Publications by authors named "Xie L"

Noncoding RNA plays a pivotal role as novel regulators of endothelial cell function. Type 2 diabetes, acknowledged as a primary contributor to cardiovascular diseases, plays a vital role in vascular endothelial cell dysfunction due to induced abnormalities of glucolipid metabolism and oxidative stress. In this study, aberrant expression levels of and were observed in diabetes-induced human umbilical vein endothelial cell dysfunction.

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  • Ant nests significantly influence soil methane emissions in tropical plantations, reducing emissions by 59.9% in nest soils compared to non-nest soils, turning ant nest soils into a methane sink during dry seasons and a source during wet seasons.
  • The presence of ant nests alters soil conditions such as temperature, humidity, and nutrient content, with increases of 4.9% to 138.5%, which largely explain variations in methane emissions.
  • Ant nesting changes the diversity and structure of methane-producing and methane-oxidizing microbial communities, with a higher diversity of methanogens in ant nests linked to a greater impact on methane emissions than that of methane-oxidizing
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  • The study examines the use of herbal supplements in patients with autoimmune skin diseases, specifically dermatomyositis (DM) and cutaneous lupus erythematosus (CLE), using data from 673 patients treated at a clinic.
  • Results show that 32% of patients reported using herbal supplements, with higher usage among younger patients and Hispanic/Latino individuals, while no significant differences were noted based on sex or disease type.
  • The research highlights that herbal supplements, especially elderberry, can potentially worsen symptoms for patients, emphasizing the need for healthcare providers to inform and guide patients about these products.
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Anaerobic digestion (AD) is an environmentally friendly technology that simultaneously stabilizes biowaste and produces biogas. Conventional AD faces challenges such as inadequate substrate degradation and low methane purity. Pressure-centric regulation serves as an AD optimization strategy that can enhance the digestion efficiency and generate higher-energy-value biogas.

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Asian honeybees (Apis cerana) play a crucial role as pollinators to service for the ecological stability. However, their proliferation and growth are significantly impacted by environmental temperature stress. This study delves into the function of the Apis cerana vesicular inhibitory amino acid transporter gene (AcVIAAT) in safeguarding Asian honeybees against high-temperature stress.

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In this work, an efficient and robust hole transport layer (HTL) based on blended poly((9,9-dioctylfluorenyl-2,7-diyl)--(9-(2-ethylhexyl)-carbazole-3,6-diyl)) (PF8Cz) and crosslinkable 3,3'-(9,9-dimethyl-9-fluorene-2,7-diyl)bis(9-(4-vinylphenyl)-9-carbazole) (FLCZ-V) is introduced for high-performance and stable blue quantum dot-based light-emitting diodes (QLEDs), wherein FLCZ-V can in situ-crosslink to a continuous network polymer after thermal treatment and the linear polymer PF8CZ becomes intertwined and imprisoned. As a result, the blended HTL shows a high hole mobility (1.27 × 10 cm V s) and gradient HOMO levels (-5.

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  • SCT510 is a biosimilar to bevacizumab (Avastin) and was tested for its effectiveness, safety, and other factors in patients with advanced non-squamous non-small cell lung cancer (NSCLC).
  • The study included 567 eligible patients who were randomly assigned to receive either SCT510 or bevacizumab, showing similar objective response rates and no significant differences in other secondary endpoints regarding efficacy or safety.
  • Results indicate that SCT510 is equivalent to the reference product bevacizumab, which suggests it can be a viable alternative treatment option for patients with advanced NSCLC.
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Introduction: Hepatocellular carcinoma (HCC) is a global health problem with increasing morbidity and mortality, and exploring the diagnosis and treatment of HCC at the gene level has been a research hotspot in recent years.

Methods: In this paper, a series of differentially expressed genes were found from the biochip related to HCC by bioinformatic analysis, then CNDP1 was finally selected for in-depth study according to the function and research progress of each gene. As the rate-limiting enzyme of carnosine hydrolysis, CNDP1 participates in the progress of many diseases, but its function has not been revealed in HCC.

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  • The study investigated the relationship between peripheral blood inflammation indexes and the prognosis of metastatic colorectal cancer (CRC) in 324 patients, finding that high levels of these markers correlated with poorer outcomes.
  • Key inflammatory markers like IL-10, NLR, and LWR were identified, with critical values established to categorize patients into low-risk and high-risk groups based on their scores.
  • Results indicated that patients in the low-risk group had significantly better overall survival (OS) and progression-free survival (PFS) compared to those in the high-risk group, emphasizing the importance of these inflammation indexes in predicting distant metastasis in CRC.
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Precise monitoring of biomolecular radiation damage is crucial for understanding X-ray-induced cell injury and improving the accuracy of clinical radiotherapy. We present the design and performance of lanthanide-DNA-origami nanodosimeters for directly visualizing radiation damage at the single-particle level. Lanthanide ions (Tb or Eu) coordinated with DNA origami nanosensors enhance the sensitivity of X-ray irradiation.

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Background: Chronic inflammation initiated by inflammatory monocytes underlies the pathogenesis of atherosclerosis. However, approaches that can effectively resolve chronic low-grade inflammation targeting monocytes are not readily available. The small chemical compound 4-phenylbutyric acid (4-PBA) exhibits broad anti-inflammatory effects in reducing atherosclerosis.

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Background: is a major cause of hospital-acquired infections (HAIs), primarily spread through environmental contamination in hospitals. The effectiveness of current chemical disinfectants is waning due to emerging resistance, which poses environmental hazards and fosters new resistance in pathogens. Developing environmentally friendly and effective disinfectants against multidrug-resistant organisms is increasingly important.

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Background: China exited strict Zero-COVID policy with a surge in Omicron variant infections in December 2022. Given China's pandemic policy and population immunity, employing Baidu Index (BDI) to analyze the evolving disease landscape and estimate the nationwide pneumonia hospitalizations in the post Zero COVID period, validated by hospital data, holds informative potential for future outbreaks.

Methods: Retrospective observational analyses were conducted at the conclusion of the Zero-COVID policy, integrating internet search data alongside offline records.

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It is known that magnesium phosphate cements (MPCs) show appreciable mechanical strength and biocompatibility, but the hydration reaction processes often lead to intense heat release while the hydration products present weak resistance to mechanical decay and low bioactivity. Herein we developed an MPC-based system, which was low-heat-releasing and fast-curing in this study, by compounding with self-curing calcium silicate cements (CSCs). The MPC composed of magnesium oxide (MgO), potassium dihydrogen phosphate (KHPO), disodium hydrogen phosphate (NaHPO), magnesium hydrogen phosphate trihydrate (MgHPO·3HO) and chitosan were weakly basic, which would be more stable .

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The application of shear horizontal (SH) guided wave transducers in high-temperature structural health monitoring (SHM) is a topic of significant interest across various industrial engineering sectors. In this study, we utilized the novelty piezoelectric crystal of near stoichiometric lithium niobate (NSLN), which exhibited a robust piezoelectric response ( = 77.6 pC/N@room temperature).

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Multiple resonance (MR) boron-nitrogen doped polycyclic aromatic hydrocarbons (BN-PAHs) have shown compelling thermally activated delayed fluorescence (TADF), surpassing those of their hydrocarbon analogues. However, the structural variety of π-extended BN-PAHs remains narrow. In this study, we synthesized three double helical BN-doped nanographenes (BN-NGs), 2 a-2 c, and three heptagon-embedded BN-NGs, 1 a-1 c, by π-extension of the MR core.

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  • Sucrose invertase is a crucial enzyme in plants that breaks down sucrose into fructose and glucose, and its role in daylily flower aging needs further exploration.
  • Researchers used bioinformatics to analyze the daylily genome, identifying 35 sucrose invertase genes and classifying them into three subfamilies: cell wall, vacuolar, and chloroplast invertases.
  • The study established the basic properties and expression patterns of these genes, revealing nearly all invertases show some level of expression during different developmental stages of the daylily flowers.
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We aim to examine the association between liver function-related indicators and gallstone disease (GSD) risk. The subjects who participated in the China Multicenter Physical Examination Cohort (CMPEC) were enrolled. Relative odds ratios (ORs) with 95% CIs and standardized mean differences (SMDs) were applied to investigate the effect of liver function-related indicators and GSD risk.

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Fragile X Syndrome (FXS) is a genetic neurodevelopmental disorder closely associated with intellectual disability and autism spectrum disorders. The core of the disease lies in the abnormal expansion of the CGG trinucleotide repeat sequence at the 5'end of the FMR1 gene. When the repetition exceeds 200 times, it causes the silencing of the FMR1 gene, leading to the absence of the encoded Fragile X mental retardation protein 1 (FMRP).

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  • * The study found that Cd exposure caused a drop in phosphatidylcholine and phosphatidylserine, while boosting phosphatidic acid levels and activating phospholipase D (PLD) in rice.
  • * Knockout mutants lacking the OsPLDα1 gene showed higher sensitivity to Cd stress, whereas plants overexpressing OsPLDα1 exhibited better tolerance, indicating its crucial role in managing Cd stress through lipid remodeling and reactive oxygen species balance.
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Introduction: Homocysteine (Hcy) is well recognized to be an independent risk factor for atherosclerosis. Long non-coding RNAs (lncRNAs) are emerging regulators of pathophysiological processes including atherosclerosis, while the underlying mechanisms of its involvement in Hcy induced-atherosclerosis remain largely unknown.

Objectives: The primary aim of this study is to assess the role of lncARF (autophagy-related factor induced by Hcy) in Hcy induced-atherosclerosis and related mechanism.

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Bedside ultrasound evaluation of venous excess ultrasound (VExUS) combined with the triglyceride-glucose (TyG) index plays an important role in predicting acute kidney injury (AKI) in patients with acute hyperlipidemic pancreatitis. VExUS can effectively evaluate the degree of venous congestion, while the TyG index is valuable in predicting severe pancreatitis. The combination of these two methods is expected to provide a more accurate AKI risk assessment tool for clinical practice.

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