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Kyung-Ha Yoo

Ewha Womans University · 医学

研究室紹介

Professor Kyung-Ha Yoo's research lab specializes in regenerative medicine and stem cell biology, with a primary focus on mesenchymal stem cells (MSCs) derived from various tissues—including bone marrow, adipose tissue, and tonsils—and their therapeutic potential in tissue repair. The lab investigates MSC mechanisms in liver regeneration, fibrosis resolution, and osteoporosis treatment, emphasizing paracrine signaling, antioxidant responses, and modulation of bone marrow microenvironment. A key research direction involves understanding how MSCs influence tissue repair through secreted factors and their functional stability during in vitro expansion.

mesenchymal stem cellsliver fibrosisosteoporosisparacrine signalingstem cell therapy

Research Overview

Papers
172
Total Citations
2,849
Papers (5y)
16
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2020
2021
2022
2024
2025
Citations per year (5y)
142total
20202021202220242025

Selected Papers

15
1
Article|142 citations·2012
Tonsil-derived mesenchymal stromal cells: evaluation of biologic, immunologic and genetic factors for successful banking
Kyung‐Ha Ryu, Kyung‐Ah Cho, Hae Sang Park, Ji-Yon Kim, So‐Youn Woo, Inho Jo, Yoon Hee Choi, Young Mi Park, Sung‐Chul Jung, Sung Min Chung, Byung‐Ok Choi, Han Su Kim
SJR Q1Cytotherapy
GeneticsMedicine
2
Article|131 citations·2009
Mesenchymal stem cells showed the highest potential for the regeneration of injured liver tissue compared with other subpopulations of the bone marrow
Kyung‐Ah Cho, Sun‐Young Ju, Su Jin Cho, Yun‐Jae Jung, So‐Youn Woo, Ju‐Young Seoh, Ho‐Seong Han, Kyung‐Ha Ryu
SJR Q1Cell Biology International

We have previously reported that bone marrow cells (BMCs) participate in the regeneration after liver injury. However, it is not established that this is the result of differentiation of hematopoietic stem cells (HSCs), mesenchymal stem cells (MSCs) or the combination of both. We investigated the contribution of each cell fraction to the regenerative process. First, we confirmed that transplanted stem cells migrate directly to injured liver tissue without dispersing to other organs. Next, we div

GeneticsMedicine
3
Article|101 citations·2012
Mesenchymal stem cells restore CCl4‐induced liver injury by an antioxidative process
Kyung‐Ah Cho, So‐Youn Woo, Ju‐Young Seoh, Ho‐Seong Han, Kyung‐Ha Ryu
SJR Q1Cell Biology InternationalOA

We have investigated BM (bone marrow)-derived MSCs (mesenchymal stem cells) for the treatment of liver injury. It was hypothesized that MSC-mediated resolution of liver injury could occur through an antioxidative process. After being injected with CCl4 (carbon tetrachloride), mice were injected with syngenic BM-derived MSCs or normal saline. Oxidative stress activity of the MSCs was determined by the analysis of ROS (reactive oxygen species) and SOD (superoxide dismutase) activity. In addition,

GeneticsMedicine
4
Article|88 citations·2017
RNA sequencing reveals a transcriptomic portrait of human mesenchymal stem cells from bone marrow, adipose tissue, and palatine tonsils
Kyung‐Ah Cho, Minhwa Park, Yu‐Hee Kim, So‐Youn Woo, Kyung‐Ha Ryu
SJR Q1Scientific ReportsOA

Human mesenchymal stem cells (MSCs) are adult multipotent cells that have plasticity and inhabit the stroma of diverse tissues. The potential utility of MSCs has been heavily investigated in the fields of regenerative medicine and cell therapy. However, MSCs represent diverse populations that may depend on the tissue of origin. Thus, the ability to identify specific MSC populations has remained difficult. Using RNA sequencing, we analyzed the whole transcriptomes of bone marrow-derived MSCs (BMs

GeneticsMedicine
5
Article|85 citations·2010
Transplantation of bone marrow cells reduces CCl4-induced liver fibrosis in mice
Kyung‐Ah Cho, Goh-Woon Lim, Sun-Young Joo, So‐Youn Woo, Ju‐Young Seoh, Su Jin Cho, Ho‐Seong Han, Kyung‐Ha Ryu
SJR Q1Liver International

BACKGROUND: We investigated the reversibility of liver fibrosis induced with a CCl(4) injection and the role of stem cells in reversing the hepatic injury. Furthermore, the most effective cell fraction among bone marrow cells (BMCs) in the repair process was analysed. METHODS: C57BL/6 mice were divided into four groups after 5 weeks of injection of CCl(4) : control, sacrificed after 5 weeks, sacrificed at 10 weeks and sacrificed 5 weeks later after GFP-donor BM transplantation. Liver function te

HepatologyMedicine
6
Article|73 citations·2010
Mesenchymal stromal cells inhibit graft-versus-host disease of mice in a dose-dependent manner
Sunyoung Joo, Kyung‐Ah Cho, YunJae Jung, Han‐Seong Kim, Seong‐Yeol Park∥, Yong‐Bock Choi∥, Kyeong‐Man Hong, So‐Youn Woo, Ju‐Young Seoh, Su Jin Cho, Kyung‐Ha Ryu
SJR Q1Cytotherapy
HematologyMedicine
7
Article|72 citations·2014
Tonsil-derived mesenchymal stem cells alleviate concanavalin A-induced acute liver injury
Kyung‐Ha Ryu, So-Yeon Kim, Ye-Ryung Kim, So‐Youn Woo, Sun Hee Sung, Han Su Kim, Sung‐Chul Jung, Inho Jo, Joo‐Won Park
SJR Q2Experimental Cell Research
GeneticsMedicine
8
Article|60 citations·2014
Characterization of long‐term in vitro culture‐related alterations of human tonsil‐derived mesenchymal stem cells: role for CCN1 in replicative senescence‐associated increase in osteogenic differentiation
Yeonsil Yu, Yoon Shin Park, Han Su Kim, Ha Yeong Kim, Yoon Jin, Sung‐Chul Jung, Kyung‐Ha Ryu, Inho Jo
SJR Q2Journal of AnatomyOA

Although mesenchymal stem cells (MSC) isolated from bone marrow and adipose tissues are known to be subjected to in vitro culture-related alterations in their stem cell properties, such data have not been reported in human tonsil-derived MSC (T-MSC). Here, we investigated the culture-related changes of phenotypes, the senescence, and the differentiation potential of T-MSC. T-MSC were serially passaged by a standard protocol, and their characteristics were assessed, including MSC-specific surface

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|54 citations·2007
MSC–DC interactions: MSC inhibit maturation and migration of BM-derived DC
YunJae Jung, Sun-Young Ju, Eunjoung Yoo, Su Jin Cho, K.-A. Cho, So‐Youn Woo, Ju‐Young Seoh, J.-W. Park, H.-S. Han, Kyung‐Ha Ryu
SJR Q1Cytotherapy
GeneticsMedicine
10
Article|43 citations·2015
Characterisation of insulin-producing cells differentiated from tonsil derived mesenchymal stem cells
So-Yeon Kim, Ye-Ryung Kim, Woo‐Jae Park, Han Su Kim, Sung‐Chul Jung, So‐Youn Woo, Inho Jo, Kyung‐Ha Ryu, Joo‐Won Park
SJR Q2Differentiation
GeneticsMedicine
11
Article|28 citations·2016
Tonsil-Derived Mesenchymal Stem Cells Promote Bone Mineralization and Reduce Marrow and Visceral Adiposity in a Mouse Model of Senile Osteoporosis
Yu‐Hee Kim, Minhwa Park, Kyung‐Ah Cho, Bo‐Kyung Kim, Jung-Hwa Ryu, So‐Youn Woo, Kyung‐Ha Ryu
SJR Q2Stem Cells and Development

Osteoporosis is a disease that affects 35% women and 20% men aged more than 65 years. Reduction in bone formation and increased bone resorption are known factors that drive osteoporosis, but recent studies suggest a positive correlation between bone marrow adipose tissue (MAT) and osteoporosis. Previously, we have observed that tonsil-derived mesenchymal stem cells (T-MSCs) reduce MAT in a mouse model of bone marrow depletion. That prompted us to investigate on the senile osteoporosis to charact

GeneticsMedicine
12
Article|27 citations·2001
Apoptosis and megakaryocytic differentiation during ex vivo expansion of human cord blood CD34+ cells using thrombopoietin
Kyung‐Ha Ryu, Susan Chun, Steve Carbonierre, Seock‐Ah Im, Hyung‐Lae Kim, Myeong Heon Shin, Hee‐Young Shin, Hyo‐Seop Ahn, So‐Youn Woo, Ju‐Young Seoh, John K. Fraser
SJR Q1British Journal of HaematologyOA

Thrombopoietin (TPO), the primary regulator of megakaryocytopoiesis, plays important roles in early haematopoiesis. Previously, we have demonstrated that TPO induces a characteristic pattern of apoptosis during ex vivo expansion of cord blood (CB) CD34+ cells. In this study, we have demonstrated that the TPO-induced apoptotic cells belong to the megakaryocytic (MK) lineage and that initially expanding MK progenitors declined along with the appearance of TPO-induced apoptosis. Human CB CD34+ cell

HematologyMedicine
13
Article|27 citations·2012
Improved viability and activity of neutrophils differentiated from HL-60 cells by co-culture with adipose tissue-derived mesenchymal stem cells
Yoon Shin Park, Goh-Woon Lim, Kyung‐Ah Cho, So‐Youn Woo, Mee‐Young Shin, Eun-Sun Yoo, Jeong Chan, Kyung‐Ha Ryu
SJR Q2Biochemical and Biophysical Research Communications
GeneticsMedicine
14
Article|27 citations·2011
Clinical Characteristics of Hemophagocytic Lymphohistiocytosis Related to Kawasaki Disease
Hyun Kwon Kim, Han Gyu Kim, Su Jin Cho, Young Mi Hong, Sejung Sohn, Eun-Sun Yoo, Wha-Soon Chung, Kyung‐Ha Ryu
SJR Q3Pediatric Hematology and Oncology

It is difficult to predict the prognosis or clinical course of secondary hemophagocytic lymphohistiocytosis (HLH) due to the various underlying causes. The authors analyzed the clinical and laboratory findings and outcomes in patients with HLH who had initially been diagnosed with Kawasaki disease (KD), and evaluated the clinical significance of each factor. Among the 21 patients with HLH, 5 had initially been diagnosed with KD and 16 had other etiologies. A comparative analysis was performed fo

HematologyMedicine
15
Article|27 citations·2010
Bioimaging for the monitoring of thein vivodistribution of infused mesenchymal stem cells in a mouse model of the graft-versus-host reaction
Sunyoung Joo, Kyung‐Ah Cho, YunJae Jung, Hanseong Kim, Seong‐Yeol Park∥, Yong‐Bock Choi∥, Kyung‐man Hong∥, So‐Youn Woo, Ju‐Young Seoh, Kyung‐Ha Ryu
SJR Q1Cell Biology International

Cell therapy using MSCs (mesenchymal stem cells) might be effective treatment for refractory GVHD (graft-versus-host disease). However, the fate and distribution of MSCs after transplantation remains unclear. In this study, an animal model was developed to monitor the dynamic distribution of MSCs in mice with GVHD. A GVHD mouse model was established by transplanting C57BL/6 donor bone marrow cells and C57BL/6 EGFP (enhanced green fluorescent protein) splenocytes into lethally irradiated BALB/c n

GeneticsMedicine

Research Areas

GeneticsHematologyMolecular BiologyImmunologyHepatologyEpidemiology

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