Publications by authors named "Hu W"

Skeletal muscle (SKM) is the largest organ in mammalian body and it can repair damages by using the residential myogenic stem cells (MuSC), but this repairing capacity reduces with age and in some genetic muscular dystrophy. Under these circumstances, artificial amplification of autologous MuSC in vitro might be necessary to repair the damaged SKM. The amplification of MuSC is highly dependent on myogenic signals, such as sonic hedgehog (Shh), Wnt3a, and fibroblast growth factors, so formulating an optimum myogenic kit composed of specific myogenic signals might increase the proliferation and differentiation of MuSC efficiently.

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Backgroud: Mediator complex subunit 19 (MED19), a member of the mediator complex, has been demonstrated to involve in tumorigenesis of hepatocellular carcinoma (HCC). However, the regulation mechanisms of MED19, the immune landscape linking MED19 to HCC and its predictive value of immunotherapy treatment in HCC are so far unknown.

Methods: Here, we analyzed data from The Cancer Genome Atlas and other databases to assess the expression of MED19 and its prognosis and therapeutical-targets impact in HCC.

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  • * Low temperatures increased the expression of certain stress-related genes while inhibiting reproductive hormone genes, leading to reduced sperm count and motility, indicating a disruption in testicular function and spermatogenesis.
  • * Metabolomics analysis revealed lower levels of key metabolites related to energy production in the testes after exposure to low temperatures, suggesting that cold stress affects sperm vitality by impairing energy metabolism and testicular development.
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Fluorescence imaging technology has emerged as a powerful tool for studying intricate mitochondrial morphology within living cells. However, the need for fluorophores with stable fluorescence intensity and low phototoxicity poses significant challenges, particularly for long-term live-cell mitochondrial monitoring. To address this, we introduce the confinement fluorescence effect (CFE) into the design of fluorophores.

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  • Low-frequency vibrational modes are important for studying chemical structures but are hard to detect due to environmental interference.
  • To improve detection, a deep learning model called an attention-enhanced U-net was created, which connects high- and low-frequency vibrational modes for better analysis.
  • The model effectively recovered low-frequency signals in experiments with BPE on an Ag surface and showed strong capability to work with different experimental conditions in IR and Raman spectra.
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  • * Analysis of public cancer data highlighted increased SNRPB2 expression across various cancers, often correlating with poor patient outcomes and connections to cancer-related processes.
  • * Experimental studies showed that reducing SNRPB2 levels decreased liver cancer cell growth and movement, suggesting its potential as a biomarker and target for immunotherapy in cancer treatment.
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Vincristine (VCR) can cause vincristine-induced peripheral neuropathy (VIPN) during the treatment of acute lymphoblastic leukemia (ALL) and the mechanisms are complicated. The aim of this study was to investigate the influencing factors on the population pharmacokinetics (PopPK) and pharmacodynamics (PD) related to VIPN, including clearance routes, drug-drug interactions (DDI), and genetic characteristics. Pediatric patients being treated for ALL were recruited to PK study where VCR and its metabolite (M1) were measured using a novel assay.

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Microfine mineral particles have a small size, light weight, and low inertia, making it difficult for them to deviate from streamlines and collide with bubbles. Conventional flotation operations consume a large amount of reagents and exhibit poor flotation indicators. This study employs computational fluid dynamics (CFD) simulation and hydrodynamic testing to investigate the flow field within a high-turbulence microfine particle flotation machine equipped with a multilayer impeller-stator configuration, and validates the practical application performance of the microfine particle flotation machine through single-batch flotation experiments.

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Biodegradable shape-memory polymers derived from protein substrates are attractive alternatives with strong potential for valorization, although their reconstruction remains a challenge due to the poor processability and inherent instability. Herein, based on Maillard reaction and immobilization, a feather keratin fibrous adsorbent featuring dual-response shape-memory is fabricated by co-spinning with pullulan, heating, and air-assisted spraying ZIF-8-NH. Maillard reaction between the amino group of keratin and the carbonyl group of pullulan improves the mechanics and thermal performance of the adsorbent.

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Background: Central retinal artery occlusion (CRAO) has been identified as an acute emergency resulting in vision loss, with its pathogenesis potentially involving systemic inflammation and abnormal lipid metabolism. Over recent years, it has been established that peripheral blood inflammatory indices, including the neutrophil-to-lymphocyte ratio (NLR), the systemic immunoinflammatory index (SII), and the monocyte-to-high-density lipoprotein ratio (MHR), play significant roles in assessing systemic inflammation and lipid metabolism. However, the role of these indices in assessing the severity of CRAO has rarely been explored.

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Background: Quantifying the professional ethical challenges that nurses encounter is crucial for both theoretical insights and practical outcomes. The objective of this research is to assess the psychometric properties of the Chinese adaptation of the Moral Distress Scale for Healthcare Professionals (MD-APPS).

Methods: In 2024, a survey approach was utilized to engage with several tertiary-level healthcare institutions throughout China.

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  • - The Roucongrong Pill (RCRP) is historically used for treating postmenopausal osteoporosis (PMOP), but its specific mechanisms of action are still unclear.
  • - This study investigates RCRP's therapeutic effects on PMOP in a rat model using various scientific methods, including analysis of bone metrics, gut microbiota profiling, and molecular docking to understand its pharmacological mechanisms.
  • - Results showed that RCRP improved bone health measures in rats, such as bone strength and density, and identified 26 metabolites linked to its therapeutic effects, suggesting a multifaceted action against PMOP.
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Somatostatin receptors (SSTRs) exert critical biological functions such as negatively regulating hormone release and cell proliferation, making them popular targets for developing therapeutics to treat endocrine disorders, especially neuroendocrine tumors. Although several panagonists mimicking the endogenous ligand somatostatin are available, the development of more effective and safer somatostatinergic therapies is limited due to a lack of molecular understanding of the ligand recognition and regulation of divergent SSTR subtypes. Here, we report four cryoelectron microscopy structures of G-coupled SSTR1 and SSTR3 activated by distinct agonists, including the FDA-approved panagonist pasireotide as well as their selective small molecule agonists L-797591 and L-796778.

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Importance: Mouth breathing is associated with increased airway resistance, pharyngeal collapsibility, and obstructive sleep apnea (OSA) severity. The common belief is that closing the mouth can mitigate the negative effects of mouth breathing during sleep. However, mouth breathing may serve as an essential route to bypassing obstruction along the nasal route (eg, the velopharynx).

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Background: The incidence of osteoarthritis (OA) is increasing, yet its pathogenesis remains largely unknown. Recent studies suggest that abnormal subchondral bone remodeling plays a crucial role in OA development, highlighting a gap in clinical treatments targeting this aspect. Soybean Isoflavone (SI) has shown potential in treating OA, although its mechanisms are not fully understood.

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We investigated a portable micro-nanochannel biosensor 3D-printed liver microtissues for rapid and sensitive deoxynivalenol (DON) detection. The screen-printed carbon electrode (SPCE) was modified with nanoporous anodic aluminum oxide (AAO), gold nanoparticles (AuNPs), and cytochrome C oxidase (COx) to enhance sensor performance. Gelatin methacrylate hydrogel, combined with hepatocellular carcinoma cells, formed the bioink for 3D printing.

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Wastewater treatment processes significantly contribute to greenhouse gas (GHG) emissions. Municipal wastewater treatment also faces challenges related to low strength and a low carbon-to-nitrogen (C/N) ratio. This study investigates the high-carbon tofu wastewater flowing into municipal sewers for co-treatment at a wastewater treatment plant (WWTP) directly, with the goal of enhancing nitrogen removal and reduce GHG emissions.

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  • There is a growing need for effective and affordable cancer screening methods due to millions of new cases and deaths each year.
  • Circulating tumor cells (CTCs), which come from tumors and enter the bloodstream, are emerging as valuable biomarkers for non-invasive liquid biopsies, backed by significant research.
  • This review discusses how to detect CTCs using electrochemical cytosensors, covering sample preparation, the types of bio-recognition elements for CTC capture, design strategies for the sensors, and the challenges and future potential of this technology.
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As a key component for wearable electronics, intrinsically stretchable and healable semiconducting polymers are scarce because carrier mobility is often reduced with increasing stretchability and self-healability. Here, we combine stepwise polymerization and thermal conversion to introduce in situ continuous hydrogen bonding sites in a polymer backbone without breaking the conjugation or introducing bulky softer side chains, benefiting the intrachain and interchain charge transport. We demonstrate that a regular sequence structure facilitated the formation of big nanofibers with a high degree of aggregation, providing the loose and porous thin film with simultaneously improved charge transport, stretchability, and self-healability.

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With cabozantinib as the precursor, a novel small molecule inhibitors of c-Met kinase with thieno [2,3-b] pyridine as the scaffold were designed, synthesized and evaluated for their biological activity against A549, Hela and MCF-7 cell lines. The in vitro activities of 16 compounds were tested by MTT method with cabozantinib as control drug. Most compounds had moderate to strong inhibitory activities on cells.

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  • Metabolic reprogramming is crucial for understanding the growth and recurrence of liver cancers like hepatocellular carcinoma (HCC) and cholangiocarcinoma (CCA), but there are still no effective clinical strategies for early screening.
  • A detailed metabolomics study using advanced chromatography techniques identified significant increases in certain lipid metabolites, especially in the glycerophospholipid pathway, in patients with HCC and CCA.
  • The research highlights the role of lipid metabolism in cancer progression and suggests it could be a therapeutic target, paving the way for better early diagnosis and personalized treatment options for these liver cancer patients.
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Background: Patients with glioblastoma (GBM) have a poor prognosis and limited treatment options. The mRNA decapping enzyme scavenger (DCPS) is a cap-hydrolyzing enzyme. The DCPS inhibitor RG3039 exhibited excellent central nervous system bioavailability in vivo and was safe and well tolerated in healthy volunteers in a phase 1 clinical trial.

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