in a single longitudinal study, pupillary reactivity was prospectively associated with subsequent symptom change. Finally, intranasal oxytocin reduced amygdala-driven vigilance. Conclusions: Eye-tracking and pupillometric measures appear to capture meaningful aspects of the BPD clinical picture. The two-stage profile of early vigilance followed by reduced sustained engagement is most parsimoniously described as a vigilance–avoidance pattern, which is compatible with, but not uniquely explained by, the hypersensitivity hypothesis of emotion dysregulation. Because thirteen of the seventeen studies recruited women only, these conclusions apply primarily to adult women with BPD. Methodological heterogeneity, the predominance of female samples and the scarcity of longitudinal data justify the need for standardised protocols, transdiagnostic comparisons and the inclusion of male and gender-diverse populations in future research. Full article
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13 pages, 7089 KB  
Article
Ultrasensitive and Selective Immuno-Magnetic Ratiometric Fluorescent Sensor for Aflatoxin B1 in Food Matrices
by Ming Li and Xi Zhang
Chemosensors 2026, 14(7), 149; https://doi.org/10.3390/chemosensors14070149 - 1 Jul 2026
Viewed by 319
Abstract
Aflatoxin B1 (AFB1), a highly carcinogenic mycotoxin, has been the focus of research for the development of efficient detection methods. In this study, a novel magnetic immuno-ratiometric fluorescent sensing system was constructed for the quantitative detection of AFB1. Green-emitting carbon quantum dots were [...] Read more.
Aflatoxin B1 (AFB1), a highly carcinogenic mycotoxin, has been the focus of research for the development of efficient detection methods. In this study, a novel magnetic immuno-ratiometric fluorescent sensing system was constructed for the quantitative detection of AFB1. Green-emitting carbon quantum dots were conjugated with AFB1 monoclonal antibody to obtain GCDs@AFB1 mAb, and AFB1 oxime was immobilized on Fe3O4 magnetic microspheres to prepare AFB1-Ox@Fe3O4 NPs. After the immune-competitive adsorption of GCDs@AFB1 mAb by AFB1-Ox@Fe3O4 NPs and free AFB1, magnetic separation was performed. Red fluorescent silver nanoclusters were introduced as an internal reference to construct a GCDs-AgNCs ratiometric fluorescent system. The sensor exhibited a good linear response in the range of 0~240 pg/mL with a low limit of detection of 18 pg/mL and excellent selectivity. The spiked recoveries in real samples ranged from 92.14% to 110.02%, with a relative standard deviation of 0.57% to 4.58%. Combining the specific antigen–antibody recognition with magnetic separation technology, this method addresses the issues of poor stability and high environmental interference of traditional fluorescent sensors, and provides a new strategy for the sensitive and stable detection of AFB1. Full article
(This article belongs to the Section Optical Chemical Sensors)
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13 pages, 3437 KB  
Article
Colloidal Synthesis and Optical Properties of Nd-Containing Mixed-Halide CsPbBr3−γClγ Quantum Dots with λem ≈ 458 nm and PLQY ≈ 56%
by Yuri K. Altudov, Adam M. Pshukov, Aneta A. Kokoeva, Nelli E. Pukhaeva, Ntombizonke Y. Kheswa and Vasily N. Kornoukhov
Physchem 2026, 6(2), 37; https://doi.org/10.3390/physchem6020037 - 16 Jun 2026
Viewed by 499
Abstract
This work reports the colloidal synthesis of Nd-containing mixed-halide perovskite quantum dots described as CsPb(Nd)Br3−γClγ, followed by post-synthetic surface modification with an acid-activated amino-functional siloxane. This notation is used deliberately because the available FE-SEM, DLS, EDX, and optical data [...] Read more.
This work reports the colloidal synthesis of Nd-containing mixed-halide perovskite quantum dots described as CsPb(Nd)Br3−γClγ, followed by post-synthetic surface modification with an acid-activated amino-functional siloxane. This notation is used deliberately because the available FE-SEM, DLS, EDX, and optical data confirm the formation of an Nd-containing mixed-halide colloidal perovskite system, but do not provide direct crystallographic proof of substitutional Nd3+ incorporation at the Pb2+ B-site. The obtained dispersions show stable blue emission with a maximum at about 458 nm, a photoluminescence quantum yield of about 56%, an essentially invariant emission maximum when the excitation wavelength is varied from 300 to 390 nm, and monoexponential decay kinetics with a characteristic lifetime of 6.67 ± 0.97 ns. Field-emission scanning electron microscopy combined with morphometric analysis of at least 150 particles indicates a nanoscale size distribution with an average equivalent diameter of 8.8 nm, a median of 7.3 nm, and 93.25% of particles smaller than 25 nm. Dynamic light scattering confirms a narrow hydrodynamic size distribution in the 7–9 nm range and a low polydispersity index. Elemental mapping by EDX confirms the co-presence of Cs, Pb, Br, Cl, and Nd in the analyzed particles. The observed blue shift is discussed in terms of the combined effect of chloride incorporation, nanoscale size, possible Nd-related perturbation of the local electronic/defect structure, and reduced non-radiative losses after surface passivation. No definitive crystallographic assignment of Nd to a specific lattice site is claimed; the composition is therefore treated as nominal, and the structural interpretation remains provisional pending XRD/XPS or related studies. Full article
(This article belongs to the Section Nanoscience)
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18 pages, 1118 KB  
Article
In Vitro Genotoxicity Assessment of Commercially Available Graphene Quantum Dots in Human Peripheral Blood Cells and Salivary Leukocytes
by Tamara Ćetković Pećar, Irma Durmišević, Mirta Milić, Anja Haverić, Maida Hadžić Omanović, Sanjin Gutić, Bojana Žegura and Sanin Haverić
Toxics 2026, 14(6), 523; https://doi.org/10.3390/toxics14060523 - 15 Jun 2026
Viewed by 936
Abstract
Commercially available graphene quantum dots (GQDs) are promising nanomaterials for applications in research and preclinical diagnostics, drug delivery, and bioimaging. Their bioactivity is highly dependent on dose, route of exposure, duration, cell type, uptake mechanisms, tissue and cellular distribution, and physicochemical properties. This [...] Read more.
Commercially available graphene quantum dots (GQDs) are promising nanomaterials for applications in research and preclinical diagnostics, drug delivery, and bioimaging. Their bioactivity is highly dependent on dose, route of exposure, duration, cell type, uptake mechanisms, tissue and cellular distribution, and physicochemical properties. This study aimed to evaluate genotoxic, cytotoxic, and cytostatic endpoints of blue- (B-GQDs) and green-emitting (G-GQDs) GQDs in human blood and salivary leukocytes. GQDs were tested at concentrations ranging from 2.5 to 100 µg/mL using distinct treatment periods. Fourier transform infrared spectroscopy (FTIR), trypan blue exclusion, comet, and cytokinesis-block micronucleus cytome (CBMN cyt) assays were performed. FTIR analysis revealed that G-GQDs, unlike B-GQDs, exhibit an absorption band typically associated with amine functional groups, which may contribute to their pronounced genotoxic effects. Peripheral blood mononuclear cells and salivary leukocytes showed higher sensitivity to G-GQDs compared to whole blood samples. Although no cytotoxic effects were observed, both GQDs induced significant DNA damage, with G-GQDs demonstrating greater genotoxic potential. These findings demonstrate that GQDs can induce DNA damage in the absence of detectable cytotoxic effects under the conditions tested, highlighting the importance of considering both physicochemical properties and cellular models in the safety assessment of nanomaterials. Full article
(This article belongs to the Special Issue Mechanisms of Toxicity of Chemical Compounds and Natural Compounds)
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18 pages, 3377 KB  
Article
Putatively Identified Sarmentoside-B Removes Oligomerized Amyloid Peptide from Neurons by Inhibiting mTOR and Restoring Lysosomal Function, in In Vitro Alzheimer’s Disease Model
by Bruna Rojas Fróes, Juliana Guanaes Pina, Mariana da Mata Alves, Alquiandra S. F. Mançano, Fernanda C. Cardoso and Juliana Mozer Sciani
Pharmaceutics 2026, 18(6), 696; https://doi.org/10.3390/pharmaceutics18060696 - 4 Jun 2026
Viewed by 700
Abstract
Background/Objectives: Alzheimer’s disease (AD) is characterized by beta-amyloid (Aβ) plaque deposition, which impairs several cellular processes, including autophagy. Considering the multifactorial nature of AD, the development of therapies acting on alternative molecular targets is necessary. In this study, we evaluated the neuroprotective [...] Read more.
Background/Objectives: Alzheimer’s disease (AD) is characterized by beta-amyloid (Aβ) plaque deposition, which impairs several cellular processes, including autophagy. Considering the multifactorial nature of AD, the development of therapies acting on alternative molecular targets is necessary. In this study, we evaluated the neuroprotective effect of a molecule from the hydrozoan Eudendrium carneum and investigated its impact on autophagy-related pathways. Methods: The secretion of E. carneum was fractionated by RP-HPLC according to its neuroprotective activity in SH-SY5Y cells exposed to oAβ42, evaluated using LDH and MTT assays. The purified molecule (named EC5), characterized by mass spectrometry, was evaluated regarding in silico toxicity and calcium dynamics. Neuronal lysosomal morphology was assessed using the LysoTracker probe, and cathepsin D activity was determined using a synthetic substrate. The expression of autophagy-related proteins (mTOR, LAMP-1, and LC3B) was evaluated by dot blotting, and amyloid plaque clearance was quantified using Thioflavin-T staining. Results: The steroid glycoside putatively identified as Sarmentoside B (EC5) exhibited neuroprotective effects and showed no toxicity or alterations in neuronal calcium or sodium channel dynamics. EC5 restored lysosomal morphology and cathepsin D activity, reversing the impairment induced by oAβ42. Furthermore, EC5 reduced mTOR expression, and this interaction was supported by molecular docking analysis. Lysosomal restoration promoted the clearance of oAβ42 aggregates, as evidenced by Thioflavin-T staining, resulting in reduced neuronal death. Conclusions: EC5, putatively identified as Sarmentoside B, exerts neuroprotective effects against oAβ42-induced toxicity by promoting autophagy-related amyloid clearance, highlighting its therapeutic potential for AD. Full article
(This article belongs to the Section Drug Targeting and Design)
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17 pages, 1288 KB  
Article
Human Dead Reckoning Using a Particle Filter and Map Constraints
by Joseph Russell and Jeroen H. M. Bergmann
Sensors 2026, 26(11), 3500; https://doi.org/10.3390/s26113500 - 2 Jun 2026
Cited by 1 | Viewed by 488
Abstract
This paper presents an approach for tracking a person’s position by integrating inertial measurement unit (IMU) sensor values, utilising a particle filter with known physical constraints, such as a map of the space. While such approaches are well established, the effect of constraint [...] Read more.
This paper presents an approach for tracking a person’s position by integrating inertial measurement unit (IMU) sensor values, utilising a particle filter with known physical constraints, such as a map of the space. While such approaches are well established, the effect of constraint choice in the absence of observation measurements remains poorly understood. The effect of varying the tolerance of these constraints is investigated with data collected from a Movella DOT held by a human participant walking around a 100 m running track. In particular, the dimensions of the map are varied, along with the shape. Results showed (a) that it is viable to correct particle filter error without external sensor feedback, provided constraints are provided, with a mean error of 1.8 m, and (b) there is a minimum acceptable tolerance of map width around the edge of the true activity zone, in this case approximately 8 m, and that tightening the map boundary further than this can counterintuitively lead to reduced accuracy. Full article
(This article belongs to the Special Issue Feature Papers in Wearables 2026)
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18 pages, 4751 KB  
Article
Preparation and Catalytic Performance Study of TiO2-Based Composite Photocatalysts Containing Natural Green CQDs
by Faxue Ma, Zhen Ma, Xiangju Wu, Xueqing Zhu, Yuguang Lv and Yukang Sun
Molecules 2026, 31(11), 1898; https://doi.org/10.3390/molecules31111898 - 1 Jun 2026
Viewed by 471
Abstract
Semiconductor photocatalysis technology is a simple, efficient, and low-cost method for environmental pollution remediation. As a promising photocatalyst for oxidative degradation, titanium dioxide (TiO2) demonstrates the capability to address energy shortages and environmental pollution issues. In this study, orange peel was [...] Read more.
Semiconductor photocatalysis technology is a simple, efficient, and low-cost method for environmental pollution remediation. As a promising photocatalyst for oxidative degradation, titanium dioxide (TiO2) demonstrates the capability to address energy shortages and environmental pollution issues. In this study, orange peel was used as the raw material to synthesize a (TiO2-CdS-C3N4-CDs) TCCC composite photocatalyst containing natural green carbon dots via a one-pot hydrothermal method for the first time. This catalyst was applied to the catalytic degradation of multiple dye molecules (Rhodamine B, Methylene Green, Reactive Brilliant Blue KN-R) and quinolone antibiotic (Ciprofloxacin, CIP) as well as tetracycline antibiotic (Tetracycline, THC). Meanwhile, it provides more adsorption sites for target pollutants and loads electron reservoirs (CDs) on the TCC surface, promoting the separation of photogenerated carriers in pure TiO2, thereby enhancing the visible light utilization and photocatalytic activity of the material. This work expands the application scope of semiconductor photocatalysis technology and TiO2-based photocatalytic active substrates. Full article
(This article belongs to the Special Issue Photocatalysts: Design, Synthesis, and Applications)
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13 pages, 6268 KB  
Article
Spatio-Functional Pattern of a Small City: A Cross-Sectional Study of Brzeziny, Central Poland
by Sebastian Florczyk, Iwona Jażdżewska, Elzbieta Bielecka and Anna Markowska
Land 2026, 15(5), 865; https://doi.org/10.3390/land15050865 - 18 May 2026
Viewed by 606
Abstract
Understanding the spatial organisation of small towns is essential for sustainable spatial planning and regional development. This study examines the spatio-functional pattern of Brzeziny, a small town located within the Łódź Metropolitan Area in Central Poland, selected as a representative case due to [...] Read more.
Understanding the spatial organisation of small towns is essential for sustainable spatial planning and regional development. This study examines the spatio-functional pattern of Brzeziny, a small town located within the Łódź Metropolitan Area in Central Poland, selected as a representative case due to its typical Central European small-town morphology shaped by historical continuity, demographic stagnation, and metropolitan influence. The analysis is based on updated cadastral land-use data verified through field surveys and supplemented with topographic datasets (BDOT10k and OpenStreetMap). A modified land-use classification comprising nine categories is applied, and spatial analysis is performed using a regular grid and GIS tools. Dominant land-use structures are identified using the K. Doi method, enabling the delineation of spatio-functional zones. The results reveal a strong dominance of undeveloped land (77% of the total area), particularly agricultural land, alongside a compact central zone characterised by residential and service functions. The study demonstrates how historical development, economic structure, and metropolitan proximity shape the spatial organisation of small towns. The proposed methodology highlights the usefulness of cadastral data combined with grid-based spatial analysis for identifying S-FPs and supporting local planning processes. Full article
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24 pages, 4051 KB  
Article
Magnetic Confinement Effects in a Hybrid DC–RF Internal-Antenna Inductively Coupled Plasma: Spatial Diagnostics and Semi-Empirical Modelling
by Mahmood Nasser
Plasma 2026, 9(2), 14; https://doi.org/10.3390/plasma9020014 - 8 May 2026
Viewed by 1613
Abstract
A hybrid DC–RF inductively coupled plasma (ICP) driven by a single-turn internal antenna was experimentally investigated to quantify magnetic confinement effects in low-pressure argon discharges. Superposition of a dc current on the RF antenna generated an azimuthal magnetic field that modified electron transport [...] Read more.
A hybrid DC–RF inductively coupled plasma (ICP) driven by a single-turn internal antenna was experimentally investigated to quantify magnetic confinement effects in low-pressure argon discharges. Superposition of a dc current on the RF antenna generated an azimuthal magnetic field that modified electron transport and reduced cross-field diffusion in the near-antenna region. Spatially resolved measurements of plasma density, electron temperature, plasma potential, and magnetic-field components were obtained using Langmuir, emissive, and B-dot probes. Increasing the dc current enhanced electron confinement and increased the plasma density by up to an order of magnitude at low RF power, together with improved radial and axial uniformity. A semi-empirical diffusion model incorporating electron-temperature-dependent ambipolar transport reproduced the measured ion-density distributions, ni(R,Z), within ±15%. The results support the interpretation that the discharge behaviour is governed by the coupled effects of localized magnetic confinement and inductive power deposition, and show that hybrid DC–RF excitation provides an effective route to denser and more spatially extended plasmas under low-pressure conditions. Full article
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