Publications by authors named "Peng-fei Wang"

A novel strategy is reported for the stereoselective synthesis of C(sp)-C(sp) -glycosides, which converts heteroaryl -glycosides into heteroaryl -glycosides with retention of configuration through a sequential process involving oxidation and Grignard reagent attack. The new method involves the generation of a S(IV) intermediate, followed by ligand coupling of the glycosyl and heteroaryl groups to yield heteroaryl -glycosides. The diverse heteroaryl -glycosides were achieved with good efficiency.

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Aim: Given that electroacupuncture (EA) pretreatment inhibits lactate production and lactate-derived lysine lactation (Kla) aggravates ischemic brain injury, we aimed to investigate whether the formation of Kla protein is involved in EA pretreatment to alleviate ischemic brain injury.

Methods: EA was performed on the Baihui acupoint (GV20) of male C57BL/6J mice before receiving the permanent middle cerebral artery occlusion (pMCAO) surgery. Western blot and immunofluorescent staining were used to observe neuronal survival, astrocyte activation, and protein Kla levels, and the lactate levels in ischemic brains were assayed with a commercial kit.

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The NASICON-type NaV(PO) (NVP) is recognized as a potential cathode material for Na-ion batteries (SIBs). Nevertheless, its inherent small electronic conductivity induces limited cycling stability and rate performance. Carbon coating, particularly N-doped carbon, has been identified as an effective strategy to address these challenges.

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Prussian blue analogues (PBAs) show great promise as cathode candidates for aqueous zinc-ion batteries thanks to their high operating voltage, open-framework structure, and low cost. However, suffering from numerous vacancies and crystal water, the electrochemical performance of PBAs remains unsatisfactory, with limited capacity and poor cycle life. Here, a simple coprecipitation method is shown to synthesize well-crystallized cobalt hexacyanoferrate (CoHCF) with a small amount of water and high specific surface area.

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Global interest in lithium-sulfur batteries as one of the most promising energy storage technologies has been sparked by their low sulfur cathode cost, high gravimetric, volumetric energy densities, abundant resources, and environmental friendliness. However, their practical application is significantly impeded by several serious issues that arise at the cathode-electrolyte interface, such as interface structure degradation including the uneven deposition of LiS, unstable cathode-electrolyte interphase (CEI) layer and intermediate polysulfide shuttle effect. Thus, an optimized cathode-electrolyte interface along with optimized electrodes is required for overall improvement.

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The genus is renowned for its remarkably diverse floral morphology, exhibiting a high level of disparity compared to most genera within Gesneriaceae. In this study, we present a detailed description and illustration of T. Ding & B.

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To reveal the penetration mechanism and present the penetration characteristics of high-speed micro-jet with injection volume larger than 0.3 mL into soft tissue, the present study conducted experimental research on high-speed water-jet penetration into ballistic gelatin. The free jet dynamics of an air-powered needle-free injector that can emit up to 1.

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  • Sodium-ion batteries (SIBs) are gaining popularity for large-scale energy storage due to the affordability and availability of sodium resources, but achieving high energy density and stable performance remains difficult.
  • A new hierarchical structure in the cathode material NaLiMgNiFeMnTiO features a protective P2 crystalline shell around a bulk O3 phase, which helps prevent damage during battery charge and discharge cycles.
  • This innovative design results in impressive electrochemical performance, with an energy density of 506 Wh/kg and a retention rate of 85.5% over 200 cycles, emphasizing the significance of optimizing crystalline structures for enhanced battery durability.
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  • High-voltage sodium metal batteries (SMBs) are promising for high-energy-density applications due to the cost and abundance of sodium, but they face challenges like capacity decay from electrolyte decomposition and safety issues from reactive components.
  • A new dual-anion aggregated sodium solvation structure in a nonflammable electrolyte is proposed, forming a stable cathode/electrolyte interphase that reduces unwanted reactions and enhances stability and sodium transport.
  • The NaNiFeMnTiO//Na batteries using this electrolyte achieved a discharge capacity of 167.5 mAh/g with 85.2% capacity retention over 800 cycles, showcasing a potential strategy for safer, high-voltage SMBs.
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To understand the structure of the plankton community and the ecological niche characteristics of their dominant species, sampling surveys of plankton were conducted in Baiyangdian Lake in the spring (March), summer (July), and autumn (September) of 2022. The changes in the plankton community during the three seasons were analyzed by constructing ecological network diagrams, non-metric multidimensional scaling analysis (NMDS), and the ecological niche width. The niche overlap of zooplankton dominant species was evaluated by the improved Levins' formula and Petraitis' index.

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Acute type A aortic dissection (ATAAD) is a lethal pathological process within the aorta with high mortality and morbidity. T lymphocytes are perturbed and implicated in the clinical outcome of ATAAD, but the exact characteristics of T cell phenotype and its underlying mechanisms in ATAAD remain poorly understood. Here we report that CD4 T cells from ATAAD patients presented with a hypofunctional phenotype that was correlated with poor outcomes.

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Background: Clinical acupuncture decisions are highly operator-dependent and require physician-patient interactions. The Delphi method allows subjective factors such as expert experience and preference of patients to be taken into account in clinical decision making, which is particularly applicable to acupuncture. Currently, the Delphi method is widely used to support clinical decisions in acupuncture.

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  • A new catalytic method using Ruthenium (Ru) has been developed to create 3-glycosyl isocoumarins and 2-glycosyl-4-chromen-4-ones.
  • This process involves the reaction of benzoic acid derivatives and 2-hydroxybenzaldehyde with carbonyl sulfoxonium ylide glycogen under mild conditions, yielding high-value glycosides.
  • The reaction demonstrates versatility with diverse substrates and high compatibility with various functional groups, making it useful for large-scale synthesis and modifying complex natural products.
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Cases and studies of protruding early gastric cancer (EGC) combined with spontaneous bleeding are relatively rare. The current study present a female patient aged 70 to 75 years old with hemorrhagic shock caused by spontaneous bleeding from EGC type 0-Isp, which was successfully cured by rapid emergency endoscopic submucosal dissection (ESD).

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This study aimed to develop and validate a predictive model of all-cause mortality risk in American adults aged ≥ 18 years with diabetes. 7918 participants with diabetes were enrolled from the National Health and Nutrition Examination Survey (NHANES) 1999-2016 and followed for a median of 96 months. The primary study endpoint was the all-cause mortality.

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Although lactate supplementation at the reperfusion stage of ischemic stroke has been shown to offer neuroprotection, whether the role of accumulated lactate at the ischemia phase is neuroprotection or not remains largely unknown. Thus, in this study, we aimed to investigate the roles and mechanisms of accumulated brain lactate at the ischemia stage in regulating brain injury of ischemic stroke. Pharmacological inhibition of lactate production by either inhibiting LDHA or glycolysis markedly attenuated the mouse brain injury of ischemic stroke.

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High working voltage, large theoretical capacity and cheapness render MnO promising cathode candidate for aqueous zinc ion batteries (AZIBs). Unfortunately, poor electrochemical activity and bad structural stability lead to low capacity and unsatisfactory cycling performance. Herein, MnO material was fabricated through a facile precipitation reaction and divalent copper ions were introduced into the crystal framework, and ultra-small Cu-doped MnO nanocrystalline cathode materials with mixed valence states of Mn, Mn and Mn were obtained via post-calcination.

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  • Researchers are exploring sodium-ion batteries for high energy-density electrodes, identifying Na-deficient intercalation compounds with lattice oxygen redox as potential high-capacity cathodes.
  • The study tackled issues with poor electrochemical reversibility in redox reactions by using lithium orbital hybridization to engineer a new cathode material, P2-NaLMCM', enhancing oxygen redox stability.
  • Results showed that P2-NaLMCM' achieved a high capacity of 183.8 mAh/g and maintained 80.2% capacity retention over 200 cycles, offering promising advancements in battery technology.
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  • PCSK9 inhibitors like Evolocumab can significantly lower LDL cholesterol levels in patients already on statins, but their effect on symptomatic intracranial atherosclerosis has not been studied.
  • The study aims to compare the effects of combining Evolocumab with statins versus using statins alone on reducing intracranial plaque burden in patients with recent strokes or transient ischemic attacks.
  • With 1,000 participants and advanced imaging techniques, the trial will assess important outcomes over a 24-week period to determine whether the combination therapy is more effective and to gather safety data.
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In order to understand the stability of the zooplankton and phytoplankton communities in the Guizhou plateau reservoir environment, the process of reservoir water quality change affecting the stability of plankton was studied. The changes in the plankton community and water quality in three different nutrient reservoirs (Huaxi Reservoir, Goupitan Reservoir, and Hailong Reservoir) were studied from October 2020 to August 2021. The stability of the zooplankton and phytoplankton communities was studied using time-lag analysis (TLA).

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Organophosphate flame retardants (OPFRs) pose the significant risks to the environment and human health and have become a serious public health issue. Tricresyl phosphates (TCPs), a group of aryl OPFRs, exhibit neurotoxicity and endocrine disrupting toxicity. However, the binding mechanisms between TCPs and human serum albumin (HSA) remain unknown.

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Because of its high specific capacity and superior rate performance, porous carbon is regarded as a potential anode material for lithium-ion batteries (LIBs). However, porous carbon materials with wide pore diameter distributions suffer from low structural stability and low electrical conductivity during the application process. During this study, the calcium carbonate nanoparticle template method is used to prepare coal tar pitch-derived porous carbon (CTP-X).

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  • New glyco-reagents based on carbonyl sulfoxonium ylides have been created for synthesizing C-glycosides, which are versatile molecules featuring sugar units.
  • The synthesis process uses a Ru-catalyzed strategy that involves C-H activation/annulation and can handle various types of sugar donors.
  • This advancement allows for more effective stereoselective production of complex heterocyclic C-glycosides and can be applied to large-scale manufacturing or modifications of natural products and pharmaceuticals.
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Background: Phosgene is a chemical material widely used worldwide. No effective method has been developed to reverse its pathological injuries. Some studies have shown that neuronal inflammation in lung tissue is involved, but the specific mechanism has not been reported.

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