Publications by authors named "Zeng Xiangyu"

Objective: To investigate the prognostic value of serum testosterone combining with body mass index (BMI) on the prostate cancer (PCa) after androgen deprivation therapy (ADT).

Methods: In this study, we included the patients from June, 2017 to June, 2022 who were diagnosed with PCa and received ADT. The data of these patients were reviewed and analyzed.

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Aim: To compare the respective clinical and pathologic features of antimitochondrial antibodies-negative (AMA-negative) primary biliary cirrhosis (PBC) and cholestatic type drug-induced liver injury (DILI) for clinical differential diagnosis.

Patients And Methods: Clinical data from 23 patients with AMA-negative PBC and 39 patients with cholestatic type DILI, treated at our hospital between January 2013 and January 2024, were collected and retrospectively analyzed.

Results: The cholestatic type DILI group exhibited a higher incidence of malaise and abdominal pain compared with the AMA-negative PBC group.

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GaO Schottky photodiodes are being actively explored for solar-blind ultraviolet (SBUV) detection, owing to the fast photoresponse and easy fabrication. However, their performance, limited by the Schottky contact, mostly underperforms the expectations. Herein, a Ni/β-GaO vertical Schottky barrier diode (SBD) with an ultrathin anode electrode is demonstrated.

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The wide-bandgap semiconductor material GaO exhibits great potential in solar-blind deep-ultraviolet (DUV) photodetection applications, including none-line-of-sight secure optical communication, fire warning, high-voltage electricity monitoring, and maritime fog dispersion navigation. However, GaO photodetectors have traditionally faced challenges in achieving both high responsivity and fast response time, limiting their practical application. Herein, the GaO solar-blind DUV photodetectors with a suspended structure have been constructed for the first time.

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Article Synopsis
  • Green mold disease is a significant concern for the production of an important edible mushroom in China, leading to economic losses.
  • Two new fungal pathogens were identified as responsible for this disease through analyses of certain genetic markers.
  • Pathogenicity tests confirmed the ability of these pathogens to cause symptoms similar to those seen in infected mushrooms, supporting their identification as the causal agents.
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Benzophenone-3 (BP-3), commonly used in personal care products, is routinely detected in environmental and human matrices. Evidence delineates a correlation between gestational BP-3 exposure and emotional and social disorders in children and adolescents. However, sensitive target cells and the mode of action underlying the early responses to environmentally relevant level of BP-3 exposure remain unclear.

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Background: Nonadherence to imatinib is common in patients with gastrointestinal stromal tumor (GIST), which is associated with poor prognosis and financial burden. The primary aim of this study was to investigate the adherence rate in patients with GIST and subsequently develop a model based on machine learning (ML) and deep learning (DL) techniques to identify the associated factors and predict the risk of imatinib nonadherence.

Methods: All eligible patients completed four sections of questionnaires.

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Antiambipolar heterojunctions are regarded as a revolutionary technology in the fields of electronics and optoelectronics, enabling the switch between positive and negative transconductance within a single device, which is crucial for diverse logic circuit applications. This study pioneers a mixed-dimensional photodetector featuring antiambipolar properties, facilitated by the van der Waals integration of one-dimensional CdSSe nanowires and two-dimensional Te nanosheets. This antiambipolar device enables flexible control over carrier transport via gate voltage, thus paving new paths for future optoelectronic devices.

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Human-machine interactions (HMIs) have penetrated into various academic and industrial fields, such as robotics, virtual reality, and wearable electronics. However, the practical application of most human-machine interfaces faces notable obstacles due to their complex structure and materials, high power consumption, limited effective skin adhesion, and high cost. Herein, we report a self-powered, skin adhesive, and flexible human-machine interface based on a triboelectric nanogenerator (SSFHMI).

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Article Synopsis
  • True morels (Morchella) are important edible and medicinal mushrooms, but they are threatened by a disease called white mold, caused by the fungus Pseudodiploöspora longispora, which is highly destructive and adaptable.
  • The study isolated and identified this pathogen through various tests, assembling its genome and discovering it comprises 40.846 Mb with 7,381 protein-coding genes, showing a close evolutionary relationship with another fungus called Zelopaecilomyces penicillatus.
  • Comparison of different disease-causing fungi revealed similarities in enzymes that degrade cell walls and identified gene clusters that could produce toxic substances, highlighting potential risks to food safety and enhancing our understanding of this pathogen's impact on morels
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Understanding the determinants of long-term liver metastasis (LM) outcomes in gastrointestinal stromal tumor (GIST) patients is crucial. We established the feature selection model of intratumoral microbiome at the surgery, achieving robust predictive accuracies of 0.953 and 0.

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Imatinib-induced skin rash poses a significant challenge for patients with gastrointestinal stromal tumor, often resulting in treatment interruption or discontinuation and subsequent treatment failure. However, the underlying mechanism of imatinib-induced skin rashes in gastrointestinal stromal tumor patients remains unclear. A total of 51 patients (27 with rash and 24 without rash) were enrolled in our study.

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Quasi-two-dimensional (quasi-2D) perovskites hold significant potential for diverse design strategies due to their tunable structures, exceptional optical properties, and environmental stability. Due to the complexity of the structure and carrier dynamics, characterization methods such as photoluminescence and absorption spectroscopy can observe but cannot precisely distinguish or identify the phase distribution within quasi-2D perovskite films or correlate phases with carrier dynamics. In this study, we used pressure to modulate the intralayer and interlayer structures of (PEA)CsPbBr quasi-2D perovskite films, investigating charge carrier dynamics.

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Article Synopsis
  • Genetic studies on mushrooms are being transformed by CRISPR-Cas9 and RNA interference, enhancing our understanding of their roles in agriculture, medicine, and conservation.
  • CRISPR-Cas9 provides precise genome editing capabilities, while RNA interference helps improve crop yield and resistance to pests and diseases.
  • These innovations not only aid in the conservation of rare mushroom species but also hold potential for discovering new medicinal compounds and promoting sustainable cultivation practices.
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Conducting/insulating inks have received significant attention for the fabrication of a wide range of additive manufacturing technology. However, current inks often demonstrate poor biocompatibility and face trade-offs between conductivity and mechanical stiffness under physiological conditions. Here, conductive/insulating bioinks based on two-dimensional materials are proposed.

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Article Synopsis
  • PdSe, a transition metal dichalcogenide, can transition from a two-dimensional to a three-dimensional structure when subjected to high pressure, affecting its electronic properties.
  • Using pump-probe spectroscopy, researchers observed changes in electronic transitions and found that the Jahn-Teller effect disappears under high pressure, with notable shifts in recombination and relaxation rates at specific pressure points (3 and 7 GPa).
  • First-principles calculations indicate that changes in bandgap and phonon scattering behaviors play significant roles in the alterations of electronic dynamics, offering new insights into how pressure impacts carrier dynamics in materials like PdSe.
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Primary gastric adenosquamous carcinoma (PGASC) is a rare type of gastric cancer with limited research and poorly understood clinicopathological features. This study investigated the clinicopathological features and outcomes of PGASC. Patients with PGASC from Union Hospital, Tongji Medical College, Huazhong University of Science and Technology and from the published literature were enrolled in this study.

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Currently, the clinical outcomes of peripheral nerve injuries are suboptimal, highlighting the urgent need to understand the mechanisms of nerve injury to enhance treatment strategies. Muscle-derived stem cells (MDSCs) are a diverse group of multipotent cells that hold promise for peripheral nerve regeneration due to their strong antioxidant and regenerative properties. Our research has revealed that severe ferroptosis occurs in the sciatic nerve and ipsilateral dorsal root ganglion following sciatic nerve injury.

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Gallium oxide ( ) photodetectors have drawn increased interest for their widespread applications ranging from military to civil. Due to the inherent oxygen vacancy defects, they seriously suffer from trade-offs that make them incompetent for high-responsivity, quick-response detection. Herein, a nanocavity photodetector assisted with grating electrodes is designed to break the constraint.

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Background: Cobweb disease is a fungal disease that commonly affects the cultivation and production of edible mushrooms, leading to serious yield and economic losses. It is considered a major fungal disease in the realm of edible mushrooms. The symptoms of cobweb disease were found during the cultivation of Lyophyllum decastes.

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Topological Dirac nodal-line semimetals host topologically nontrivial electronic structure with nodal-line crossings around the Fermi level, which could affect the photocarrier dynamics and lead to novel relaxation mechanisms. Herein, by using time- and angle-resolved photoemission spectroscopy, we reveal the previously inaccessible linear dispersions of the bulk conduction bands above the Fermi level in a Dirac nodal-line semimetal PtSn, as well as the momentum and temporal evolution of the gapless nodal lines. A surprisingly ultrafast relaxation dynamics within a few hundred femtoseconds is revealed for photoexcited carriers in the nodal line.

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Enhanced DNA repair is an important mechanism of inherent and acquired resistance to DNA targeted therapies, including poly ADP ribose polymerase (PARP) inhibition. Spleen associated tyrosine kinase (Syk) is a non-receptor tyrosine kinase acknowledged for its regulatory roles in immune cell function, cell adhesion, and vascular development. This study presents evidence indicating that Syk expression in high-grade serous ovarian cancer and triple-negative breast cancers promotes DNA double-strand break resection, homologous recombination (HR), and subsequent therapeutic resistance.

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Monolayer molybdenum disulfide ( ) has a weak light-matter interaction due to ultrathin thickness, which limits its potential application in lasing action. In this study, we propose a hybrid structure consisting of a nanocavity and Au nanoparticles to enhance the photon emission efficiency of monolayer . Numerical simulations show that photoluminescence (PL) emission is significantly enhanced by introducing localized surface plasmon resonance (LSPR) to the proposed structure.

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Background: To investigate the role of C-reactive protein (CRP), procalcitonin (PCT), and interleukin-6 (IL-6) as early predictors of infectious complications after laparoscopic gastric cancer surgery.

Methods: Patients who underwent laparoscopic gastric cancer surgery between January 2020 and June 2022 were retrospectively enrolled. IL-6, PCT, and CRP levels were assessed before surgery and on postoperative days (PODs) 3 and 5.

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Tetrabromobisphenol A (TBBPA), the most extensively utilized brominated flame retardant, has raised growing concerns regarding its environmental and health risks. Neurovascular formation is essential for metabolically supporting neuronal networks. However, previous studies primarily concerned the neuronal injuries of TBBPA, its impact on the neurovascularture, and molecular mechanism, which are yet to be elucidated.

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