Publications by authors named "Jianbo Zhang"

First-principles calculations, particularly density functional theory (DFT) combined with D3 dispersion correction (DFT+D3), have proven to be valuable tools in simulating the adsorption of lead ions on TiCO surfaces. However, conventional theoretical models assume electrically neutral systems under vacuum conditions, neglecting the solvent environment and electrode potential's crucial effects. This study employed an implicit solvent model, treating the solvent as a continuous and homogeneous medium to capture the influence of different solvents by varying their dielectric constants.

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Objective: To investigate the efficacy and safety of transcatheter arterial chemoembolization (TACE) combined with sorafenib and sintilimab in the treatment of unresectable hepatocellular carcinoma (HCC).

Method: This study retrospectively analyzed the clinical data from 50 patients with unresectable HCC treated at Yunhe County People's Hospital of Zhejiang Province from January 2023 to December 2023. The patients were divided into two groups according to treatment regimen: a control group (n=20) treated with TACE alone, and a combination group (n=30) treated with TACE combined with sorafenib and sintilimab.

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Activated sludge enriches vast amounts of micropollutants (MPs) when wastewater is treated, posing potential environmental risks. While standard methods typically focus on target analysis of known compounds, the identity, structure, and concentration of transformation products (TPs) of MPs remain less understood. Here, we employed a novel approach that integrates machine learning for the quantification of nontarget TPs with advanced target, suspect, and nontarget screening strategies.

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Article Synopsis
  • This study investigates the effectiveness of sanguinarine, a natural compound, against oral squamous cell carcinoma (OSCC), aiming to understand its mechanism of action.
  • Through extensive screening of drug libraries, sanguinarine was identified as a potent inhibitor that disrupts lysosomal function and impairs autophagic clearance in OSCC cells.
  • The research highlights sanguinarine's interaction with pyruvate kinase M2 (PKM2), leading to the inhibition of crucial cellular processes that contribute to OSCC progression.
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The pathogens inactivation in wastewater sludges is vitally important for safely managing solid wastes and protecting public and environmental health especially in the emergency. Reports have shown the effectiveness of lime to kill virus pathogens in sludges, but mechanism of virus inactivation and related human diseases is unclear. This study evaluated representative limes of CaO/CaO on actual viral microorganism inactivation by viral metagenomic sequencing technology.

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Objectives: To comprehensively describe the incidence, process of care, outcomes, and variation among different age groups of pediatric out-of-hospital cardiac arrest (OHCA) in China.

Design: The Baseline Investigation of Out-of-Hospital Cardiac Arrest (BASIC-OHCA) is a prospective, multicenter, population-based registry of emergency medical services (EMS)-assessed OHCA in China.

Setting: A total of 25 monitoring sites of all seven geographical regions were included, covering a pediatric population (age ≤ 19) of around 22.

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Mycotoxin contamination is a major food safety issue worldwide, posing a serious threat to animal production performance and human health. Lactic acid bacteria are generally regarded as safe fermentation potential probiotics. They have the advantages of low toxicity, small pollution, strong specificity and high safety, and can reduce the contamination of microorganisms and mycotoxins.

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Advanced smart polymer materials with the ability of reversible deformation under external stimuli hold great potential in robotics, soft machines, and flexible electronics. However, the complexity and low efficiency for fabricating actuators along with their limited functionality hinder further progress. Here an efficient and mild catalyst-free thiol-yne click polymerization was developed to fabricate photosensitive polyimide (PI) films.

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  • The study investigates the role of AIM2 inflammasome-dependent pyroptosis and neutrophil extracellular traps (NETs) in chronic liver disease (CLD), focusing on how these mechanisms contribute to liver inflammation and fibrosis.
  • It was found that elevated markers of pyroptosis and NETs correlate with disease severity, and hepatic macrophages are the primary cells undergoing pyroptosis, leading to increased collagen deposition.
  • The research suggests that targeting this NET-AIM2 inflammasome pathway may offer new therapeutic options for treating liver inflammation and fibrosis.
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Wound healing process has always been a focal point of concern, with a plethora of hydrogel dressings available; however, their therapeutic efficacy remains a hindrance to wound closure. This article reports on a dual-network conductive system, PEDOT:PSS-co-PSBMA/XLG (PPSX) hydrogel dressing, Constructed using poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT: PSS) in combination with zwitterionic N, N-dimethyl-N-(2-methacryloyloxyethyl)-N- (3-sulfopropyl) ammonium betaine (SBMA) and nanoclay-synthesized lithium magnesium silicate (XLG). The hydrogel powder produced from it can absorb interfacial water within 30 s via physical interactions to spontaneously form hydrogels of arbitrary shapes.

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Breast cancer is a highly widespread form of malignant tumor characterized by a high rate of recurrence and mortality; it primarily occurs when tumor cells spread to peripheral regions of the body. Macrophages have a significant impact on the proliferation and metastasis of breast cancer. The exosomes generated by these cells exhibit an extensive spectrum of capabilities in suppressing the spread of cancer cells.

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Recently, a GuMI gut microphysiological system has been established to coculture oxygen-intolerant () A2-165 with organoids-derived primary human colonic epithelium. This study aims to test if this GuMI system applies to different donors with different healthy states and uses metabolomics to reveal the role of gut microbes in modulating host- and diet-derived molecules in the gut lumen. Organoids-derived colonic monolayers were generated from an uninflamed region of diverticulitis, ulcerative colitis, and Crohn's disease patients and then integrated into the GuMI system to coculture with A2-165 for 2 to 4 days.

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Antibiotics are widely used in the breeding production of Bamei pigs, affecting the quality and safety of pork and causing enormous harm to human health, the environment, and public health. The use of probiotic fermented feed to replace antibiotic feed is one of the solutions, which has the potential to improve the intestinal microbiota, promote animal growth, and enhance immunity. The purpose of this study was to evaluate the effect of fermented feed with (L.

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Background: Reed canary grass has been identified as a suitable species for restoring plateau wetlands and understanding plant adaptation mechanisms in wetland environments. In this study, we subjected a reed canary grass cultivar 'Chuanxi' to waterlogging, salt, and combined stresses to investigate its phenotypic characteristics, physiological indices, and transcriptome changes under these conditions.

Results: The results revealed that the growth rate was slower under salt stress than under waterlogging stress.

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Article Synopsis
  • The study looks at how the gut bacteria of lactating Tibetan cattle change during the first two months after giving birth.
  • Researchers collected samples from the cattle to measure different things like blood and saliva, and then analyzed the bacteria using special techniques.
  • They found that different gut areas had different types of bacteria, with certain groups being more important for the cattle's health during this postpartum time.
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Dietary fiber (DF) is an important nutrient component in pig's diet that remarkably influences their growth and slaughter performance. The ability of pigs to digest DF depends on the microbial composition of the intestinal tract, particularly in the hindgut. However, studies on how DF alters the growth and slaughter performance of pigs by shaping the gut microbial composition and metabolites are still limited.

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Aiming to further improve the spectral efficiency (SE) of a continuous spectrum modulated nonlinear frequency division multiplexing (CS-NFDM) system, we propose a novel ,to the best of our knowledge, multiple-signal-joint-processing (MSJP)-based guard interval (GI) shortening method. In this method, multiple NFDM time-domain signals are jointly processed as a whole to carry out nonlinear Fourier transform and inverse nonlinear Fourier transform (NFT-INFT) operations. These operations can fuse the multiple NFDM time-domain signals together, which is equivalent to the corresponding inverse process of a fiber transmission.

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  • A new culture medium, "mDMEM-DMP," was developed to effectively support the growth of fungi, bacteria, and human oral cell lines, addressing the limitations of traditional mediums like DMEM and mDMEM.
  • The addition of HEPES enhanced the medium's effectiveness by improving growth and stabilizing pH, although higher concentrations had diminishing returns on growth.
  • The versatility of mDMEM-DMP allows for comprehensive studies of microbial and human interactions, crucial for understanding both health and disease.
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Objective: After fully lifting coronavirus disease 2019 (COVID-19) pandemic control measures in mainland China in 12/2022, the incidence of COVID-19 has increased markedly, making it difficult to meet the general time-in-range (TIR) requirement. We investigated a more clinically practical TIR threshold and examined its association with the prognosis of COVID-19 patients with type 2 diabetes(T2D).

Research Design And Methods: 63 T2D patients complicated with COVID-19 were evaluated.

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In pursuit of a sustainable future powered by renewable energy, hydrogen production through water splitting should achieve high energy efficiency with economical materials. Here, we present a nanofluidic electrolyzer that leverages overlapping cathode and anode electric double layers (EDLs) to drive the splitting of pure water. Convective flow is introduced between the nanogap electrodes to suppress the crossover of generated gases.

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Clinically, chronic pain and depression often coexist in multiple diseases and reciprocally reinforce each other, which greatly escalates the difficulty of treatment. The neural circuit mechanism underlying the chronic pain/depression comorbidity remains unclear. The present study reports that two distinct subregions in the paraventricular thalamus (PVT) play different roles in this pathological process.

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Lithium-sulfur (Li-S) batteries have high theoretical energy density and are regarded as a promising candidate for next-generation energy storage systems. However, their practical applications are hindered by the slow kinetics of sulfur conversion and polysulfide shuttling. In particular, large-scale pouch cells show much poor cyclability.

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Article Synopsis
  • * The recently introduced carrier-assisted differential detection (CADD) aims to handle complex double sideband (DSB) signals, although it requires a high carrier-to-signal power ratio (CSPR) to reduce signal-to-signal beat interference (SSBI).
  • * A new approach, combining digital pre-distortion at the transmitter and clipping at the receiver, is proposed to enhance the performance of symmetric CADD (S-CADD) by lowering the CSPR needed for effective error correction, thus showing promise for short-reach optical communications. *
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We propose a high-speed multimode fiber short-reach optical interconnect system based on a Kramers-Kronig (KK) field reconstruction with the mode division multiplexing (MDM) and polarization division multiplexing (PDM) technology. In this work, the LP01, LP21a, LP21b, and LP02 modes are selected as independent channels to carry information. The demonstration achieved the 800 Gb/s net data rate per wavelength with a bit-rate-distance-product (BDP) of 8 Tb/s·km.

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