Publications by authors named "Wang Chunsheng"

Echinococcosis, a zoonotic disease, significantly impacts the liver, with alveolar echinococcosis (AE) often leading to liver fibrosis and, in severe cases, cirrhosis. However, the molecular mechanisms by which AE infection promotes liver fibrosis remain incompletely understood. This study utilized bioinformatic analysis of existing microarray data to explore the shared mechanisms between AE and liver fibrosis and to identify potential therapeutic drug candidates.

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Room-temperature non-aqueous sodium metal batteries are viable candidates for cost-effective and safe electrochemical energy storage. However, they show low specific energy and poor cycle life as the use of conventional organic-based non-aqueous electrolyte solutions enables the formation of interphases that cannot prevent degradations at the positive and negative electrodes. Here, to promote the formation of inorganic NaF-rich interphases on both negative and positive electrodes, we propose the salt-in-presalt (SIPS) electrolyte formulation strategy.

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Thoracic and abdominal aortic aneurysm poses a substantial mortality risk in adults, yet many of its underlying factors remain unidentified. Here, we identify mitochondrial nicotinamide adenine dinucleotide (NAD)⁺ deficiency as a causal factor for the development of aortic aneurysm. Multiomics analysis of 150 surgical aortic specimens indicated impaired NAD salvage and mitochondrial transport in human thoracic aortic aneurysm, with expression of the NAD transporter SLC25A51 inversely correlating with disease severity and postoperative progression.

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All-solid-state lithium metal batteries promise high levels of safety and energy density, but their practical realization is limited by low Li reversibility, limited cell loading and demand for high-temperature and high-pressure operation, stemming from solid-state electrolyte (SSE) low-voltage reduction and high-voltage decomposition, and from lithium dendrite growth. Here we concurrently address these challenges by reporting that a family of reductive electrophiles gain electrons and cations from metal-nucleophile materials (here a Li sulfide SSE) upon contact to undergo electrochemical reduction and form interphase layers (named solid reductive-electrophile interphase) on material surfaces. The solid reductive-electrophile interphase is electron blocking and lithiophobic, prevents SSE reduction, suppresses Li dendrites and supports high-voltage cathodes.

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Loss-of-function mutations in NOTCH1 were previously linked to thoracic aortopathy, a condition for which non-surgical treatment options are limited. Based on clinical proteome analysis, we hypothesized that mitochondrial fusion and biogenesis in aortic smooth muscle cells (SMCs) are crucial for regulating the progression of NOTCH1-related aortopathy. Here we demonstrate that SMC-specific Notch1 knockout mice develop aortic pathology, including stiffening, dilation and focal dissection.

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Background: Unlike non-rheumatic atrial fibrillation (AF), where left atrial thrombus (LAT) is predominantly confined to the left atrial appendage (LAA), a significant proportion of LAT in rheumatic AF occurs within the left atrial cavity (LAC). However, LAC thrombosis in rheumatic AF has not been extensively studied. This study aimed to evaluate the prevalence of LAT and its subtypes and identify potential predictors of LAT.

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Melanoma is among the most common malignancies and has recently exhibited increased resistance to treatments, resulting in a more aggressive disease course. Mesenchymal stem cells (MSCs) secrete cytokines both in vivo and in vitro, which regulate tumor cell signaling pathways and the tumor microenvironment, thereby influencing tumor progression. This study investigates the anti-melanogenesis effects of sheep umbilical cord mesenchymal stem cells (SUCMSCs) to assess their potential application in melanoma treatment.

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Aims: The objective of this study is to ascertain the suitability of haemoglobin as a screening factor for falls among obstetrics and gynaecology inpatients and to formulate a stratified scheme for assessing fall risk based on haemoglobin.

Design: A retrospective analysis and Delphi surveys were employed for this investigation.

Methods: Initially, a retrospective survey analysed falls among obstetrics and gynaecology inpatients in two hospitals from January 1, 2020, to July 10, 2022.

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All-solid-state Li-metal battery (ASSLB) chemistry with thin solid-state electrolyte (SSE) membranes features high energy density and intrinsic safety but suffers from severe dendrite formation and poor interface contact during cycling, which hampers the practical application of rechargeable ASSLB. Here, we propose a universal design of thin Li-metal anode (LMA) via a dynamic stability strategy to address these issues. The ultra-thin LMA (20 μm) is in situ constructed with uniform highly Li-ion conductive solid-electrolyte interphase and composite-polymer interphase (CPI) via electroplating process.

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Article Synopsis
  • Hippo signaling is important for cellular responses to stress, but its role in copper (Cu) stress is not well understood.
  • In sheep pancreas and organoids exposed to high Cu, Hippo-YAP signaling was abnormally activated, leading to oxidative stress and mitochondrial damage.
  • Inhibiting Hippo signaling or increasing YAP levels improved mitochondrial function and copper balance, showing that YAP and ATOX1 work together to protect cells from Cu stress and restore their antioxidant capacity.
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Background: Transcatheter tricuspid valve intervention (TTVI) has demonstrated safety and efficacy in treating high-risk patients with tricuspid regurgitation (TR). The authors aimed to perform a meta-analysis based on reconstructed time-to-event data to compare the clinical benefit of TTVI with medical therapy (MED).

Methods: A systematic literature search was conducted in major databases, including PubMed, Embase, and the Cochrane Library, until 20 October 2023.

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The capacitance performance of a co-doped carbon-based supercapacitor derived from Ginkgo nuts was significantly enhanced by optimizing the mesoporous structure through high-temperature pyrolysis combined with KOH activation. The precisely engineered GBHHPC-750-4 is characterized by a hyper-crosslinked 3D hierarchical porous structure, with an exceptionally high specific surface area of 3163.9 m/g, a substantial mesopore proportion (Vmeso/Vt = 74.

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Objectives: This study aims to evaluate the organ-protective efficacy of postoperative glucocorticoid in patients with type A aortic dissection.

Methods: Postoperative type A aortic dissection patients were randomly allocated to receive either postoperative glucocorticoid or standard-of-care treatment. Intravenous methylprednisolone was administered for 3 days.

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Background: Sodium/glucose co-transporter 2 (SGLT2) inhibitors have transformed heart failure (HF) treatment, offering sympatholytic effects whose mechanisms are not fully understood. Our previous studies identified Cyclic GMP-AMP synthase (cGAS)-derived neuroinflammation in the Subfornical organ (SFO) as a promoter of sympathoexcitation, worsening myocardial remodeling in HF. This research explored the role of central SGLT2 in inducing endothelial cGAS-driven neuroinflammation in the SFO during HF and assessed the impact of SGLT2 inhibitors on this process.

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Background: Sympathoexcitation, a manifestation of heart-brain axis dysregulation, contributes to the progression of heart failure (HF). Our recent study revealed that circulating mitochondria (C-Mito), a newly identified mediator of multi-organ communication, promote sympathoexcitation in HF by aggravating endothelial cell (EC)-derived neuroinflammation in the subfornical organ (SFO), the cardiovascular autonomic neural center. The precise molecular mechanism by which C-Mito promotes SFO-induced endothelial neuroinflammation has not been fully elucidated.

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Article Synopsis
  • Daya Bay, located in the northern South China Sea, is a biologically rich area where research has focused mainly on mesozooplankton species, biomass, and biodiversity, but limited studies have explored their impact on prey communities.
  • A study conducted between 2015 and 2017 revealed that mesozooplankton exhibit selective feeding behaviors with stronger trophic cascades in spring and summer, affecting phytoplankton differently based on size.
  • The results indicated that mesozooplankton influence prey community dynamics and ciliate grazing impacts, with various factors like temperature and organism abundance significantly affecting these trophic interactions.
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Article Synopsis
  • Commercial LiPF-based electrolytes struggle with oxidation stability and moisture tolerance, prompting the search for alternatives.
  • Lithium cyano(trifluoromethanesulfonyl)imide (LiCTFSI) is introduced as a moisture-tolerant and non-corrosive option, showing promising results in battery performance with cathodes like LiNiCoMnO (NCM811).
  • The LiCTFSI-based electrolyte demonstrates excellent cycling stability even in high moisture conditions, with enhanced performance across a wide temperature range, making it a cost-effective solution for advanced batteries.
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The oligotrophic tropical western Pacific region is characterized by a high density of seamounts, with the Kyushu-Palau Ridge (KPR) being the longest seamount chain here. Effective spatial management plans for seamount ecosystems necessitate an understanding of distribution patterns and key environmental factors influencing benthic communities. However, knowledge regarding deep-sea biodiversity patterns over intricate topography remains limited.

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Maximowicz 1859 is one of the medicinal herbs in . This study presents the complete chloroplast genome of , sequenced using the Illumina NovaSeq platform. The genome is 151,161 bp in length, featuring a GC content of 38%.

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Article Synopsis
  • Immunotherapy for nasopharyngeal carcinoma (NPC) is effective but has low response rates; the role of PD-L1 on small extracellular vesicles (sEVs) in tumor immunosuppression is a key focus of research.
  • The study investigates how the Epstein-Barr virus protein LMP1 influences tumor immunity in NPC by analyzing T cell presence and sEV characteristics in both human tissues and mouse models.
  • Results show that high LMP1 levels limit CD8 T cell infiltration and promote PD-L1 secretion through interactions with ALIX, suggesting a potential pathway for therapeutic intervention to enhance immune responses in NPC.
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Purpose: Transcatheter aortic valve replacement (TAVR) induced coronary artery obstruction (CAO) is a rare but devastating complication. Current preventive strategies need additional procedures and may be associated with adverse events. This study aimed to evaluate the early safety and efficacy of stand-alone TAVR using the J-Valve (Jianshi JieCheng Medical Technology Co.

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is an important bacterial pathogen that affects the global pig industry. The immunosuppressive nature of infection is recognized, and our previous research has confirmed thymus atrophy with a large number of necrotic cells. In this current work, we aimed to uncover the role of pyroptosis in cellular necrosis in thymic cells of -infected mice.

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Fertilization significantly affects the growth and development of wheat. However, the precise mechanisms underlying gene regulation during flowering in response to fertilization deficiency remain elusive. In this study, fertilization (F) and non-fertilization (CK) ) treatments were set up to reveal examine the effect of fertilization on the photosynthetic capacity of winter wheat during the flowering period through physiological, biochemical, and transcriptome analyses.

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Background: Remote ischemic preconditioning (RIPC) has 2 time windows for organ protection: acute and delayed. Previous studies have mainly focused on the organoprotective effects of acute RIPC. We aimed to determine whether delayed RIPC can reduce the occurrence of acute kidney injury (AKI) and postoperative complications in patients undergoing cardiac surgery.

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