Publications by authors named "HaiJun Du"

The crude protein (CP) content is an important determining factor for the quality of alfalfa, and its accurate and rapid evaluation is a challenge for the industry. A model was developed by combining Fourier transform infrared spectroscopy (FTIS) and chemometric analysis. Fourier spectra were collected in the range of 4000~400 cm.

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Objectives: As a GABAB receptor agonist, baclofen has demonstrated efficacy in alleviating symptoms of refractory gastroesophageal reflux disease (r-GERD). This meta-analysis aims to evaluate the safety and effectiveness of baclofen as an add-on therapy for this condition.

Method: We conducted a comprehensive search of the PubMed, Embase, and Web of Science databases for studies published up until October 2023.

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Introduction: Seasonal human coronavirus NL63 (HCoV-NL63) is a frequently encountered virus linked to mild upper respiratory infections. However, its potential to cause more severe or widespread disease remains an area of concern. This study aimed to investigate a rare localized epidemic of HCoV-NL63-induced respiratory infections among pediatric patients in Guilin, China, and to understand the viral subtype distribution and genetic characteristics.

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CH serves as an important greenhouse gas, yet limited knowledge is available in global and regional CH cycling, particularly in widely distributed karst terrain. In this study, we investigated an upland in Puding Karst Ecosystem Research Station, and explored CH concentration and/or flux in atmosphere, soil and cave using a closed static chamber method and an eddy covariance system. Meanwhile, we monitored atmospheric temperature, precipitation, temperature and wind velocity in the cave entrance.

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The achievement of covalent organic frameworks (COFs) with high stability and exceptional proton conductivity is of tremendous practical importance and challenge. Given this, we hope to prepare the highly stable COFs carrying CN connectors and enhance their proton conductivity via a post-modification approach. Herein, one COF, TpTta, was successfully synthesized by employing 1,3,5-triformylphloroglucinol (Tp) and 4,4',4″-(1,3,5-triazine-2,4,6-triyl)-trianiline (Tta) as starting materials, which has a β-ketoenamine structure bearing a large amount of -NH groups and intramolecular H-bonds.

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The extraction of rare earth elements (REEs) from phosphogypsum (PG) is of great significance for the effective utilization of rare earth resources and enhancing the resource value of PG waste residues. This study used () fungal culture filtrate as a leaching agent to investigate the behavior of extracting REEs from PG through direct and indirect contact methods. According to the ICP-MS results, direct leaching at a temperature of 30 °C, shaking speed of 150 rpm, and a solid-liquid ratio of 2:1, achieved an extraction rate of 74% for REEs, with the main elements being yttrium (Y), lanthanum (La), cerium (Ce), and neodymium (Nd).

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Trichloroethylene-induced hypersensitivity dermatitis (TIHD) is a delayed hypersensitivity response that is affected by genetic and environmental factors. Occupational exposure to trichloroethylene (TCE) enhances antigen presentation, leading to hypersensitivity in workers with the HLA-B* 13:01 allele. Several studies have observed the activation of herpesviruses, such as EpsteinBarr virus (EBV), in TIHD patients.

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Objective: This study aimed to study the molecular epidemiology and clinical characteristics of respiratory syncytial virus (RSV) infection from hospitalized children with ARTI in Bengbu.

Methods: One hundred twenty-four nasopharyngeal swab specimens and clinical data from children with ARTI cases were collected in Bengbu, China, during winter 2021-2022. The samples were detected by qPCR of 13 respiratory viruses.

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Article Synopsis
  • Children infected with SARS-CoV-2 primarily display asymptomatic or mild symptoms, with a study focusing on 82 cases of the delta strain revealing a notable immune response.
  • The research found elevated levels of antibodies and specific immune factors, highlighting a balance between pro-inflammatory and anti-inflammatory responses, with no increase in the inflammatory factor IL-6.
  • Analysis of T-cell receptor (TCR) diversity showed reduced clonal diversity but increased clonal expansion in infected children, suggesting that specific immune adaptations may help prevent severe cases.
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Molybdenum application holds the potential to enhance agricultural productivity. However, the precise impact on soil microbial diversity and mineral nutrient availability remains uncertain. In this study, we collected rhizosphere soil samples from different growth stages of broad beans.

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Article Synopsis
  • - This paper introduces a multiple headspace extraction (MHE) method for measuring the water vapor transmission rate of cellulose-based papers.
  • - The MHE technique, combined with gas chromatography, effectively measures the amount of water vapor in a closed vial, showing high precision (relative standard deviation < 3.49%).
  • - The study concludes that this method is both fast and accurate, making it a promising tool for future research on cellulose-based paper properties.
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Ethyl vanillin (EVA) is widely used as a flavor additive in foods, and sensitive monitoring of EVA is of great significance for food safety. In this paper, the biomass of gum arabic derived carbon (GAC) coated with lanthanum vanadate (LaV) was constructed for the EVA sensor based on the synergistic effects of the electrochemical catalytic ability of LaV, the enhanced electrical conductivity with the GAC coating and the oxygen-containing functional groups in LaV@GAC. The as-developed LaV@GAC sensor showed a remarkable linear range from 0.

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Article Synopsis
  • The study examined how COVID-19 affected the rates of respiratory viruses in hospitalized children with severe acute respiratory infections (SARI) in Xuzhou, China, from 2015 to 2021.
  • Researchers analyzed virus detection rates using RT-qPCR on 1,663 samples, finding a decrease in overall respiratory virus detection from 46.2% to 36% after COVID-19 control measures were implemented.
  • While control measures reduced the incidence of some viruses, the rates of human rhinovirus (hRV) and respiratory syncytial virus (RSV) remained unchanged during the study period.
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  • * AC-73 treatment reduced cardiac damage and lowered the activation of CD4 and CD8 T cells, as well as the infiltration of immune cells like macrophages in the heart.
  • * The findings suggest that AC-73 could be a potential therapy for alleviating virus-induced cardiac inflammation by targeting CD147, as it decreases both T cell activation and harmful cytokine release.
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  • This study focused on tick-borne viruses (TBVs) from five tick species collected from hedgehogs and hares in Qingdao, China, using metagenomic sequencing.
  • A total of 36 strains belonging to 10 RNA viruses from four viral families were identified, including three novel viruses unique to this research.
  • The analysis suggested that many of these TBVs are genetically similar to those previously found in Japan, indicating potential cross-sea transmission between the two countries.
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Organic photoelectrochemical transistor (OPECT) bioanalytics has recently appeared as a promising route for biological measurements, which has major implications in both next-generation photoelectrochemical (PEC) bioanalysis and futuristic biorelated implementations. Via biological dissociation of materials, bioetching is a useful technique for bio-manufacturing and bioanalysis. The intersection of these two domains is expected to be a possible way to achieve innovative OPECT bioanalytics.

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The determination of plant growth regulators is of great importance for the quality monitoring of crops. In this work, 4-bromophenoxyacetic acid (4-BPA), one of the phenoxyacetic acids, was detected via the electrochemical method for the first time. A CeO-decorated electrochemical exfoliated graphene (eGr) composite (CeO/eGr) was constructed as the sensor for sensitive detection of 4-BPA due to the synergistic effect of the excellent catalytic active sites of CeO and good electron transference of the eGr.

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As an alternative mechanism for cap-dependent (m7GpppN) translation, internal ribosome entry site (IRES)-dependent translation has been observed in the 5' untranslated regions (5' UTR) and coding regions of a number of viral and eukaryotic mRNAs. In this study, a series of 5' terminal truncated structural protein genes that were fused with GFP was used to screen for potential IRESs, and IRESs were identified using a bicistronic luciferase vector or GFP expression vector possessing a hairpin structure. Our results revealed that a putative IRES was located between nt 1982 and 2281 in the VP3 coding region of the human rhinovirus 16 (HRV16) genomes.

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Internal ribosome entry site (IRES)-dependent translation is a mechanism distinct from 5' cap-dependent translation. IRES elements are located mainly in the 5' untranslated regions (UTRs) of viral and eukaryotic mRNAs. However, IRESs are also found in the coding regions of some viral and eukaryotic genomes to initiate the translation of some functional truncated isoforms.

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Though coronavirus disease 2019 (COVID-19) has largely been controlled in China, several outbreaks of COVID-19 have occurred from importation of cases or of suspected virus-contaminated products. Though several outbreaks have been traced to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) isolated on the outer packaging of cold chain products, live virus has not been obtained. In September 2020, two dock workers were detected as having asymptomatic SARS-CoV-2 infection using throat swabs during routine screening in Qingdao, China.

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Hollow peanut-shaped NiFeO/CoFeO twinned nano-spherical shell composite materials have interconnected electron channels and excellent electrochemical performance, which prompted the use of this unique spatial structure to fabricate efficient electrochemical sensors. In this work, N-doped carbon dots (NCDs) incorporated into magnetic NiFeO/CoFeO nanoparticle shell (NiFeO/CoFeO/NCDs) modified glassy carbon electrode (GCE) was applied to construct a dual-template molecularly imprinted polymer (MIP) based electrochemistry sensor (NiFeO/CoFeO/NCDs/MIP/GCE) for the simultaneous detection of catechin (CA) and theophylline (TPH). MIP was fabricated by an in-situ electrochemical polymerization strategy based on the theoretical exploration and density functional theory (DFT) computer directional simulation to screen out the optimal functional monomer (L-arginine) and the optimal ratio between the dual template molecules (CA and TPH) and functional monomer.

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In this work, a new type of hollow MnFeO oxide derived obtained from the metal-organic framework (MOF)@MOF was designed and proposed, which has intrinsic activity of mimicking enzymes of oxidase and peroxidase by adjustment pH values. Based on the colorimetric reaction and the hindrance of the oxidase-like activity in the presence of L-cysteine (Cys), as well as the recovery of oxidase-like activity due to the specific complexation of Cys and mercury (II) ions (Hg), a new type of colorimetric transmission platform for Cys and Hg detection with wide linear ranges of 1-25 μM for Cys and 0.1-15 μM for Hg has been developed.

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Polyimide-laser-engraved porous graphene (LEPG) are hopeful electrode modification materials for flexible electrochemical sensing based on its high-efficiency preparation and low cost. Herein, a flexible, multi-patterned, and miniaturized electrode was fabricated via a simple and novel direct laser engraving. 3D LEPG with porous network structure can selective decorated with Pt nanoparticles (Pt NPs) by in situ electrochemical depositions (Pt-LEPG) as sensitively HO sensors with a wide range of linear (0.

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