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Mi‐Yoon Chang

Hanyang University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Mi-Yoon Chang's research lab focuses on neural development, neurodegenerative diseases, and stem cell-based therapies, with a particular emphasis on Parkinson’s disease and dopaminergic neuron regeneration. The lab investigates human pluripotent stem cells—both embryonic and induced pluripotent stem cells—to understand and direct the differentiation of midbrain dopamine neurons for potential cell replacement therapies. Additionally, the lab explores glial cell contributions to neuroinflammation and identifies novel therapeutic targets, such as SGK1, to modulate glial reactivity in neurodegenerative conditions. The use of brain organoids and in vitro models further enables the study of human-specific neurodevelopmental and pathological processes.

Parkinson’s diseasedopamine neuronsstem cell therapyglial inflammationbrain organoids

Research Overview

Papers
73
Total Citations
5,074
Papers (5y)
17
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2022
2023
2024
2025
2026
Citations per year (5y)
249total
20222023202420252026

Selected Papers

15
1
Article|1,792 citations·2009
Generation of Human Induced Pluripotent Stem Cells by Direct Delivery of Reprogramming Proteins
Dohoon Kim, Chun‐Hyung Kim, Jung-Il Moon, Young-Gie Chung, Mi‐Yoon Chang, Baek‐Soo Han, Sanghyeok Ko, Eungi Yang, Kwang Yul, Robert Lanza, Kwang‐Soo Kim
SJR Q1Cell stem cellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|269 citations·2005
In vitroandin vivoanalyses of human embryonic stem cell‐derived dopamine neurons
Chang‐Hwan Park, Yang‐Ki Minn, Ji‐Yeon Lee, Dong Ho Choi, Mi‐Yoon Chang, Jaewon Shim, Ji‐Yun Ko, Koh H, Min Jeong Kang, Jin Sun Kang, Duck‐Joo Rhie, Yong‐Sung Lee
SJR Q1Journal of NeurochemistryOA

Human embryonic stem (hES) cells, due to their capacity of multipotency and self-renewal, may serve as a valuable experimental tool for human developmental biology and may provide an unlimited cell source for cell replacement therapy. The purpose of this study was to assess the developmental potential of hES cells to replace the selectively lost midbrain dopamine (DA) neurons in Parkinson's disease. Here, we report the development of an in vitro differentiation protocol to derive an enriched pop

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|233 citations·2011
Protein-based human iPS cells efficiently generate functional dopamine neurons and can treat a rat model of Parkinson disease
Yong‐Hee Rhee, Ji‐Yun Ko, Mi‐Yoon Chang, Sang‐Hoon Yi, Dohoon Kim, Chun‐Hyung Kim, Jaewon Shim, A-Young Jo, Byung‐Woo Kim, Hyunsu Lee, Suk‐Ho Lee, Wonhee Suh
SJR Q1Journal of Clinical InvestigationOA

Parkinson disease (PD) involves the selective loss of midbrain dopamine (mDA) neurons and is a possible target disease for stem cell-based therapy. Human induced pluripotent stem cells (hiPSCs) are a potentially unlimited source of patient-specific cells for transplantation. However, it is critical to evaluate the safety of hiPSCs generated by different reprogramming methods. Here, we compared multiple hiPSC lines derived by virus- and protein-based reprogramming to human ES cells (hESCs). Neuro

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|205 citations·2009
Wnt1-lmx1a Forms a Novel Autoregulatory Loop and Controls Midbrain Dopaminergic Differentiation Synergistically with the SHH-FoxA2 Pathway
Sangmi Chung, Amanda Leung, Baek-Soo Han, Mi‐Yoon Chang, Jung-Il Moon, Chun-Hyung Kim, Sunghoi Hong, Jan Pruszak, Ole Isacson, Kwang Soo Kim
SJR Q1Cell stem cellOA
Cellular and Molecular NeuroscienceNeuroscience
5
Article|182 citations·2004
Lithium selectively increases neuronal differentiation of hippocampal neural progenitor cells bothin vitroandin vivo
Jin Seok Kim, Mi‐Yoon Chang, In Tag Yu, Ju Hee Kim, Sang‐Hun Lee, Yong‐Sung Lee, Hyeon Son
SJR Q1Journal of Neurochemistry

Lithium has been demonstrated to increase neurogenesis in the dentate gyrus of rodent hippocampus. The present study was undertaken to investigate the effects of lithium on the proliferation and differentiation of rat neural progenitor cells in hippocampus both in vitro and in vivo. Lithium chloride (1-3 mM) produced a significant increase in the number of bromodeoxyuridine (BrdU)-positive cells in high-density cultures, but did not increase clonal size in low-density cultures. Lithium chloride

Developmental NeuroscienceNeuroscience
6
Article|100 citations·2021
SGK1 inhibition in glia ameliorates pathologies and symptoms in Parkinson disease animal models
Oh‐Chan Kwon, Jae‐Jin Song, Yunseon Yang, Seong‐Hoon Kim, Ji Young Kim, Min‐Jong Seok, Inhwa Hwang, Je‐Wook Yu, Jenisha Karmacharya, Han‐Joo Maeng, J. S. Kim, Eek‐hoon Jho
SJR Q1EMBO Molecular MedicineOA

Astrocytes and microglia are brain-resident glia that can establish harmful inflammatory environments in disease contexts and thereby contribute to the progression of neuronal loss in neurodegenerative disorders. Correcting the diseased properties of glia is therefore an appealing strategy for treating brain diseases. Previous studies have shown that serum/ glucocorticoid related kinase 1 (SGK1) is upregulated in the brains of patients with various neurodegenerative disorders, suggesting its inv

Cellular and Molecular NeuroscienceNeuroscience
7
Article|94 citations·2001
Protein kinase C‐mediated functional regulation of dopamine transporter is not achieved by direct phosphorylation of the dopamine transporter protein
Mi‐Yoon Chang, Sang‐Hun Lee, Jin‐Hyuk Kim, Ki‐Hwan Lee, Young‐Sik Kim, Hyeon Son, Yong‐Sung Lee
SJR Q1Journal of Neurochemistry

Dopaminergic neurotransmission is terminated by the action of the presynaptic dopamine transporter (DAT). It mediates Na(+)/Cl(-) -dependent re-uptake of extracellular dopamine (DA) into the cell, and is regarded as a major regulatory mechanism for synaptic transmission. Previous works have documented that protein kinase C (PKC) activator or inhibitor alters DA uptake by DAT, suggesting that PKC phosphorylation plays an important regulatory mechanism in DAT function. Based on the existence of co

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|86 citations·2003
Neurons and astrocytes secrete factors that cause stem cells to differentiate into neurons and astrocytes, respectively
Mi‐Yoon Chang, Hyeon Son, Yong‐Sung Lee, Sang‐Hun Lee
SJR Q2Molecular and Cellular Neuroscience
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Review|74 citations·2023
Application of Human Brain Organoids—Opportunities and Challenges in Modeling Human Brain Development and Neurodevelopmental Diseases
S.Y. Kim, Mi‐Yoon Chang
SJR Q1International Journal of Molecular SciencesOA

Brain organoids are three-dimensional (3D) structures derived from human pluripotent stem cells (hPSCs) that reflect early brain organization. These organoids contain different cell types, including neurons and glia, similar to those found in the human brain. Human brain organoids provide unique opportunities to model features of human brain development that are not well-reflected in animal models. Compared with traditional cell cultures and animal models, brain organoids offer a more accurate r

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|64 citations·2010
Direct Reprogramming of Rat Neural Precursor Cells and Fibroblasts into Pluripotent Stem Cells
Mi‐Yoon Chang, Dohoon Kim, Chun-Hyung Kim, Hoon‐Chul Kang, Eungi Yang, Jung-Il Moon, Sanghyeok Ko, Junpil Park, Kyung-Soon Park, Kyung-Ah Lee, Dong‐Youn Hwang, Young Sun Chung
SJR Q1PLoS ONEOA

BACKGROUND: Given the usefulness of rats as an experimental system, an efficient method for generating rat induced pluripotent stem (iPS) cells would provide researchers with a powerful tool for studying human physiology and disease. Here, we report direct reprogramming of rat neural precursor (NP) cells and rat embryonic fibroblasts (REF) into iPS cells by retroviral transduction using either three (Oct3/4, Sox2, and Klf4), four (Oct3/4, Sox2, Klf4, and c-Myc), or five (Oct3/4, Sox2, Klf4, c-My

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|61 citations·2007
A versatile approach to multiple gene RNA interference using microRNA-based short hairpin RNAs
Xiaocui Zhu, Leah A. Santat, Mi‐Yoon Chang, Jamie Liu, Joelle R. Zavzavadjian, Estelle A. Wall, Christine Kivork, Melvin I. Simon, Iain D. C. Fraser
BMC Molecular BiologyOA

BACKGROUND: Effective and stable knockdown of multiple gene targets by RNA interference is often necessary to overcome isoform redundancy, but it remains a technical challenge when working with intractable cell systems. RESULTS: We have developed a flexible platform using RNA polymerase II promoter-driven expression of microRNA-like short hairpin RNAs which permits robust depletion of multiple target genes from a single transcript. Recombination-based subcloning permits expression of multi-shRNA

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|59 citations·2014
Doxycycline Enhances Survival and Self-Renewal of Human Pluripotent Stem Cells
Mi‐Yoon Chang, Yong-Hee Rhee, Sang‐Hoon Yi, Su-Jae Lee, Rae-Kwon Kim, Seokjoong Kim, Chang‐Hwan Park, Sang‐Hun Lee
SJR Q1Stem Cell ReportsOA

We here report that doxycycline, an antibacterial agent, exerts dramatic effects on human embryonic stem and induced pluripotent stem cells (hESC/iPSCs) survival and self-renewal. The survival-promoting effect was also manifest in cultures of neural stem cells (NSCs) derived from hESC/iPSCs. These doxycycline effects are not associated with its antibacterial action, but mediated by direct activation of a PI3K-AKT intracellular signal. These findings indicate doxycycline as a useful supplement fo

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|55 citations·2011
Development of a screening method for biogenic amine producing Bacillus spp.
Mi‐Yoon Chang, Hae Choon Chang
SJR Q1International Journal of Food Microbiology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|51 citations·2021
Neural stem cells derived from human midbrain organoids as a stable source for treating Parkinson’s disease
Seung Won Kim, Hye-Ji Woo, Eun Hee Kim, Hyung Sun Kim, Han Na Suh, Soo-hyun Kim, Jae J. Song, Noviana Wulansari, Minji Kang, Se‐Young Choi, Su Jeong Choi, Won Hyuk Jang
SJR Q1Progress in Neurobiology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|36 citations·2007
Bcl-XL/Bax Proteins Direct the Fate of Embryonic Cortical Precursor Cells
Mi‐Yoon Chang, Woong Sun, Wataru Ochiai, Kinichi Nakashima, Soo‐Young Kim, Chang‐Hwan Park, Jin Sun Kang, Jaewon Shim, A-Young Jo, Chun-Sik Kang, Yong‐Sung Lee, Jaesang Kim
SJR Q2Molecular and Cellular BiologyOA

In the developing mouse brain, the highest Bcl-X(L) expression is seen at the peak of neurogenesis, whereas the peak of Bax expression coincides with the astrogenic period. While such observations suggest an active role of the Bcl-2 family proteins in the generation of neurons and astrocytes, no definitive demonstration has been provided to date. Using combinations of gain- and loss-of-function assays in vivo and in vitro, we provide evidence for instructive roles of these proteins in neuronal a

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyCellular and Molecular NeuroscienceDevelopmental NeuroscienceNeurologyFood ScienceNutrition and Dietetics

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