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최유석 교수

Yuseok Choi

연세대학교 의학공학과 · 생화학·유전·분자생물학

연구실 소개

최유석 교수의 연구실은 심장 질환과 암 전이의 핵심 메커니즘인 세포의 기계적 환경 반응, 특히 기계전도성(메카노트랜스덕션)에 중점을 두고 있습니다. 지질 메타크릴화된 수지(지질메타크릴화) 기반 3차원 수화성 고분자 시스템을 활용해 세포가 기계적 강성과 환경 변화에 어떻게 반응하는지 체계적으로 분석하고 있으며, 특히 심장세포와 종양세포의 기계적 적응, 핵의 기계적 압축에 의한 구조적 변화와 관련된 상호작용을 연구하고 있습니다. 이는 심장 조직공학 및 암 치료 전략 개발에 기여할 잠재력을 지닌 분야입니다.

메카노트랜스덕션3D 수화성 고분자기계적 강성핵의 기계적 반응암 전이

연구 현황

논문 수
108
총 인용 수
4,982
최근 5년 논문
50
주요 분야
생화학·유전·분자생물학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
50총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
496총합
20222023202420252026

주요 논문

15
1
논문|인용수 186·2005
Adipose tissue engineering using mesenchymal stem cells attached to injectable PLGA spheres
Yu Suk Choi, Si-Nae Park, Hwal Suh
SJR Q1BiomaterialsOA
GeneticsMedicine
2
논문|인용수 183·2010
Differentiation of human adipose‐derived stem cells into beating cardiomyocytes
Yu Suk Choi, Gregory J. Dusting, Samantha Licy Stubbs, Sandeep Arunothayaraj, Xiao Han, Philippe Collas, Wayne A. Morrison, Rodney J. Dilley
SJR Q2Journal of Cellular and Molecular Medicine

Human adipose-derived stem cells (ASCs) may differentiate into cardiomyocytes and this provides a source of donor cells for tissue engineering. In this study, we evaluated cardiomyogenic differentiation protocols using a DNA demethylating agent 5-azacytidine (5-aza), a modified cardiomyogenic medium (MCM), a histone deacetylase inhibitor trichostatin A (TSA) and co-culture with neonatal rat cardiomyocytes. 5-aza treatment reduced both cardiac actin and TropT mRNA expression. Incubation in MCM on

SurgeryMedicine
3
논문|인용수 157·2012
The alignment and fusion assembly of adipose-derived stem cells on mechanically patterned matrices
Yu Suk Choi, Ludovic G. Vincent, Andrew Lee, Kyle Kretchmer, Somyot Chirasatitsin, Marek Dobke, Adam J. Engler
SJR Q1Biomaterials
Cell BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 127·2019
Stem Cell Mechanosensation on Gelatin Methacryloyl (GelMA) Stiffness Gradient Hydrogels
Claire Kim, Jennifer L. Young, Andrew W. Holle, Kwanghee Jeong, Luke G. Major, Ji Hoon Jeong, Zachary M. Aman, Dong‐Wook Han, Yongsung Hwang, Joachim P. Spatz, Yu Suk Choi
SJR Q2Annals of Biomedical EngineeringOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
5
논문|인용수 104·2011
Mechanical derivation of functional myotubes from adipose-derived stem cells
Yu Suk Choi, Ludovic G. Vincent, Andrew Lee, Marek Dobke, Adam J. Engler
SJR Q1Biomaterials
Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
논문|인용수 103·2006
Adipogenic differentiation of adipose tissue derived adult stem cells in nude mouse
Yu Suk Choi, Sang Myun, Young Yeol Lee, Seok Woon Kwon, Chan Jeoung Park, Mi‐Jung Kim
SJR Q2Biochemical and Biophysical Research Communications
GeneticsMedicine
7
논문|인용수 93·2019
Volume Adaptation Controls Stem Cell Mechanotransduction
Luke G. Major, Andrew W. Holle, Jennifer L. Young, Matt S. Hepburn, Kwanghee Jeong, Ian L. Chin, Rowan W. Sanderson, Ji Hoon Jeong, Zachary M. Aman, Brendan F. Kennedy, Yongsung Hwang, Dong‐Wook Han
SJR Q1ACS Applied Materials & InterfacesOA

Recent studies have found discordant mechanosensitive outcomes when comparing 2D and 3D, highlighting the need for tools to study mechanotransduction in 3D across a wide spectrum of stiffness. A gelatin methacryloyl (GelMA) hydrogel with a continuous stiffness gradient ranging from 5 to 38 kPa was developed to recapitulate physiological stiffness conditions. Adipose-derived stem cells (ASCs) were encapsulated in this hydrogel, and their morphological characteristics and expression of both mechan

Cell BiologyBiochemistry, Genetics and Molecular Biology
8
논문|인용수 72·2010
Engineering cardiac tissue in vivo from human adipose-derived stem cells
Yu Suk Choi, Ken Matsuda, Gregory J. Dusting, Wayne A. Morrison, Rodney J. Dilley
SJR Q1Biomaterials
SurgeryMedicine
9
리뷰|인용수 60·2021
The Cancer Microenvironment: Mechanical Challenges of the Metastatic Cascade
Sebastian E. Amos, Yu Suk Choi
SJR Q1Frontiers in Bioengineering and BiotechnologyOA

The metastatic cascade presents a significant challenge to patient survival in the fight against cancer. As metastatic cells disseminate and colonize a secondary site, stepwise exposure to microenvironment-specific mechanical stimuli influences and protects successful metastasis. Following cancerous transformation and associated cell recruitment, the tumor microenvironment (TME) becomes a mechanically complex niche, owing to changes in extracellular matrix (ECM) stiffness and architecture. The E

Cell BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 44·2023
3D Volumetric Mechanosensation of MCF7 Breast Cancer Spheroids in a Linear Stiffness Gradient GelAGE
Danielle Vahala, Sebastian E. Amos, Marta Sacchi, Bram G. Soliman, Matt S. Hepburn, Alireza Mowla, Jiayue Li, Ji Hoon Jeong, Chrissie Astell, Yongsung Hwang, Brendan F. Kennedy, Khoon S. Lim
SJR Q1Advanced Healthcare MaterialsOA

Abstract The tumor microenvironment presents spatiotemporal shifts in biomechanical properties with cancer progression. Hydrogel biomaterials like GelAGE offer the stiffness tuneability to recapitulate dynamic changes in tumor tissues by altering photo‐energy exposures. Here, a tuneable hydrogel with spatiotemporal control of stiffness and mesh‐network is developed. The volume of MCF7 spheroids encapsulated in a linear stiffness gradient demonstrates an inverse relationship with stiffness ( p &l

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
논문|인용수 31·2023
Confined environments induce polarized paraspeckle condensates
Vanja Todorovski, Finn McCluggage, Yixuan Li, Annika Meid, Joachim P. Spatz, Andrew W. Holle, Archa H. Fox, Yu Suk Choi
SJR Q1Communications BiologyOA

Cancer cells experience confinement as they navigate the tumour microenvironment during metastasis. Recent studies have revealed that the nucleus can function as a 'ruler' for measuring physical confinement via membrane tension, allowing for compression-sensitive changes in migration. Cell nuclei contain many nuclear bodies that form when their components phase separate and condense within permissive local regions within the nucleus. However, how sub-nuclear organisation and phase separation cha

Computational MechanicsEngineering
12
논문|인용수 30·2021
Interrogating cardiac muscle cell mechanobiology on stiffness gradient hydrogels
Ian L. Chin, Livia C. Hool, Yu Suk Choi
SJR Q1Biomaterials ScienceOA

Extracellular matrix (ECM) remodeling is a major facet of cardiac development and disease, yet our understanding of cardiomyocyte mechanotransduction remains limited. To enhance our understanding of cardiomyocyte mechanosensation, we studied stiffness-driven changes to cell morphology and mechanomarker expression in H9C2 cells and neonatal rat cardiomyocytes (NRCMs). Linear stiffness gradient polyacrylamide hydrogels (2-33 kPa) coated with ECM proteins including Collagen I (Col), Fibronectin (Fn

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
리뷰|인용수 28·2019
A Review of in vitro Platforms for Understanding Cardiomyocyte Mechanobiology
Ian L. Chin, Livia C. Hool, Yu Suk Choi
SJR Q1Frontiers in Bioengineering and BiotechnologyOA

Mechanobiology-a cell's interaction with its physical environment-can influence a myriad of cellular processes including how cells migrate, differentiate and proliferate. In many diseases, remodeling of the extracellular matrix (ECM) is observed such as tissue stiffening in rigid scar formation after myocardial infarct. Utilizing knowledge of cell mechanobiology in relation to ECM remodeling during pathogenesis, elucidating the role of the ECM in the progression-and perhaps regression-of disease

Cell BiologyBiochemistry, Genetics and Molecular Biology
14
논문|인용수 24·2021
Keloid fibroblasts have elevated and dysfunctional mechanotransduction signaling that is independent of TGF-β
Zhenjun Deng, Manon Subilia, Ian L. Chin, Nicole Hortin, Andrew Stevenson, Fiona Wood, Cecilia M. Prêle, Yu Suk Choi, Mark W. Fear
SJR Q1Journal of Dermatological Science
Cell BiologyBiochemistry, Genetics and Molecular Biology
15
논문|인용수 23·2022
Subcellular mechano-microscopy: high resolution three-dimensional elasticity mapping using optical coherence microscopy
Alireza Mowla, Jiayue Li, Matt S. Hepburn, Samuel Maher, Lixin Chin, George C. Yeoh, Yu Suk Choi, Brendan F. Kennedy
SJR Q1Optics Letters

The importance of cellular-scale mechanical properties is well-established, yet it is challenging to map subcellular elasticity in three dimensions. We present subcellular mechano-microscopy, an optical coherence microscopy (OCM)-based variant of three-dimensional (3-D) compression optical coherence elastography (OCE) that provides an elasticity system resolution of 5 × 5 × 5 µm: a 7-fold improvement in system resolution over previous OCE studies of cells. The improved resolution is achieved thr

Cell BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

Cell BiologyBiomedical EngineeringSurgeryMolecular BiologyGeneticsCardiology and Cardiovascular Medicine

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