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Kyung Mi Woo

Seoul National University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Kyung Mi Woo's research lab specializes in tissue engineering and regenerative medicine, focusing on the development of biomimetic nanofibrous scaffolds for enhanced tissue regeneration. The lab investigates how nanostructured materials, particularly poly(l-lactic acid) and poly(ε-caprolactone) based electrospun matrices, influence cell behavior, including stem cell differentiation and wound healing. A key research direction involves optimizing scaffold architecture to improve protein adsorption, cell adhesion, and functional tissue formation, especially in bone and diabetic wound repair. The lab also explores molecular mechanisms underlying cellular responses to nanotopographical cues, aiming to translate in vitro findings into effective clinical therapies.

tissue engineeringnanofibrous scaffoldsstem cell differentiationwound healingbone regeneration

Research Overview

Papers
181
Total Citations
6,722
Papers (5y)
21
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
21total
2022
2023
2024
2025
2026
Citations per year (5y)
44total
20222023202420252026

Selected Papers

15
1
Article|707 citations·2003
Nano‐fibrous scaffolding architecture selectively enhances protein adsorption contributing to cell attachment
Kyung Mi Woo, Victor J. Chen, X. Peter
SJR Q1Journal of Biomedical Materials Research Part AOA

Tissue engineering aims at resolving problems such as donor shortage and immune rejection faced by transplantation. Scaffolds (artificial extracellular matrices) have critical roles in tissue engineering. Recently, we developed nano-fibrous poly(L-lactic acid) scaffolds under the hypothesis that synthetic nano-fibrous scaffolding, mimicking the structure of natural collagen fibers, could create a more favorable microenvironment for cells. This is the first report that the nano-fibrous architectu

BiomaterialsMaterials Science
2
Article|345 citations·2006
Nano-fibrous scaffolding promotes osteoblast differentiation and biomineralization
Kyung Mi Woo, Ji Hae Jun, Victor J. Chen, Jihye Seo, Jeong‐Hwa Baek, Hyun‐Mo Ryoo, Gwan-Shik Kim, Martha J. Somerman, X. Peter
SJR Q1BiomaterialsOA
Biomedical EngineeringEngineering
3
Article|218 citations·2007
Suppression of apoptosis by enhanced protein adsorption on polymer/hydroxyapatite composite scaffolds
Kyung Mi Woo, Jihye Seo, Ruiyun Zhang, X. Peter
SJR Q1BiomaterialsOA
Biomedical EngineeringEngineering
4
Article|177 citations·1992
The heat-shock protein ClpB in Escherichia coli is a protein-activated ATPase.
Kyung Mi Woo, K. I. Kim, Alfred L. Goldberg, Doo Bong Ha, Chin Ha Chung
SJR Q1Journal of Biological ChemistryOA

The clpB gene in Escherichia coli encodes a heat-shock protein that is a close homolog of the clpA gene product. The latter is the ATPase subunit of the multimeric ATP-dependent protease Ti (Clp) in E. coli, which also contains the 21-kDa proteolytic subunit (ClpP). The clpB gene product has been purified to near homogeneity by DEAE-Sepharose and heparin-agarose column chromatographies. The purified ClpB consists of a major 93-kDa protein and a minor 79-kDa polypeptide as analyzed by polyacrylam

Materials ChemistryMaterials Science
5
Article|126 citations·1989
Protease Ti from Escherichia coli Requires ATP Hydrolysis for Protein Breakdown but Not for Hydrolysis of Small Peptides
Kyung Mi Woo, Wook‐Jin Chung, D B Ha, Alfred L. Goldberg, Chan‐Hwa Chung
SJR Q1Journal of Biological ChemistryOA

Protease Ti, a new ATP-dependent protease in Escherichia coli, degrades proteins and ATP in a linked process, but these two hydrolytic functions are catalyzed by distinct components of the enzyme. To clarify the enzyme's specificity and the role of ATP, a variety of fluorogenic peptides were tested as possible substrates for protease Ti or its two components. Protease Ti rapidly hydrolyzed N-succinyl(Suc)-Leu-Tyr-amidomethylcoumarin (AMC) (Km = 1.3 mM) which is not degraded by protease La, the o

OncologyMedicine
6
Review|96 citations·2018
Fibrin-Based Biomaterial Applications in Tissue Engineering and Regenerative Medicine
Chan Ho Park, Kyung Mi Woo
SJR Q3Advances in experimental medicine and biology
BiomaterialsMaterials Science
7
Article|82 citations·2009
Comparative Evaluation of Nanofibrous Scaffolding for Bone Regeneration in Critical-Size Calvarial Defects
Kyung Mi Woo, Victor J. Chen, Hong-Moon Jung, Tae‐Il Kim, Hong-In Shin, Jeong-Hwa Baek, Hyun‐Mo Ryoo, X. Peter
SJR Q2Tissue Engineering Part AOA

In a previous study we found that nanofibrous poly(l-lactic acid) (PLLA) scaffolds mimicking collagen fibers in size were superior to solid-walled scaffolds in promoting osteoblast differentiation and bone formation in vitro. In this study we used an in vivo model to confirm the biological properties of nanofibrous PLLA scaffolds and to evaluate how effectively they support bone regeneration against solid-walled scaffolds. The scaffolds were implanted in critical-size defects made on rat calvari

Biomedical EngineeringEngineering
8
Article|80 citations·2017
Effects of the fibrous topography-mediated macrophage phenotype transition on the recruitment of mesenchymal stem cells: An in vivo study
Qiankun Zhang, Jin Wook Hwang, Joung-Hwan Oh, Chan Ho Park, Shin Hye Chung, Yun‐Sil Lee, Jeong‐Hwa Baek, Hyun‐Mo Ryoo, Kyung Mi Woo
SJR Q1Biomaterials
GeneticsMedicine
9
Article|77 citations·2017
Effects of Dimethyloxalylglycine-Embedded Poly(ε-caprolactone) Fiber Meshes on Wound Healing in Diabetic Rats
Qiankun Zhang, Joung-Hwan Oh, Chan Ho Park, Jeong‐Hwa Baek, Hyun‐Mo Ryoo, Kyung Mi Woo
SJR Q1ACS Applied Materials & Interfaces

Impaired wound healing in diabetic patients is associated with altered inflammatory responses, poor angiogenesis, deficient extracellular matrix (ECM) component, and peripheral neuropathy. To develop a wound dressing that is capable of the controlled delivery of bioactive small molecules that can improve diabetic wound healing, dimethyloxalylglycine (DMOG)-embedded poly(ε-caprolactone) (PCL) fiber (PCLF/DMOG) meshes are fabricated by electrospinning, and the effects of the PCLF/DMOG meshes on wo

RehabilitationMedicine
10
Article|62 citations·2014
Synergistic effects of dimethyloxalylglycine and butyrate incorporated into α-calcium sulfate on bone regeneration
Kyung Mi Woo, Hong‐Moon Jung, Joung-Hwan Oh, Saeed Ur Rahman, Soung Min Kim, Jeong‐Hwa Baek, Hyun‐Mo Ryoo
SJR Q1Biomaterials
Cancer ResearchBiochemistry, Genetics and Molecular Biology
11
Article|52 citations·2018
Fibrous Topography-Potentiated Canonical Wnt Signaling Directs the Odontoblastic Differentiation of Dental Pulp-Derived Stem Cells
Saeed Ur Rahman, Joung-Hwan Oh, Young‐Dan Cho, Shin Hye Chung, Gene Lee, Jeong‐Hwa Baek, Hyun‐Mo Ryoo, Kyung Mi Woo
SJR Q1ACS Applied Materials & Interfaces

Nanofibrous engineered matrices have significant potential in cellular differentiation and tissue regeneration. Stem cells require specific extracellular signals that lead to the induction of different lineages. However, the mechanisms by which the nanofibrous matrix promotes mesenchymal stem cell (MSC) differentiation are largely unknown. Here, we investigated the mechanisms that underlie nanofibrous matrix-induced odontoblastic differentiation of human dental pulp MSCs (DP-MSCs). An electrospu

BiomaterialsMaterials Science
12
Article|51 citations·2002
Macrophage colony-stimulating factor promotes the survival of osteoclast precursors by up-regulating Bcl-XL
Kyung Mi Woo, Hyun‐Man Kim, Jea Seung Ko
SJR Q1Experimental & Molecular MedicineOA

Macrophage colony-stimulating factor (M-CSF) is known as one of the factors essential for osteoclast development. In the present study, we examined effects of M-CSF on the apoptotic pathway of osteoclast precursors and their underlying molecular mechanisms. Osteoclast precursors underwent apoptosis in the absence of M-CSF, even in the presence of receptor activator of NF-kappakB ligand (RANKL). Active caspase-3 and -9 were detected in the osteoclast precursors and treatments of precursors with t

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|48 citations·2007
Trichostatin A-mediated upregulation of p21WAF1 contributes to osteoclast apoptosis
TacGhee Yi, Jeong‐Hwa Baek, Hye-Jin Kim, Mihye Choi, Sang-Beom Seo, Hyun‐Mo Ryoo, Gwan-Shik Kim, Kyung Mi Woo
SJR Q1Experimental & Molecular MedicineOA

Histone deacetylase inhibitors (HDIs), a new class of anti-cancer agents, have been reported to suppress formation of osteoclast precursors and their fusion into multinucleated cells. However, little is known about the effect of HDIs on mature osteoclasts, which may have significance for their therapeutic use. Here, we demonstrate a novel action of HDIs on osteoclast apoptosis. Primary multinucleated mature osteoclasts were prepared from mouse bone marrow cells. Treatment of osteoclasts with the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|47 citations·2017
Effects of the incorporation of ε-aminocaproic acid/chitosan particles to fibrin on cementoblast differentiation and cementum regeneration
Chan Ho Park, Joung-Hwan Oh, Hong‐Moon Jung, Yoonnyoung Choi, Saeed Ur Rahman, Sungtae Kim, Tae‐Il Kim, Hong‐In Shin, Yun‐Sil Lee, Frank H. Yu, Jeong‐Hwa Baek, Hyun‐Mo Ryoo
SJR Q1Acta Biomaterialia
UrologyMedicine
15
Article|43 citations·2009
Modulation of the resorption and osteoconductivity of α-calcium sulfate by histone deacetylase inhibitors
Hong‐Moon Jung, Gin-Ah Song, Yong‐Keun Lee, Jeong‐Hwa Baek, Hyun‐Mo Ryoo, Gwan-Shik Kim, Phil-Hoon Choung, Kyung Mi Woo
SJR Q1Biomaterials
Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyBiomedical EngineeringGeneticsBiomaterialsRheumatologyCancer Research

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