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Keywords = time-of-flight (TOF)

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22 pages, 7283 KB  
Article
Metabolic Profile and Dynamic Characteristics of Ziziphi Spinosae Semen Flavonoids During Biotransformation and Their Effect on Human Gut Microbiota In Vitro
by Ruiqi Yang, Haolin Zhang, Yadan Mo, Conghui Wang, Jinchun Wu, Lijun Guo, Xiangping Pei, Yan Yan and Chenhui Du
Foods 2026, 15(17), 3077; https://doi.org/10.3390/foods15173077 (registering DOI) - 30 Aug 2026
Abstract
The Ziziphi spinosae semen flavonoids (ZSSF) possess significant nutritional value and exhibit a wide range of health benefits, exerting positive effects on diseases related to the central nervous system. Given the excellent bioactivity and limited absorption of ZSSF, elucidating the underlying mechanism of [...] Read more.
The Ziziphi spinosae semen flavonoids (ZSSF) possess significant nutritional value and exhibit a wide range of health benefits, exerting positive effects on diseases related to the central nervous system. Given the excellent bioactivity and limited absorption of ZSSF, elucidating the underlying mechanism of ZSSF is imperative. In this study, in vitro fecal microbial culture fermentation was performed to investigate the metabolism of ZSSF and its effect on the gut microbiota. A total of 45 chemical constituents were identified by Ultra-performance liquid chromatography–quadrupole time-of-flight–tandem mass spectrometry (UPLC-Q-TOF-MS/MS), and possible biotransformation pathways were postulated. The degradation rates of spinosin and 6‴-feruloylspinosin were 2.53 ± 0.07 μg/mL/h and 0.79 ± 0.06 μg/mL/h, respectively, with swertisin accumulating to 55.00 ± 3.55 μg/mL at 24 h before declining. The abundance of Firmicutes increased from 8.42% at 0 h to 48.26% in the ZSSF fermentation group at 48 h, while Actinobacteria and Proteobacteria decreased from 60.02% and 30.25% to 23.46% and 20.02%, respectively. Furthermore, gas chromatography–mass spectrometry (GC-MS) was used to analyze short-chain fatty acids (SCFAs), revealing that ZSSF was associated with higher butyrate concentration at 48 h under the tested batch-fermentation conditions, with significantly higher levels observed in the ZSSF fermentation group compared to the control (1.34 ± 0.03 vs. 1.10 ± 0.05 mmol/L, p < 0.05). This study provides the first integrated analysis of ZSSF metabolism, gut microbiota modulation, and SCFAs production in a single in vitro fermentation model, offering a comprehensive understanding of the gut microbiota-mediated biotransformation of ZSSF and its metabolic consequences. Notably, these findings are derived from an in vitro batch fermentation model, and therefore, in vivo validation is required to confirm the physiological relevance of these observations. Collectively, this study provides insight into the exploration of the metabolic functions and mechanisms of ZSSF. Full article
(This article belongs to the Section Nutraceuticals, Functional Foods, and Novel Foods)
15 pages, 1474 KB  
Article
Characterization of Edwardsiella Strains Isolated from Fish in The Netherlands (1995–2020) Shows a Relationship Between Edwardsiella Species and Source
by Janneke Allaart, Andries Kampfraath, Frank Harders, Michal Voorbergen-Laarman, Betty van Gelderen, Belén Fouz and Marc Engelsma
Pathogens 2026, 15(9), 911; https://doi.org/10.3390/pathogens15090911 (registering DOI) - 29 Aug 2026
Abstract
To date, four species of the genus EdwardsiellaE. tarda, E. ictaluri, E. piscicida, and E. anguilarum—have been identified as the cause of disease and mortality in various fish species. Thirty-six Edwardsiella strains isolated from different fish species [...] Read more.
To date, four species of the genus EdwardsiellaE. tarda, E. ictaluri, E. piscicida, and E. anguilarum—have been identified as the cause of disease and mortality in various fish species. Thirty-six Edwardsiella strains isolated from different fish species in the Netherlands were identified using multilocus sequence analysis (MLSA) based on sequence analysis of the genes gyrB, pgi and phoU. In parallel, an Edwardsiella matrix-assisted laser desorption ionization–time-of-flight mass spectrometry (MALDI-TOF MS) database was created by analyzing peptide spectra of a subset of these strains belonging to the four fish pathogenic species. MALDI-TOF MS analysis of the Edwardsiella isolates using the newly created database revealed 100% agreement with results of MLSA. Moreover, the presence of each Edwardsiella species was associated with specific fish host and source, with E. piscicida being the dominant species in Dutch aquaculture. In addition, a novel strain was isolated from electric eel, genetically diverging from the four established species. Whole-genome comparisons of the novel strain with those species showed DNA-DNA hybridization and average nucleotide identity scores suggestive of a new species. In conclusion, both MLSA and MALDI-TOF analysis can be used to identify Edwardsiella species. Moreover, it has been observed that different Edwardsiella species show a preference for certain hosts or sources. Full article
(This article belongs to the Special Issue Recent Advances in the Diagnosis of Fish Pathogens)
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16 pages, 27454 KB  
Article
Characterizing the Immune Landscape of a Syngeneic Mouse Model with Regional Lymph Node Metastasis and Distant Lung Metastasis
by Deyi Xiao, Wenxuan Zhang, Austin McMasters, Chuanlin Ding, Hong Li, Yi Zou, Alisa Sweazy, Quinn Piamonte, Jun Yan, Kelly McMasters, Haixun Guo and Hongying Hao
Cancers 2026, 18(17), 2796; https://doi.org/10.3390/cancers18172796 - 28 Aug 2026
Abstract
Background/Objectives: Tumor-draining lymph nodes (TDLNs) play a critical role in shaping a pre-metastatic and immunosuppressive niche that facilitates tumor dissemination. However, a robust in vivo model that recapitulates regional lymph node and distant metastasis remains elusive. We sought to establish and characterize [...] Read more.
Background/Objectives: Tumor-draining lymph nodes (TDLNs) play a critical role in shaping a pre-metastatic and immunosuppressive niche that facilitates tumor dissemination. However, a robust in vivo model that recapitulates regional lymph node and distant metastasis remains elusive. We sought to establish and characterize an animal model that reliably mimics spontaneous human melanoma progression from primary tumor to regional lymph node and distant organ metastasis. Methods: B16F10-Luc2 melanoma cells were subcutaneously implanted from the hock area into the lower medial thigh of C57BL/6J mice to establish a metastatic melanoma mouse model with reliable regional lymph node metastasis and distant metastasis. Tumor growth was monitored over time. 18F-fluorodeoxyglucose (FDG) positron emission tomography/computed tomography (PET/CT) and bioluminescence imaging (BLI) were used to track lymph node and lung metastases in vivo. Immunocytochemistry (IHC) was performed to confirm the metastatic melanoma cells in tissues. The immune landscape of metastatic lymph nodes was characterized by Cytometry by Time-Of-Flight (CyTOF). Results: This implantation strategy resulted in consistent primary tumor growth accompanied by reproducible metastasis to ipsilateral inguinal lymph nodes (IILN) and subsequent lung metastasis. Multi-modal imaging (PET/CT and BLI) enabled non-invasive monitoring of metastatic progression in vivo. Histological analyses confirmed melanoma cell infiltration in lymph nodes and lung tissues. Notably, CyTOF profiling revealed a distinct immunological remodeling within the TDLN, characterized by immunosuppressive phenotypes in the tumor-draining ipsilateral inguinal lymph node (IILN) compared with naïve nodes, indicative of a potential immunotolerant environment in tumor-bearing mice associated with metastatic progression. Conclusions: We present a reproducible and clinically relevant syngeneic melanoma mouse model that recapitulates lymphatic dissemination to regional lymph nodes and distant lung metastasis, and mimics the immunosuppressive phenotypes in the tumor-draining lymph node microenvironment seen in human melanoma patients. This model provides a valuable platform for investigating the mechanisms of lymphatic metastasis and the immunological dynamics of TDLNs, with potential applications in evaluating therapeutic strategies targeting metastatic progression. Full article
(This article belongs to the Special Issue Advancements in Preclinical Models for Solid Cancers)
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24 pages, 11225 KB  
Article
Screening, Physiological Characterization, Genomic Analysis and Optimization by Conjugated Linoleic Acid Bioconversion of Two Lactiplantibacillus plantarum Strains
by Mengting Hu, Qingbang Li, Zhiyang Chen, Shan Lin, Pei Liu, Lin Zhou, Chuanjin Zheng and Xiaoyong Wu
Foods 2026, 15(17), 2987; https://doi.org/10.3390/foods15172987 - 25 Aug 2026
Viewed by 121
Abstract
Conjugated linoleic acid (CLA) comprises a group of C18 fatty acids containing conjugated double bonds and has been associated with potential anti-obesity and antitumor effects. In this study, 116 presumptive lactic acid bacteria (LAB) isolates were recovered from homemade Sichuan pickles. Primary screening [...] Read more.
Conjugated linoleic acid (CLA) comprises a group of C18 fatty acids containing conjugated double bonds and has been associated with potential anti-obesity and antitumor effects. In this study, 116 presumptive lactic acid bacteria (LAB) isolates were recovered from homemade Sichuan pickles. Primary screening identified 28 CLA-producing isolates, among which strains 7# and 31# showed the highest absorbance at 233 nm (A233). CLA production by both strains was subsequently optimized and quantified using gas chromatography–quadrupole time-of-flight mass spectrometry (GC-Q-TOF). Under the optimized conditions, strain 31# produced 66.50 ± 3.80 μg/mL total CLA, including 52.70 ± 3.29 μg/mL c9,t11-CLA and 13.80 ± 0.51 μg/mL t10,c12-CLA. Strain 7# produced 26.79 ± 1.09 μg/mL total CLA, including 14.05 ± 0.49 μg/mL c9,t11-CLA and 12.74 ± 0.60 μg/mL t10,c12-CLA. Physiological, biochemical, and safety assessments showed that strain 31# outperformed strain 7# overall, supporting its use in further product development and mechanistic studies. Functional annotation using the COG database and pathway mapping with KEGG identified candidate genes encoding an enzyme associated with linoleic acid isomerization in both strains. Potential mechanisms underlying their different CLA-producing capacities were also examined, providing a basis for the selection and development of high-CLA-producing strains. Full article
(This article belongs to the Section Food Microbiology)
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19 pages, 10933 KB  
Article
Metabolomic Profiling of Medicinal Plant-Based Soft Porridge and Evaluation of Cytotoxicity
by Phato Avheani Matsheketsheke, Nakisani Babra Moyo and Bono Nethathe
Metabolites 2026, 16(9), 606; https://doi.org/10.3390/metabo16090606 - 25 Aug 2026
Viewed by 222
Abstract
Background/Objectives: Traditional medicinal plants play a crucial role in infants’ healthcare in underdeveloped countries and communities where access to modern medicine is limited. In Limpopo, the Vhavenda tribe has a custom of feeding babies as young as a day old with tshiunza, [...] Read more.
Background/Objectives: Traditional medicinal plants play a crucial role in infants’ healthcare in underdeveloped countries and communities where access to modern medicine is limited. In Limpopo, the Vhavenda tribe has a custom of feeding babies as young as a day old with tshiunza, a very light and warm, soft porridge prepared in medicinal plant extracts, believed to help treat various ailments and boost the immune and digestive systems. However, reports of negative side effects, including vomiting, haematuria, renal inflammation and hospitalisations, highlight safety concerns of these traditional practices. This study aimed to profile the chemical composition of soft porridge samples prepared in aqueous extracts of medicinal plants reported to be commonly used in infants’ food in the Venda region of Limpopo; Annona senegalensis (roots), Piliostigma thonningii (leaves), Carissa edulis (roots) and Bauhinia galpinii (leaves). Methods: Ultrahigh-performance liquid chromatography coupled to quadrupole time-of-flight mass spectrometry (UHPLC-qTOF-MS) was used for metabolic profiling, followed by putative compound identification using feature-based molecular networking and a compound fragmentation predictor tool, SIRIUS. To evaluate the toxicity of these plants, a cytotoxicity assay was conducted using plant extracts on African monkey kidney cells. Results: Different classes of polyphenols, including flavonoids (flavan-3-ols and flavonols) and hydroxycinnamoyl amides, were among the dominant compounds putatively identified in the methanolic extracts of soft porridge prepared from the four plant extracts. A. senegalensis aqueous extracts were inactive (IC50 > 500 µg/mL, 55.57% viability at 500 µg/mL), while P. thonningii was non-cytotoxic (105–132% viability within the tested concentration range). Conclusions: Although no toxic compounds were identified and no cytotoxic potential was observed in the tested plant extracts, this does not translate to the safe use of medicinal plants in infants’ food. Therefore, future studies should conduct pharmacological and toxicological evaluations to better understand the potential risks of these plant extracts to infant health. Full article
(This article belongs to the Section Food Metabolomics)
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25 pages, 4507 KB  
Article
Frequency and Direction-Dependent Shear-Wave Responses in Ex Vivo Tissues Measured by a Time-of-Flight Device
by Jotham Josephat Kimondo, Ziang Feng, Jie Yang, Qiang Lu, Sandra Pérez-Buitrago and Zhe Wu
Bioengineering 2026, 13(9), 959; https://doi.org/10.3390/bioengineering13090959 - 23 Aug 2026
Viewed by 237
Abstract
Shear-wave time-of-flight (TOF) measurement enables controlled assessment of frequency-dependent wave propagation, but its feasibility in biological tissues remains insufficiently established. This study evaluated whether a custom shear-wave TOF device could detect frequency- and direction-dependent responses in ex vivo tissues. Three porcine liver samples [...] Read more.
Shear-wave time-of-flight (TOF) measurement enables controlled assessment of frequency-dependent wave propagation, but its feasibility in biological tissues remains insufficiently established. This study evaluated whether a custom shear-wave TOF device could detect frequency- and direction-dependent responses in ex vivo tissues. Three porcine liver samples and three chicken breast samples were examined. Chicken breast was measured with propagation parallel and perpendicular to visible muscle fibers. One-cycle sinusoidal excitations were applied at 40–160 Hz, with 50 acquisitions ensemble-averaged per sample–frequency measurement. TOF was estimated using Tx threshold detection and cumulative-energy-based Rx onset detection, and TOF-derived apparent shear-wave propagation speed was calculated from the Tx–Rx distance and the measured TOF. Frequency-dependent data were fitted using the Kelvin–Voigt fractional derivative model to obtain model-dependent KVFD fit parameters. Signal quality was assessed, and a preliminary descriptive comparison with HISKY EQTouch UD3000 (Wuxi Hisky Medical Technologies Co., Ltd., Wuxi, China) SWE was performed. All 63 averaged sample–frequency measurements satisfied the predefined primary-detection criteria. Mean apparent shear-wave speed was 3.145 m/s in porcine liver, 6.133 m/s in chicken breast measured parallel to the fibers, and 5.914 m/s in chicken breast measured perpendicular to the fibers, giving a parallel-to-perpendicular speed ratio of 1.037. Mean post-averaging, post-processing SNR ranged from 24.47 to 31.52 dB. The UD3000 comparison showed the same tissue ranking. The device detected frequency- and direction-dependent responses in averaged ex vivo signals, supporting its feasibility as a controlled research platform. Claims of absolute stiffness accuracy and intrinsic muscle anisotropy require independent calibration and validation. Full article
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14 pages, 6867 KB  
Communication
Estimation of Blood Velocity from TOF-MRA Arterial Centerlines: Theory, Simulation, and Inverse Solution
by Abrar Faiyaz, Md Nasir Uddin and Giovanni Schifitto
Bioengineering 2026, 13(8), 954; https://doi.org/10.3390/bioengineering13080954 - 21 Aug 2026
Viewed by 282
Abstract
Time-of-flight magnetic resonance angiography (TOF-MRA) is widely used for noninvasive visualization of arterial anatomy, but extracting hemodynamics like blood velocity typically requires supplementary phase-contrast scans, tagging or multi-TE images. This study proposes a novel, physics-informed computational framework to extract variable fluid velocity directly [...] Read more.
Time-of-flight magnetic resonance angiography (TOF-MRA) is widely used for noninvasive visualization of arterial anatomy, but extracting hemodynamics like blood velocity typically requires supplementary phase-contrast scans, tagging or multi-TE images. This study proposes a novel, physics-informed computational framework to extract variable fluid velocity directly from standard TOF-MRA signal profiles. We analytically expand the approach-to-steady-state Bloch equations to include convective flow, establishing a mathematical relationship between the spatial decay of longitudinal magnetization and fluid velocity. The velocity derivation was further extended to pointwise estimation over a 1-D centerline, overcoming the limitations of constant-velocity assumptions. To validate and solve this problem, a MATLAB (R2025b) simulation framework was developed to model fluid flow in two variable-geometry flowing tube cases, i.e., continuous narrowing and focal stenosis, under synthetic scanner noise. A global inverse optimization approach utilizing Dual-Tikhonov regularization was applied to stably invert the ill-posed transit time integral, actively penalizing high-frequency numerical ringing while preserving structural curves. The computational simulations successfully recovered ground-truth point-wise velocities, tracking gradual hemodynamic accelerations and sharp stenotic jets. This theoretical framework and the example centerline TOF-MRA signal intensity provide a robust mathematical proof-of-concept that quantitative, localized functional hemodynamic metrics can be extracted from standard structural MRA imaging, establishing a foundation for advanced flow quantification without requiring additional scan time. Full article
(This article belongs to the Special Issue Medical Imaging: Techniques, Applications, Impact and Innovations)
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24 pages, 24483 KB  
Article
A Lightweight UAV-Mounted Metrology System for Standards-Aligned Metric Crack Width Measurement in Reinforced Concrete Bridges
by Hui Zuo, Rodrigo Cespedes, Yeimi Zaldivar, Daniel O. X. Medina, Luis A. Bedriñana, José Fiestas, Nima Shirzad-Ghaleroudkhani and Qipei Mei
Metrology 2026, 6(3), 58; https://doi.org/10.3390/metrology6030058 - 21 Aug 2026
Viewed by 207
Abstract
Accurate crack width measurement is essential for the condition assessment of reinforced concrete (RC) bridges, yet most unmanned aerial vehicle (UAV) inspections remain limited to pixel-level observations that cannot be converted into reliable metric units without an external scale reference. This paper presents [...] Read more.
Accurate crack width measurement is essential for the condition assessment of reinforced concrete (RC) bridges, yet most unmanned aerial vehicle (UAV) inspections remain limited to pixel-level observations that cannot be converted into reliable metric units without an external scale reference. This paper presents a lightweight, drone-agnostic UAV-mounted metrology system that enables standards-aligned metric crack width measurement directly from inspection imagery. The payload integrates a focusable diffractive optical element (DOE) red laser that projects a cross pattern of known angular geometry, three TF-Luna time-of-flight (ToF) distance sensors, and an ESP-WROOM-32 microcontroller that provides dual-rate sampling, Bluetooth Low Energy (BLE) streaming, and on-board logging. A two-stage calibration links the synchronized distance measurements to the physical length of the projected cross, yielding an image-specific pixel-to-millimeter scale that is applied to pixel-level crack widths obtained from a vision-based segmentation pipeline. The system is field-deployed on the Puente Huamani Bridge in Pisco, Peru, where measurements of 39 cracks classified under AASHTO MBEI condition states are compared against independent manual measurements by six inspectors. The proposed system reduces measurement variability across all condition states (CS), lowering the average coefficient of variation from 0.36 to 0.10 for fine CS1 cracks, from 0.27 to 0.11 for CS2, and from 0.22 to 0.07 for CS3. Cross-platform adaptability is demonstrated through an additional deployment on a DJI Matrice 350 RTK at the Low Level Bridge in Edmonton, Canada. The results indicate that the system provides a practical, low-cost, and scalable solution for repeatable, standards-aligned UAV-based bridge crack assessment. Full article
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26 pages, 17475 KB  
Article
Unraveling the Microbial Associations of Volatile Flavor Profiles in Spontaneously Fermented Camel Milk from Three Regions of Xinjiang, China
by Yating Wu, He Chen, Fulan Wang, Henigul Osman, Shiqi Zhang, Hongyan Zhang, Shuai Wang, Nan Zheng and Yankun Zhao
Foods 2026, 15(16), 2937; https://doi.org/10.3390/foods15162937 - 21 Aug 2026
Viewed by 235
Abstract
Spontaneously fermented camel milk from Xinjiang is valued for its nutrition but faces quality inconsistency due to complex microbial ecosystems. This study investigated how regional microbial communities correlate with volatile flavor profiles. Nine samples from three distinct areas—Dabancheng, Hami, and Keping—were analyzed using [...] Read more.
Spontaneously fermented camel milk from Xinjiang is valued for its nutrition but faces quality inconsistency due to complex microbial ecosystems. This study investigated how regional microbial communities correlate with volatile flavor profiles. Nine samples from three distinct areas—Dabancheng, Hami, and Keping—were analyzed using bacterial 16S rRNA gene and fungal ITS region amplicon sequencing combined with comprehensive two-dimensional gas chromatography–time-of-flight mass spectrometry (GC×GC-TOF MS). Bacterial communities were dominated by Firmicutes and Proteobacteria, while Ascomycota and Basidiomycota prevailed among fungi. Dominant genera varied by region: Lactobacillus and Dekkera in Dabancheng; Lactobacillus and Dipodascus in Hami; Lactococcus and Cutaneotrichosporon in Keping. Flavor profiles also diverged, with Dabancheng being rich in esters, alcohols, and ketones; Hami featuring hydrocarbons and alcohols; and Keping containing elevated hydrocarbons, alcohols, and esters. Key statistical associations were identified: Lactobacillus, Rahnella, and Acetobacter were positively associated with propene and 3-decyn-2-ol (VIP > 1.0, |r| > 0.8), while Pseudomonas, Lactococcus, and Klebsiella showed negative correlations with vinyl n-caproate. These findings reveal statistical associations between geographic origin, specific microbial taxa, and flavor attributes, providing a scientific foundation that may inform future efforts toward developing targeted starter cultures pending microbial isolation and functional validation. Full article
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13 pages, 670 KB  
Article
Study Clinical Characteristics and Outcomes of Candida auris Candidemia in Adult Intensive Care Unit Patients: A 30-Month Retrospective Study
by Murat Unsel, Güldem Turan, Neval Elgormus and Hafize Uzun
J. Clin. Med. 2026, 15(16), 6389; https://doi.org/10.3390/jcm15166389 - 18 Aug 2026
Viewed by 176
Abstract
Background: Candida auris (C. auris) has emerged as a multidrug-resistant fungal pathogen causing healthcare-associated outbreaks worldwide, particularly in intensive care units (ICUs). Its environmental persistence, multidrug resistance, and high mortality make it a major challenge for infection prevention and clinical [...] Read more.
Background: Candida auris (C. auris) has emerged as a multidrug-resistant fungal pathogen causing healthcare-associated outbreaks worldwide, particularly in intensive care units (ICUs). Its environmental persistence, multidrug resistance, and high mortality make it a major challenge for infection prevention and clinical management. This study aimed to investigate the clinical characteristics, clinical exposures, treatment outcomes, and mortality of adult ICU patients with C. auris candidemia during the first 30 months after the opening of a tertiary care hospital. Methods: This retrospective observational study included all adult patients (≥18 years) admitted to five ICUs between 1 July 2020 and 31 December 2022 who developed culture-confirmed C. auris candidemia. Isolates were identified using matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) with the Microflex LT/SH Smart MS system (Bruker Daltonics, Bremen, Germany) according to routine microbiological laboratory procedures. Demographic characteristics, underlying diseases, invasive procedures, clinical exposures, microbiological findings, treatment, APACHE II scores, and clinical outcomes were retrospectively analyzed. Results: During the 30-month study period, 3716 adult patients were admitted to the ICUs, and candidemia developed in 432 (11.6%). Of these episodes, 22 (5.1%) were caused by C. auris. The first C. auris candidemia case occurred 184 days after hospital opening. The mean age was 55 ± 17 years, and overall ICU mortality was 77.3%. Sepsis (36.4%), malignancy (22.7%), and cerebrovascular disease (18.2%) were the most common reasons for ICU admission. All patients had received broad-spectrum antibiotics, whereas central venous catheterization and invasive mechanical ventilation were present in 77.3% of cases. The mean interval from ICU admission to candidemia was 49 ± 15 days. Caspofungin was used as first-line antifungal therapy in all patients. Non-survivors had significantly higher APACHE II scores (32.8 ± 4.9 vs. 26.4 ± 6.6, p = 0.029) and predicted mortality rates (80.1% vs. 53.3%, p = 0.012). Antifungal treatment duration was significantly shorter among non-survivors (p < 0.001), whereas no significant differences were observed in age, ICU length of stay, or time to blood culture clearance. Conclusions: C. auris candidemia was observed in critically ill patients with prolonged ICU stays and frequent invasive interventions and was associated with high all-cause ICU mortality. Higher APACHE II scores were associated with mortality in this cohort, reflecting greater baseline severity of illness. Given the small sample size and descriptive, exploratory nature of the study, these findings should be interpreted with caution. The effectiveness of specific infection-control, diagnostic, or therapeutic interventions was not evaluated. Larger multicenter prospective studies are needed to better characterize the epidemiology, clinical outcomes, and factors associated with mortality in C. auris candidemia. Full article
(This article belongs to the Section Intensive Care)
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13 pages, 2186 KB  
Article
Phenotypic and MALDI-TOF MS Characterization of Presumptive Antimicrobial-Resistant Bacteria from Hungarian Aquatic Environments
by Elshafia Ali Hamid Mohammed, Gábor Kardos, Renáta Bőkényné Tóth and Károly Pál
Aquac. J. 2026, 6(3), 35; https://doi.org/10.3390/aquacj6030035 - 17 Aug 2026
Viewed by 259
Abstract
Antimicrobial resistance (AMR) in aquaculture environments has become an increasing concern due to the dissemination of antibiotic-resistant bacteria in aquatic ecosystems. This study investigated the occurrence of presumptive antimicrobial-resistant bacteria in commercial fish farms in Hajdú-Bihar county, Hungary. Between 2023 and 2024, water [...] Read more.
Antimicrobial resistance (AMR) in aquaculture environments has become an increasing concern due to the dissemination of antibiotic-resistant bacteria in aquatic ecosystems. This study investigated the occurrence of presumptive antimicrobial-resistant bacteria in commercial fish farms in Hajdú-Bihar county, Hungary. Between 2023 and 2024, water samples were collected from fishponds from Hajdúszoboszló, Biharugra, and Debrecen, followed by membrane filtration with 0.45 µm pore size mixed cellulose ester membrane filters, bacterial isolation using selective media including vancomycin-resistant enterococci (VRE) agar, Eosin Methylene Blue (EMB) agar, and Endo’s medium. The phenotypic characterization revealed the presence of diverse bacterial populations that could be associated with potential antimicrobial resistance. Bacterial identification using Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry (MALDI-TOF MS) showed several bacterial genera, predominantly Acinetobacter, Pseudomonas, Enterococcus, Bacillus, and Escherichia. A total of 16 presumptive antimicrobial-resistant bacterial isolates recovered from selective media were identified using MALDI-TOF MS. Several detected species, including Acinetobacter baumannii, Pseudomonas aeruginosa, Enterococcus faecium, and Enterococcus faecalis, are recognized as opportunistic bacteria associated with antimicrobial resistance dissemination. The findings demonstrate that aquaculture waters in Hajdú-Bihar county may serve as reservoirs of antimicrobial-resistant bacteria. Full article
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19 pages, 3738 KB  
Article
Characterization and Tentative Annotation of Flavonoid Glycosides in a Flavonoid-Enriched Fraction from Bambusa textilis Leaves by UHPLC-ESI-Q-TOF-MS/MS
by Yuan Fang, Ting Yuan and Xuefeng Guo
Plants 2026, 15(16), 2459; https://doi.org/10.3390/plants15162459 - 13 Aug 2026
Viewed by 239
Abstract
Bamboo leaves contain structurally diverse flavonoid glycosides; whereas, compound-level information for Bambusa textilis remains limited. In this study, a flavonoid-enriched 40% ethanol fraction prepared from B. textilis leaves by petroleum-ether partitioning and AB-8 resin adsorption was analyzed by ultra-high-performance liquid chromatography coupled with [...] Read more.
Bamboo leaves contain structurally diverse flavonoid glycosides; whereas, compound-level information for Bambusa textilis remains limited. In this study, a flavonoid-enriched 40% ethanol fraction prepared from B. textilis leaves by petroleum-ether partitioning and AB-8 resin adsorption was analyzed by ultra-high-performance liquid chromatography coupled with electrospray ionization quadrupole time-of-flight tandem mass spectrometry (UHPLC-ESI-Q-TOF-MS/MS) in negative-ion mode. Retention times and MS/MS spectra were compared with seven in-house reference standards, while the remaining constituents were annotated from accurate-mass measurements, diagnostic product ions, fragmentation behavior, and data from the literature. According to Metabolomics Standards Initiative criteria, seven compounds were assigned at Level 1 and twenty-four were reported as Level 3 annotations because their exact positional structures were not confirmed by additional standards or NMR. Thirty-one flavonoid-related constituents were annotated in the analyzed fraction, encompassing six glycoside classes; most annotations, by count, were apigenin- or luteolin-derived. These annotations add compound-level information for the analyzed B. textilis fraction and allow qualitative comparison with other bamboo flavonoid profiles. Because the sample was selectively enriched, the results do not describe the complete leaf metabolome or compound concentrations. Additional standards or NMR analysis are needed to confirm the glycosylation positions of tentatively annotated compounds. Full article
(This article belongs to the Section Phytochemistry)
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14 pages, 2135 KB  
Article
Associations of Biofilm Capacity with Antimicrobial Resistance and Virulence Genes in Klebsiella pneumoniae from Chickens in Henan, China, 2023–2025
by Han Zhang, Jiayi Li, Shiqi Deng, Jiani Lei, Liping Gao, Xiangyang Li, Lili Gao, Yuyang Yuan, Hua Wu, Yajun Zhai and Jianhua Liu
Antibiotics 2026, 15(8), 767; https://doi.org/10.3390/antibiotics15080767 - 10 Aug 2026
Viewed by 250
Abstract
Background: Klebsiella pneumoniae is an opportunistic zoonotic pathogen that can cause respiratory diseases in chickens. The aim of this study was to investigate the biofilm formation, resistance, and virulence of K. pneumoniae isolates from chickens in Henan Province, China, between 2023 and [...] Read more.
Background: Klebsiella pneumoniae is an opportunistic zoonotic pathogen that can cause respiratory diseases in chickens. The aim of this study was to investigate the biofilm formation, resistance, and virulence of K. pneumoniae isolates from chickens in Henan Province, China, between 2023 and 2025, and to analyze the associations among these characteristics. Methods: We identified the isolates through blood agar culture, Gram staining and matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS). Hypermucoviscosity phenotype, biofilm-forming ability, antimicrobial resistance and virulence genes were assessed by the string test, crystal violet assay, disk diffusion and polymerase chain reaction (PCR), respectively. Results: A total of 102 K. pneumoniae isolates were identified. Of these, 81.4% were biofilm-forming strains, and 15.7% exhibited the hypermucoviscosity phenotype. The susceptibility profiles of the K. pneumoniae isolates indicated high resistance to penicillins (>90.0%) and low resistance to carbapenems (<10%), with 88.2% identified as multidrug-resistant. The results of virulence gene detection indicated that luxS (79.4%), mrkD (75.5%), and uge (73.5%) were the most prevalent virulence genes, followed by wabG (49.0%), ybtA (34.3%), and iucA (20.6%). The association analysis indicated that biofilm formation was significant association with multidrug-resistant and the carriage of virulence genes. Compared with non–biofilm–forming isolates, biofilm–forming isolates showed significantly higher resistance to ceftiofur and florfenicol, as well as higher detection rates of luxS, mrkD, and uge (p < 0.05). Conclusions: The data obtained in this study reveal the pathogenic potential and multidrug–resistant characteristics of this pathogen, highlighting the need for surveillance and monitoring. Full article
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9 pages, 6205 KB  
Article
Time-of-Flight Secondary Ion Mass Spectrometry Characterization and Elemental Distribution of Potassium Dihydrogen Phosphate Crystals Under Laser Irradiation
by Xiangcao Li, Baoan Liu, Hongjie Xue, Yuan Xie and Xin Ju
Crystals 2026, 16(8), 522; https://doi.org/10.3390/cryst16080522 - 8 Aug 2026
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Abstract
This study used time-of-flight secondary ion mass spectrometry (TOF-SIMS) to comprehensively analyze the elemental composition, ion distribution, and signal variations in potassium dihydrogen phosphate (KDP) crystals at various sputtering depths after laser irradiation. Positive ion mass spectra were employed to identify the characteristic [...] Read more.
This study used time-of-flight secondary ion mass spectrometry (TOF-SIMS) to comprehensively analyze the elemental composition, ion distribution, and signal variations in potassium dihydrogen phosphate (KDP) crystals at various sputtering depths after laser irradiation. Positive ion mass spectra were employed to identify the characteristic ions K+, Ca+, Fe+, Si+, and P+. These ions were assigned to their corresponding chemical species. Large-area two-dimensional chemical mapping and maximum count/total count (MC/TC) analysis combined and showed clear depth-dependent trends; all detected ions had significantly higher MC and TC values at larger sputtering depths. At a depth of 1.3 nm, Fe-related and O-related ion signals exhibited overlapping localized hotspots, whereas Ca species showed ring-like enrichment at the edges of the damage pits. These changes are attributed to the laser-induced decomposition of KDP crystals, in which metal inclusions absorb laser energy, generate localized high temperature and pressure, and promote material ejection and ion redistribution. These findings provide direct experimental evidence for understanding laser-induced elemental redistribution in KDP crystals and offer useful guidance for further optimization of their performance. Full article
(This article belongs to the Section Inorganic Crystalline Materials)
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8 pages, 2074 KB  
Case Report
First Report of Ignatzschineria indica Infection in Greece and Review of the Literature
by Alexandra Vasilakopoulou, Evaggelia Oikonomoula, Vasiliki Anagnosti, Pavlos Siozos, Ioannis Liakopoulos, Eleni Kalogeropoulou, Sofia Damianidou, Polyxeni Karakosta, Sophia Vourli, Panagiota-Christina Georgiou, Anastasios Ioannidis and Spyros Pournaras
Infect. Dis. Rep. 2026, 18(4), 83; https://doi.org/10.3390/idr18040083 - 7 Aug 2026
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Abstract
Background: Ignatzschineria species are rare emerging human pathogens that are typically associated with myiasis. Methods: We report the first case of Ignatzschineria indica bacteraemia in Greece in a male patient presenting with maggot-infested wounds of the thorax, shoulders, and arms. The isolate was [...] Read more.
Background: Ignatzschineria species are rare emerging human pathogens that are typically associated with myiasis. Methods: We report the first case of Ignatzschineria indica bacteraemia in Greece in a male patient presenting with maggot-infested wounds of the thorax, shoulders, and arms. The isolate was identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS), and antimicrobial susceptibility testing was performed according to EUCAST guidance. A review of the published literature on I. indica bacteraemia was also conducted. Results: The patient was diagnosed with bacteraemia caused by a multisusceptible I. indica isolate and was successfully treated with antibiotic therapy, resulting in complete recovery. This represents the first reported case of I. indica infection in Greece. Review of the literature showed that most published I. indica isolates were susceptible to a broad range of antimicrobial agents, and all reported patients survived, although some required limb amputation because of severe underlying soft tissue disease. Conclusions: Ignatzschineria indica infection should be considered in patients with neglected, maggot-infested wounds. Increased awareness of this emerging pathogen, together with the use of modern microbiological identification methods, may improve recognition of these uncommon infections. Socio-economic inequalities and the changing distribution of insect vectors due to climate change may contribute to the occurrence of such infections. Full article
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