Publications by authors named "XiaoYu Wei"

Polysaccharides are very promising molecules in the field of pharmacotherapy. Knowing this, the aim of this study was to extract, characterize, and evaluate the action of the polysaccharides in noni juice, using biological models of Type 2 diabetes mellitus processes. In this study, one polysaccharide named NJSPd-1 was separated from fermented noni fruit juice.

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Purpose: The study aimed to assess various characteristics of coronary computed tomography angiography (CCTA) in patients presenting with suspected coronary artery disease (CAD). Additionally, the research sought to investigate the predictive value of the coronary artery volume to myocardial mass (V/M) derived from CCTA in risk stratification for patients with acute coronary syndrome (ACS) and to determine the relationship between the V/M ratio and the Global Registry of Acute Coronary Events (GRACE) risk score in ACS.

Methods: This was a single-center, retrospective study.

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Polymer-based host-guest organic room-temperature phosphorescent (RTP) materials are promising candidates for new flexible electronic devices. Nowadays, the insufficient fabrication processes of polymeric RTP materials have hindered the development of these materials. Herein, we propose a strategy to realize 3D printable organic RTP materials and have successfully demonstrated real-time sensing and display devices through a Digital Light Processing (DLP) 3D printing process.

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Introduction: , a leading cause of human infectious diarrhea diseases, foodborne illness, and zoonotic infections, poses a significant health burden.

Methods: A retrospective screening was performed to elucidate the serotype distribution and antimicrobial resistance of 933 human isolates from nine cities (prefectures) in Guizhou province of southwestern China between 2019 and 2023 through slide agglutination and antimicrobial resistance testing.

Results: Fifty-four different serotypes were identified in this study, with .

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Background: Colistin is commonly used as a last-resort antibiotic for multidrug resistance (MDR) bacterial infections. The emergence of colistin-resistant (CL-R) has become a significant public health concern. However, the prevalence of CL-R in Guizhou province remains unknown.

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The integration of cell transcriptomics and spatial position to organize differentiation trajectories remains a challenge. Here, we introduce SpaTrack, which leverages optimal transport to reconcile both gene expression and spatial position from spatial transcriptomics into the transition costs, thereby reconstructing cell differentiation. SpaTrack can construct detailed spatial trajectories that reflect the differentiation topology and trace cell dynamics across multiple samples over temporal intervals.

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, a marine benthic diatom, holds promise for human nutrition and health as well as for aquaculture applications. However, the scarcity of organelle genome data within the Navicula clade has impeded a comprehensive understanding and utilization of this group. Our research presents a pioneering exploration into the complete mitochondrial and chloroplast genome sequences of CACC 0356, shedding light on its phylogeny and evolutionary history.

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Burn injuries often leave behind a "stasis zone", a region of tissue critically important for determining both the severity of the injury and the potential for recovery. To understand the intricate cellular and epigenetic changes occurring within this critical zone, we utilized single-cell assay for transposase-accessible chromatin sequencing (scATAC-seq) to profile over 31,500 cells from both healthy rat skin and the stasis zone at nine different time points after a burn injury. This comprehensive approach revealed 26 distinct cell types and the dynamic shifts in the proportions of these cell types over time.

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Dimethyladenosine transferase 1 (DIMT1) is an RNA -dimethyladenosine (mA) methyltransferase. DIMT1's role in pre-rRNA processing and ribosome biogenesis is critical for cell proliferation. Here, we investigated the minimal number of residues in a positively charged cleft on DIMT1 required for cell proliferation.

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Thermal batteries are a type of thermally activated reserve batteries, where the cathode material significantly influences the operating voltage and specific capacity of the battery. In this work, VS-VO has been synthesized through the hydrothermal method and used as the cathode material for thermal batteries. Firstly, the material with the VS crystallinity is obtained at 170 °C and the mass percentages of VS/VO are 63.

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As a common clinical manifestation, muscle weakness is prevalent in people with mobility disorders. Further studies of muscle weakness have found that patients with muscle weakness present with persistent muscle inflammation, loss of muscle fibers, fat infiltration, and interstitial fibrosis. Therefore, we propose the concept of muscle microenvironment homeostasis, which explains the abnormal pathological changes in muscles through the imbalance of muscle microenvironment homeostasis.

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Soluble sugars are not only an important contributor to fruit quality, but also serve as the osmotic regulators in response to abiotic stresses. Early drought stress promotes sugar accumulation, while specific sugar transporters govern the cellular distribution of the sugars. Here, we show that apple plantlets accumulate soluble sugars in leaf tissues under drought stress.

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It has been claimed that microRNA 503-5p (miR-503-5p) is the key to the future diagnosis and treatment of cardiac hemangioma (CH), but the relationship between the two has not been fully validated. In this study, we analyzed the effect of miR-503-5p targeting type IA bone morphogenetic protein receptor (BMPR1A) on CH to inform future diagnosis and treatment of CH. First, miR-503-5p and BMPR1A abnormal expression sequences (vectors) were transfected into human hemangioma-derived endothelial cells (HemECs) and human umbilical vein endothelial cells (HUVECs) to observe alterations in cell biological behavior, adhesion, and epithelial mesenchymal transition (EMT).

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Browning is a pervasive problem in horticultural products, substantially diminishing the appearance, flavor, and nutritional value of fruit, including important fruits like apple (Malus × domestica Borkh.). In this study, we compared the physiological characteristics of the browning-resistant line 'Rb-18' with the susceptible variety 'Fuji' and found that the polyphenol oxidase (PPO) enzyme activity and phenolic content of 'Rb-18' were significantly lower than those in 'Fuji'.

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Article Synopsis
  • Mutations in the RNA helicase DDX3X, linked to cancer and neurodevelopmental disorders, disrupt its normal RNA unwinding and translation functions.
  • The study finds that certain DDX3X mutants form unique hollow condensates in cells, which are associated with reduced ATPase and RNA release activities due to blockages in their catalytic processes.
  • These condensates also trap wild-type DDX3X/DDX3Y and other important proteins, with wild-type DDX3X promoting more dynamic interactions than its Y-linked counterpart DDX3Y, shedding light on how these variations may influence disease susceptibility based on sex.
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The identification of both autophagy-related material degradation and unconventional secretion has paved the way for significant breakthroughs linking autophagy to a plethora of physiological processes and disease conditions. However, the mechanisms that coordinate these two pathways remain elusive. Here, we demonstrate that a switch from the lysosomal degradation to a secretory autophagy pathway is governed by protein tyrosine phosphatase 1B (PTP1B, encoded by PTPN1).

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Purpose To explore the role of cardiac MRI feature tracking (FT) and T1 mapping in predicting sustained ventricular arrhythmias (VA) in patients with arrhythmogenic right ventricular cardiomyopathy (ARVC) and to investigate their possible incremental value beyond ARVC risk score. Materials and Methods The retrospective study analyzed 91 patients with ARVC (median age, 36 years [IQR, 27-50 years]; 60 male, 31 female) who underwent cardiac MRI examinations between November 2010 and March 2022. The primary end point was the first occurrence of sustained VA after cardiac MRI to first VA, with censoring of patients who were alive without VA at last follow-up.

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Organic acids are major determinants of fruit flavor and a primary focus of fruit crop breeding. The accumulation of organic acids is determined by their synthesis, degradation, and transport, all of which are manipulated by sophisticated genetic mechanisms. Constant exploration of the genetic basis of organic acid accumulation, especially through linkage analysis, association analysis, and evolutionary analysis, have identified numerous loci in recent decades.

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Endometriosis is a multifactorial gynecological disease, with angiogenesis as a key hallmark. The role of exosomal microRNAs (miRNAs) in endometriosis is not well understood. This study investigates differentially expressed exosomal miRNAs linked to angiogenesis in endometriosis, clarifies their molecular mechanisms, and identifies potential targets.

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Purpose: Attention, a complex cognitive process, is linked to the functional activities of the brain's dorsal attention network (DAN) and default network (DN). This study aimed to investigate the feasibility, safety, and blinding efficacy of a transcranial direct current stimulation (tDCS) paradigm designed to increase the excitability of the DAN while inhibiting the DN (DAN+/DN-tDCS) on attention function in healthy young adults.

Methods: In this randomized controlled experiment, participants were assigned to either the DAN+/DN-tDCS group or the sham group.

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Spatial transcriptomics enables a single-cell resolution view of gene expression patterns in tissues, providing insight into their biological functions. However, applying this approach to the skin presents inherent challenges. Here, we present a protocol for preparing mammalian skin samples encompassing hair follicles for spatial transcriptomics.

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Hydrogen peroxide (HO) production driven by solar energy has received enormous attention due to its high efficiency, low cost, and environmental friendliness characteristics. Searching for new photocatalytic materials for HO production is one of the most important targets. In this work, a new three-dimensional (3D) uranyl-organic framework material was constructed with mixed ligands via a solvothermal reaction and used for photocatalytic HO production.

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Article Synopsis
  • * In a study involving 23 bladder cancer patients and 9 non-cancerous subjects, urine samples were analyzed for microbiota and metabolites before and after surgery, revealing significant differences in cytokine levels and metabolic profiles.
  • * The study found elevated cytokines and unique microbiome characteristics in bladder cancer patients; after tumor removal, some changes persisted, while a specific biomarker panel showed promising diagnostic accuracy with high sensitivity and specificity.
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  • Hydrophilic coatings can help prevent fogging on surfaces, but usually lack strong mechanical properties.
  • In this study, researchers created a new hydrophilic coating using a specific polymer and chemicals that improve its durability and fog-resistance.
  • The resulting composite coating demonstrates excellent anti-fogging performance and strong mechanical strength, making it suitable for applications like optical lenses and mirrors.
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  • - Malic acid plays a crucial role in determining the flavor of apples, with variations like the A/G SNP in the MdMa1 gene affecting its content, but other factors also influence malic acid levels among apple varieties.
  • - A study of the F1 generation from the 'Honeycrisp' and 'Qinguan' apple varieties identified a significant locus, Ma7, on chromosome 13 that affects malic acid content, with the MDH1 gene being a key player in this process.
  • - Genetic modifications in the MDH1 promoter influence its expression and malic acid levels, with the transcription factor MdbHLH74 enhancing MDH1 expression in certain apple genotypes, indicating a complex relationship between
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Synopsis of recent research by authors named "XiaoYu Wei"

  • XiaoYu Wei's recent research spans diverse fields including cardiac imaging in arrhythmogenic cardiomyopathy, genetic mechanisms of organic acid accumulation in fruits, and the role of exosomal microRNAs in endometriosis.* -
  • A significant focus of Wei's investigations includes the predictive capabilities of cardiac MRI features and genetic determinants on health conditions, such as the risk of ventricular arrhythmias and fruit flavor quality.* -
  • Wei has also contributed to understanding biological processes at the molecular level, such as angiogenesis in endometriosis and extracellular polymeric substance synthesis in bacteria, indicating a strong emphasis on translational applications in medicine and agriculture.*

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