Publications by authors named "Yifang Li"

Traditional Chinese medicine(TCM) theory suggests that "Shanghuo" is a comprehensive clinical symptom resulting from an imbalance of Yin and Yang. There is substantial clinical evidence showing that the consumption of warm or hot natured TCM can induce "Shanghuo". However, the pharmacological mechanisms and material basis of this phenomenon require further elucidation.

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Background: Parkinson's disease (PD) is a common neurodegenerative disorder characterized clinically by motor dysfunction due to gradual loss of dopaminergic neurons in the nigrostriatal system. Currently, medications such as levodopa preparations, offer only temporary symptomatic relief without preventing neuronal loss or halting disease progression. In traditional Chinese medicine (TCM), a particular type of wolfberry or goji berry, the fruit of Lycium barbarum L.

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  • The study investigates how various factors influence the spreading of droplets on surfaces, particularly focusing on the wettability related to coal dust.
  • Experiments characterized the composition, size distribution, and contact angles of coal dust, leading to simulations using a multiphase fluid method to validate the contact angle with minimal deviation.
  • It identified three stages of droplet wetting, revealing that factors like droplet size and impact velocity significantly affect spreading behavior, while rough surface textures decrease overall spreading efficiency.
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  • Colorectal polyps are potential early indicators of colorectal cancer, and this study focuses on the link between metabolic dysfunction associated steatohepatitis (MASH) and these polyps through biomarker analysis.
  • The research utilized techniques like differential gene expression and co-expression network analysis, identifying 49 common genes that are primarily involved in apoptosis, proliferation, and infection.
  • Key biomarkers (S100P, FOXO1, and LPAR1) were found to correlate with MASH and colorectal polyps, with machine learning validating these findings and suggesting potential small molecule compounds for chemoprevention.
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Due to the high abundance and diverse functions of lysine residues, both in the interior and on the surface of proteins, the development of new methods to characterize their reactivity and ligandability could significantly expand the pool of druggable targets. To date, only a limited number of aminophilic electrophiles have been assessed for interactions with the lysine proteome, resulting in a substantial fraction remaining inaccessible to current probes. Here, to the best of our knowledge, we report the first oxidant-triggered bioconjugation platform for in-depth profiling of lysines.

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Early prognostic prediction is crucial for determining appropriate clinical interventions. Previous single-omics models had limitations, such as high contingency and overlooking complex physical conditions. In this paper, we introduced multi-omics graph knowledge representation to predict in-hospital outcomes for pneumonia patients.

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Background: Kidney fibrosis is a hallmark of chronic kidney disease (CKD) and compromises the viability of transplanted human bone marrow-derived mesenchymal stromal cells (BM-MSCs). Hence, BM-MSCs were genetically-engineered to express the anti-fibrotic and renoprotective hormone, human relaxin-2 (RLX) and green fluorescent protein (BM-MSCs-eRLX + GFP), which enabled BM-MSCs-eRLX + GFP delivery via a single intravenous injection.

Methods: BM-MSCs were lentiviral-transduced with human relaxin-2 cDNA and GFP, under a eukaryotic translation elongation factor-1α promoter (BM-MSCs-eRLX + GFP) or GFP alone (BM-MSCs-eGFP).

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  • Classic ultrasound bone imaging requires prior knowledge of sound speed, limiting resolution and complicating the process.
  • This article introduces a new method called frequency-domain full-waveform inversion (FDFWI) that uses phased array tomography for more accurate imaging of cortical bone.
  • The method was tested through simulations and experimental studies, achieving mean relative errors of 3.18%, 8.71%, and 9.36%, demonstrating its effectiveness without needing prior sound speed information.
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Inflammatory bowel disease (IBD) has high prevalence in Western counties. The high fat content in Western diets is one of the leading causes for this prevalence; however, the underlying mechanisms have not been fully defined. Here, we find that high-fat diet (HFD) induces ferroptosis of intestinal regulatory T (Treg) cells, which might be the key initiating step for the disruption of immunotolerance and the development of colitis.

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Background: Nursing students are faced with multiple challenges and have a higher probability of suffering from anxiety. The current study aims to explore the relation between empathy and anxiety, examining the mediation and moderation effects of insomnia and self-compassion, respectively.

Methods: This study employed a convenient sampling method, recruiting 1,161 nursing students (female = 923, male = 238, Mean = 18.

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The liver, a complex parenchymal organ, possesses a distinctive microcirculatory system crucial for its physiological functions. An intricate interplay exists between hepatic microcirculatory disturbance and the manifestation of pathological features in diverse liver diseases. This review updates the main characteristics of hepatic microcirculatory disturbance, including hepatic sinusoidal capillarization, narrowing of sinusoidal space, portal hypertension, and pathological angiogenesis, as well as their formation mechanisms.

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  • Ferroptosis has potential in cancer treatment, but its inducers affect both tumor and non-tumor cells, limiting their safe use as therapy.
  • Previous research showed that macrophages can engulf ferroptotic cells, but the impact of phospholipid peroxidation on macrophage function during treatment is still unclear.
  • This study found that phospholipid peroxidation in macrophages hinders their ability to eliminate ferroptotic tumor cells, promoting tumor resistance to therapy, and identified the TLR2-MARCH6 axis as a possible target for better cancer treatment strategies.
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Ultrasound Localization Microscopy (ULM) surpasses the constraints imposed by acoustic diffraction, achieving sub-wavelength resolution visualization of microvasculature through the precise localization of minute microbubbles (MBs). Nonetheless, the analysis of densely populated regions with overlapping MB point spread responses introduces significant localization errors, limiting the use of technique to low-concentration conditions. This raises a trade-off issue between localization efficiency and MB density.

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Objective: Pulmonary cavity lesion is one of the commonly seen lesions in lung caused by a variety of malignant and non-malignant diseases. Diagnosis of a cavity lesion is commonly based on accurate recognition of the typical morphological characteristics. A deep learning-based model to automatically detect, segment, and quantify the region of cavity lesion on CT scans has potential in clinical diagnosis, monitoring, and treatment efficacy assessment.

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Two-dimensional (2D) nanomaterials have attracted many researchers to explore the effect of ice control and rapid deicing due to their functional groups, large specific surface area, and excellent photothermal properties. However, the impact of size effects on ice crystal formation, growth, and photothermal performance has been rarely explored. Here, graphene oxide nanosheets (GO NSs) with controllable sizes were used as a representative of 2D nanomaterials to probe the effect of size on ice crystal regulation and rapid rewarming in cell cryopreservation.

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Oocyte cryopreservation is essential in the field of assisted reproduction, but due to the large size and poor environmental tolerance of oocytes, cell freezing technology needs further improvement. Here, a Y-shaped microfluidic chip based on 3D graphene is ingeniously devised by combining laser-induced graphene (LIG) technology and fiber etching technology. The prepared LIG/PDMS microfluidic chip can effectively suppress ice crystal size and delay ice crystal freezing time by adjusting surface hydrophobicity.

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  • Hydrolyzed royal jelly peptide (RJP) shows potential as a skincare ingredient due to its promising health benefits, specifically in reducing oxidative damage and inflammation in skin cells.* -
  • The study found that RJP significantly enhances antioxidant levels and counteracts inflammation by modulating key inflammatory markers in human dermal fibroblasts (HDFs).* -
  • RJP demonstrated superior protective effects compared to unhydrolyzed royal jelly protein, suggesting its potential in managing skin disorders related to oxidative stress and inflammation.*
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Background: Psychological stress is associated with various diseases including liver dysfunction, yet effective intervention strategies remain lacking due to the unrevealed pathogenesis mechanism.

Purpose: This study aims to explore the relevance between BMAL1-controlled circadian rhythms and lipoxygenase 15 (ALOX15)-mediated phospholipids peroxidation in psychological stress-induced liver injury, and to investigate whether hepatocyte phospholipid peroxidation signaling is involved in the hepatoprotective effects of a Chinese patent medicine, Pien Tze Huang (PZH).

Methods: Restraint stress models were established to investigate the underlying molecular mechanisms of psychological stress-induced liver injury and the hepatoprotective effects of PZH.

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  • The study compared pectin and hydrolyzed pectin coatings as treatments to reduce acrylamide in fried potato chips.
  • Both coatings effectively reduced acrylamide levels by over 90%, with hydrolyzed pectin outperforming pectin, especially at concentrations greater than 2%.
  • Hydrolyzed pectin also provided better quality characteristics for the chips, including reduced browning and increased crispness, indicating its superior potential for application compared to regular pectin.
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Hepatic lipid homeostasis is not only essential for maintaining normal cellular and systemic metabolic function but is also closely related to the steatosis of the liver. The controversy over the nomenclature of non-alcoholic fatty liver disease (NAFLD) in the past three years has once again sparked in-depth discussions on the pathogenesis of this disease and its impact on systemic metabolism. Pituitary-targeted gland axes (PTGA), an important hormone-regulating system, are indispensable in lipid homeostasis.

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Regarding neurophysiological and developmental findings, anxiety and depression are usual comorbidities of gastritis patients. However, research related to anxiety and depression among chronic gastritis patients was conducted on the disease level while ignoring symptoms. Hence, we rendered the network approach to reveal the symptoms of anxiety and depression among chronic gastritis patients.

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, commonly known as Dong Quai in Europe and America and as Dang-gui in China, is a medicinal plant widely utilized for the prevention and treatment of osteoporosis. In this study, we report the discovery of a new category of phthalide from , namely falcarinphthalides A and B ( and ), which contains two fragments, (3,8)-falcarindiol () and ()-ligustilide (). Falcarinphthalides A and B ( and ) represent two unprecedented carbon skeletons of phthalide in natural products, and their antiosteoporotic activities were evaluated.

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Background: The intricate interactions between chronic psychological stress and susceptibility to breast cancer have been recognized, yet the underlying mechanisms remain unexplored. Danzhi Xiaoyao Powder (DZXY), a traditional Chinese medicine (TCM) formula, has found clinical utility in the treatment of breast cancer. Macrophages, as the predominant immune cell population within the tumor microenvironment (TME), play a pivotal role in orchestrating tumor immunosurveillance.

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Since the discovery of tocopherols a century ago, α-tocopherol has been distinguished for its unique biological functions. In this study, we aim to elucidate the unique characteristics of α-tocopherol from a chemical perspective. Utilizing density functional theory (DFT) calculations, we evaluated the thermodynamic and kinetic properties of tocopherols, tocotrienols and their oxidation products.

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