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result(s) for
"Lee, Huiyoung"
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Synthesis of functional chalcogenide materials for memory/sensing devices and their integration into artificial sensory systems
by
Eom, Taeyong
,
Lee, Won-Kyu
,
Kim, Myung-Gil
in
Artificial intelligence
,
artificial sensory system
,
Chalcogenides
2026
With distinctive phase-change and switching properties, chalcogenide materials have emerged as critical components in various cutting-edge technologies. This review attempts to provide an overview of chalcogenide materials, from their fundamental properties to their diverse applications with focus on memory and sensing technologies, which are indispensable components in human-like electronic artificial sensory systems. After reviewing the synthesis and application of chalcogenide materials with respect to dimensionality, we focus on the key advances in (1) memory devices, including phase-change memory (PCM), ovonic threshold switching (OTS) selectors, and selector-only memory (SOM), and (2) sensing devices, including optical sensors, gas sensors, and neuromorphic sensors. Emphasis will be given on how chalcogenide materials can be integrated into next-generation systems, such as wearable platforms, artificial intelligence, and neuromorphic/quantum computing systems, to meet the growing demands for high-performance memory and multi-functional sensing. We also provide an overview of emerging research trends as well as a comprehensive perspective on the current status of research on chalcogenides. Finally, we attempt to provide insights into how chalcogenides can continue to drive technological breakthroughs in both memory and sensing applications while shaping the future landscape of intelligent systems, smart sensing platforms, and sustainable technology development.
Journal Article
Single intramuscular injection of diclofenac sodium in febrile pediatric patients
by
Lee, JunYeol
,
Lee, HuiYoung
,
Ohk, TaekGeun
in
Anti-Inflammatory Agents, Non-Steroidal - administration & dosage
,
Anti-Inflammatory Agents, Non-Steroidal - adverse effects
,
Anti-Inflammatory Agents, Non-Steroidal - therapeutic use
2015
There are few reports on the effectiveness and safety of intramuscular (IM) antipyretic injections in pediatric patients. This study reports the efficacy and adverse effects of a single IM injection of diclofenac sodium in pediatric patients.
This was an observational study in which records of febrile pediatric patients presenting to the emergency department were analyzed. Subjects included pediatric patients presenting to the emergency department with a temperature of 38°C or higher. Infants under 12 months of age were excluded. Patients were excluded if they received antipyretics within 4 h prior to presenting to the emergency department. Body temperature was measured at 30-60 min intervals following diclofenac sodium injections. Fever alleviation was defined as the temperature decline to 1°C below the temperature at presentation. Patients who received diclofenac sodium twice or more on different days were observed for side effects such as allergic reaction. Records from the emergency department and outpatient clinics were analyzed.
The dose of diclofenac sodium injected was approximately 2 mg/kg. The average time elapsed until antipyresis was 69.1 ± 23.8 min. The average temperature reduction after 1 h was 1.1 ± 0.6°C. The average proportion of temperature change after 1 h was 40.6 ± 22.2%. During the period at the emergency department, there were no reported serious side effects.
A single dose of diclofenac sodium provided effective antipyresis in pediatric patients. Serious side effects were not observed.
Journal Article
Comprehensive characterization of maternal, fetal, and neonatal microbiomes supports prenatal colonization of the gastrointestinal tract
2023
In this study, we aimed to comprehensively characterize the microbiomes of various samples from pregnant women and their neonates, and to explore the similarities and associations between mother-neonate pairs, sample collection sites, and obstetrical factors. We collected samples from vaginal discharge and amniotic fluid in pregnant women and umbilical cord blood, gastric liquid, and meconium from neonates. We identified 19,597,239 bacterial sequences from 641 samples of 141 pregnant women and 178 neonates. By applying rigorous filtering criteria to remove contaminants, we found evidence of microbial colonization in traditionally considered sterile intrauterine environments and the fetal gastrointestinal track. The microbiome distribution was strongly grouped by sample collection site, rather than the mother-neonate pairs. The distinct bacterial composition in meconium, the first stool passed by newborns, supports that microbial colonization occurs during normal pregnancy. The microbiome in neonatal gastric liquid was similar, but not identical, to that in maternal amnionic fluid, as expected since fetuses swallow amnionic fluid in utero and their urine returns to the fluid under normal physiological conditions. Establishing a microbiome library from various samples formed only during pregnancy is crucial for understanding human development and identifying microbiome modifications in obstetrical complications.
Journal Article
Fucoxanthin attenuates carbonyl stress and neuroinflammation by modulating MGO/RAGE/NF-κB axis in Aβ-induced models
by
Ho, Chi-Tang
,
Kwon, Huiyoung
,
Jun, Mira
in
Advanced glycosylation end products
,
Alzheimer's disease
,
amyloid beta
2026
Amyloid-β (Aβ) accumulation is a central pathological feature of Alzheimer's disease (AD) and a major driver of disease progression. Recent evidence suggests that carbonyl stress associated with Aβ plays a critical role in AD pathology by promoting neuroinflammation and neuronal damage. In particular, methylglyoxal (MGO), a highly reactive carbonyl compound, contributes to activation of the receptor for advanced glycation end products (RAGE) and NF-κB-dependent inflammatory signaling, leading to synaptic dysfunction. The present study investigated whether fucoxanthin, a marine-derived carotenoid, attenuates Aβ-induced carbonyl stress and inflammatory responses associated with MGO/RAGE/NF-κB-related signaling.
PC12 neuronal cells were pretreated with fucoxanthin (0.1-5 μM) and exposed to aggregated Aβ
(10 μM) to assess its effects on carbonyl stress-associated inflammatory signaling. In parallel, an Aβ
intracerebroventricular injection mouse model was used to validate the
findings. Mice were orally administered fucoxanthin (100 or 200 mg/kg/day) for 15 days and assessed for serum MGO levels, hippocampal RAGE/NF-κB activation, microglial activation, and synaptic marker expression.
Fucoxanthin significantly reduced the expression of pro-inflammatory mediators, including COX-2, iNOS, IL-1β, and TNF-α in Aβ-exposed neuronal cells. This anti-inflammatory effect was associated with inhibition of NF-κB nuclear translocation and downregulation of RAGE expression. Consistent with these
findings, fucoxanthin treatment in Aβ
-injected mice alleviated systemic and hippocampal carbonyl stress, as evidenced by decreased serum MGO levels and suppression of hippocampal RAGE/NF-κB activation. These effects were accompanied by reduced microglial activation (Iba-1) across hippocampal subregions and significant restoration of both presynaptic and postsynaptic markers, indicating preservation of synaptic integrity.
These findings demonstrate the neuroprotective role of fucoxanthin in mitigating Aβ-induced carbonyl stress by targeting the MGO/RAGE/NF-κB axis, thereby suppressing neuroinflammation and preserving synaptic integrity in Aβ-induced cellular and mouse models. Fucoxanthin emerges as a promising pharmacological candidate targeting carbonyl stress-associated mechanisms in AD.
Journal Article
Assessing the Clinical Efficacy of Therapeutic Drug Monitoring for Risperidone and Paliperidone in Patients with Schizophrenia: Insights from a Clinical Data Warehouse
by
Shin, Wonsuk
,
Lee, Dong Hyeon
,
Jung, Huiyoung
in
Anticholinergics
,
Antipsychotics
,
clinical data warehouse
2024
This study investigated the usage patterns and impact of therapeutic drug monitoring (TDM) for risperidone and paliperidone in patients diagnosed with schizophrenia, utilizing retrospective real-world data sourced from a single center’s Clinical Data Warehouse. Our study cohort comprised patients diagnosed with schizophrenia undergoing treatment with either risperidone or paliperidone. Data on demographic characteristics, comorbidities, medication utilization, and clinical outcomes were collected. Patients were categorized into two groups: those undergoing TDM and those not undergoing TDM. Additionally, within the TDM group, patients were further stratified based on their risperidone and paliperidone concentrations relative to the reference range. The findings revealed that patients in the TDM group received higher risperidone and paliperidone doses (320 mg/day and 252 mg/day, p = 0.0045) compared to their non-TDM counterparts. Nevertheless, no significant disparities were observed in hospitalization rates, duration of hospital stays, or compliance between the two groups (p = 0.9082, 0.5861, 0.7516, respectively). Subgroup analysis within the TDM cohort exhibited no notable distinctions in clinical outcomes between patients with concentrations within or surpassing the reference range. Despite the possibility of a selection bias in assigning patients to the groups, this study provides a comprehensive analysis of TDM utilization and its ramifications on schizophrenia treatment outcomes.
Journal Article
Hydrangea macrophylla and Thunberginol C Attenuate Stress-Induced Anxiety in Mice
2022
Stress is an important neurological input for successful life. However, chronic stress and stress hormones could be a cause of various neurological disorders including anxiety disorders. Therefore, there have been many efforts to find effective materials for curing stress-induced neurological disorders. In this study, we examined the effect of Hydrangea macrophylla (HM) on corticosterone-induced neurotoxicity, stress-induced anxiety in mice and suggested a possible active ingredient of HM. HM protected cortical neurons against neurotoxicity of corticosterone (CORT), a stress hormone. HM also blocked CORT-induced hippocampal synaptic deficit via regulating Akt signaling. Oral administration of HM improved chronic restraint stress-induced anxiety in Elevated Plus maze test along with reduction of plasma corticosterone and TNF-α levels. Moreover, HM reduced stress-induced neuroinflammation and oxidative stress. Thunberginol C, an active ingredient of HM, also prevented CORT-induced neuronal cell death and restraint stress-induced anxiety. Moreover, thunberginol C reduced plasma TNF-α level and neuroinflammation and oxidative stress. Collectively, HM could be a good candidate for preventing stress-induced neurological disorders and thunberginol C may be an active ingredient of HM for this purpose.
Journal Article
Rubrofusarin Attenuates Chronic Restraint Stress-Induced Depressive Symptoms
2020
The aim of this study was to examine whether rubrofusarin, an active ingredient of the Cassia species, has an antidepressive effect in chronic restraint stress (CRS) mouse model. Although acute treatment using rubrofusarin failed, chronic treatment using rubrofusarin ameliorated CRS-induced depressive symptoms. Rubrofusarin treatment significantly reduced the number of Fluoro-Jade B-positive cells and caspase-3 activation within the hippocampus of CRS-treated mice. Moreover, rubrofusarin treatment significantly increased the number of newborn neurons in the hippocampus of CRS-treated mice. CRS induced activation of glycogen synthase kinase-3β and regulated development and DNA damage responses, and reductions in the extracellular-signal-regulated kinase pathway activity were also reversed by rubrofusarin treatment. Microglial activation and inflammasome markers, including nod-like receptor family pyrin domain containing 3 and adaptor protein apoptosis-associated speck-like protein containing CARD, which were induced by CRS, were ameliorated by rubrofusarin. Synaptic plasticity dysfunction within the hippocampus was also rescued by rubrofusarin treatment. Within in vitro experiments, rubrofusarin blocked corticosterone-induced long-term potentiation impairments. These were blocked by LY294002, which is an Akt inhibitor. Finally, we found that the antidepressant effects of rubrofusarin were blocked by an intracerebroventricular injection of LY294002. These results suggest that rubrofusarin ameliorated CRS-induced depressive symptoms through PI3K/Akt signaling.
Journal Article
REDD1 Is Involved in Amyloid β-Induced Synaptic Dysfunction and Memory Impairment
by
Ryu, Jong Hoon
,
Cho, Jong Hyun
,
Choi, Ji Woong
in
Alzheimer Disease - genetics
,
Alzheimer Disease - metabolism
,
Alzheimer Disease - pathology
2020
Alzheimer’s disease (AD) is a neurodegenerative disease characterized by neurological dysfunction, including memory impairment, attributed to the accumulation of amyloid β (Aβ) in the brain. Although several studies reported possible mechanisms involved in Aβ pathology, much remains unknown. Previous findings suggested that a protein regulated in development and DNA damage response 1 (REDD1), a stress-coping regulator, is an Aβ-responsive gene involved in Aβ cytotoxicity. However, we still do not know how Aβ increases the level of REDD1 and whether REDD1 mediates Aβ-induced synaptic dysfunction. To elucidate this, we examined the effect of Aβ on REDD1-expression using acute hippocampal slices from mice, and the effect of REDD1 short hairpin RNA (shRNA) on Aβ-induced synaptic dysfunction. Lastly, we observed the effect of REDD1 shRNA on memory deficit in an AD-like mouse model. Through the experiments, we found that Aβ-incubated acute hippocampal slices showed increased REDD1 levels. Moreover, Aβ injection into the lateral ventricle increased REDD1 levels in the hippocampus. Anisomycin, but not actinomycin D, blocked Aβ-induced increase in REDD1 levels in the acute hippocampal slices, suggesting that Aβ may increase REDD1 translation rather than transcription. Aβ activated Fyn/ERK/S6 cascade, and inhibitors for Fyn/ERK/S6 or mGluR5 blocked Aβ-induced REDD1 upregulation. REDD1 inducer, a transcriptional activator, and Aβ blocked synaptic plasticity in the acute hippocampal slices. REDD1 inducer inhibited mTOR/Akt signaling. REDD1 shRNA blocked Aβ-induced synaptic deficits. REDD1 shRNA also blocked Aβ-induced memory deficits in passive-avoidance and object-recognition tests. Collectively, these results demonstrate that REDD1 participates in Aβ pathology and could be a target for AD therapy.
Journal Article
Fluoxetine Inhibits Natural Decay of Long-Term Memory via Akt/GSK-3β Signaling
2018
Understanding the mechanisms underlying the natural decay of long-term memory can help us find means of extending the duration of long-term memory. However, the neurobiological processes involved in the decay of long-term memory are poorly understood. In the present study, we examined the effect of acute and chronic treatment of fluoxetine on natural decay of long-term memory and the possible mechanism. Late administration of fluoxetine prolonged the persistence of long-term memory in mice, as demonstrated by object location recognition and Barnes maze tests. Fluoxetine altered Akt/glycogen synthase kinase-3β (GSK-3β)/β-catenin signaling in the hippocampus. Late short- and long-term pharmacological inhibition of GSK-3β mimicked the effect of fluoxetine on memory persistence. Pharmacological inhibition of Akt blocked the effect of fluoxetine on memory persistence. Finally, late infusion of fluoxetine increased hippocampal long-term potentiation (LTP) and pharmacological inhibition of GSK-3β blocked the natural decline in LTP. These results demonstrate that GSK-3β might be a key molecule in memory decay process, and fluoxetine extends the period of long-term memory maintenance via Akt/GSK-3β signaling.
Journal Article