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김중배 교수

Jungbae Kim

고려대학교 화공생명공학과 · 공학

연구실 소개

김중배 교수의 연구실은 효소를 나노구조로 안정화하고 기능화하여 생물촉매의 내구성과 반응성을 극대화하는 데 초점을 맞추고 있습니다. 특히, 나노입자, 나노섬유, 메조다공성 실리카 등 다양한 나노소재에 효소를 고정시켜 고온·고산성·단백분해효소에 대한 저항성을 확보한 점이 두드러집니다. 이는 의료용 나노의약품, 환경 정화, 탄소 포집 등 응용 분야로의 확장이 가능합니다.

효소 나노구조나노섬유자기성 나노입자고안정성 촉매탄소 포집

연구 현황

논문 수
318
총 인용 수
12,126
최근 5년 논문
45
주요 분야
공학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
45총합
2021
2022
2023
2024
2025
5개년 연도별 피인용 수
596총합
20212022202320242025

주요 논문

15
1
논문|인용수 836·2005
Nanostructures for enzyme stabilization
Jungbae Kim, Jay W. Grate, Ping Wang
SJR Q1Chemical Engineering Science
Electrical and Electronic EngineeringEngineering
2
리뷰|인용수 550·2006
Challenges in biocatalysis for enzyme-based biofuel cells
Jungbae Kim, Hongfei Jia, Ping Wang
SJR Q1Biotechnology Advances
Electrical and Electronic EngineeringEngineering
3
리뷰|인용수 415·2008
Nanobiocatalysis and its potential applications
Jungbae Kim, Jay W. Grate, Ping Wang
SJR Q1Trends in biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 282·2003
Single-Enzyme Nanoparticles Armored by a Nanometer-Scale Organic/Inorganic Network
Jungbae Kim, Jay W. Grate
SJR Q1Nano Letters

We have developed armored single-enzyme nanoparticles (SENs) that surround each enzyme molecule with a porous composite organic/inorganic network of less than a few nanometers thick. This approach has significantly stabilized two proteases (α-chymotrypsin, CT, and trypsin, TR), and the armor network around CT is sufficiently thin and porous that it does not place a large mass-transfer limitation on the substrate. These new hybrid enzyme nanostructures offer great potential as a method to stabili

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
리뷰|인용수 139·2022
Recent advances in multifunctional nanomaterials for photothermal-enhanced Fenton-based chemodynamic tumor therapy
Panchanathan Manivasagan, Ara Joe, Hyowon Han, Thavasyappan Thambi, Manickam Selvaraj, Kumarappan Chidambaram, Jungbae Kim, Eue‐Soon Jang
SJR Q1Materials Today BioOA

Photothermal (PT)-enhanced Fenton-based chemodynamic therapy (CDT) has attracted a significant amount of research attention over the last five years as a highly effective, safe, and tumor-specific nanomedicine-based therapy. CDT is a new emerging nanocatalyst-based therapeutic strategy for the <i>in situ</i> treatment of tumors via the Fenton reaction or Fenton-like reaction, which has got fast progress in recent years because of its high specificity and activation by endogenous substances. A va

Biomedical EngineeringEngineering
6
리뷰|인용수 120·2022
Carbonic anhydrase for CO2 capture, conversion and utilization
Sachin Talekar, Byung Hoon Jo, Jonathan S. Dordick, Jungbae Kim
SJR Q1Current Opinion in Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
논문|인용수 117·2011
Immobilization of glucose oxidase into polyaniline nanofiber matrix for biofuel cell applications
Hyeongseok Kim, In‐Seon Lee, Yongchai Kwon, Byoung Chan Kim, Su Ha, Jung-Heon Lee, Jungbae Kim
SJR Q1Biosensors and Bioelectronics
Electrical and Electronic EngineeringEngineering
8
논문|인용수 116·2005
Direct fabrication of enzyme-carrying polymer nanofibers by electrospinning
Thurston Herricks, Sae-Hoon Kim, Sae-Hoon Kim, Jungbae Kim, Dan Li, Ja Hun Kwak, Jay W. Grate, Seong H. Kim, Seong H. Kim, Younan Xia
Journal of Materials Chemistry

Nanofibers consisting of enzyme–polymer composites have been prepared by directly electrospinning a solution of surfactant-stabilized enzyme and polymer in toluene. Additional treatment with glutaraldehyde could greatly stabilize the enzyme activity of the fibers, which could be maintained in a buffer under shaking conditions for more than two weeks. The nanofibers also showed great improvement in the enzyme activity over bulk films as a result of increased mass-transfer for substrate molecules

BiomaterialsMaterials Science
9
논문|인용수 111·2005
A Magnetically Separable, Highly Stable Enzyme System Based on Nanocomposites of Enzymes and Magnetic Nanoparticles Shipped in Hierarchically Ordered, Mesocellular, Mesoporous Silica
Jungbae Kim, Jinwoo Lee, Hyon Bin Na, Byoung Chan Kim, Jong Kyu Youn, Ja Hun Kwak, Karam Moon, Karam Moon, Jaeyun Kim, Jongnam Park, Alice Dohnálková, Hyun Gyu Park
SJR Q1Small

Multifunctional nanocomposites (M-CLEAs) of enzymes and magnetic nanoparticles (M-NPs) were fabricated in hierarchically ordered, mesocellular, mesoporous silica (HMMS; see Figure) by a simple process involving the co-adsorption of enzyme molecules and magnetic nanoparticles into HMMS followed by glutaraldehyde (GA) treatment. These nanocomposites are magnetically separable and highly stable and active. In particular, M-CLEA–lipase shows no decrease of lipase activity at all in the presence of p

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 109·2019
Magnetic Nanoparticles‐Embedded Enzyme‐Inorganic Hybrid Nanoflowers with Enhanced Peroxidase‐Like Activity and Substrate Channeling for Glucose Biosensing
Hong Jae Cheon, Manab Deb Adhikari, Minsoo Chung, Tai Duc Tran, Jungbae Kim, Moon Il Kim
SJR Q1Advanced Healthcare Materials

Abstract It is reported that glucose oxidase (GOx)‐copper hybrid nanoflowers embedded with Fe 3 O 4 magnetic nanoparticles (MNPs) exhibit superior peroxidase‐mimicking activity as well as substrate channeling for glucose detection. This is due to the synergistic integration of GOx, crystalline copper phosphates and MNPs being in close proximity within the nanoflowers. The preparation of MNP‐embedded GOx‐copper hybrid nanoflowers (MNPs‐GOx NFs) begins with the facile conjugation of amine‐function

Materials ChemistryMaterials Science
11
논문|인용수 107·2020
Stabilized and Immobilized Carbonic Anhydrase on Electrospun Nanofibers for Enzymatic CO2 Conversion and Utilization in Expedited Microalgal Growth
Seung‐Hyun Jun, Jusang Yang, Hancheol Jeon, Han Sol Kim, Seung Pil Pack, EonSeon Jin, Jungbae Kim
SJR Q1Environmental Science & Technology

Carbonic anhydrases convert CO<sub>2</sub> to bicarbonate at a high turnover rate up to 10<sup>6</sup> s<sup>-1</sup>, but their actual applications in CO<sub>2</sub> conversion processes are hampered by their poor stability. This study reports highly loaded and stabilized bovine carbonic anhydrase (bCA) upon being immobilized onto electrospun polymer nanofibers in the form of enzyme precipitate coating (EPC). The EPC protocol, consisting of enzyme covalent attachment, precipitation, and cross-l

Renewable Energy, Sustainability and the EnvironmentEnergy
12
논문|인용수 104·2019
Tyrosinase-immobilized CNT based biosensor for highly-sensitive detection of phenolic compounds
Youngho Wee, Seunghwan Park, Young Hyeon Kwon, Youngjun Ju, Kyung-Min Yeon, Jungbae Kim
SJR Q1Biosensors and Bioelectronics
Electrical and Electronic EngineeringEngineering
13
논문|인용수 96·2009
A sensitive method to detect Escherichia coli based on immunomagnetic separation and real-time PCR amplification of aptamers
Hye-Jin Lee, Byoung Chan Kim, Kyungwoo Kim, Young Keun Kim, Jungbae Kim, Min‐Kyu Oh
SJR Q1Biosensors and Bioelectronics
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
논문|인용수 82·2019
Glucose oxidase-copper hybrid nanoflowers embedded with magnetic nanoparticles as an effective antibacterial agent
In‐Seon Lee, Hong Jae Cheon, Manab Deb Adhikari, Tai Duc Tran, Kyung-Min Yeon, Moon Il Kim, Jungbae Kim
SJR Q1International Journal of Biological Macromolecules
Materials ChemistryMaterials Science
15
논문|인용수 81·1997
Unusual salt and solvent dependence of a protease from an extreme halophile
Jungbae Kim, Jonathan S. Dordick
SJR Q2Biotechnology and Bioengineering

An extracellular protease has been purified from the extreme halophile, Halobacterium halobium. The irreversible inactivation kinetics of this halophilic protease in salt concentrations below 4M consists of autolytic and nonautolytic (steady-state denaturation) components. Addition of organic solvents has a dramatic effect on enzyme stability in low salt media. For example, in 0.36M NaCl, the inactivation rate constant for the nonautolytic component in 20% (v/v) ethylene glycol is ca. 3 orders o

Molecular BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

Electrical and Electronic EngineeringMolecular BiologyBiomedical EngineeringMaterials ChemistryComputer Vision and Pattern RecognitionBiomaterials

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