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Dive into the research topics where Jinwoon Kim is active.

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Featured researches published by Jinwoon Kim.


Scientific Reports | 2017

Development of gold nanoparticle-aptamer-based LSPR sensing chips for the rapid detection of Salmonella typhimurium in pork meat

Seo Yeong Oh; Nam Su Heo; Shruti Shukla; Hye-Jin Cho; A. T. Ezhil Vilian; Jinwoon Kim; Sang Yup Lee; Young-Kyu Han; Seung Min Yoo; Yun Suk Huh

A non-labeled, portable plasmonic biosensor-based device was developed to enable the ultra-sensitive and selective detection of Salmonella typhimurium in pork meat samples. Specifically, a plasmonic sensor, using the self-assembly of gold nanoparticles (AuNPs) to achieve a regulated diameter of 20 nm for the AuNP monolayers, was used to conduct high-density deposition on a transparent substrate, which produced longitudinal wavelength extinction shifts via a localized surface plasmon resonance (LSPR) signal. The developed aptamers conjugated to the LSPR sensing chips revealed an ultra-sensitive upper limit of detection (LOD) of approximately 104 cfu/mL for S. typhimurium in pure culture under the optimal assay conditions, with a total analysis time of 30–35 min. When the LSPR sensing chips were applied on artificially contaminated pork meat samples, S. typhimurium in the spiked pork meat samples was also detected at an LOD of 1.0 × 104 cfu/mL. The developed method could detect S. typhimurium in spiked pork meat samples without a pre-enrichment step. Additionally, the LSPR sensing chips developed against S. typhimurium were not susceptible to any effect of the food matrix or background contaminant microflora. These findings confirmed that the developed gold nanoparticle-aptamer-based LSPR sensing chips could facilitate sensitive detection of S. typhimurium in food samples.


Sensors | 2016

Development of Lateral Flow Assay Based on Size-Controlled Gold Nanoparticles for Detection of Hepatitis B Surface Antigen

Dong Seok Kim; Yong Tae Kim; Seok Bok Hong; Jinwoon Kim; Nam Su Heo; Moon-Keun Lee; Seok Jae Lee; Byeong Il Kim; In Soo Kim; Yun Suk Huh; Bong Gill Choi

In this study, we developed lateral flow assay (LFA) biosensors for the detection of hepatitis B surface antigens using well-controlled gold nanoparticles (AuNPs). To enhance colorimetric signals, a seeded growth method was used for the preparation of size-controlled AuNPs with a narrow size distribution. Different sizes of AuNPs in the range of 342–137.8 nm were conjugated with antibodies and then optimized for the efficient detection of LFA biosensors. The conjugation stability was investigated by UV-vis spectroscopy of AuNP dispersion at various pH values and concentrations of antibody. Based on optimized conjugation conditions, the use of 42.7 ± 0.8 nm AuNPs exhibited superior performance for the detection of LFAs relative to other sizes of AuNPs.


Biosensors and Bioelectronics | 2018

Heteroassembled gold nanoparticles with sandwich-immunoassay LSPR chip format for rapid and sensitive detection of hepatitis B virus surface antigen (HBsAg)

Jinwoon Kim; Seo Yeong Oh; Shruti Shukla; Seok Bok Hong; Nam Su Heo; Vivek K. Bajpai; Hyang Sook Chun; Cheon-Ho Jo; Bong Gill Choi; Yun Suk Huh; Young-Kyu Han

This study aimed to develop a more sensitive method for the detection of hepatitis B surface antigen (HBsAg) using heteroassembled gold nanoparticles (AuNPs). A single layered localized surface plasmon resonance (LSPR) chip format was developed with antigen-antibody reaction-based detection symmetry using AuNPs, which detected HBsAg at 10 pg/mL. To further improve the detection limit, a modified detection format was fabricated by fixing a secondary antibody (to form a heteroassembled sandwich format) to the AuNP monolayer, which enhanced the detection sensitivity by about 100 times. The developed heteroassembled AuNPs sandwich-immunoassay LSPR chip format was able to detect as little as 100 fg/mL of HBsAg within 10-15 min. In addition, the heteroassembled AuNPs sandwich-immunoassay LSPR chip format did not show any non-specific binding to other tested antigens, including alpha fetoprotein (AFP), C-reactive protein (CRP), and prostate-specific antigen (PSA). These findings confirm that the proposed detection strategy of heteroassembled AuNPs sandwich-immunoassay LSPR chip format may provide a new platform for early diagnosis of various human diseases.


Journal of Crystal Growth | 2016

Rapid and label-free bioanalytical method of alpha fetoprotein detection using LSPR chip

Dongjoo Kim; Jinwoon Kim; Cheol Kwak; Nam Su Heo; Seo Yeong Oh; Hoomin Lee; Go-Woon Lee; A. T. Ezhil Vilian; Young-Kyu Han; Woo-Sik Kim; Gi-bum Kim; Soonjo Kwon; Yun Suk Huh


New Biotechnology | 2009

Identification of sucrose uptake system in Mannheimia succiniciproducens

Yu-Sin Jang; J.W. Lee; Jinwoon Kim; Sang Yup Lee


한국생물공학회 학술대회 | 2017

Development of Sensitive LSPR biosensor using immunocolloidal gold for detection of Hepatitis B

Jinwoon Kim; Nam Su Heo; Seo Yeong Oh; Yun Suk Huh


한국생물공학회 학술대회 | 2016

Portable LSPR sensor for the on-site detection of Bacteria in food

Jinwoon Kim; Seo Yeong Oh; Nam Su Heo; Hye-Jin Cho; Jun Yeong Kim; Yun Suk Huh


한국생물공학회 학술대회 | 2016

LSPR sensor chip based on different glass substrate for highly sensitive detection of Creactive protein

Jinwoon Kim; Seo Yeong Oh; Nam Su Heo; Jun Ho Choi; Yun Suk Huh


Annual Fall Meeting of KIChE | 2007

DNA microarray analysis of succinic acid shock response in Mannheimia succiniciproducens

Jinwoon Kim; Ys Jang; Seh Hee Jang; Hyohak Song; SangYup Lee


2006 International Meeting of the Federation of Korean Microbiological Societies | 2006

Analysis of the Replication Region of Shuttle Vector for Succinic Acid Producing Rumen Bacteria

Ys Jang; Jinwoon Kim; Jang S.H; Hyohak Song; SangYup Lee

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Bong Gill Choi

Kangwon National University

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