Publications by authors named "DongLiang Yang"

The intentional manipulation of carrier characteristics serves as a fundamental principle underlying various energy-related and optoelectronic semiconductor technologies. However, achieving switchable and reversible control of the polarity within a single material to design optimized devices remains a significant challenge. Herein, we successfully achieved dramatic reversible p-n switching during the semiconductor‒semiconductor phase transition in BiI via pressure, accompanied by a substantial improvement in their photoelectric properties.

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Background: The pivotal role of antibody-producing B cells in controlling hepatitis B virus (HBV) infection is well-established. However, the antiviral role of B cells extends beyond antibody production, which has been insufficiently studied for HBV infection.

Methods: Using an HBV hydrodynamic injection (HDI) mouse model with B cell depletion or functional blockade, we detected HBV infection markers and assessed T cell function through enzyme-linked immunosorbent assay, RT-PCR and flow cytometry.

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The rise of antibiotic resistance poses a critical threat to global health, necessitating the development of novel antibacterial strategies to mitigate this growing challenge. Biomimetic materials, inspired by natural biological systems, have emerged as a promising solution in this context. These materials, by mimicking biological entities such as plants, animals, cells, viruses, and enzymes, offer innovative approaches to combat bacterial infections effectively.

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Cytokeratin 19 fragment (CYFRA21-1) is considered to be a potential marker for the diagnosis and of classification of lung cancer. It is highly desired to develop rapid and highly sensitive label-free chemiluminescence (CL) immunosensors for the detection of CYFRA21-1. In this work, magnetic core-shell nanocomposite FeO@nickel-cobalt double hydroxide (FeO@DH) was used for the first time as a carrier to synthesize N-(4-aminobutyl)-N-ethylisoluminol (ABEI) and gold and silver nanocluster (AuAgNC) bifunctionalized magnetic nanomaterials FeO@DH/AuAgNCs-ABEI.

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Neutrophil-to-lymphocyte ratio (NLR), platelet-to-lymphocyte ratio (PLR) and lymphocyte-to-monocyte ratio (LMR) may be indicative of breast cancer (BC); however, this remains inconclusive. With the aim to assess the current literature to evaluate the diagnostic roles of NLR PLR and LMR in BC, a systematic literature search was performed using the PubMed, Embase, Cochrane Library, China National Knowledge Infrastructure, Wanfang Database, VIP database and China Biology Medicine disc databases up to August 29, 2023. The standardized mean deviation and 95% confidence intervals (CI) for each outcome was reported, and heterogeneity and publication bias were assessed.

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Article Synopsis
  • * The review covers the latest advancements in using these nanomaterials for various imaging techniques (like MRI and PET) and therapeutic methods (including chemotherapy and immunotherapy).
  • * It also evaluates the safety and breakdown of these nanomaterials in biological systems, discussing the challenges and future prospects for their clinical use in cancer diagnostics and personalized treatment.
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The impact of appendectomy on the risk of gastrointestinal cancers remains unknown. We aimed to systematically estimate the causal relationship between appendectomy and gastrointestinal cancers in the European population using two-sample Mendelian randomization (TSMR) study methods and meta-analysis. As part of the discovery cohort analysis, we identified independent genetic variants strongly associated with appendectomy from the UK Biobank (50,105 cases) to serve as instrumental variables (IVs).

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Background: Community-based palliative care (CBPC) is only available in large cities in mainland China and little is known about who utilizes it.

Objectives: This study examined the characteristics, outcomes, and factors associated with place of death (PoD) among inpatient CBPC patients.

Design: This was a multicenter retrospective cohort study.

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Flash memory, dominating data storage due to its substantial storage density and cost efficiency, faces limitations such as slow response, high operating voltages, absence of optoelectronic response, etc., hindering the development of sensing-memory-computing capability. Here, we present an ultrathin platinum disulfide (PtS)/hexagonal boron nitride (hBN)/multilayer graphene (MLG) van der Waals heterojunction with atomically sharp interfaces, achieving selective charge tunneling behavior and demonstrating ultrafast operations, a high on/off ratio (10), extremely low operating voltage, robust endurance (10 cycles), and retention exceeding 10 years.

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  • This study focused on the prevalence and distribution of carcinoma along the liver margin (LM) in patients with resected perihilar cholangiocarcinoma (pCCA) and aimed to improve examination methods for LM.!
  • The research analyzed 227 pCCA cases, revealing a significantly higher rate of R1 resection (indicating the presence of cancer at the margin) in the group assessed with whole-mount digital large sections compared to those assessed with smaller sections.!
  • Findings indicate that positive LM is a critical factor for poor surgical outcomes and suggest that precise examination within a 20 mm radius of the proximal ductal margin is necessary, particularly for patients with a margin of less than 5 mm, to enhance diagnostic
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Uveal melanoma (UM) is a common health challenge worldwide as a prevalent intraocular malignancy because of its high mortality rate. However, clinical workers do not have an accurate prognostic tool now. Immune function is closely related to tumor development.

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Thermoelectrics converting heat and electricity directly attract broad attentions. To enhance the thermoelectric figure of merit, zT, one of the key points is to decouple the carrier-phonon transport. Here, we propose an entropy engineering strategy to realize the carrier-phonon decoupling in the typical SrTiO-based perovskite thermoelectrics.

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Article Synopsis
  • - The lack of intrinsic p-type 2D layered semiconductors has limited the progress of 2D devices like CMOS and integrated circuits, making the development of practical p-type semiconductors essential for electronics.
  • - Researchers modified NbOI by applying pressure, which allowed them to control carrier polarity and concentration, leading to a transition from n-type to p-type behavior, and significantly improving its photoelectric properties.
  • - The study found that under xenon irradiation, the photocurrent increased over 1000 times, with an extended spectral response range up to 1450 nm, demonstrating the potential of pressure engineering in enhancing p-type 2D semiconductors.
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The prevalence of drug-resistant bacterial infections has emerged as a grave threat to clinical treatment and global human health, presenting one of the foremost challenges in medical care. Thus, there is an urgent imperative to develop safe and efficacious novel antimicrobial strategies. Nitric oxide (NO) is a recognized endogenous signaling molecule, which plays a pivotal role in numerous pathological processes.

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Background: The risk of ischaemic heart disease (IHD) is increased in appendectomy patients, but it is not clear whether there is a causal relationship. We aimed to systematically estimate the causal relationship between appendectomy and IHD and its subtypes, acute myocardial infarction (AMI) and angina pectoris (AP), using Mendelian randomization (MR) study methods and meta-analysis.

Methods: As the discovery cohort analysis, we extracted independent genetic variants strongly associated with appendectomy from the FinnGen study (28,601 cases) as instrumental variables (IVs).

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is an opportunistic fungal pathogen of humans. It causes a variety of infections ranging from superficial mucocutaneous conditions to severe systemic diseases that result in substantial morbidity and mortality. This pathogen frequently forms biofilms resistant to antifungal drugs and the host immune system, leading to treatment failures.

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Herein, we have developed a non-enzymatic, isothermal amplification assay (NIA sensor) based on a catalytic hairpin assembly (CHA) reaction for quantifying the relative abundance of . Through detection of the MUC-1437 gene (limit of detection: 8.3 fM) in a dynamic range from 10 fM to 1 nM, the NIA sensor shows high sensitivity and selectivity in preclinical models of mice fed a normal or high-fat diet (HFD), and treated with antibiotics (ATB).

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Background: Evidence suggests that coronavirus disease 2019 (COVID-19) is associated with the risk of cardiovascular diseases (CVDs). However, the results are inconsistent, and the causality remains to be established. We aimed to investigate the potential causal relationship between COVID-19 and CVDs by using two-sample Mendelian randomization (MR) analysis.

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Antimicrobial phototherapy has gained recognition as a promising approach for addressing bacterial biofilms, however, its effectiveness is often impeded by the robust physical and chemical defenses of the biofilms. Traditional antibacterial nanoplatforms face challenges in breaching the extracellular polymeric substances barrier to efficiently deliver photosensitizers deep into biofilms. Moreover, the prevalent hypoxia within biofilms restricts the success of oxygen-reliant phototherapy.

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The harsh environment of diabetic wounds, including bacterial infection and wound hypoxia, is not conducive to wound healing. Herein, an enzyme-like photocatalytic octahedral Rh/AgMoO is developed to manage diabetic-infected wounds. The introduction of Rh nanoparticles with catalase-like catalytic activity can enhance the photothermal conversion and photocatalytic performance of Rh/AgMoO by improving near-infrared absorbance and promoting the separation of electron-hole pairs, respectively.

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The emergence of drug-resistant bacteria poses a significant threat to people's lives and health as bacterial infections continue to persist. Currently, antibiotic therapy remains the primary approach for tackling bacterial infections. However, the escalating rates of drug resistance coupled with the lag in the development of novel drugs have led to diminishing effectiveness of conventional treatments.

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Programmed death ligand-1 (PD-L1)-expressing exosomes are considered a potential marker for diagnosis and classification of lung adenocarcinoma (LUAD). There is an urgent need to develop highly sensitive and accurate chemiluminescence (CL) immunosensors for the detection of PD-L1-expressing exosomes. Herein, N-(4-aminobutyl)-N-ethylisopropanol-functionalized nickel-cobalt hydroxide (NiCo-DH-AA) with a hollow nanoflower structure as a highly efficient CL nanoprobe was synthesized using gold nanoparticles as a "bridge".

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Article Synopsis
  • The study aimed to culturally adapt the Australian National University Alzheimer Disease Risk Index (ANU-ADRI) into Chinese and assess the reliability and validity of its cognitive activity section.
  • The translation followed Beaton's guidelines and involved testing the index among 442 community residents in several Chinese cities from December 2021 to July 2023.
  • Results indicated that the Chinese version had strong content and face validity, a well-fitting 3-factor structure, and satisfactory reliability metrics.
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  • This study looks at how experiencing famine during childhood can affect kidney health in adults, especially focusing on the Chinese Great Famine from 1959-1962.
  • Researchers used data from a large study with over 8,800 people to compare kidney function among those who were exposed to famine versus those who weren’t.
  • They found that people who experienced famine as children or teenagers had lower kidney function later in life, meaning their kidneys were not working as well compared to those who were not exposed to famine.
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The misuse of antibiotics has led to increased bacterial resistance, posing a global public health crisis and seriously endangering lives. Currently, antibiotic therapy remains the most common approach for treating bacterial infections, but its effectiveness against multidrug-resistant bacteria is diminishing due to the slow development of new antibiotics and the increase of bacterial drug resistance. Consequently, developing new a\ntimicrobial strategies and improving antibiotic efficacy to combat bacterial infection has become an urgent priority.

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