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Kang Kyungtae

Kyung Hee University · Chemistry

About the Lab

Professor Kang Kyungtae's research lab specializes in the intersection of nanomaterials, bioengineering, and chemical biology, focusing on how nanoscale topographies and functional materials influence biological systems. Key research directions include the design of bioactive nanomaterials—such as Ir-based nanozymes and dopamine-functionalized electrodes—for biomedical applications, including antibacterial and anticancer therapies. The lab also investigates neuronal development by probing how hippocampal neurons respond to engineered micro/nanotopographies, aiming to uncover mechanisms guiding neurite outgrowth. Additionally, the lab employs advanced analytical techniques like topic modeling and bioorthogonal chemistry to decode dynamic biological processes and develop next-generation molecular tools for live-cell studies.

nanomaterialsneuronal developmentnanozymesbioorthogonal chemistrychemical proteomics

Research Overview

Papers
226
Total Citations
2,731
Papers (5y)
34
Primary Field
Chemistry

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
34total
2022
2023
2024
2025
2026
Citations per year (5y)
86total
20222023202420252026

Selected Papers

15
1
Article|160 citations·2011
A biofunctionalization scheme for neural interfaces using polydopamine polymer
Kyungtae Kang, Insung S. Choi, Yoonkey Nam
SJR Q1Biomaterials
Cellular and Molecular NeuroscienceNeuroscience
2
Article|99 citations·2011
In Vitro Developmental Acceleration of Hippocampal Neurons on Nanostructures of Self‐Assembled Silica Beads in Filopodium‐Size Ranges
Kyungtae Kang, Sung‐Eun Choi, Hee Su Jang, Woo Kyung Cho, Yoonkey Nam, Insung S. Choi, Jin Seok Lee
SJR Q1Angewandte Chemie International Edition

Something to sprout about: The developmental acceleration of hippocampal neurons occurred on well-packed structures of silica beads with diameters over 200 nm (see picture; scale bar: 5 μm, inset scale bar: 1 μm). The neurons sensed the size differences of the nanostructures and altered their behaviors, thus implying that nanotopographical stimuli are one of the important features for guiding neurites during neural developments in vivo. Detailed facts of importance to specialist readers are publ

BiomaterialsMaterials Science
3
Article|72 citations·2012
Electrochemically Driven, Electrode‐Addressable Formation of Functionalized Polydopamine Films for Neural Interfaces
Kyungtae Kang, Seokyoung Lee, Rae-Young Kim, Insung S. Choi, Yoonkey Nam
SJR Q1Angewandte Chemie International Edition

The electrode-specific formation of polydopamine films is achieved by applying positive voltage to the target electrodes at pH 6.0. The functionalization of the films is simultaneously carried out by co-depositing dopamine with molecules of interest onto the electrode.

Polymers and PlasticsMaterials Science
4
Article|62 citations·2020
Intrinsic Peroxidase-Mimicking Ir Nanoplates for Nanozymatic Anticancer and Antibacterial Treatment
Gyeonghye Yim, Chan Yeon Kim, Seounghun Kang, Dal‐Hee Min, Kyungtae Kang, Hongje Jang
SJR Q1ACS Applied Materials & Interfaces

The study of inorganic nanozymes to overcome the disadvantages of bio-enzymes, such as the requirement of optimized reaction conditions and lack of durability against environmental factors, is one of the most significant research topics at present. In this work, we comprehensively analyzed the intrinsic peroxidase-like activity of Ir-based nanoparticles, the biological and nanozymatic potentials of which have not yet been explored. These particles were synthesized by the galvanic replacement of

Materials ChemistryMaterials Science
5
Article|50 citations·2019
Analysis of the Trends in Biochemical Research Using Latent Dirichlet Allocation (LDA)
Hee Jay Kang, Changhee Kim, Kyungtae Kang
SJR Q2ProcessesOA

Biochemistry has been broadly defined as “chemistry of molecules included or related to living systems”, but is becoming increasingly hard to be distinguished from other related fields. Targets of its studies evolve rapidly; some newly emerge, disappear, combine, or resurface themselves with a fresh viewpoint. Methodologies for biochemistry have been extremely diversified, thanks particularly to those adopted from molecular biology, synthetic chemistry, and biophysics. Therefore, this paper adop

Artificial IntelligenceComputer Science
6
Article|50 citations·2014
Cytoskeletal Actin Dynamics are Involved in Pitch‐Dependent Neurite Outgrowth on Bead Monolayers
Kyungtae Kang, Seo Young Yoon, Sung‐Eun Choi, Mi‐Hee Kim, Matthew Park, Yoonkey Nam, Jin Seok Lee, Insung S. Choi
SJR Q1Angewandte Chemie International Edition

Neurite outgrowth is an important preceding step for the development of nerve systems. Given that the in vivo environments of neurons consist of numerous hierarchical micro/nanotopographies, there have been many efforts to investigate the relationship between neuronal behaviors and surface topography. The acceleration of neurite outgrowth was recently reported on surfaces with a periodic nanotopography, but the biological mechanism has not yet been elucidated. In this work, the initial neurite d

Cell BiologyBiochemistry, Genetics and Molecular Biology
7
Article|47 citations·1992
Synthesis of α-methylenecyclopentanones via silicon directed nazarov reaction of α-trimethylsilymethyl substituted divinyl ketones.
Kyungtae Kang, Soung Sin Kim, Jae‐Chul Lee, Jong Sun U
SJR Q3Tetrahedron Letters
Organic ChemistryChemistry
8
Review|46 citations·2016
Tetrazine ligation for chemical proteomics
Kyungtae Kang, Jongmin Park, Eunha Kim
SJR Q3Proteome ScienceOA

Determining small molecule-target protein interaction is essential for the chemical proteomics. One of the most important keys to explore biological system in chemical proteomics field is finding first-class molecular tools. Chemical probes can provide great spatiotemporal control to elucidate biological functions of proteins as well as for interrogating biological pathways. The invention of bioorthogonal chemistry has revolutionized the field of chemical biology by providing superior chemical t

Organic ChemistryChemistry
9
Article|40 citations·2018
Nanotopography‐Promoted Formation of Axon Collateral Branches of Hippocampal Neurons
Jeongyeon Seo, Juan Kim, Sunghoon Joo, Ji Yu Choi, Kyungtae Kang, Woo Kyung Cho, Insung S. Choi
SJR Q1Small

Axon collateral branches, as a key structural motif of neurons, allow neurons to integrate information from highly interconnected, divergent networks by establishing terminal boutons. Although physical cues are generally known to have a comprehensive range of effects on neuronal development, their involvement in axonal branching remains elusive. Herein, it is demonstrated that the nanopillar arrays significantly increase the number of axon collateral branches and also promote their growth. Immun

Cellular and Molecular NeuroscienceNeuroscience
10
Article|39 citations·2015
Axon-First Neuritogenesis on Vertical Nanowires
Kyungtae Kang, Yi-Seul Park, Matthew Park, Min Jee Jang, Seong‐Min Kim, Juno Lee, Ji Yu Choi, Da Hee Jung, Young‐Tae Chang, Myung‐Han Yoon, Jin Seok Lee, Yoonkey Nam
SJR Q1Nano Letters

In this work, we report that high-density, vertically grown silicon nanowires (vg-SiNWs) direct a new in vitro developmental pathway of primary hippocampal neurons. Neurons on vg-SiNWs formed a single, extremely elongated major neurite earlier than minor neurites, which led to accelerated polarization. Additionally, the development of lamellipodia, which generally occurs on 2D culture coverslips, was absent on vg-SiNWs. The results indicate that surface topography is an important factor that inf

Cellular and Molecular NeuroscienceNeuroscience
11
Article|33 citations·2018
Neurite Guidance on Laser-Scribed Reduced Graphene Oxide
Sang Hwa Lee, Han Byeol Lee, Yoonyoung Kim, Jae Ryeol Jeong, Min Hyung Lee, Kyungtae Kang
SJR Q1Nano Letters

This paper describes a one-step, chemical-free method to generate micropatterned in vitro neuronal networks on chemically unmodified reduced graphene oxide. The suggested method relies on infrared-based photothermal reduction of graphene oxide, which concurrently leads to the formation of submicrometer-scale surface roughness that promotes neuronal adhesion and guides neurite outgrowth. A commercially available laser source (LightScribe DVD drive) controlled by a computer software can be used to

Biomedical EngineeringEngineering
12
Article|31 citations·2015
Tissue-based metabolic labeling of polysialic acids in living primary hippocampal neurons
Kyungtae Kang, Sunghoon Joo, Ji Yu Choi, Sujeong Geum, Seok‐Pyo Hong, Seung-Yeul Lee, Yong Ho Kim, Seong‐Min Kim, Myung‐Han Yoon, Yoonkey Nam, Kyung‐Bok Lee, Hee‐Yoon Lee
SJR Q1Proceedings of the National Academy of SciencesOA

The posttranslational modification of neural cell-adhesion molecule (NCAM) with polysialic acid (PSA) and the spatiotemporal distribution of PSA-NCAM play an important role in the neuronal development. In this work, we developed a tissue-based strategy for metabolically incorporating an unnatural monosaccharide, peracetylated N-azidoacetyl-D-mannosamine, in the sialic acid biochemical pathway to present N-azidoacetyl sialic acid to PSA-NCAM. Although significant neurotoxicity was observed in the

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|24 citations·1991
Synthesis of functionalized allylsilanes via palladium-catalyzed cross-coupling of 2-stannyl-3-silylpropene with organic halides.
Kyungtae Kang, Soung Sin Kim, Jae‐Chul Lee
SJR Q3Tetrahedron Letters
Organic ChemistryChemistry
14
Article|23 citations·1979
Synthesis and Properties of o-Thioquinone Methides Having Ketene Aminal, Ketene Acetal, Ketene Monothioacetal, or Ketene Dithioacetal Group
Kyungtae Kang, Renji Okazaki, Naoki Inamoto
SJR Q2Bulletin of the Chemical Society of JapanOA

Abstract Reaction of 1,2-benzodithiole-3-thione with N,N′-dialkyl-1,2-ethanedianiine afforded o-thioquinone methides with a ketene aminal group (6) in high yields. Two similar thionaphthoquinone methides were also prepared. o-Thioquinone methide derived from N,N′-dimethyl-o-phenylenediamine was prepared from 3-chloro-1,2-benzodithiol-3-ylium chloride (10). These compounds were found to exist as a monomer of a considerable betaine nature. Reactions of 6a (N,N′-dimethyl derivative) with dimethyl a

Organic ChemistryChemistry
15
Article|23 citations·2017
Strong contact coupling of neuronal growth cones with height-controlled vertical silicon nanocolumns
Seong‐Min Kim, Seyeong Lee, Dong-Yoon Kim, Dong-Hee Kang, Kisuk Yang, Seung‐Woo Cho, Jin Seok Lee, Insung S. Choi, Kyungtae Kang, Myung‐Han Yoon
SJR Q1Nano Research

In this study, we report that height-controlled vertically etched silicon nano-column arrays (vSNAs) induce strong growth cone-to-substrate coupling and accelerate In vitroneurite development while preserving the essential features of initial neurite formation. Large-scale preparation of vSNAs with flat head morphology enabled the generation of well-controlled topographical stimulation without cellular impalement. A systematic analysis on topography-induced variations on cellular morphology and

Cell BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Organic ChemistryMolecular BiologyCellular and Molecular NeuroscienceComputational Theory and MathematicsMaterials ChemistryBiomaterials

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