Skip to main content

Hyungsuk Lee

Yonsei University · 工学

研究室紹介

Professor Hyungsuk Lee's research lab specializes in mechanobiology and biofabrication, focusing on how mechanical cues—from substrate topography and acoustic waves to extracellular matrix properties—influence cell behavior, tissue development, and disease progression. The lab develops innovative micro- and nanofabrication techniques, such as acoustophoretic patterning and optical tweezers-based rheology, to engineer functional tissues and probe cellular mechanics with high precision. Key research directions include vascular tissue engineering, nuclear mechanotransduction in cardiac cells, and the mechano-regulation of skin cell responses, all aimed at advancing regenerative medicine and drug discovery.

mechano-biologytissue engineeringacoustic stimulationextracellular matrixcell mechanics

Research Overview

Papers
116
Total Citations
4,068
Papers (5y)
31
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
31total
2022
2023
2024
2025
2026
Citations per year (5y)
190total
20222023202420252026

Selected Papers

15
1
Article|220 citations·2014
Non-volatile organic memory with sub-millimetre bending radius
Richard Hahnkee Kim, Hae Jin Kim, Insung Bae, Sun Kak Hwang, Dhinesh Babu Velusamy, Suk Man Cho, Kazuto Takaishi, Tsuyoshi Muto, Daisuke Hashizume, Masanobu Uchiyama, Pascal André, Fabrice Mathevet
SJR Q1Nature CommunicationsOA
Biomedical EngineeringEngineering
2
Article|167 citations·2018
High-resolution acoustophoretic 3D cell patterning to construct functional collateral cylindroids for ischemia therapy
Byungjun Kang, Jisoo Shin, Hyun‐Ji Park, Chanryeol Rhyou, Donyoung Kang, Shin-Jeong Lee, Young-sup Yoon, Seung‐Woo Cho, Hyungsuk Lee
SJR Q1Nature CommunicationsOA

The fabrication of functional tissues is essential for clinical applications such as disease treatment and drug discovery. Recent studies have revealed that the mechanical environments of tissues, determined by geometric cell patterns, material composition, or mechanical properties, play critical roles in ensuring proper tissue function. Here, we propose an acoustophoretic technique using surface acoustic waves to fabricate therapeutic vascular tissue containing a three-dimensional collateral di

Biomedical EngineeringEngineering
3
Article|70 citations·2009
Passive and active microrheology for cross-linked F-actin networks in vitro
Hyungsuk Lee, Jorge M. Ferrer, Fumihiko Nakamura, Matthew J. Lang, Roger D. Kamm
SJR Q1Acta BiomaterialiaOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
4
Article|68 citations·2021
Multi-stimuli responsive and reversible soft actuator engineered by layered fibrous matrix and hydrogel micropatterns
Kanghee Cho, Donyoung Kang, Hyungsuk Lee, Won‐Gun Koh
SJR Q1Chemical Engineering Journal
Mechanical EngineeringEngineering
5
Article|47 citations·2015
Cytoskeletal prestress regulates nuclear shape and stiffness in cardiac myocytes
Hyungsuk Lee, William James Adams, Patrick W. Alford, Megan L. McCain, Adam W. Feinberg, Sean P. Sheehy, Josue A. Goss, Kevin Kit Parker
SJR Q2Experimental Biology and MedicineOA

Mechanical stresses on the myocyte nucleus have been associated with several diseases and potentially transduce mechanical stimuli into cellular responses. Although a number of physical links between the nuclear envelope and cytoplasmic filaments have been identified, previous studies have focused on the mechanical properties of individual components of the nucleus, such as the nuclear envelope and lamin network. The mechanical interaction between the cytoskeleton and chromatin on nuclear deform

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|42 citations·2018
Multi-scale characterization of surface-crosslinked superabsorbent polymer hydrogel spheres
Soo-Ho Chang, Minsu Kim, Seunghee Oh, Ji Hong Min, Donyoung Kang, Changsun Han, Taebin Ahn, Won‐Gun Koh, Hyungsuk Lee
SJR Q1Polymer
Molecular MedicineBiochemistry, Genetics and Molecular Biology
7
Article|28 citations·2009
Cytoskeletal Deformation at High Strains and the Role of Cross-link Unfolding or Unbinding
Hyungsuk Lee, Benjamin Pelz, Jorge M. Ferrer, Taeyoon Kim, Matthew J. Lang, Roger D. Kamm
SJR Q2Cellular and Molecular Bioengineering
Cell BiologyBiochemistry, Genetics and Molecular Biology
8
Article|26 citations·2019
Effect of Mechanical Stretch on the DNCB-induced Proinflammatory Cytokine Secretion in Human Keratinocytes
Seunghee Oh, Hyewon Chung, Soo-Ho Chang, Su-Hyon Lee, Seung Hyeok Seok, Hyungsuk Lee
SJR Q1Scientific ReportsOA

Skin is exposed to various physico-chemical cues. Keratinocytes, a major component of the skin epidermis, directly interact with the surrounding extracellular matrix, and thus, biochemical and biophysical stimulations from the matrix regulate the function of keratinocytes. Although it was reported that inflammatory responses of skin were altered by an applied mechanical force, understanding how the keratinocytes sense the mechanical stimuli and regulate a cytokine secretion remains unclear. Here

Cell BiologyBiochemistry, Genetics and Molecular Biology
9
Article|25 citations·2021
Propagating acoustic waves on a culture substrate regulate the directional collective cell migration
Chikahiro Imashiro, Byungjun Kang, Yunam Lee, Youn-Hoo Hwang, Seonghun Im, Dae‐Eun Kim, Kenjiro Takemura, Hyungsuk Lee
SJR Q1Microsystems & NanoengineeringOA

Collective cell migration plays a critical role in physiological and pathological processes such as development, wound healing, and metastasis. Numerous studies have demonstrated how various types of chemical, mechanical, and electrical cues dictate the collective migratory behaviors of cells. Although an acoustic cue can be advantageous because of its noninvasiveness and biocompatibility, cell migration in response to acoustic stimulation remains poorly understood. In this study, we developed a

Biomedical EngineeringEngineering
10
Article|24 citations·2012
Stochastic optical active rheology
Hyungsuk Lee, Yongdae Shin, Sun Taek Kim, Ellis L. Reinherz, Matthew J. Lang
SJR Q1Applied Physics LettersOA

We demonstrate a stochastic based method for performing active rheology using optical tweezers. By monitoring the displacement of an embedded particle in response to stochastic optical forces, a rapid estimate of the frequency dependent shear moduli of a sample is achieved in the range of 10(-1)-10(3) Hz. We utilize the method to probe linear viscoelastic properties of hydrogels at varied cross-linker concentrations. Combined with fluorescence imaging, our method demonstrates non-linear changes

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|24 citations·2020
Preparation and characterization of superabsorbent polymers (SAPs) surface-crosslinked with polycations
Kyung Min Lee, Ji Hong Min, Seunghee Oh, Hyungsuk Lee, Won‐Gun Koh
SJR Q1Reactive and Functional Polymers
Molecular MedicineBiochemistry, Genetics and Molecular Biology
12
Article|21 citations·2010
Molecular origin of strain softening in cross-linked F-actin networks
Hyungsuk Lee, Jorge M. Ferrer, Matthew J. Lang, Roger D. Kamm
SJR Q2Physical Review EOA

Two types of measurement are presented that relate molecular events to macroscopic behavior of F-actin networks. First, shear modulus is measured by oscillating an embedded microbead. Second, a microbead is translated at constant rate and transitions in the resisting force are observed. The loading rate dependence of the force at the transitions is similar to that of the molecular unbinding force, suggesting that they share a common origin. Reversibility tests of shear modulus provide further ev

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
Article|21 citations·2020
Bundling of Collagen Fibrils Using Sodium Sulfate for Biomimetic Cell Culturing
Seunghee Oh, Quang Nguyen, Koo–Hyun Chung, Hyungsuk Lee
SJR Q1ACS OmegaOA

Collagen is the most abundant extracellular matrix protein. The concentrations, structural arrangement, and directionality of collagen depend on the type of tissue. Thick fibril bundles of collagen are observed in most collagenous tissues, including connective tissues, bones, and tendons, indicating that they play a critical role in many cell functions. In this study, we developed a new method to regulate collagen bundling without altering the protein concentration, temperature, or pH by using s

Cell BiologyBiochemistry, Genetics and Molecular Biology
14
Article|18 citations·2024
Stable water splitting using photoelectrodes with a cryogelated overlayer
Byungjun Kang, Jeiwan Tan, Kyungmin Kim, Donyoung Kang, Hyungsoo Lee, Sunihl Ma, Young Sun Park, Juwon Yun, Soobin Lee, Chan Uk Lee, Gyumin Jang, Jeongyoub Lee
SJR Q1Nature CommunicationsOA

Hydrogen production techniques based on solar-water splitting have emerged as carbon-free energy systems. Many researchers have developed highly efficient thin-film photoelectrochemical (PEC) devices made of low-cost and earth-abundant materials. However, solar water splitting systems suffer from short lifetimes due to catalyst instability that is attributed to both chemical dissolution and mechanical stress produced by hydrogen bubbles. A recent study found that the nanoporous hydrogel could pr

Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|17 citations·2005
Development of Conformal PDMS and Parylene Coatings for Microelectronics and MEMS Packaging
Hyungsuk Lee, Junghyun Cho
Electronic and Photonic Packaging, Electrical Systems Design and Photonics, and Nanotechnology

There is a growing demand in the development of small-scale devices in microelectronics and microelectromechanical systems (MEMS). Packaging and reliability of such devices are of great concern as they introduce a number of unique packaging issues that are distinct and different from typical electronic packaging applications. In addition, the packaging or encapsulation materials are often exposed to harsh environments, for which their performance is drastically degraded. Importantly, such device

Biomedical EngineeringEngineering

Research Areas

Cell BiologyBiomedical EngineeringElectrical and Electronic EngineeringEconomics and EconometricsAtomic and Molecular Physics, and OpticsFinance

Hyungsuk Leeの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。