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Mikyung Shin

Sungkyunkwan University · 工学

研究室紹介

Professor Mikyung Shin's research lab specializes in developing bioinspired materials with multifunctional properties, particularly focusing on pyrogallol- and catechol-based adhesives for biomedical and energy applications. The lab explores the design of injectable, conductive, and mucoadhesive hydrogels using natural functional groups like gallol and catechol to enable applications in tissue engineering, drug delivery, and 3D bioprinting. A central theme is leveraging strong, reversible, and substrate-independent adhesion for hemostasis, wound healing, and medical device integration. The lab also investigates the interplay between molecular structure and macroscopic material behavior, such as shear-thinning and self-healing, to create smart biomaterials.

biomimetic adhesiveshydrogelsmucoadhesion3D bioprintinghemostasis

Research Overview

Papers
120
Total Citations
4,566
Papers (5y)
78
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
78total
2021
2022
2023
2024
2025
Citations per year (5y)
1,915total
20212022202320242025

Selected Papers

15
1
Article|317 citations·2018
Targeting protein and peptide therapeutics to the heart via tannic acid modification
Mikyung Shin, Hyang-Ae Lee, Mihyun Lee, Yoomi Shin, Ji‐Joon Song, Sun‐Woong Kang, Dae-Hwan Nam, Eun Je Jeon, Mira Cho, Minjae Do, Sun-Hyun Park, Moon Sue Lee
SJR Q1Nature Biomedical Engineering
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|267 citations·2016
Complete prevention of blood loss with self-sealing haemostatic needles
Mikyung Shin, Sung-Gurl Park, Byung‐Chang Oh, Keumyeon Kim, Seongyeon Jo, Moon Sue Lee, Seok Song Oh, Seon-Hui Hong, Eui‐Cheol Shin, Ki‐Suk Kim, Sun‐Woong Kang, Haeshin Lee
SJR Q1Nature Materials
HematologyMedicine
3
Article|206 citations·2019
Plant‐Inspired Pyrogallol‐Containing Functional Materials
Mikyung Shin, Eunsook Park, Haeshin Lee
SJR Q1Advanced Functional Materials

Abstract Pyrogallol‐containing molecules are ubiquitous in the plant kingdom. The chemical synthesis of these molecules remains challenging. Thus, they are obtained via purification from heterogeneous mixtures of plant extracts. Previous studies have focused on their biological roles, such as antioxidants. Additionally, the molecules are used as ink colorants and in tanning processes for leather. Recently, many disciplines have paid attention to adhesiveness of pyrogallol‐containing molecules, i

Surfaces, Coatings and FilmsMaterials Science
4
Article|195 citations·2019
Injectable and Conductive Granular Hydrogels for 3D Printing and Electroactive Tissue Support
Mikyung Shin, Kwang Hoon Song, Justin C. Burrell, D. Kacy Cullen, Jason A. Burdick
SJR Q1Advanced ScienceOA

Conductive hydrogels are attractive to mimic electrophysiological environments of biological tissues and toward therapeutic applications. Injectable and conductive hydrogels are of particular interest for applications in 3D printing or for direct injection into tissues; however, current approaches to add conductivity to hydrogels are insufficient, leading to poor gelation, brittle properties, or insufficient conductivity. Here, an approach is developed using the jamming of microgels to form inje

Biomedical EngineeringEngineering
5
Article|174 citations·2023
Injectable tissue prosthesis for instantaneous closed-loop rehabilitation
Subin Jin, Heewon Choi, Duhwan Seong, Chang‐Lim You, Jong‐Sun Kang, Seunghyok Rho, Won Bo Lee, Donghee Son, Mikyung Shin
SJR Q1Nature
Biomedical EngineeringEngineering
6
Article|149 citations·2016
Tannic Acid as a Degradable Mucoadhesive Compound
Mikyung Shin, Keumyeon Kim, Whuisu Shim, Jae Wook Yang, Haeshin Lee
SJR Q1ACS Biomaterials Science & Engineering

To achieve site-specific delivery of pharmaceuticals, the development of effective mucoadhesive polymers is essential. Thus far, only a few polymers, such as thiolated ones and related variants, have been studied. However, their mucoadhesiveness varies depending on the type of polymer and the degree of chemical functionalization. Furthermore, the chemistry of tethering often requires harsh reaction conditions. Recently, pyrogallol-containing molecules have emerged as good tissue and hemostatic a

Pharmaceutical SciencePharmacology, Toxicology and Pharmaceutics
7
Article|115 citations·2018
Gallol-derived ECM-mimetic adhesive bioinks exhibiting temporal shear-thinning and stabilization behavior
Mikyung Shin, Jonathan H. Galarraga, Mi Y. Kwon, Haeshin Lee, Jason A. Burdick
SJR Q1Acta BiomaterialiaOA
Biomedical EngineeringEngineering
8
Article|107 citations·2005
A flavonoid from medicinal plants blocks hepatitis B virus-e antigen secretion in HBV-infected hepatocytes
Mikyung Shin, Eun-Hwa Kang, Y LEE
SJR Q1Antiviral Research
EpidemiologyMedicine
9
Article|86 citations·2008
Enhanced conductivity of aligned PANi/PEO/MWNT nanofibers by electrospinning
Mikyung Shin, Y KIM, S KIM, S KIM, Hyeon Gyu Lee, Geoffrey M. Spinks, S KIM
SJR Q1Sensors and Actuators B Chemical
Polymers and PlasticsMaterials Science
10
Article|86 citations·2017
Gallol-Rich Hyaluronic Acid Hydrogels: Shear-Thinning, Protein Accumulation against Concentration Gradients, and Degradation-Resistant Properties
Mikyung Shin, Haeshin Lee
SJR Q1Chemistry of Materials

We report the multifunctionality of a small adhesive functional group called gallol (three hydroxyls attached to benzene), which is the ubiquitous moiety found in many vegetables and fruits. First, the chemical tethering of gallols to a polysaccharide backbone and the addition of another gallol-rich compound, oligo-epigallocatechin gallate, result in the spontaneous gelation of the hyaluronic acid-gallol, and the cross-linking is due to the extensive level of hydrogen bond formations from both g

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|77 citations·2005
Mild hydrolysis of resistant starch from maize
Seung Hyeon Mun, Mikyung Shin
SJR Q1Food Chemistry
Nutrition and DieteticsNursing
12
Article|73 citations·2018
Chitosan-catechol: a writable bioink under serum culture media
Daiheon Lee, Joseph P. Park, Mi‐Young Koh, Pureum Kim, Junhee Lee, Mikyung Shin, Haeshin Lee
SJR Q1Biomaterials Science

Mussel-inspired adhesive coatings on biomedical devices have attracted significant interest due to their unique properties such as substrate independency and high efficiency. The key molecules for mussel-inspired adhesive coatings are catechol and amine groups. Along with the understanding of catechol chemistry, chitosan-catechol has also been developed as a representative mussel-inpired adhesive polymer that contains catechol and amine groups for adhesiveness. Herein, we demonstrated the direct

Biomedical EngineeringEngineering
13
Article|64 citations·2018
Hemostatic Swabs Containing Polydopamine-like Catecholamine Chitosan-Catechol for Normal and Coagulopathic Animal Models
Mikyung Shin, Ji Hyun Ryu, Kyuri Kim, Min Jun Kim, Seongyeon Jo, Moon Sue Lee, Dong Yun Lee, Haeshin Lee
SJR Q1ACS Biomaterials Science & Engineering

All animal experiments for evaluating drug efficacy or developing medical devices are unavoidably accompanied by bleeding that result in unreliable outcomes with large variations between individuals. Herein, we developed hemostatic swabs prepared by a mussel-inspired catecholamine polymer called chitosan-catechol, which was inspired by the chemical composition of the well-known material-independent coating material of polydopamine. The hemostatic ability of the swabs resulted from the formation

Surfaces, Coatings and FilmsMaterials Science
14
Article|52 citations·2021
Self-Healing, Stretchable, Biocompatible, and Conductive Alginate Hydrogels through Dynamic Covalent Bonds for Implantable Electronics
Yeon-Sun Choi, Kyuha Park, Heewon Choi, Donghee Son, Mikyung Shin
SJR Q1PolymersOA

Implantable electronics have recently been attracting attention because of the promising advances in personalized healthcare. They can be used to diagnose and treat chronic diseases by monitoring and applying bioelectrical signals to various organs. However, there are challenges regarding the rigidity and hardness of typical electronic devices that can trigger inflammatory reactions in tissues. In an effort to improve the physicochemical properties of conventional implantable electronics, soft h

Biomedical EngineeringEngineering
15
Article|43 citations·2024
Sticky and Strain‐Gradient Artificial Epineurium for Sutureless Nerve Repair in Rodents and Nonhuman Primates
Duhwan Seong, Yeon-Sun Choi, In Cheul Choi, Jaebeom Lee, Jae Hyuk Choi, Ji Hun Park, Jae Jun Nam, Jaewon Ju, Hyun Jae Ryoo, Donghee Kwak, Joonyeol Lee, Seong‐Gi Kim
SJR Q1Advanced Materials

The need for the development of soft materials capable of stably adhering to nerve tissues without any suturing followed by additional damages is at the fore at a time when success in postoperative recovery depends largely on the surgical experience and/or specialized microsuturing skills of the surgeon. Despite fully recognizing such prerequisite conditions, designing the materials with robust adhesion to wet nerves as well as acute/chronic anti-inflammation remains to be resolved. Herein, a st

SurgeryMedicine

Research Areas

Biomedical EngineeringSurfaces, Coatings and FilmsCellular and Molecular NeuroscienceBiomaterialsSurgeryHematology

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