Publications by authors named "Hongyue Liang"

Article Synopsis
  • The study investigates pyroptosis, a form of programmed cell death, in the context of status epilepticus (SE), a condition marked by prolonged seizures, and how it relates to neurodegeneration.
  • Researchers induced SE in mice using pilocarpine and found increased levels of inflammatory markers and TRPM7 expression, identifying TRPM7 as a key player in neuronal damage and hyperexcitability.
  • The findings suggest that targeting TRPM7 and NLRP3 could be a potential treatment strategy for SE, as inhibiting these pathways alleviated neuronal hyperexcitability and pyroptosis.
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() is a major human pathogen and can cause a wide range of diseases, including pneumonia, osteomyelitis, skin and soft tissue infections (SSTIs), endocarditis, mastitis, bacteremia, and so forth. Rats have been widely used in the field of infectious diseases due to their unique advantages, and the models of infections have played a pivotal role in elucidating their pathogenic mechanisms and the effectiveness of therapeutic agents. This review outlined the current application of rat models in infections and future prospects for rat models in infectious diseases caused by .

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Micronutrient deficiencies and excesses are closely related to developing and treating depression. Traditional and effective antidepressants include tricyclic antidepressants (TCAs), selective serotonin reuptake inhibitors (SSRIs), and lithium. There is no consensus on the fluctuation of zinc (Zn), magnesium (Mg), calcium (Ca), copper (Cu), iron (Fe), and manganese (Mn) ion levels in depressed individuals before and after therapy.

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Soil phosphorus accumulation resulting in a high risk of phosphorus pollution is due to high multiple vegetable cropping indexes and excessive fertilizer input in protected fields. Therefore, this study explored the bioavailability of soil-accumulated phosphorus to improve fertilization and reduce the risk of soil phosphorus contamination in protected fields. A field trial was performed in Yanbian Prefecture, China to study the phosphorus bioavailability after continuous spinach planting without phosphate fertilizer applications.

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The most severe form of epilepsy, status epilepticus (SE), causes brain damage and results in the development of recurring seizures. Currently, the management of SE remains a clinical challenge because patients do not respond adequately to conventional treatments. Evidence suggests that neural cell death worsens the occurrence and progression of SE.

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Introduction: Ca-activated Cl channel TMEM16A is expressed in endothelial cells, and contributes to many diseases such as hypertension, blood-brain barrier dysfunction, and pulmonary hypertension. It remains unclear whether TMEM16A regulates endothelial angiogenesis, which participates in many physiological and pathological processes. Cholesterol regulates many ion channels including TMEM16A, and high cholesterol levels contribute to endothelial dysfunction.

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The transient receptor potential melastatin-subfamily member 7 (TRPM7) is a ubiquitously expressed protein that contains both an ion channel and an active kinase. TRPM7 has involved in a variety of cellular functions and critically participates in various diseases mainly including cancer and neurodegenerative disorders. However, the theme trends and knowledge structures for TRPM7 have not yet been studied bibliometrically.

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Synopsis of recent research by authors named "Hongyue Liang"

  • - Hongyue Liang's recent research focuses on diverse areas of health and environmental science, including infectious diseases, mental health, soil contamination, epilepsy, and ion channel biology.
  • - Liang highlights the application of rat models to study infectious diseases, emphasizing their importance in understanding pathogen mechanisms and treatment efficacy, while also exploring micronutrient fluctuations in depressive disorders through a systematic review.
  • - Findings from Liang's work reveal critical insights into soil phosphorus bioavailability impacts on agriculture, the mechanisms of cell death in severe epilepsy, and the regulatory role of cholesterol on ion channels, thereby contributing to the advancement of therapeutic strategies and environmental management.