이원용 교수
Woo Yong Lee
연세대학교 화학과 · 재료과학
연구실 소개
이원용 교수의 연구실은 전기화학적 발광(ECL) 센서 기반의 고감도 생체분석 기술과 순환암세포(Circulating Tumor Cells, CTCs)의 고순도 분리 및 검출 기술을 핵심으로 연구를 진행하고 있습니다. 특히 트리스(2,2'-비피리딘)루테늄(II) 기반 ECL 센서의 안정성과 감도 향상을 위해 나피온-티타니아 복합막 및 자기나노입자를 활용한 다층 구조 설계를 개발하였으며, CTC 분리에서는 항체-마이크로비드 기반 캡처와 밀도 기반 정렬, 마이크로플루이딕 기반 자동화 플랫폼을 융합한 혁신적 접근을 선보이고 있습니다. 이는 암 진단의 정밀도를 높이고 임상 현장에 적용 가능한 바이오센서 기술 구현에 기여하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Electrochemical behavior and electrogenerated chemiluminescence (ECL) of tris(2,2'-bipyridyl)ruthenium(II) (Ru(bpy)3(2+)) immobilized in sol-gel-derived titania TiO2)-Nafion composite films coated on a glassy carbon electrode have been investigated. The electroactivity of Ru(bpy)3(2+) ion exchanged into the composite films and its ECL behavior were strongly dependent upon the amount of Nafion incorporated into the TiO2-Nafion composite films. The ECL sensor of Ru(bpy)32+ immobilized in a TiO2-Na
ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTEvaluation of Use of Tris(2,2'-bipyridyl)ruthenium(III) as a Chemiluminescent Reagent for Quantitation in Flowing StreamsWon-Yong. Lee and Timothy A. NiemanCite this: Anal. Chem. 1995, 67, 11, 1789–1796Publication Date (Print):June 1, 1995Publication History Published online1 May 2002Published inissue 1 June 1995https://pubs.acs.org/doi/10.1021/ac00107a007https://doi.org/10.1021/ac00107a007research-articleACS PublicationsRequest reuse permissionsArticl
Isolation of circulating tumor cells (CTCs) by size exclusion can yield poor purity and low recovery rates, due to large variations in size of CTCs, which may overlap with leukocytes and render size-based filtration methods unreliable. This report presents a very sensitive, selective, fast, and novel method for isolation and detection of CTCs. Our assay platform consists of three steps: (i) capturing CTCs with anti-EpCAM conjugated microbeads, (ii) removal of unwanted hematologic cells (e.g., le
A highly sensitive and stable [Ru(bpy)3]2+ ECL sensor has been fabricated based on the multilayer films of Nafion-stabilized magnetic nanoparticles (Nafion/Fe3O4) formed on a platinum electrode surface by means of an external magnet.
A highly sensitive microgravimetric lectin biosensor has been developed using carbohydrate-stabilized Au nanoparticles as a signal amplifier; mannose-stabilized Au nanoparticles formed a sandwich-type complex with the target Con A specifically bound to a mannose-modified Au QCM electrode to give an amplified frequency response.
Full automation with high purity for circulating tumor cell (CTC) isolation has been regarded as a key goal to make CTC analysis a "bench-to-bedside" technology. Here, we have developed a novel centrifugal microfluidic platform that can isolate the rare cells from a large volume of whole blood. To isolate CTCs from whole blood, we introduce a disc device having the biggest sample capacity as well as manipulating blood cells for the first time. The fully automated disc platform could handle 5 mL
Abstract Novel, low‐voltage, high‐detectivity, solution‐processed, flexible near‐infrared (NIR) photodetectors for optoelectronic applications are realized and their optoelectronic properties are investigated for the first time. This is achieved by synthesizing Ag 2 Se nanoparticles (NPs) in aqueous solutions, and depositing highly crystalline Ag 2 Se thin films at 150 °C with redistributed Ag 2 Se NPs in aqueous inks. The high conductivity and low trap concentration of the 150 °C annealed Ag 2
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