Publications by authors named "ZhaoHui Wang"

Introduction: As research advances in vascularized composite allotransplantation (VCA), large animal models are essential for translational studies related to immune rejection and graft survival. However, procurement of large flaps can cause significant defects, complicating wound closure and increasing postoperative risks. This study details the surgical techniques and outcomes of autologous vertical rectus abdominis myocutaneous (VRAM) flap transplantation and neck flap isolation with induced ischemia in a swine model.

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Background: Oxidative stress plays a crucial role in the pathogenesis of HBV. This study aimed to investigate the value of fibroblast growth factor 21 (FGF21) promoter methylation in the occurrence and development of chronic hepatitis B (CHB) oxidative stress.

Methods: A total of 241 participants including 221 patients with CHB and 20 healthy controls (HCs) were recruited.

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Previous studies have demonstrated a correlation between dietary salt intake and stroke; however, there was a lack of conclusive evidence regarding a causal connection between them. We undertook a two-sample Mendelian randomization (MR) study to examine their potential association. The genome-wide data for dietary salt intake was sourced from genome-wide association study that involved 462,630 samples.

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Objective: Cardiovascular diseases (CVDs) and cancer are significant global causes of mortality. However, the link between diets that promote inflammation and various subtypes of CVDs and cancers remains unclear.

Methods: Utilizing the dataset from the 2017-2018 National Health and Nutrition Examination Survey (NHANES) data release cycle, our study encompassed 3538 adult participants within the age range of 20 to 80 years.

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High-voltage LiCoO is a promising cathode material for ultrahigh-energy lithium-ion batteries, particularly in the commercialization of 5G technology. However, achieving long-term operational stability remains a significant challenge. Herein, a quaterpolymer additive with multiple functional groups is introduced to enhance the electrochemical performance of LiCoO cathode at 4.

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Background: Zinner syndrome (ZS) is a congenital malformation characterized by a triad of mesonephric (Wolffian) duct dysplasia, first identified by Zinner in 1914. The classical presentation of ZS includes unilateral renal hypoplasia or dysplasia, ipsilateral seminal vesicle cysts, and obstruction of the ejaculatory duct. This case presents a rare variant of the syndrome, where an ejaculatory duct cyst is observed instead of the typical ipsilateral seminal vesicle cyst.

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Excessive nitrogen fertilizer application is the main driving force threatening soil health and reducing multiple soil functions. The enhanced-efficiency nitrogen fertilizers (EENFs), such as urease inhibitors (NBPT), nitrification inhibitors (DCD), and coated controlled-release urea (RCN), have been proven to be effective measures for reducing nitrogen fertilizer application. However, the effects of EENFs on soil quality (SQI), microbial metabolic characteristics, and soil ecosystem multifunctionality (EMF) and their internal relationships are still unclear.

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Human Snk is an evolutionarily conserved serine/threonine kinase essential for the maintenance of endocrine stability. The protein consists of a N-terminal catalytic domain and a C-terminal polo-box domain (PBD) that determines subcellular localization and substrate specificity. Here, an integrated strategy is described to explore the vast structural diversity space of Snk PBD-binding phosphopeptides at a molecular level using machine learning modeling, annealing optimization, dynamics simulation, and energetics rescoring, focusing on the recognition specificity and motif preference of the Snk PBD domain.

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In this Letter, we present a fiber-optic radio frequency (RF) transmission scheme based on phase modulation with an interferometric detection structure. A self-developed Michelson interferometer (MI) is used to demodulate the frequency signal via an electrically controlled optical shifter. The two complementary outputs from the interferometer are detected using a balanced detector, which suppresses the common-mode noise of the fiber link.

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Background: Considering that cardiac microvascular injury may play a more critical role than cardiomyocyte injury in the pathology of early ischaemia/reperfusion (I/R) injury, therapeutic strategies targeting the microvasculature are highly desirable. Palmitic acid-9-hydroxystearic acid (9-PAHSA) is a new class of bioactive anti-inflammatory lipids widely distributed in vegetables, fruits and medicinal plants, especially broccoli and apple. However, the pharmacological effects and underlying mechanisms of 9-PAHSA in protecting- against cardiac microvascular I/R injury have rarely been studied.

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CD47 is overexpressed on the surface of many types of cancer cells, including T-cell acute lymphoblastic leukemia (T-ALL) cells. In this study, we have developed a diphtheria toxin-based bivalent anti-human CD47 immunotoxin (bi-CD47-IT) for the targeted therapy of CD47+ cancers using a unique diphtheria toxin-resistant yeast Pichia pastoris expression system. Bi-CD47-IT demonstrated compelling in vivo efficacy in multiple T-ALL cell line-derived xenograft (CDX) and patient-derived xenograft (PDX) mouse models.

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Article Synopsis
  • Salmonella is a major foodborne pathogen linked to gastrointestinal diseases, but has not commonly been reported to cause urinary tract infections, particularly with Salmonella Typhimurium.
  • A 49-year-old woman with upper ureteral stricture underwent robotic ureteroplasty, later developing a urinary infection with Salmonella typhi and E. coli, treated successfully with antibiotics.
  • The case indicates that urinary tract infections may not significantly impact the survival of grafts used in surgery, suggesting effective antimicrobial therapy can keep grafts viable during recovery.
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We present a streamlined methodology that integrates regioselective tetrahalogen-BODIPY and -hydroxyphenylboronic acid in a one-pot process, leveraging SAr nucleophilic substitution in conjunction with Suzuki coupling to afford diarenofuran []-fused BODIPYs (-) with commendable yields (85-95%) and short reaction times (0.5-1.0 h).

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  • Glioblastoma (GBM) is a highly aggressive brain cancer, making up about 80% of malignant brain tumors, and currently lacks effective treatments due to its complexity and the blood-brain barrier.
  • Traditional 2D models do not accurately represent the tumor microenvironment, leading to a growing interest in organ-on-a-chip (OoC) models that mimic human tissue and offer better insights into disease and drug responses.
  • The review discusses the advancements in GBM-on-a-chip models, their applications in drug development, and highlights the challenges and future directions for enhancing these innovative research platforms.
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Deeper understanding of the crosstalk between host cells and (Mtb) provides crucial guidelines for the rational design of novel intervention strategies against tuberculosis (TB). Mycobacteria possess a unique complex cell wall with arabinogalactan (AG) as a critical component. AG has been identified as a virulence factor of Mtb which is recognized by host galectin-9.

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Malicious image tampering has gradually become another way to threaten social stability and personal safety. Timely detection and precise positioning can help reduce the occurrence of risks and improve the overall safety of society. Due to the limitations of highly targeted dataset training and low-level feature extraction efficiency, the generalization and actual performance of the recent tampered detection technology have not yet reached expectations.

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The precise synthesis of helicenes with topologically defined length and specific heteroatomic perturbation in the screw-like conjugated skeletons plays an emerging role in the manipulation of chiral materials. Facile, selective, and programmable routes to helicenes or heterohelicenes are highly desirable yet challenging for structure-chiroptical property relationship studies. Herein, we report the synthesis and characterization of NBN-doped helicenes with boron atoms in the inner rims, enabled by the highly regioselective one-pot borylation of rationally designed precursors with, namely, fold-in or pan-out manner.

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Nutrients are essential for marine primary productivity and have a critical role in maintaining the structure and function of marginal. Variations in nutrient levels in sea ecosystems can influence ecological disturbances significantly. The Liaodong Bay (LDB) is a semi-enclosed marginal sea in northern China.

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Background: As one of the malignant tumors with the highest incidence and fatality in the world, colon adenocarcinoma (COAD) has a very complex pathogenic mechanism, which has not yet been fully elucidated. Ubiquitin can regulate cell proliferation, cell cycle, apoptosis, DNA damage repair, and other processes by changing the activity of substrate proteins or causing ubiquitin-proteasome degradation. These are the key links in the pathogenesis of COAD, and ubiquitin plays an important role in the occurrence and development of COAD.

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The occurrence and trophic transfer of polycyclic aromatic hydrocarbons (PAHs) in aquatic ecosystems is vital to assess ecological risks. PAHs concentrations were analyzed in seawater, sediment, plankton, and marine species (15 fish species, 8 invertebrate species, 3 marine mammals), collected from Liaodong Bay (China). Bioaccumulation and biomagnification were calculated to demonstrate the biotransfer pattern of PAHs from the environmental matrix to high-level predators through the food web.

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Crop manganese (Mn) accumulation and the associated human health risks stemming from excessive intake of high Mn crop foods have attracted attention. However, there is limited information available concerning the impact of plastic film mulching (PFM) on Mn concentration in cereal grains and the health risks associated with Mn intake by the human body. Field experiments were conducted from 2014 to 2016 at seven sites in the drylands of a typical wheat-growing region in China to assess the effect of PFM on grain Mn concentration, Mn accumulation and distribution in winter wheat plants, and the potential risk of Mn intake and optimal grain intake for human health.

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Article Synopsis
  • Chicken yolk immunoglobulin (IgY) serves as a natural alternative to antibiotics for treating enteritis and was tested in a special emulsion to enhance its effectiveness.
  • In the study, various emulsifiers were used, and the one with whey protein isolate (WPI) proved to be the most effective in protecting mice from intestinal damage caused by LPS.
  • The findings indicated that IgY in the emulsion significantly improved intestinal health by reducing inflammation, enhancing antioxidant properties, and protecting intestinal tissue integrity.
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  • A nomogram model was developed to predict acute lung injury (ALI) in sepsis patients using healthcare records from 193 hospitalized individuals.
  • Important predictive factors included the neutrophil/lymphocyte ratio (NLR), oxygenation index (PaO/FiO), tumor necrosis factor-α (TNF-α), and APACHE II scores, resulting in high accuracy and strong performance metrics.
  • The model's predictions aligned well with actual outcomes, indicating its potential as a useful clinical tool for identifying patients at higher risk for ALI.
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Lung metastasis, a leading cause of breast cancer mortality, lacks effective therapeutic options. Hypoxia-inducible factor 1-alpha (HIF-1α) plays important roles in breast cancer progression, but its direct impact on lung metastasis remains unclear. Herein, in this study, we investigated the role of HIF-1α in breast cancer lung metastasis and the potential of targeting it for therapeutic benefit.

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Peroxydisulfate (PDS), a popular molecule that is able to oxidize organic compounds, is garnering attention across various disciplines of chemistry, materials, pharmaceuticals, environmental remediation, and sustainability. Methylene blue (MB) is a model pollutant that can be readily oxidized by PDS-derived radicals. Unlike the conventional degradation process, here a reversible "dissolution-precipitation" phenomenon is discovered, triggered by a simple mixing of PDS and MB, revealing a novel application of PDS in fabricating self-assembled ultra-long nanowires with MB.

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