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Lee Won Gu

Kyung Hee University · 工学

研究室紹介

Professor Lee Won Gu's research lab specializes in micro- and nanoscale engineering for biomedical applications, focusing on lab-on-a-chip systems, microfluidics, and advanced cell manipulation techniques. The lab develops innovative tools for single-cell analysis, controlled drug and nanoparticle delivery via electroporation, and long-term 3D cell culture platforms. Recent work also extends into immersive digital health technologies, including metaverse-enabled wearables for real-time healthcare monitoring and rehabilitation. The lab integrates bioengineering, materials science, and biomedical sensing to advance personalized and precision medicine.

microfluidicselectroporationwearable sensorslab-on-a-chipsingle-cell analysis

Research Overview

Papers
115
Total Citations
2,456
Papers (5y)
17
Primary Field
工学

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)
163total
20222023202420252026

Selected Papers

15
1
Review|350 citations·2009
Nano/Microfluidics for diagnosis of infectious diseases in developing countries
Won Gu Lee, Yun‐Gon Kim, Bong Geun Chung, Utkan Demirci, Ali Khademhosseini
SJR Q1Advanced Drug Delivery ReviewsOA
Biomedical EngineeringEngineering
2
Review|150 citations·2009
Microscale electroporation: challenges and perspectives for clinical applications
Won Gu Lee, Utkan Demirci, Ali Khademhosseini
SJR Q3Integrative BiologyOA

Microscale engineering plays a significant role in developing tools for biological applications by miniaturizing devices and providing controllable microenvironments for in vitro cell research. Miniaturized devices offer numerous benefits in comparison to their macroscale counterparts, such as lower use of expensive reagents, biomimetic environments, and the ability to manipulate single cells. Microscale electroporation is one of the main beneficiaries of microscale engineering as it provides sp

BiotechnologyBiochemistry, Genetics and Molecular Biology
3
Review|148 citations·2013
Cell manipulation in microfluidics
Hoyoung Yun, Ki-Soo Kim, Won Gu Lee
SJR Q1Biofabrication

Recent advances in the lab-on-a-chip field in association with nano/microfluidics have been made for new applications and functionalities to the fields of molecular biology, genetic analysis and proteomics, enabling the expansion of the cell biology field. Specifically, microfluidics has provided promising tools for enhancing cell biological research, since it has the ability to precisely control the cellular environment, to easily mimic heterogeneous cellular environment by multiplexing, and to

Biomedical EngineeringEngineering
4
Review|108 citations·2017
Electroporation for nanomedicine: a review
Ki-Soo Kim, Won Gu Lee
SJR Q1Journal of Materials Chemistry B

Nanoparticles have shown great promise in the development of efficient drug delivery systems, early diagnosis, and high-resolution imaging of hard-to-find diseases, such as early-stage malignant cancer and very rare circulating tumor cells, for pharmaceutical and medical applications. Recently, nanoparticles have been used as intracellular carriers of nano-drugs into targeted cells to release a slowly diffusing drug in the vicinity of the target disease. Several methods such as chemical reagent-

BiotechnologyBiochemistry, Genetics and Molecular Biology
5
Review|90 citations·2023
Metaverse Wearables for Immersive Digital Healthcare: A Review
Kisoo Kim, Hyosill Yang, Ji-Hun Lee, Won Gu Lee
SJR Q1Advanced ScienceOA

The recent exponential growth of metaverse technology has been instrumental in reshaping a myriad of sectors, not least digital healthcare. This comprehensive review critically examines the landscape and future applications of metaverse wearables toward immersive digital healthcare. The key technologies and advancements that have spearheaded the metamorphosis of metaverse wearables are categorized, encapsulating all-encompassed extended reality, such as virtual reality, augmented reality, mixed

Human-Computer InteractionComputer Science
6
Article|60 citations·2009
A Hollow Sphere Soft Lithography Approach for Long-Term Hanging Drop Methods
Won Gu Lee, Daniel Ortmann, Matthew Hancock, Hojae Bae, Ali Khademhosseini
SJR Q2Tissue Engineering Part C MethodsOA

In conventional hanging drop (HD) methods, embryonic stem cell aggregates or embryoid bodies (EBs) are often maintained in small inverted droplets. Gravity limits the volumes of these droplets to less than 50 microL, and hence such cell cultures can only be sustained for a few days without frequent media changes. Here we present a new approach to performing long-term HD methods (10-15 days) that can provide larger media reservoirs in a HD format to maintain more consistent culture media conditio

Biomedical EngineeringEngineering
7
Review|46 citations·2020
Wearable sensors for continuous oral cavity and dietary monitoring toward personalized healthcare and digital medicine
Wonki Hong, Won Gu Lee
SJR Q2The Analyst

Oral monitoring plays an essential role in preventing and diagnosing systemic diseases through saliva in the mouth. Dietary monitoring is also crucial to reduce the likelihood of chronic diseases such as hypertension and diabetes by analyzing food types, amounts and diet patterns. Therefore, the oral cavity and dietary monitoring are vital for accurate personalized healthcare management that can improve healthcare. To perform continuous oral cavity and dietary monitoring in real-time, a wearable

Biomedical EngineeringEngineering
8
Article|45 citations·2000
Continuous Ethanol Production from Concentrated Wood Hydrolysates in an Internal Membrane-Filtration Bioreactor
Won Gu Lee, Borae G. Park, Yong Keun Chang, H. CHANG, Jung Soo Lee, Su-Beom Park
SJR Q2Biotechnology Progress

Continuous culture for the production of ethanol from wood hydrolysate was carried out in an internal membrane-filtration bioreactor. The hydrolysate medium was sterilized at a relatively low temperature of 60 degrees C with the intention of reducing the formation of inhibitory compounds during the sterilization. The maximum ethanol concentration and productivity obtained in this study were 76.9 g/L and 16.9 g/L-h, respectively, which were much higher than those (57.2-67 g/L and 0.3-1.0 g/L-h) o

Biomedical EngineeringEngineering
9
Article|33 citations·2007
On-chip erythrocyte deformability test under optical pressure
Won Gu Lee, Hyunwoo Bang, Hoyoung Yun, Joonmo Lee, Junha Park, Jung Kyung Kim, Seok Chung, Keunchang Cho, Chanil Chung, Dong-Chul Han, Jun Keun Chang
SJR Q1Lab on a Chip

This paper presents a novel method for an on-chip erythrocyte deformability test under optical pressure, especially to enhance the level of sensitivity with respect to the detection of cancerous diseases. To demonstrate the performance and sensitivity of the combined method, we introduce the concept of transit velocity, a modified elongation index, and shape recovery time of individual erythrocytes in a strictly confined region (2 microm deep, 4 microm wide, and 100 microm long). Finally, we inv

Biomedical EngineeringEngineering
10
Review|33 citations·2011
Microfabricated particulate drug‐delivery systems
Jing Pan, Sui Yung Chan, Won Gu Lee, Lifeng Kang
SJR Q2Biotechnology Journal

Micro- and nanoparticulate drug-delivery systems (DDSs) play a significant role in formulation sciences. Most particulate DDSs are scaffold-free, although some particles are encapsulated inside other biomaterials for controlled release. Despite rapid progress in recent years, challenges still remain in controlling the homogenicity of micro-/nanoparticles, especially for two crucial factors in particulate DDSs: the size and shape of the particles. Recent approaches make use of microfabrication te

BiomaterialsMaterials Science
11
Article|24 citations·2012
Seeing the electroporative uptake of cell-membrane impermeable fluorescent molecules and nanoparticles
Ki-Soo Kim, Jeong Ah Kim, Soon‐Geul Lee, Won Gu Lee
SJR Q1Nanoscale

This paper presents direct visualization of uptake directionality for cell-membrane impermeant fluorescent molecules and fluorescence-doped nanoparticles at a single-cell level during electroporation. To observe directly the uptake direction, we used microchannel-type electroporation that can generate a relatively symmetric and uniform electric field. For all the image frames during electroporation, fluorescence intensities that occurred at cell membranes in both uptake directions toward the ele

BiotechnologyBiochemistry, Genetics and Molecular Biology
12
Article|23 citations·2011
Role of weakly polarized nanoparticles in electroporation
Jeong Ah Kim, Won Gu Lee
SJR Q1Nanoscale

In this study, we present a role for weakly polarized nanoparticles as engineered gene transporters that can enhance electromediated gene delivery. To validate this proof-of-concept, fluorescent poly(ethylene glycol) (PEG)-coated silica nanoparticles (SiNPs) with opposite polarities, SiNPs(RITC)-PEG/PTMA(+) and SiNPs(RITC)-PEG/PMP(-), are used. To investigate the electroporative uptake direction of the nanoparticles-gene complex, we employ microscale electroporation to generate more symmetric an

BiotechnologyBiochemistry, Genetics and Molecular Biology
13
Review|22 citations·2019
Electroporation for microalgal biofuels: a review
Zhenzhong Chen, Won Gu Lee
SJR Q1Sustainable Energy & Fuels

This review reports recent advances in microscale electroporation for the development of algal biofuel production for the past decade.

PhysiologyBiochemistry, Genetics and Molecular Biology
14
Article|17 citations·2007
An impulsive, electropulsation-driven backflow in microchannels during electroporation
Won Gu Lee, Hyunwoo Bang, Hoyoung Yun, Junggi Min, Chanil Chung, Jun Keun Chang, Dong-Chul Han
SJR Q1Lab on a Chip

We describe for the first time an impulsive, electropulsation-driven backflow in microchannels for on-chip cell electroporation.

BiotechnologyBiochemistry, Genetics and Molecular Biology
15
Review|15 citations·2022
Portable, Automated and Deep‐Learning‐Enabled Microscopy for Smartphone‐Tethered Optical Platform Towards Remote Homecare Diagnostics: A Review
Ki-Soo Kim, Won Gu Lee
SJR Q1Small Methods

Globally new pandemic diseases induce urgent demands for portable diagnostic systems to prevent and control infectious diseases. Smartphone-based portable diagnostic devices are significantly efficient tools to user-friendly connect personalized health conditions and collect valuable optical information for rapid diagnosis and biomedical research through at-home screening. Deep learning algorithms for portable microscopes also help to enhance diagnostic accuracy by reducing the imaging resolutio

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringBiotechnologyElectrical and Electronic EngineeringPhysiologySurgeryNeurology

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