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1.
Nat Commun ; 15(1): 5557, 2024 Jul 02.
Article de Anglais | MEDLINE | ID: mdl-38956415

RÉSUMÉ

Severe traumatic bleeding may lead to extremely high mortality rates, and early intervention to stop bleeding plays as a critical role in saving lives. However, rapid hemostasis in deep non-compressible trauma using a highly water-absorbent hydrogel, combined with strong tissue adhesion and bionic procoagulant mechanism, remains a challenge. In this study, a DNA hydrogel (DNAgel) network composed of natural nucleic acids with rapid water absorption, high swelling and instant tissue adhesion is reported, like a band-aid to physically stop bleeding. The excellent swelling behavior and robust mechanical performance, meanwhile, enable the DNAgel band-aid to fill the defect cavity and exert pressure on the bleeding vessels, thereby achieving compression hemostasis for deep tissue bleeding sites. The neutrophil extracellular traps (NETs)-inspired DNAgel network also acts as an artificial DNA scaffold for erythrocytes to adhere and aggregate, and activates platelets, promoting coagulation cascade in a bionic way. The DNAgel achieves lower blood loss than commercial gelatin sponge (GS) in male rat trauma models. In vivo evaluation in a full-thickness skin incision model also demonstrates the ability of DNAgel for promoting wound healing. Overall, the DNAgel band-aid with great hemostatic capacity is a promising candidate for rapid hemostasis and wound healing.


Sujet(s)
ADN , Pièges extracellulaires , Hémostase , Hémostatiques , Hydrogels , Cicatrisation de plaie , Animaux , Pièges extracellulaires/métabolisme , Pièges extracellulaires/effets des médicaments et des substances chimiques , ADN/composition chimique , Mâle , Hydrogels/composition chimique , Hydrogels/pharmacologie , Rats , Hémostase/effets des médicaments et des substances chimiques , Cicatrisation de plaie/effets des médicaments et des substances chimiques , Hémostatiques/pharmacologie , Hémostatiques/composition chimique , Rat Sprague-Dawley , Hémorragie , Humains , Granulocytes neutrophiles/métabolisme , Modèles animaux de maladie humaine
2.
Sci Rep ; 14(1): 14914, 2024 06 28.
Article de Anglais | MEDLINE | ID: mdl-38942821

RÉSUMÉ

Prostate cancer (PCa) is the most common cancer among men in the United States and the leading cause of cancer-related death. The Solute Carrier Family 14 Member 1 (SLC14A1) is a member of urea transporters which are important for the regulation of urine concentration. However, the physiological significance of SLC14A1 in PCa still remains unclear. In the present study, via bioinformatics analysis and experiments, we found that expression of SLC14A1 is significantly decreased in PCa progression, which could be attributed to hypermethylation on SLC14A1 promoter region. Moreover, its low expression and hypermethylation on SLC14A1 promoter are closely related to the poor prognosis of PCa patients. On the other hand, overexpression of SLC14A1 inhibited cell proliferation and metastasis while its overexpression also suppressed CDK1/CCNB1 pathway and mTOR/MMP-9 signaling pathway. Additionally, SLC14A1 expression is enriched in prostate basal-type cells. In summary, our study indicates that its low expression level and promoter hypermethylation of SLC14A1 may represent novel indicators for PCa progression and prognosis, and SLC14A1 could inhibit the progression of PCa.


Sujet(s)
Protéine-kinase CDC2 , Méthylation de l'ADN , Évolution de la maladie , Régulation de l'expression des gènes tumoraux , Régions promotrices (génétique) , Tumeurs de la prostate , Transduction du signal , Sérine-thréonine kinases TOR , Humains , Mâle , Tumeurs de la prostate/génétique , Tumeurs de la prostate/métabolisme , Tumeurs de la prostate/anatomopathologie , Sérine-thréonine kinases TOR/métabolisme , Sérine-thréonine kinases TOR/génétique , Lignée cellulaire tumorale , Protéine-kinase CDC2/métabolisme , Protéine-kinase CDC2/génétique , Prolifération cellulaire/génétique , Régulation négative , Pronostic , Mouvement cellulaire/génétique
3.
Behav Sci (Basel) ; 14(6)2024 May 22.
Article de Anglais | MEDLINE | ID: mdl-38920759

RÉSUMÉ

BACKGROUND: Externalizing problems, internalizing problems, and obesity are among the greatest challenges to adolescent health. However, the moderating and mediating mechanisms that underlie this association remain predominantly unexplored. OBJECTIVES: In this study, we examined the association between body mass index (BMI) and externalizing and internalizing scores in adolescents, tested whether traditional bullying and cyberbullying mediated the association, and explored the moderated role of sex. METHODS: The data came from 1486 adolescents from grade 7, 8, and 10 living in Shantou, China. Information on BMI, traditional bullying, and cyberbullying victimization was obtained through a self-administered questionnaire. The students' externalizing and internalizing scores were evaluated using the Strengths and Difficulties Questionnaire (SDQ). Furthermore, we built two parallel mediation models with sex as a moderating variable. RESULTS: Compared to their peers with normal weight, adolescents with increased BMI reported higher externalizing and internalizing scores. Traditional bullying and cyberbullying were both significant mediators in the two relationships. Sex moderated the pathway from BMI to cyberbullying. But sex did not moderate the relationship between BMI and traditional bullying. CONCLUSIONS: The results highlight that it is imperative for educators to identify students who are subjected to weight-based bullying and provide them with recommendations for effective coping strategies. Meanwhile, both victims of traditional bullying and those affected by cyberbullying should be the focus of prevention and intervention efforts when developing a strategy to improve levels of internalizing and externalizing symptoms among adolescents with increased BMI.

4.
Proc Natl Acad Sci U S A ; 121(25): e2322403121, 2024 Jun 18.
Article de Anglais | MEDLINE | ID: mdl-38865273

RÉSUMÉ

Fluorine magnetic resonance imaging (19F-MRI) is particularly promising for biomedical applications owing to the absence of fluorine in most biological systems. However, its use has been limited by the lack of safe and water-soluble imaging agents with high fluorine contents and suitable relaxation properties. We report innovative 19F-MRI agents based on supramolecular dendrimers self-assembled by an amphiphilic dendrimer composed of a hydrophobic alkyl chain and a hydrophilic dendron. Specifically, this amphiphilic dendrimer bears multiple negatively charged terminals with high fluorine content, which effectively prevented intra- and intermolecular aggregation of fluorinated entities via electrostatic repulsion. This permitted high fluorine nuclei mobility alongside good water solubility with favorable relaxation properties for use in 19F-MRI. Importantly, the self-assembling 19F-MRI agent was able to encapsulate the near-infrared fluorescence (NIRF) agent DiR and the anticancer drug paclitaxel for multimodal 19F-MRI and NIRF imaging of and theranostics for pancreatic cancer, a deadly disease for which there remains no adequate early detection method or efficacious treatment. The 19F-MRI and multimodal 19F-MRI and NIRF imaging studies on human pancreatic cancer xenografts in mice confirmed the capability of both imaging modalities to specifically image the tumors and demonstrated the efficacy of the theranostic agent in cancer treatment, largely outperforming the clinical anticancer drug paclitaxel. Consequently, these dendrimer nanosystems constitute promising 19F-MRI agents for effective cancer management. This study offers a broad avenue to the construction of 19F-MRI agents and theranostics, exploiting self-assembling supramolecular dendrimer chemistry.


Sujet(s)
Dendrimères , Fluor , Nanomédecine théranostique , Dendrimères/composition chimique , Animaux , Nanomédecine théranostique/méthodes , Humains , Souris , Fluor/composition chimique , Paclitaxel/composition chimique , Paclitaxel/usage thérapeutique , Imagerie par résonance magnétique/méthodes , Lignée cellulaire tumorale , Tumeurs du pancréas/imagerie diagnostique , Tumeurs du pancréas/traitement médicamenteux , Tumeurs du pancréas/thérapie , Imagerie par résonance magnétique du fluor-19/méthodes , Souris nude , Produits de contraste/composition chimique
5.
Brain Res ; 1840: 149049, 2024 May 31.
Article de Anglais | MEDLINE | ID: mdl-38825161

RÉSUMÉ

BACKGROUND: Previous studies have revealed structural brain abnormalities in individuals with depression, but the causal relationship between depression and brain structure remains unclear. METHODS: A genetic correlation analysis was conducted using summary statistics from the largest genome-wide association studies for depression (N = 674,452) and 1,265 brain structural imaging-derived phenotypes (IDPs, N = 33,224). Subsequently, a bidirectional two-sample Mendelian Randomization (MR) approach was employed to explore the causal relationships between depression and the IDPs that showed genetic correlations with depression. The main MR results were obtained using the inverse variance weighted (IVW) method, and other MR methods were further employed to ensure the reliability of the findings. RESULTS: Ninety structural IDPs were identified as being genetically correlated with depression and were included in the MR analyses. The IVW MR results indicated that reductions in the volume of several brain regions, including the bilateral subcallosal cortex, right medial orbitofrontal cortex, and right middle-posterior part of the cingulate cortex, were causally linked to an increased risk of depression. Additionally, decreases in surface area of the right middle temporal visual area, right middle temporal cortex, right inferior temporal cortex, and right middle-posterior part of the cingulate cortex were causally associated with a heightened risk of depression. Validation and sensitivity analyses supported the robustness of these findings. However, no evidence was found for a causal effect of depression on structural IDPs. CONCLUSIONS: Our findings reveal the causal influence of specific brain structures on depression, providing evidence to consider brain structural changes in the etiology and treatment of depression.

6.
Neural Regen Res ; 2024 Jun 03.
Article de Anglais | MEDLINE | ID: mdl-38845220

RÉSUMÉ

ABSTRACT: The globus pallidus plays a pivotal role In the basal ganglia circuit. Parkinson's disease Is characterized by degeneration of dopamine-producing cells in the substantia nigra, which leads to dopamine deficiency in the brain that subsequently manifests as various motor and non-motor symptoms. This review aims to summarize the involvement of the globus pallidus in both motor and non-motor manifestations of Parkinson's disease. The firing activities of parvalbumin neurons in the medial globus pallidus, including both the firing rate and pattern, exhibit strong correlations with the bradykinesia and rigidity associated with Parkinson's disease. Increased beta oscillations, which are highly correlated with bradykinesia and rigidity, are regulated by the lateral globus pallidus. Furthermore, bradykinesia and rigidity are strongly linked to the loss of dopaminergic projections within the cortical-basal ganglia-thalamocortical loop. Resting tremors are attributed to the transmission of pathological signals from the basal ganglia through the motor cortex to the cerebellum-ventral intermediate nucleus circuit. The cortico-striato-pallidal loop is responsible for mediating pallidi-associated sleep disorders. Medication and deep brain stimulation are the primary therapeutic strategies addressing the globus pallidus in Parkinson's disease. Medication is the primary treatment for motor symptoms in the early stages of Parkinson's disease, while deep brain stimulation has been clinically proven to be effective in alleviating symptoms in patients with advanced Parkinson's disease, particularly for the movement disorders caused by levodopa. Deep brain stimulation targeting the globus pallidus internus can improve motor function in patients with tremordominant and non-tremor-dominant Parkinson's disease, while deep brain stimulation targeting the globus pallidus externus can alter the temporal pattern of neural activity throughout the basal ganglia-thalamus network. Therefore, the composition of the globus pallidus neurons, the neurotransmitters that act on them, their electrical activity, and the neural circuits they form can guide the search for new multi-target drugs to treat Parkinson's disease in clinical practice. Examining the potential intra-nuclear and neural circuit mechanisms of deep brain stimulation associated with the globus pallidus can facilitate the management of both motor and non-motor symptoms while minimizing the side effects caused by deep brain stimulation.

7.
J Phys Chem Lett ; 15(24): 6266-6271, 2024 Jun 20.
Article de Anglais | MEDLINE | ID: mdl-38844414

RÉSUMÉ

Traditional semiconductors are known to exhibit excellent electrical properties but oversized lattice thermal conductivities, thus limiting their thermoelectric performance. Herein, we have discovered a low-energy allotrope of those traditional semiconductors. Compared with the wurtzite structure, the lattice thermal conductivity is reduced by more than five times in the haeckelite structure. This is attributed to the softening of acoustic phonon modes and concurrently enhanced anharmonicity in the haeckelite structure. Benefiting from the suppressed lattice thermal conductivity while retaining the excellent electrical properties of wurtzite structure, haeckelite compounds have been proven to be a novel category of high-performance thermoelectric materials. As an excellent representative, haeckelite CdTe exhibits a peak figure of merit approaching 1.3 at n-type doping and high temperature, which experiences a 3-fold improvement compared with its wurtzite counterpart. This work provides an alternative pathway of engineering the lattice thermal conductivities of traditional semiconductors toward superior thermoelectric properties.

8.
J Hazard Mater ; 474: 134790, 2024 Aug 05.
Article de Anglais | MEDLINE | ID: mdl-38850938

RÉSUMÉ

Pancreatic ductal adenocarcinoma (PDAC)/pancreatic cancer, is a highly aggressive malignancy with poor prognosis. Gemcitabine-based chemotherapy remains the cornerstone of PDAC treatment. Nonetheless, the development of resistance to gemcitabine among patients is a major factor contributing to unfavorable prognostic outcomes. The resistance exhibited by tumors is modulated by a constellation of factors such as genetic mutations, tumor microenvironment transforms, environmental contaminants exposure. Currently, comprehension of the relationship between environmental pollutants and tumor drug resistance remains inadequate. Our study found that PFOS/6:2 Cl-PFESA exposure increases resistance to gemcitabine in PDAC. Subsequent in vivo trials confirmed that exposure to PFOS/6:2 Cl-PFESA reduces gemcitabine's efficacy in suppressing PDAC, with the inhibition rate decreasing from 79.5 % to 56.7 %/38.7 %, respectively. Integrative multi-omics sequencing and molecular biology analyses have identified the upregulation of ribonucleotide reductase catalytic subunit M1 (RRM1) as a critical factor in gemcitabine resistance. Subsequent research has demonstrated that exposure to PFOS and 6:2 Cl-PFESA results in the upregulation of the RRM1 pathway, consequently enhancing chemotherapy resistance. Remarkably, the influence exerted by 6:2 Cl-PFESA exceeds that of PFOS. Despite 6:2 Cl-PFESA being regarded as a safer substitute for PFOS, its pronounced effect on chemotherapeutic resistance in PDAC necessitates a thorough evaluation of its potential risks related to gastrointestinal toxicity.


Sujet(s)
Acides alcanesulfoniques , Carcinome du canal pancréatique , Désoxycytidine , Résistance aux médicaments antinéoplasiques , Fluorocarbones , , Tumeurs du pancréas , Désoxycytidine/analogues et dérivés , Désoxycytidine/usage thérapeutique , Tumeurs du pancréas/traitement médicamenteux , Humains , Fluorocarbones/toxicité , Acides alcanesulfoniques/toxicité , Lignée cellulaire tumorale , Carcinome du canal pancréatique/traitement médicamenteux , Carcinome du canal pancréatique/génétique , Résistance aux médicaments antinéoplasiques/effets des médicaments et des substances chimiques , Animaux , Ribonucleoside diphosphate reductase , Protéines suppresseurs de tumeurs/génétique , Protéines suppresseurs de tumeurs/métabolisme , Antimétabolites antinéoplasiques/usage thérapeutique , Femelle , Souris , Mâle , Souris nude
9.
Opt Express ; 32(11): 19665-19675, 2024 May 20.
Article de Anglais | MEDLINE | ID: mdl-38859096

RÉSUMÉ

This study demonstrates a differential absorption lidar (DIAL) for CO2 that integrates both single-photon direct detection and coherent detection. Based on all-fiber 1572 nm wavelength devices, this compact lidar achieves detection of CO2 concentration, wind field, and single photon aerosol backscattering signal. First, by comparing DIAL with VAISALA-GMP343, the concentration deviation between the two devices is less than 5 ppm, proving the accuracy of the DIAL. Second, through the scanning detection experiment in Chaohu Lake, Hefei, not only the CO2 concentration between single-photon detection and coherent detection but also the wind field was obtained, proving the multifunctionality and stability of the DIAL. Benefiting from the advantages of combined the two detection methods, single photon detection offers 3-km CO2 and aerosol backscattering signals; coherent detection offers a 360-m shorter blind zone and wind field. This DIAL can achieve monitoring of CO2 flux and sudden emissions, which can effectively compensate for the shortages of in-situ sensors and spaceborne systems.

10.
J Hazard Mater ; 473: 134647, 2024 Jul 15.
Article de Anglais | MEDLINE | ID: mdl-38762986

RÉSUMÉ

Microbially-driven soil formation process is an emerging technology for the ecological rehabilitation of alkaline tailings. However, the dominant microorganisms and their specific roles in soil formation processes remain unknown. Herein, a 1-year field-scale experiment was applied to demonstrate the effect of nitrogen input on the structure and function of the microbiome in alkaline bauxite residue. Results showed that the contents of nutrient components were increased with Penicillium oxalicum (P. oxalicum) incorporation, as indicated by the increasing of carbon and nitrogen mineralization and enzyme metabolic efficiency. Specifically, the increasing enzyme metabolic efficiency was associated with nitrogen input, which shaped the microbial nutrient acquisition strategy. Subsequently, we evidenced that P. oxalicum played a significant role in shaping the assemblages of core bacterial taxa and influencing ecological functioning through intra- and cross-kingdom network analysis. Furthermore, a recruitment experiment indicated that nitrogen enhanced the enrichment of core microbiota (Nitrosomonas, Bacillus, Pseudomonas, and Saccharomyces) and may provide benefits to fungal community bio-diversity and microbial network stability. Collectively, these results demonstrated nitrogen-based coexistence patterns among P. oxalicum and microbiome and revealed P. oxalicum-mediated nutrient dynamics and ecophysiological adaptations in alkaline microhabitats. It will aid in promoting soil formation and ecological rehabilitation of bauxite residue. ENVIRONMENT IMPLICATION: Bauxite residue is a highly alkaline solid waste generated during the Bayer process for producing alumina. Attempting to transform bauxite residue into a stable soil-like substrate using low-cost microbial resources is a highly promising engineering. However, the dominant microorganisms and their specific roles in soil formation processes remain unknown. In this study, we evidenced the nitrogen-based coexistence patterns among Penicillium oxalicum and microbiome and revealed Penicillium oxalicum-mediated nutrient dynamics and ecophysiological adaptations in alkaline microhabitats. This study can improve the understanding of core microbes' assemblies that affect the microbiome physiological traits in soil formation processes.


Sujet(s)
Oxyde d'aluminium , Bactéries , Microbiote , Azote , Penicillium , Microbiologie du sol , Penicillium/métabolisme , Penicillium/croissance et développement , Azote/métabolisme , Oxyde d'aluminium/composition chimique , Bactéries/métabolisme , Bactéries/croissance et développement , Sol/composition chimique
11.
Chem Asian J ; 19(11): e202400086, 2024 Jun 03.
Article de Anglais | MEDLINE | ID: mdl-38676953

RÉSUMÉ

A visible light-catalyzed radical coupling reaction of polysulfide reagents with aryldiazonium was developed, which gave thiosulfonates under mild conditions. In this reaction, the thiosulfonates were isolated in good yields with a broad tolerance to functional groups. And the synthesis of diaryl monosulfides were achieved through a step-by-step reaction of two molecular aryldiazonium with DBSPS, where the sulfur source was provided by DBSPS. It was worth noting that the reaction of this monosulfides could also be achieved by a one pot two-step process. The described polysulfide reagents were able to produce three new radicals: sulfonyl radicals, sulfur-sulfonyl radicals and sulfur-sulfur-sulfonyl radicals.

12.
Environ Res ; 252(Pt 1): 118843, 2024 Jul 01.
Article de Anglais | MEDLINE | ID: mdl-38582429

RÉSUMÉ

Recently, the newly discovered anaerobic ammonium oxidation coupled with iron reduction (i.e., Feammox) has been proven to be a widespread nitrogen (N) loss pathway in ecosystems and has an essential contribution to gaseous N loss in paddy soil. However, the mechanism of iron-nitrogen coupling transformation and the role of iron-reducing bacteria (IRB) in Feammox were poorly understood. This study investigated the Feammox and iron reduction changes and microbial community evolution in a long-term anaerobic incubation by 15N isotope labeling combined with molecular biological techniques. The average rates of Feammox and iron reduction during the whole incubation were 0.25 ± 0.04 µg N g-1 d-1 and 40.58 ± 3.28 µg Fe g-1 d-1, respectively. High iron oxide content increased the Feammox rate, but decreased the proportion of Feammox-N2 in three Feammox pathways. RBG-13-54-9, Brevundimonas, and Pelomonas played a vital role in the evolution of microbial communities. The characteristics of asynchronous changes between Feammox and iron reduction were found through long-term incubation. IRB might not be the key species directly driving Feammox, and it is necessary to reevaluate the role of IRB in Feammox process.


Sujet(s)
Fer , Oxydoréduction , Microbiologie du sol , Sol , Chine , Fer/métabolisme , Sol/composition chimique , Bactéries/métabolisme , Composés d'ammonium/analyse , Composés d'ammonium/métabolisme
13.
J Hazard Mater ; 471: 134302, 2024 Jun 05.
Article de Anglais | MEDLINE | ID: mdl-38640664

RÉSUMÉ

Antimony (Sb) and arsenic (As) lead to soil pollution and structural degradation at Sb smelting sites. However, most sites focus solely on Sb/As immobilization, neglecting the restoration of soil functionality. Here, we investigated the effectiveness of Fe/H2O2 modified biochar (Fe@H2O2-BC) and Sb-oxidizing bacteria (Bacillus sp. S3) in immobilizing Sb/As and enhancing soil functional resilience at an Sb smelting site. Over a twelve-month period, the leaching toxicity of As and Sb was reduced to 0.05 and 0.005 mg L-1 (GB3838-2002) respectively, with 1% (w/w) Fe@H2O2-BC and 2% (v/v) Bacillus sp. S3 solution. Compared to CK, the combination of Fe@H2O2-BC and Bacillus sp. S3 significantly reduced the bioavailable As/Sb by 98.00%/93.52%, whilst increasing residual As and reducible Sb fractions by 210.31% and 96.51%, respectively. The combined application generally improved soil aggregate structure, pore characteristics, and water-holding capacity. Fe@H2O2-BC served as a pH buffer and long-term reservoir of organic carbon, changing the availability of carbon substrates to bacteria. The inoculation of Bacillus sp. S3 facilitated the transformation of Sb(III)/As(III) to Sb(V)/As(V) and differentiated the composition and functional roles of bacterial communities in soils. The combination increased the abundance of soil saprotrophs by 164.20%, whilst improving the relative abundance of N- and S-cycling bacteria according to FUNGuild and FAPROTAX analysis. These results revealed that the integrated application was instrumental in As/Sb detoxification/immobilization and soil function restoration, which demonstrating a promising microbially-driven ecological restoration strategy at Sb smelting sites.


Sujet(s)
Antimoine , Arsenic , Bacillus , Charbon de bois , Peroxyde d'hydrogène , Microbiologie du sol , Polluants du sol , Antimoine/composition chimique , Charbon de bois/composition chimique , Arsenic/métabolisme , Arsenic/composition chimique , Polluants du sol/métabolisme , Bacillus/métabolisme , Peroxyde d'hydrogène/composition chimique , Peroxyde d'hydrogène/métabolisme , Assainissement et restauration de l'environnement/méthodes , Oxydoréduction , Sol/composition chimique , Fer/composition chimique , Fer/métabolisme , Dépollution biologique de l'environnement
14.
Adv Sci (Weinh) ; 11(20): e2306703, 2024 May.
Article de Anglais | MEDLINE | ID: mdl-38561967

RÉSUMÉ

The dermis and epidermis, crucial structural layers of the skin, encompass appendages, hair follicles (HFs), and intricate cellular heterogeneity. However, an integrated spatiotemporal transcriptomic atlas of embryonic skin has not yet been described and would be invaluable for studying skin-related diseases in humans. Here, single-cell and spatial transcriptomic analyses are performed on skin samples of normal and hairless fetal pigs across four developmental periods. The cross-species comparison of skin cells illustrated that the pig epidermis is more representative of the human epidermis than mice epidermis. Moreover, Phenome-wide association study analysis revealed that the conserved genes between pigs and humans are strongly associated with human skin-related diseases. In the epidermis, two lineage differentiation trajectories describe hair follicle (HF) morphogenesis and epidermal development. By comparing normal and hairless fetal pigs, it is found that the hair placode (Pc), the most characteristic initial structure in HFs, arises from progenitor-like OGN+/UCHL1+ cells. These progenitors appear earlier in development than the previously described early Pc cells and exhibit abnormal proliferation and migration during differentiation in hairless pigs. The study provides a valuable resource for in-depth insights into HF development, which may serve as a key reference atlas for studying human skin disease etiology using porcine models.


Sujet(s)
Follicule pileux , Transcriptome , Animaux , Suidae/génétique , Suidae/embryologie , Follicule pileux/métabolisme , Follicule pileux/embryologie , Follicule pileux/croissance et développement , Transcriptome/génétique , Analyse sur cellule unique/méthodes , Peau/métabolisme , Peau/embryologie , Différenciation cellulaire/génétique , Analyse de profil d'expression de gènes/méthodes , Humains , Souris
15.
Environ Res ; 251(Pt 2): 118769, 2024 Jun 15.
Article de Anglais | MEDLINE | ID: mdl-38518918

RÉSUMÉ

This study aims to thoroughly investigate the impact mode of salinity carried by industrial wastewater on the anaerobic-anoxic-oxic (A2O) sludge in wastewater treatment plants (WWTPs). Through comprehensive investigation of the A2O stage activated sludge (AS) from 19 industrial WWTPs in the downstream area of the Yangtze River, China, A total of 38 samples of anaerobic sludge and oxic sludge were collected and analyzed. We found that salinity stress significantly inhibits the growth of the AS community, particularly evident in the anaerobic sludge community. Furthermore, the high-saline environment induces changes in the structure and functional patterns of the AS community, leading to intensive interactions and resource exchanges among microorganisms. Halophilic microorganisms may play a crucial role in this process, significantly impacting the overall community structure, especially in the oxic sludge community. Additionally, salinity stress not only suppresses the nitrogen transformation potential of the AS but also leads to the accumulation of nitrite, thereby increasing the emission potential of both NO and N2O, exacerbating the greenhouse effect of the A2O process in industrial WWTPs. The findings of this study provide necessary theoretical support for maintaining the long-term stable operation of the A2O sludge system in industrial WWTPs, reducing carbon footprint, and improving nitrogen removal efficiency.


Sujet(s)
Azote , Rivières , Salinité , Eaux d'égout , Chine , Eaux d'égout/microbiologie , Rivières/microbiologie , Rivières/composition chimique , Azote/métabolisme , Azote/analyse , Microbiote , Élimination des déchets liquides/méthodes , Déchets industriels
16.
Nano Lett ; 2024 Mar 25.
Article de Anglais | MEDLINE | ID: mdl-38525903

RÉSUMÉ

The c-axis piezoresistivity is a fundamental and important parameter of graphite, but its value near zero pressure has not been well determined. Herein, a new method for studying the c-axis piezoresistivity of van der Waals materials near zero pressure is developed on the basis of in situ scanning electron microscopy and finite element simulation. The c-axis piezoresistivity of microscale highly oriented pyrolytic graphite (HOPG) is found to show a large value of 5.68 × 10-5 kPa-1 near zero pressure and decreases by 2 orders of magnitude to the established value of ∼10-7 kPa-1 when the pressure increases to 200 MPa. By modulating the serial tunneling barrier model on the basis of the stacking faults, we describe the c-axis electrical transport of HOPG under compression. The large c-axis piezoresistivity near zero pressure and its large decrease in magnitude with pressure are attributed to the rapid stiffening of the electromechanical properties under compression.

17.
Environ Int ; 186: 108582, 2024 Apr.
Article de Anglais | MEDLINE | ID: mdl-38513556

RÉSUMÉ

Perfluoroalkyl and polyfluoroalkyl substances (PFASs) are synthetic chemicals, encompassing compounds like perfluorooctane sulfonate (PFOS), which have widespread applications across various industries, including food packaging and firefighting. In recent years, China has increasingly employed 6:2 Cl-PFESA as an alternative to PFOS. Although the association between PFAS exposure and hepatocellular carcinoma (HCC) has been demonstrated, the underlying mechanisms that promote HCC proliferation are uncleared. Therefore, we aimed to investigate the effects and differences of PFOS and 6:2 Cl-PFESA on HCC proliferation through in vivo and in vitro tumor models. Our results reveal that both PFOS and 6:2 Cl-PFESA significantly contribute to HCC proliferation in vitro and in vivo. Exposure led to reduced population doubling times, enlarged cell colony sizes, enhanced DNA synthesis efficiency, and a higher proportion of cells undergoing mitosis. Furthermore, both PFOS and 6:2 Cl-PFES) have been shown to activate the PI3K/AKT/mTOR signaling pathway and inhibit necroptosis. This action consequently enhances the proliferation of HCC cells. Our phenotypic assay findings suggest that the tumorigenic potential of 6:2 Cl-PFESA surpasses that of PFOS; in a subcutaneous tumor model using nude mice, the mean tumor weight for the 6:2 Cl-PFESA-treated cohort was 2.33 times that observed in the PFOS cohort (p < 0.01). Despite 6:2 Cl-PFESA being considered a safer substitute for PFOS, the pronounced effects of this chemical on HCC cell growth warrant a thorough assessment of hepatotoxicity risks linked to its usage.


Sujet(s)
Acides alcanesulfoniques , Carcinome hépatocellulaire , Prolifération cellulaire , Fluorocarbones , Tumeurs du foie , Carcinome hépatocellulaire/induit chimiquement , Carcinome hépatocellulaire/anatomopathologie , Humains , Tumeurs du foie/anatomopathologie , Tumeurs du foie/induit chimiquement , Prolifération cellulaire/effets des médicaments et des substances chimiques , Animaux , Souris , Lignée cellulaire tumorale , Transduction du signal/effets des médicaments et des substances chimiques , Chine
18.
Article de Anglais | MEDLINE | ID: mdl-38551416

RÉSUMÉ

Patients with severe traumatic brain injury (sTBI) are at risk of adverse events (AEs) during hospitalization, and providing nursing interventions can help reduce the negative impact of AEs. This study primarily discusses the influence of early cluster nursing intervention on nursing efficacy and AEs in patients with sTBI. We enrolled 109 sTBI patients treated in the First Affiliated Hospital of Shanghai Jiao Tong University School of Medicine between October 2022 to June 2023. We grouped them as follows based on different nursing approaches: regular group (n=52) with routine nursing intervention and research group (n=57) with early cluster nursing intervention. Parameters such as nursing satisfaction, incidence of AEs (bed falls, agitation, indwelling needle withdrawal, and skin loss), and scores of Fugl-Meyer Assessment (FMA), Functional Independence Measure (FIM), Glasgow Coma Scale (GCS), National Institutes of Health Stroke Scale (NIHSS), and quality of life assessment instrument (QOL-100) were comparatively analyzed. The analysis showed a higher nursing satisfaction degree and a lower incidence of AEs in the research group compared with the regular group; in addition, FMA, FIM, GCS, and QOL-100 scores were higher in the research group versus the control group after nursing, while the NIHSS score was lower; all of these differences were statistically significant (P < .05). Therefore, early cluster nursing intervention is highly effective in the care of sTBI patients. It can effectively improve patients' nursing satisfaction and prevent AEs while enhancing their motor function, functional independence, consciousness, neurological function, and quality of life.

19.
Eur J Psychotraumatol ; 15(1): 2321761, 2024.
Article de Anglais | MEDLINE | ID: mdl-38426665

RÉSUMÉ

Background: Nurses in emergency departments are at a high risk of experiencing secondary traumatic stress because of their frequent exposure to trauma patients and high-stress environments.Objective: This systematic review and meta-analysis aimed to determine the overall prevalence of secondary traumatic stress among emergency nurses and to identify the contributing factors.Method: We conducted a systematic search for cross-sectional studies in databases such as PubMed, Web of Science, Embase, CINAHL, Wanfang Database, and China National Knowledge Internet up to October 21, 2023. The Joanna Briggs Institute's appraisal checklists for prevalence and analytical cross-sectional studies were used for quality assessment. Heterogeneity among studies was assessed using Cochrane's Q test and the I2 statistic. A random effects model was applied to estimate the pooled prevalence of secondary traumatic stress, and subgroup analyses were performed to explore sources of heterogeneity. Descriptive analysis summarized the associated factors.Results: Out of 345 articles retrieved, 14 met the inclusion criteria, with 11 reporting secondary traumatic stress prevalence. The pooled prevalence of secondary traumatic stress among emergency nurses was 65% (95% CI: 58%-73%). Subgroup analyses indicated the highest prevalence in Asia (74%, 95% CI: 72%-77%), followed by North America (59%, 95% CI: 49%-72%) and Europe (53%, 95% CI: 29%-95%). Nine studies identified associated factors, including personal, work-related, and social factors. In the subgroup of divided by recruitment period, emergency department nurses in the COVID-19 outbreak period had a higher prevalence of secondary traumatic stress (70%, 95% CI: 62%-78%).Conclusions: Secondary traumatic stress prevalence is notably high among emergency department nurses, with significant regional variations and period differences. The factors affecting secondary traumatic stress also varied across studies. Future research should focus on improving research designs and sample sizes to pinpoint risk factors and develop prevention strategies.Registration: PROSPERO CRD42022301167.


Secondary traumatic stress is considered an occupational hazard for nurses. Emergency department nurses, in particular, face a greater risk of secondary traumatic stress compared to other professions.While various studies have investigated the prevalence of secondary traumatic stress among these nurses, findings have been inconsistent.The pooled prevalence of secondary traumatic stress among emergency nurses is 65%. Subgroup analysis by region shows that Asia experiences the highest combined prevalence at 74%, with North America at 59% and Europe at 53%. Emergency department nurses in the COVID-19 outbreak period had a higher prevalence of secondary traumatic stress (70%, 95% CI: 62%­78%).


Sujet(s)
Usure de compassion , Humains , Usure de compassion/épidémiologie , Prévalence , Études transversales , Europe , Asie
20.
Nano Lett ; 24(10): 3237-3242, 2024 Mar 13.
Article de Anglais | MEDLINE | ID: mdl-38437641

RÉSUMÉ

Traditional semiconductor quantum dots of groups II-VI are key ingredients of next-generation display technology. Yet, the majority of them contain toxic heavy-metal elements, thus calling for alternative light-emitting materials. Herein, we have explored three novel categories of multicomponent compounds, namely, tetragonal II-III2-VI4 porous ternary compounds, cubic I2-II3-VI4 ternary compounds, and cubic I-II-III3-V4 quaternary compounds. This is achieved by judicious introduction of a "super atom" perspective and concurrently varying the solid-state lattice packing of involved super atoms or the population of surrounding counter cations. Based on first-principles calculations of 392 candidate materials with designed crystal structures, 53 highly stable materials have been screened. Strikingly, 34 of them are direct-bandgap semiconductors with emitting wavelengths covering the near-infrared and visible-light regions. This work provides a comprehensive database of highly efficient light-emitting materials, which may be of interest for a broad field of optoelectronic applications.

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