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Seung-soo Jeong

Yonsei University · Medicine

About the Lab

Professor Seung-soo Jeong's research lab specializes in cellular and molecular neuroscience, with a focus on synaptic plasticity, ion channel function, and neurovascular regulation. The lab investigates mechanisms underlying long-term potentiation (LTP) restoration in cortical circuits after injury or during aging, explores the role of transient receptor potential channels (e.g., TRPV1) in pH sensing, and examines the modulation of neurotransmitter release via imidazoline and adrenergic receptors. Additionally, the lab studies the pathophysiological impact of bioactive lipids such as lysophosphatidylcholine on vascular calcium signaling, linking these mechanisms to neurodegenerative and cardiovascular diseases. Their work bridges synaptic physiology with translational applications in cognitive disorders and neurodegeneration.

synaptic plasticityion channelsneurotransmitter releaseLTPvascular calcium signaling

Research Overview

Papers
100
Total Citations
1,806
Papers (5y)
14
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
14total
2022
2023
2024
2025
2026
Citations per year (5y)
104total
20222023202420252026

Selected Papers

15
1
Article|39 citations·2017
Peripheral Sensory Deprivation Restores Critical-Period-like Plasticity to Adult Somatosensory Thalamocortical Inputs
Seungsoo Chung, Ji‐Hyun Jeong, Sukjin Ko, Xin Yu, Young‐Hwan Kim, John Isaac, Alan P. Koretsky
SJR Q1Cell ReportsOA

Recent work has shown that thalamocortical (TC) inputs can be plastic after the developmental critical period has closed, but the mechanism that enables re-establishment of plasticity is unclear. Here, we find that long-term potentiation (LTP) at TC inputs is transiently restored in spared barrel cortex following either a unilateral infra-orbital nerve (ION) lesion, unilateral whisker trimming, or unilateral ablation of the rodent barrel cortex. Restoration of LTP is associated with increased po

Cognitive NeuroscienceNeuroscience
2
Article|33 citations·2023
Long-lasting restoration of memory function and hippocampal synaptic plasticity by focused ultrasound in Alzheimer's disease
Chanho Kong, Ji Woong Ahn, Sohyun Kim, Ji Young Park, Young Cheol Na, Jin Woo Chang, Seungsoo Chung, Won Seok Chang
SJR Q1Brain stimulationOA

Therefore, it could be a promising treatment for neurodegenerative diseases as it remarkably increases LTP, thereby improving working memory.

Biomedical EngineeringEngineering
3
Article|17 citations·2021
(−)-Gallocatechin gallate from green tea rescues cognitive impairment through restoring hippocampal silent synapses in post-menopausal depression
Sukjin Ko, Won Seuk Jang, Ji‐Hyun Jeong, Ji Woong Ahn, Young‐Hwan Kim, Sohyun Kim, Hyeon Kyeong Chae, Seungsoo Chung
SJR Q1Scientific ReportsOA

Post-menopausal depression (PMD) is a common psychological disorder accompanied by a cognitive deficit, which is caused by a series of uncontrolled emotional disruptions by strong environmental stressors during menopause. To overcome PMD-induced cognitive deficit, Green tea has been suggested as a dietary supplement because of its ameliorating effect on cognitive dysfunction induced by normal aging or neurodegenerative syndromes; however, its clinical use to improve PMD-accompanied cognitive def

NeurologyNeuroscience
4
Article|15 citations·2011
Intracellular acidification evoked by moderate extracellular acidosis attenuates transient receptor potential V1 (TRPV1) channel activity in rat dorsal root ganglion neurons
Seungsoo Chung, Young Hwan Kim, Jin‐Young Koh, Taick-Sang Nam, Duck Sun Ahn
SJR Q2Experimental PhysiologyOA

Transient receptor potential V1 (TRPV1) has been suggested to play an important role in detecting decreases in extracellular pH (pH(o)). Results from recent in vivo studies, however, have suggested that TRPV1 channels play less of a role in sensing a moderately acidic pH(o) (6.0 < pH < 7.0) than predicted from the in vitro experiments. A clear explanation for this discrepancy between the in vitro and in vivo data has not yet been provided. We report here that intracellular acidification induced

Sensory SystemsNeuroscience
5
Article|15 citations·2011
Modulation of N-type Ca2+ currents by moxonidine via imidazoline I1 receptor activation in rat superior cervical ganglion neurons
Young‐Hwan Kim, Taick‐Sang Nam, Duck Sun Ahn, Seungsoo Chung
SJR Q2Biochemical and Biophysical Research CommunicationsOA
Endocrine and Autonomic SystemsNeuroscience
6
Article|13 citations·2023
Cav3.2 T-Type Calcium Channel Mediates Acute Itch and Contributes to Chronic Itch and Inflammation in Experimental Atopic Dermatitis
Ji‐Woong Ahn, Song‐Ee Kim, Do Young ‍Kim, Inhye Jeong, Sohyun Kim, Seungsoo Chung, Sang Eun Lee
SJR Q1Journal of Investigative DermatologyOA
DermatologyMedicine
7
Article|13 citations·2010
Experimental Physiology –Research Paper: Modulation of N‐type calcium currents by presynaptic imidazoline receptor activation in rat superior cervical ganglion neurons
Seungsoo Chung, Duck‐Sun Ahn, Young‐Hwan Kim, Yoon‐Suk Kim, Ji‐Hyun Joeng, Taick‐Sang Nam
SJR Q2Experimental PhysiologyOA

Presynaptic imidazoline receptors (R(i-pre)) are found in the sympathetic axon terminals of animal and human cardiovascular systems, and they regulate blood pressure by modulating the release of peripheral noradrenaline (NA). The cellular mechanism of R(i-pre)-induced inhibition of NA release is unknown. We, therefore, investigated the effect of R(i-pre) activation on voltage-dependent Ca(2+) channels in rat superior cervical ganglion (SCG) neurons, using the conventional whole-cell patch-clamp

Cellular and Molecular NeuroscienceNeuroscience
8
Article|13 citations·2021
Stem cell restores thalamocortical plasticity to rescue cognitive deficit in neonatal intraventricular hemorrhage
So Yoon Ahn, Hyesoo Jie, Won‐Beom Jung, Ji‐Hyun Jeong, Sukjin Ko, Geun Ho Im, Won Soon Park, Jung Hee Lee, Yun Sil Chang, Seungsoo Chung
SJR Q1Experimental NeurologyOA
Pediatrics, Perinatology and Child HealthMedicine
9
Article|10 citations·2008
Lysophosphatidylcholine Increases Ca2+Current via Activation of Protein Kinase C in Rabbit Portal Vein Smooth Muscle Cells
Seungsoo Jung, Young‐Ho Lee, Sung‐Sik Han, Youngwhan Kim, Taiksang Nam, Ducksun Ahn
SJR Q3Korean Journal of Physiology and PharmacologyOA

Lysophosphatidylcholine (LPC), a metabolite of membrane phospholipids by phospholipase A(2), has been considered responsible for the development of abnormal vascular reactivity during atherosclerosis. Ca(2+) influx was shown to be augmented in atherosclerotic artery which might be responsible for abnormal vascular reactivity. However, the mechanism underlying Ca(2+) influx change in atherosclerotic artery remains undetermined. The purpose of the present study was to examine the effects of LPC on

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|10 citations·2020
Nanoelectrode-mediated single neuron activation
Juyoung Kwon, Sukjin Ko, Jae-Jun Lee, Jukwan Na, Jaesuk Sung, Hyo‐Jung Lee, Seonghyeon Lee, Seungsoo Chung, Heon‐Jin Choi
SJR Q1NanoscaleOA

Elucidating cellular dynamics at the level of a single neuron and its associated role within neuronal circuits is essential for interpreting the complex nature of the brain. To investigate the operation of neural activity within its network, it is necessary to precisely manipulate the activation of each neuron and verify its propagation path via the synaptic connection. In this study, by exploiting the intrinsic physical and electrical advantages of a nanoelectrode, a vertical nanowire multi ele

Cellular and Molecular NeuroscienceNeuroscience
11
Article|9 citations·2018
Physical exercise enhances adult cortical plasticity in a neonatal rat model of hypoxic-ischemic injury: Evidence from BOLD-fMRI and electrophysiological recordings
Sun Young Chae, Jun Ho Jang, Geun Ho Im, Ji‐Hyun Jeong, Won‐Beom Jung, Sukjin Ko, Hyesoo Jie, Ji Hye Kim, Yun Sil Chang, Seungsoo Chung, Ki Soo Kim, Jung Hee Lee
SJR Q1NeuroImageOA
Pediatrics, Perinatology and Child HealthMedicine
12
Article|8 citations·2016
Agmatine suppresses peripheral sympathetic tone by inhibiting N-type Ca2+ channel activity via imidazoline I2 receptor activation
Young‐Hwan Kim, Ji‐Hyun Jeong, Duck Sun Ahn, Seungsoo Chung
SJR Q2Biochemical and Biophysical Research CommunicationsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|8 citations·2022
Modified (−)-gallocatechin gallate-enriched green tea extract rescues age-related cognitive deficits by restoring hippocampal synaptic plasticity
Ji‐Woong Ahn, Sohyun Kim, Sukjin Ko, Young‐Hwan Kim, Ji‐Hyun Jeong, Seungsoo Chung
SJR Q2Biochemistry and Biophysics ReportsOA

<i>Aging</i> leads to cognitive impairments characterized by reduced hippocampal functions that are associated with impairment of long-term potentiation of CA1 synapses. <i>Here, we assessed the safety and efficacy of</i> modified (-)-gallocatechin gallate (GCG)-enriched green tea extract (HTP-GTE) <i>in ameliorating the cognitive dysfunctions in late middle-aged murine model.</i> We developed a novel HTP-GTE that was enriched with GCG via epimerization that involved heating. We compared the eff

Pathology and Forensic MedicineMedicine
14
Article|6 citations·2014
Transient Receptor Potential C4/5 Like Channel Is Involved in Stretch-Induced Spontaneous Uterine Contraction of Pregnant Rat
Seungsoo Chung, Young‐Hwan Kim, Ji‐Hyun Joeng, Duck-Sun Ahn
SJR Q3Korean Journal of Physiology and PharmacologyOA

Spontaneous myometrial contraction (SMC) in pregnant uterus is greatly related with gestational age and growing in frequency and amplitude toward the end of gestation to initiate labor. But, an accurate mechanism has not been elucidated. In human and rat uterus, all TRPCs except TRPC2 are expressed in pregnant myometrium and among them, TRPC4 are predominant throughout gestation, suggesting a possible role in regulation of SMC. Therefore, we investigated whether the TRP channel may be involved S

Sensory SystemsNeuroscience
15
Article|5 citations·2014
Protease-Activated Receptor 2 Activation Inhibits N-Type Ca2+ Currents in Rat Peripheral Sympathetic Neurons
Young‐Hwan Kim, Duck-Sun Ahn, Myeong Ok Kim, Ji‐Hyun Joeng, Seungsoo Chung
SJR Q1Molecules and CellsOA

The protease-activated receptor (PAR)-2 is highly expressed in endothelial cells and vascular smooth muscle cells. It plays a crucial role in regulating blood pressure via the modulation of peripheral vascular tone. Although several mechanisms have been suggested to explain PAR-2-induced hypotension, the precise mechanism remains to be elucidated. To investigate this possibility, we investigated the effects of PAR-2 activation on N-type Ca(2+) currents (I(Ca-N)) in isolated neurons of the celiac

HematologyMedicine

Research Areas

Cellular and Molecular NeuroscienceMolecular BiologyPhysiologyPulmonary and Respiratory MedicineNeurologyEpidemiology

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