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Dae Sung Yoon

Korea University · Medicine

About the Lab

Professor Dae Sung Yoon's research lab specializes in the development of advanced micro- and nanoscale devices for biomedical diagnostics and regenerative medicine. The lab focuses on innovative point-of-care diagnostics using isothermal amplification techniques like RT-LAMP combined with lateral flow assays, as well as the design of functionalized biomaterials for controlled drug delivery. Key research directions include microfluidic chip fabrication for rapid thermal cycling, impedance sensing in lab-on-a-chip systems, and the integration of 2D materials like graphene with biocompatible platforms for wearable biosensors. The lab also explores the electrical characterization of nanomaterials using techniques such as Kelvin probe force microscopy to understand surface potential and work function at the nanoscale.

microfluidicsbiosensorspoint-of-care diagnosticsnanomaterialscontrolled release

Research Overview

Papers
301
Total Citations
6,617
Papers (5y)
58
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
58total
2022
2023
2024
2025
2026
Citations per year (5y)
558total
20222023202420252026

Selected Papers

15
1
Article|299 citations·2017
Recent advances in carbon material-based NO2 gas sensors
Sang Won Lee, Wonseok Lee, Yoochan Hong, Gyudo Lee, Dae Sung Yoon
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
2
Article|143 citations·2002
Precise temperature control and rapid thermal cycling in a micromachined DNA polymerase chain reaction chip
Dae Sung Yoon, You Seop Lee, Young Sun Lee, Hye Jung Cho, Su Whan Sung, Kwang W. Oh, Junhoe Cha, Geunbae Lim
SJR Q2Journal of Micromechanics and Microengineering

Precise temperature control and rapid thermal cycling in a micromachined DNA polymerase chain reaction chip, Dae Sung Yoon, You-Seop Lee, Youngsun Lee, Hye Jung Cho, Su Whan Sung, Kwang W Oh, Junhoe Cha, Geunbae Lim

Biomedical EngineeringEngineering
3
Article|114 citations·2005
AC frequency characteristics of coplanar impedance sensors as design parameters
Jongin Hong, Dae Sung Yoon, Sung Kwan Kim, Tae Song Kim, Sanghyo Kim, Eugene Y. Pak, Kwangsoo No
SJR Q1Lab on a Chip

Glass-based microchannel chips were fabricated using photolithographic technology, and Pt thin-film microelectrodes, as coplanar impedance sensors, were integrated on them. Longitudinal design parameters, such as interelectrode spacing and electrode width, of coplanar impedance sensors were changed to determine AC frequency characteristics as design parameters. Through developing total impedance equations and modeling equivalent circuits, the dominant components in each frequency region were ill

Biomedical EngineeringEngineering
4
Article|91 citations·2016
Simple and Highly Sensitive Molecular Diagnosis of Zika Virus by Lateral Flow Assays
Dohwan Lee, Yong Shin, Seok-Won Chung, Kyo Seon Hwang, Dae Sung Yoon, Jeong Hoon Lee
SJR Q1Analytical Chemistry

We have developed a simple, user-friendly, and highly sensitive Zika virus (ZIKV) detection method by incorporating optimized reverse transcription loop-mediated isothermal amplification (RT-LAMP) and a lateral flow assay (LFA). The optimized RT-LAMP reaction was carried out using Bst 3.0 polymerase, which has robust and fast isothermal amplification performance even in the presence of high concentrations of inhibitors; this permitted the amplification of ZIKV RNA in pure water and human whole b

Public Health, Environmental and Occupational HealthMedicine
5
Article|89 citations·2021
Sequential dual-drug delivery of BMP-2 and alendronate from hydroxyapatite-collagen scaffolds for enhanced bone regeneration
Dongtak Lee, Maierdanjiang Wufuer, Insu Kim, Tae Hyun Choi, Byung Jun Kim, Hyo Gi Jung, Byoungjun Jeon, Gyudo Lee, Ok Hee Jeon, Hak Chang, Dae Sung Yoon
SJR Q1Scientific ReportsOA

The clinical use of bioactive molecules in bone regeneration has been known to have side effects, which result from uncontrolled and supraphysiological doses. In this study, we demonstrated the synergistic effect of two bioactive molecules, bone morphogenic protein-2 (BMP-2) and alendronate (ALN), by releasing them in a sequential manner. Collagen-hydroxyapatite composite scaffolds functionalized using BMP-2 are loaded with biodegradable microspheres where ALN is encapsulated. The results indica

Biomedical EngineeringEngineering
6
Article|89 citations·2020
Multiplexed femtomolar detection of Alzheimer's disease biomarkers in biofluids using a reduced graphene oxide field-effect transistor
Dongsung Park, Jae‐Hyun Kim, Hye Jin Kim, Dongtak Lee, David S. Lee, Dae Sung Yoon, Kyo Seon Hwang
SJR Q1Biosensors and Bioelectronics
Electrical and Electronic EngineeringEngineering
7
Article|65 citations·2021
Selective colorimetric urine glucose detection by paper sensor functionalized with polyaniline nanoparticles and cell membrane
Taeha Lee, Insu Kim, Da Yeon Cheong, Seokbeom Roh, Hyo Gi Jung, Sang Won Lee, Hyun Soo Kim, Dae Sung Yoon, Yoochan Hong, Gyudo Lee
SJR Q1Analytica Chimica Acta
Electrical and Electronic EngineeringEngineering
8
Article|61 citations·2007
Nanomechanical microcantilever operated in vibration modes with use of RNA aptamer as receptor molecules for label-free detection of HCV helicase
Kyo Seon Hwang, Sang-Myung Lee, Kilho Eom, Jeong Hoon Lee, Yoon-Sik Lee, Jung Ho Park, Dae Sung Yoon, Tae Song Kim
SJR Q1Biosensors and Bioelectronics
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|58 citations·2016
Surface Potential Analysis of Nanoscale Biomaterials and Devices Using Kelvin Probe Force Microscopy
Hyungbeen Lee, Wonseok Lee, Jeong Hoon Lee, Dae Sung Yoon
SJR Q2Journal of NanomaterialsOA

In recent years, Kelvin probe force microscopy (KPFM) has emerged as a versatile toolkit for exploring electrical properties on a broad range of nanobiomaterials and molecules. An analysis using KPFM can provide valuable sample information including surface potential and work function of a certain material. Accordingly, KPFM has been widely used in the areas of material science, electronics, and biomedical science. In this review, we will briefly explain the setup of KPFM and its measuring princ

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
10
Article|54 citations·2017
A highly permselective electrochemical glucose sensor using red blood cell membrane
Insu Kim, Dohyung Kwon, Dongtak Lee, Tae Hoon Lee, Jeong Hoon Lee, Gyudo Lee, Dae Sung Yoon
SJR Q1Biosensors and Bioelectronics
Electrical and Electronic EngineeringEngineering
11
Article|48 citations·1994
Epitaxial growth of sol-gel PLZT thin films
Dae Sung Yoon, Chang Jung Kim, Joon Sung Lee, Won Jong Lee, Kwangsoo No
SJR Q2Journal of materials research/Pratt's guide to venture capital sources
Electrical and Electronic EngineeringEngineering
12
Article|46 citations·2022
Nanoelectrokinetic-assisted lateral flow assay for COVID-19 antibody test
Cheonjung Kim, Yong Kyoung Yoo, Na Eun Lee, Junwoo Lee, Kang Hyeon Kim, Seung-Min Lee, Jinhwan Kim, Seong Jun Park, Dongtak Lee, Sang Won Lee, Kyo Seon Hwang, Sung Il Han
SJR Q1Biosensors and BioelectronicsOA
Infectious DiseasesMedicine
13
Article|45 citations·2020
Bio-Inspired Electronic Textile Yarn-Based NO2 Sensor Using Amyloid–Graphene Composite
Sang Won Lee, Wonseok Lee, Insu Kim, Dongtak Lee, Dongsung Park, Woong Kim, Jinsung Park, Jeong Hoon Lee, Gyudo Lee, Dae Sung Yoon
SJR Q1ACS Sensors

Graphene-based e-textile gas sensors have received significant attention as wearable electronic devices for human healthcare and environmental monitoring. Theoretically, more the attached graphene on the devices, better is the gas-sensing performance. However, it has been hampered by poor adhesion between graphene and textile platforms. Meanwhile, amyloid nanofibrils are reputed for their ability to improve adhesion between materials, including between graphene and microorganisms. Despite that f

Biomedical EngineeringEngineering
14
Article|44 citations·2021
Coagulation-Inspired Direct Fibrinogen Assay Using Plasmonic Nanoparticles Functionalized with Red Blood Cell Membranes
Insu Kim, Dongtak Lee, Sang Won Lee, Jeong Hoon Lee, Gyudo Lee, Dae Sung Yoon
SJR Q1ACS Nano

The fast measurement of fibrinogen is essential in evaluating life-threatening sepsis and cardiovascular diseases. Here, we aim to utilize biomimetic plasmonic Au nanoparticles using red blood cell membranes (RBCM-AuNPs) and demonstrate nanoscale coagulation-inspired fibrinogen detection <i>via</i> cross-linking between RBCM-AuNPs. The proposed biomimetic RBCM-AuNPs are highly suitable for fibrinogen detection because hemagglutination, occurring in the presence of fibrinogen, induces a shift in

Pulmonary and Respiratory MedicineMedicine
15
Article|42 citations·2012
Aptamer-functionalized nano-pattern based on carbon nanotube for sensitive, selective protein detection
Kihwan Nam, Kilho Eom, Jaemoon Yang, Jinsung Park, Gyudo Lee, Kuewhan Jang, Hyungbeen Lee, Sang Woo Lee, Dae Sung Yoon, Chang Young Lee, Taeyun Kwon
Journal of Materials ChemistryOA

We have developed a horizontally aligned carbon nanotube sensor that enables not only the specific detection of biomolecules with ultra-sensitivity, but also the quantitative characterization of binding affinity between biomolecules and/or interaction between a carbon nanotube and a biomolecule, for future applications in early diagnostics. In particular, we have fabricated horizontally aligned carbon nanotubes, which were functionalized with specific aptamers that are able to specifically bind

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Biomedical EngineeringAtomic and Molecular Physics, and OpticsSurgeryMolecular BiologyElectrical and Electronic EngineeringMaterials Chemistry

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