Publications by authors named "Yaqing Jiang"

Neonatal hypoxic-ischemic encephalopathy (HIE) is the primary cause of neonatal mortality and severe neurological sequelae. The interaction of neuroinflammation with the immune system represents a significant pathological mechanism underlying the development of HIE. Neutrophil extracellular traps (NETs) are a recently identified antimicrobial mechanism utilized by neutrophils.

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Neonatal hypoxic-ischaemic encephalopathy (HIE) remains one of the major causes of neonatal death and long-term neurological disability. Due to its complex pathogenesis, there are still many challenges in its treatment. In our previous studies, we found that quercetin can alleviate neurological dysfunction after hypoxic-ischaemic brain injury (HIBI) in neonatal mice.

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Neutrophil extracellular traps (NETs) released by neutrophils are web-like DNA structures adhered to granulin proteins with bactericidal activity and can be an important mechanism for preventing pathogen dissemination or eliminating microorganisms. However, they also play important roles in diseases of other systems, such as the central nervous system. We tracked the latest advances and performed a review based on published original and review articles related to NETs and neurological diseases.

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Article Synopsis
  • - Sepsis leads to serious heart issues through inflammation and oxidative stress, and this study focuses on FTO, a regulator in mA methylation, and its effects on septic cardiomyopathy.
  • - Animal and cell models showed that ferroptosis, an iron-dependent form of cell death, occurs in heart cells during sepsis, but overexpressing FTO can reduce this process and improve heart health and survival.
  • - The study suggests that FTO works in tandem with BACH1, a molecule that counteracts FTO's effects, indicating that targeting this interaction and using ferroptosis inhibitors could be effective treatments for heart problems caused by sepsis.
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Myocardial damage is a critical complication and a significant contributor to mortality in sepsis. MicroRNAs (miRNAs) have emerged as key players in sepsis pathogenesis. In this study, we explore the effect and mechanisms of miR-29b-1-5p on sepsis-induced myocardial damage.

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This paper investigated the combined effect of chemical activators and nano-SiO on the hydration reaction and the microstructure of γ-CS. The hydration reaction of γ-CS slurry activated with chemical activators (NaHCO, NaOH, KCO, and KOH at 1 mol/L) was enhanced by 1% nano-SiO. The hydrate reaction rate was determined by isothermal calorimetry, and the hydrated samples were characterized by XRD, TGA/DTG, SEM-EDS, and Si MAS/NMR.

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Background: Neuroblastoma (NBL) is an extracranial malignant tumor in children deriving from the neural crest in the sympathetic nervous system. Although various immunotherapy interventions have made significant breakthroughs in many adult cancers, the efficacy of these immunotherapies was still limited in NBL. NBL has low immunogenicity which results in a lack of tumor-infiltrating T lymphocytes in the tumor microenvironment (TME).

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Muscle diseases are closely related to autophagy disorders. Studies of autophagy inhibition indicated the importance of autophagy in muscle regeneration, while activation of autophagy can restore muscle function in some myopathies. Previous studies have revealed that mutations in the gene may lead to several kinds of hereditary myopathies.

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The shape retention ability of materials deposited layer by layer is called buildability, which is an indispensable performance parameter for successful 3D printable cementitious materials (3DPC). This study investigated the synergistic effect of nano-clay (NC) and thixotropic superplasticizer (TP) on the buildability of 3DPC. The rheological parameters and static yield stress are characterized by the rheology testing, the green strength is measured by a self-made pressure tester, and the fluidity is tested by flow table.

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Understanding the relationship between the intrinsic characteristics of materials (such as rheological properties and structural build-up) and printability and controlling intrinsic characteristics of materials through additives to achieve excellent printability is vital in digital concrete additive manufacturing. This paper aims at studying the effects of material's structural build-up on the interlayer bond strength of 3DPC with different time gaps. Structural build-up can indirectly affect the interlayer bond strength by affecting the surface moisture of concrete.

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Article Synopsis
  • - NBD-based fluorescent probes have been created to specifically detect cysteine and biothiols using different chemical reactions.
  • - These probes can differentiate cysteine from other biothiols within just 30 minutes.
  • - They are capable of detecting all biothiols in living cells after 3 hours of exposure.
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Biothiols are implicated in different physiological and pathological processes, while abnormal levels of biothiols are related to numerous diseases. It is essential to discriminatively detect these molecules and explore their inherent transformation in living biological samples. Herein, dual-reactive and dual-quenching fluorescent probes based on thiolysis of NBD (7-nitro-1,2,3-benzoxadiazole) thioether/ether/amine for separate detection of HS and Cys/Hcy were rationally designed.

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The continuum percolation of randomly orientated overlapping polyhedral particles, including tetrahedron, cube, octahedron, dodecahedron, and icosahedron, was analyzed by Monte Carlo simulations. Two numerical strategies, (1) a Monte Carlo finite-size-scaling analysis and (2) a real-space Monte Carlo renormalization-group method, were, respectively, presented in order to determine the percolation threshold (e.g.

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Ta2N is an effective diffusion barrier material to prevent undesired Cu diffusion in ultra-large scale integration circuits. Previous theoretical work has reported the interesting result that at the Cu/Ta2N interface the Cu layer preferentially bonded with the Ta layer but not the N layer of Ta2N. However, this result was calculated from largely lattice mismatched interface models.

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Although many major breakthrough had identificated potential susceptibility genes for schizophrenia, the aetiology of schizophrenia is still unknown. In the present study, we focused on the N-methyl-Daspartate receptors related genes nitric oxide synthase 1 adaptor gene (NOS1AP), disrupted in schizophrenia 1 gene (DISC1), d-amino acid oxidase activator gene (DAOA), and glycogen synthase kinase 3-beta gene (GSK3B). A family-based genetic association study (459 Han Chinese subjects in 153 nuclear families) using 3 single nucleotide polymorphisms in NOS1AP, 2 in DISC1, 1 in DAOA and 1 in GSK3B was conducted.

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Heterostyly is a common floral polymorphism, but the proteomic basis of this trait is still largely unexplored. In this study, self- and cross-pollination of L-morph and S-morph flowers and comparison of embryo sac development in eggplant (Solanum melongena L.) suggested that lower fruit set from S-morph flowers results from stigma-pollen incompatibility.

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