Publications by authors named "Li Jingwei"

Background: Sodium-glucose cotransporter-2 inhibitors (SGLT2i) have been proven to prevent decline in kidney function and failure. Whether SGLT2i affect the risk of contrast-associated acute kidney injury (CA-AKI) remains uncertain.

Methods: Use of SGLT2i was assessed in consecutive diabetics undergoing coronary angiography (CA) or percutaneous coronary intervention (PCI) from January 2020 to May 2023 at a tertiary hospital in Chongqing, China.

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  • Tellurium's unique p-type properties and stability have led to renewed interest in its application in semiconductors, particularly in creating high-quality nanoflakes.
  • A new physical vapor deposition method was used to synthesize these Te nanoflakes, achieving a remarkable field-effect hole mobility of 1450 cm/(V s), the highest for 2D p-type semiconductors.
  • The integration of Te with MoS in heterostructures enables the development of photodetectors with impressive characteristics, including high current responsivity and strong gate tunability, outperforming traditional Si-MoS models.
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Microglia, the primary immune cells of the central nervous system, play a crucial role in the neuroinflammatory processes following ischemic stroke. Targeting neuroinflammation is a promising strategy to enhance the outcomes of ischemic stroke. Benzydamine (BA), a well-known non-steroidal anti-inflammatory drug, has demonstrated potential in inhibiting pro-inflammatory cytokines across various disease models.

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We used our mouse papillomavirus (MmuPV1) model to test the hypothesis that two primary psychoactive ingredients of marijuana, Δ-tetrahydrocannabinol (THC) and cannabidiol (CBD), promote papillomavirus persistence in the oral mucosa of infected mice. We conducted intraperitoneal (ip) injections of a moderate dose (3 mg/kg) of either CBD and/or THC in both male and female athymic nude mice and followed the mice up to 20 weeks post-infection. These doses are comparable to what is estimated for human conventional cannabis consumption.

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The need for accurate point-of-care (POC) tools, driven by increasing demands for precise medical diagnostics and monitoring, has accelerated the evolution of biosensor technology. Integrable 2D materials-based field-effect transistor (2D FET) biosensors offer label-free, rapid, and ultrasensitive detection, aligning perfectly with current biosensor trends. Given these advancements, this review focuses on the progress, challenges, and future prospects in the field of 2D FET biosensors.

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Circadian disruption is a risk factor for Parkinson's disease (PD). Ferroptosis, a cellular death process, assumes a pivotal role in the degeneration of dopaminergic neurons in PD. Despite its significance, the potential contribution of circadian clock proteins to PD through the modulation of ferroptosis remains elusive.

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Tumor-associated macrophages (TAMs) play a crucial physiological role in the pancreatic tumor microenvironment. However, the role of long non-coding RNAs (lncRNAs) in TAMs within pancreatic tumors remains unclear. By lncRNA sequencing between TAMs and resident macrophages from normal tissues in pancreatic cancer, it is found that H19 is highly expressed in TAMs and is correlated with the prognosis and stages of pancreatic cancer.

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Aims: Breast cancer (BC) is by far seen as the most common malignancy globally, with 2.261 million patients newly diagnosed, accounting for 11.7% of all cancer patients, according to the Global Cancer Statistics Report (2020).

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Brain arteriovenous malformations (bAVMs) are a major cause of hemorrhagic stroke in children and young adults. These lesions are thought to result from somatic KRAS/BRAF mutations in brain endothelial cells (bECs). In this study, we introduce a new bAVM model by inducing a brain endothelial-specific Braf mutation using the Slc1o1c1(BAC)-CreER driver line.

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Background: Paraclinoid aneurysms, arising from the proximal dural ring and extending to the origin of the posterior communicating artery of the internal carotid artery (ICA), represent a significant proportion of all intracranial aneurysms (IAs). Accurate prediction of the rupture risk of paraclinoid aneurysms is crucial for optimal management. The objective of this study was to identify risk factors for the rupture of paraclinoid aneurysms on the basis of computer-assisted semiautomated measurement (CASAM) and hemodynamics.

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The objective of the study was to compare the clinical efficacy and pregnancy outcomes of methimazole and propylthiouracil in managing hyperthyroidism during pregnancy. This retrospective analysis included 100 pregnant women with hyperthyroidism, who were divided into two groups: the methimazole group (Group A) and the propylthiouracil group (Group B). Indicators such as thyroid function, liver function, pregnancy outcomes, and newborn health were closely monitored.

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Background: Juvenile idiopathic arthritis (JIA) is one of the most common chronic inflammatory rheumatic diseases in children. Human umbilical cord mesenchymal stem cells (HUCMSCs)-derived exosomes (HUCMSCs-Exos) are involved in autoimmune diseases. This study investigates the mechanism of HUCMSC-Exos in improving JIA by targeting AhR through delivery of miR-29-3p to inhibit IL-22 expression in CD4 T cells.

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  • - CTCF is a key regulator of chromatin organization that is overexpressed in pancreatic ductal adenocarcinoma (PDAC) and interacts with HNRNPU, which aids in the activation of IGF2BP2, promoting the proliferation of PDAC cells.
  • - This activation leads to histone lactylation at the IGF2BP2 promoter, enhancing mRNA stability of critical oncogenes like CSF1 and MYC, and influencing alternative splicing to affect tumor-associated macrophages (TAMs).
  • - The study suggests that CTCF's role in histone modifications, m6A methylation, and splicing could be targeted for immunotherapy in PDAC, with
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Background: Arteriovenous shunts below conus medullaris (AVS-BC) are understudied, particularly those associated with spinal dysraphism. This study aimed to refine the classification and management of AVS-BC.

Methods: A retrospective analysis of patients with AVS-BC from two centers over two decades was performed, focusing on clinical presentations, angioarchitecture, and treatment outcomes.

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Isotopic labeling is a powerful technique extensively used in the pharmaceutical industry. By tracking isotope-labeled molecules, researchers gain unique and invaluable insights into the pharmacokinetics and pharmacodynamics of new drug candidates. Hydrogen isotope labeling is particularly important as hydrogen is ubiquitous in organic molecules in biological systems, and it can be introduced effectively through late-stage hydrogen isotope exchange (HIE).

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  • - AURKA (Aurora kinase A) is identified as a significant target in the fight against colorectal cancer (CRC), and its role in tumor development has been confirmed through mouse models and human tissue analysis.
  • - Palmatine (PAL), a CRC suppressor, inhibits CRC cell growth by down-regulating AURKA, leading to cell cycle arrest in the G2/M phase, and experiments show that increased AURKA levels can counteract PAL's effects.
  • - The study highlights the interaction between AURKA and Myosin heavy chain 9 (MYH9), revealing that PAL reduces nuclear AURKA by disrupting this interaction, providing insights into potential therapeutic applications for CRC treatment.
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Hydrogen isotopically labeled compounds have extensive utility across diverse domains, especially in drug discovery and development. However, synthesis of the labeled compounds with exclusive site selectivity and/or high isotope incorporation is challenging. One widely employed method is heterogeneous palladium(0)-catalyzed (such as Pd/C) dehalogenative deuteration and tritiation with D/T gas.

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We examined the relationship between RAAS inhibitor use and Omicron infection in mildly symptomatic patients. This retrospective case-control observational study included 50,121 patients with mild Omicron infection from the largest "Fangcang" shelter hospital in Shanghai between April 9, 2022, and May 21, 2022. Using 1:1 propensity score matching (PSM), we classified 4394 COVID-19 patients into hypertension and non-hypertension groups, and 406 hypertensive patients into RAAS inhibitor and non-RAAS inhibitor groups.

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  • - Chirality is crucial for various living organisms as it contributes to iridescent coloration and enhances light absorption in photosynthesis, leading to the development of promising energy materials through chiral structures.
  • - The study introduces a method for creating an active photonic glass through a co-condensation process involving TMOS and TAA in a cellulose nanocrystalline liquid crystal, which exhibits long-range chiral nematic order and tunable iridescent colors.
  • - By integrating gold nanoparticles into the photonic glass, the researchers enhanced charge carrier density and photocatalytic hydrogen generation, showcasing potential for new metamaterials with applications in asymmetric photocatalysis.
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Utilizing industrial solid waste for CO mineralization not only reduces CO emissions but also promotes the resource utilization of solid waste. Additionally, it allows for the permanent sequestration of CO and enables green value-added utilization of the products. Coal fly ash (CFA) is one of the most abundant industrial solid wastes with significant carbon mineralization potential.

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Thermoelectric Peltier coolers (PCs) are being increasingly used as temperature stabilizers for optoelectronic devices. Increasing integration drives PC miniaturization, requiring thermoelectric materials with good strength. We demonstrate a simultaneous gain of thermoelectric and mechanical performance in (Bi, Sb)Te, and successfully fabricate micro PCs (2 × 2 mm cross-section) that show excellent maximum cooling temperature difference of 89.

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Research exploring the link between immune cell profiles and the development of endometritis remains scant. This gap necessitates further study to decode the complex interrelations influencing this condition. In this analysis, we leveraged two-sample Mendelian randomization to examine the causal ties between the phenotypes of immune cells and the incidence of endometritis.

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  • - CD8 T-cell exhaustion plays a key role in how triple-negative breast cancer (TNBC) evades the immune system, leading to reduced effectiveness of T-cells and poor patient outcomes.
  • - Factors causing this exhaustion include increased expression of inhibitory receptors, decreased production of signaling molecules, and various internal changes in the T-cells influenced by the tumor microenvironment.
  • - There is a need for new immunotherapy strategies targeting CD8 T-cell exhaustion in TNBC, as exhausted T-cells are linked to worse prognoses and lower immunotherapy success rates.
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Currently, the alarm functions of existing levee seepage monitoring systems are limited to single-parameter monitoring and lack rate-of-change alarms and correlation alarms. This can lead to false alarms, missed alarms, equipment failures, or unnecessary downtime. To enhance the intelligence of levee safety monitoring and seepage alarms, a levee seepage intelligent alarm system based on a Bidirectional Long Short-Term Memory (BILSTM) network model was designed and implemented.

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