Publications by authors named "Bohyun Yang"

Ethnopharmacological Relevance: Saikosaponin C (SSc), a traditional Chinese herbal medicine, is a triterpene saponin and an active compound extracted from Radix Bupleuri. It has been demonstrated to have neuroprotective effects in cellular models of neurodegenerative diseases; however, its precise mechanism of action in alleviating tau pathology in Alzheimer's disease (AD), as well as its potential to improve cognitive deficits in animal models, has not yet been elucidated.

Aim Of The Study: In this study, we investigated the in vivo therapeutic effects of SSc on a human tau (hTau) mouse model expressing normal hTau isoforms in terms of tau-related pathology (tauopathy) and the underlying mechanisms.

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Fetal microglia that are particularly sensitive cells to the changes in utero environment might be involved in the sex-biased onset and vulnerability to psychiatric disorders. To address this issue, we administered a 50 µg/kg dexamethasone (DEX) to dams subcutaneously from gestational days 16 to 18 and a series of behavioral assessments were performed in the offspring. Prenatal exposure to dexamethasone (PN-DEX) induced schizophrenia (SCZ)-relevant behaviors in male mice and depressive-like behavior in female mice.

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Although fluoxetine (FLX) is a commonly used drug in psychiatric disorders, such as major depressive disorder, anxiety disorder, panic disorder, and obsessive-compulsive disorder, the mechanism by which FLX exerts its therapeutic effect is not completely understood. In this study, we aimed to determine the possible mechanism by which FLX focuses on microglial phagocytosis. FLX reduced phagocytic function in BV2 cells and increased REV-ERBα without affecting other microglia-related genes, such as inflammation and phagocytosis.

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Acidic environment evoked by stroke, traumatic brain injury, and Alzheimer's disease may change the functional properties of microglia. Nevertheless, the underlying mechanisms of functional changes in microglia remain unclear. In this study, we found that acidic stimuli (pH 6.

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Atopic dermatitis (AD) and mood disorder comorbidities are typical, but the exact mechanism underlying their interplay has not been clarified. In this study, we aimed to identify the possible mechanisms of anxiety/depressive-like behaviors observed in AD, focusing on microglia. AD was induced by Dermatophagoides farinae body extract (Dfb) in NC/Nga mice and anxiety/depressive-like behaviors were analyzed by behavioral assessments such as open field test (OFT), tail suspension test (TST), sucrose preference test (SPT), and social interaction.

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Brain inflammation is one of hypotheses explaining complex pathomechanisms of depression. Angiotensin II (ANGII), which is associated with hypertension, also induces brain inflammation. However, there is no animal study showing the direct relationship between ANGII and depression.

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At present, therapeutic options available for treating schizophrenia are limited to monoamine-based antipsychotic drugs. Recent genome wide association study (GWAS) indicated a close relationship between immune system and schizophrenia. To leverage the GWAS finding for therapeutic strategy, we conducted a mechanism and effect study on application of human umbilical cord-derived mesenchymal stem cells (hUC-MSC) with potent immune-modulatory effect in an animal model useful for the study of schizophrenia.

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Synopsis of recent research by authors named "Bohyun Yang"

  • - Bohyun Yang's research primarily focuses on the role of microglia in neuropsychiatric disorders, exploring how various factors such as maternal exposure to dexamethasone and environmental conditions can influence microglial function and behavior in offspring, particularly related to schizophrenia and anxiety disorders.
  • - Yang's studies reveal that prenatal exposure to dexamethasone can trigger sex-dependent behaviors linked to schizophrenia in male mice and depressive behaviors in females, emphasizing the importance of in utero environments on mental health outcomes.
  • - Recent findings also illustrate how pharmacological agents like fluoxetine can alter microglial phagocytosis and how chronic conditions such as an acidic environment or angiotensin II infusion may impair microglial function, thereby contributing to anxiety and depressive-like behaviors.