Ji-Young Lee
Seoul National University · Medicine
About the Lab
Professor Ji-Young Lee's research lab focuses on the neurobiological and genetic underpinnings of Parkinson’s disease, with a particular emphasis on the role of neurotransmitter systems—dopamine, glutamate, and serotonin—in motor complications and neuropsychiatric symptoms. The lab investigates genetic susceptibility to levodopa-induced dyskinesias, impulse control disorders, and visual hallucinations, integrating neuroimaging, molecular genetics, and clinical phenotyping. Their work also explores the interplay between tumor suppressor pathways and microRNA regulation in cancer, highlighting translational mechanisms in both neurodegeneration and oncogenesis.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15We aimed to assess whether allelic variants of dopamine receptor, glutamate receptor, and serotonin transporter genes are associated with the appearance of impulse control and related behaviors (ICRB) in Parkinson's disease (PD) with dopamine replacement therapy (DRT). We surveyed ICRB in consecutive Korean patients with PD who were treated with stable DRT using modified Minnesota Impulsive Disorders Interview over a period of 4 months. In the 404 patients who completed the interview and the 559
Defective visual information processing from both central and peripheral pathways is one of the suggested mechanisms of visual hallucination in Parkinson's disease (PD). To investigate the role of retinal thinning for visual hallucination in PD, we conducted a case-control study using spectral domain optical coherence tomography. We examined a representative sample of 61 patients with PD and 30 healthy controls who had no history of ophthalmic diseases. General ophthalmologic examinations and op
To examine whether there is a differential genetic susceptibility in the diphasic and peak-dose forms of levodopa-induced dyskinesias (LID) in patients with Parkinson's disease (PD). The study cohort comprised 503 unrelated Korean PD patients who were treated with levodopa and had a disease duration of at least 5 years. The presence of LID was identified during a routine follow-up and special care was taken to separate the two distinct forms of LID into diphasic and peak-dose dyskinesias (PDSK).
Visual symptoms are a common feature in patients with Parkinson's disease (PD), and retinal dopamine loss and dysfunctions in foveal vision have been described in PD patients. Because visual hallucination (VH) is a specific feature of PD which is differentiated from other parkinsonian disorders, defective visual information processing from both the central and peripheral pathways is suggested to be the pathophysiological mechanisms of VH in PD. Decreased visual acuity as well as impaired contras
OBJECTIVE: To explore serotonergic innervation in the basal ganglia in relation to levodopa-induced dyskinesia in patients with Parkinson disease (PD). METHODS: A total of 30 patients with PD without dementia or depression were divided into 3 matched groups (dyskinetic, nondyskinetic, and drug-naive) for this study. We acquired 2 PET scans and 3T MRI for each patient using [(11)C]-3-amino-4-(2-dimethylaminomethylphenylsulfanyl)-benzonitrile ((11)C-DASB) and N-(3-[(18)F]fluoropropyl)-2-carbometho
Tristetraprolin (TTP) and let-7 microRNA exhibit suppressive effects on cell growth through down-regulation of oncogenes. Both TTP and let-7 are often repressed in human cancers, thereby promoting oncogenesis by derepressing their target genes. However, the precise mechanism of this repression is unknown. We here demonstrate that p53 stimulated by the DNA-damaging agent doxorubicin (DOX) induced the expression of TTP in cancer cells. TTP in turn increased let-7 levels through down-regulation of
Abstract Objectives We investigated retinal change and its relationship with neurodegeneration markers in a prodromal Parkinson cohort. Methods A total of 30 patients with idiopathic rapid eye movement sleep behavior disorder were recruited. Participants underwent olfactory testing, macular optical coherence tomography, microperimetry, contrast sensitivity test, and brain N ‐(3‐[ 18 F]fluoropropyl)‐2‐carbomethoxy‐3‐(4‐iodophenyl) nortropane positron emission tomography. We measured the ganglion
Research Areas
Dive deeper into Ji-Young Lee's research on Nubint
Open this lab's papers in the app to read with AI, summarize, and cite in your writing.