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Ewha University

자연과학대학

정병문(鄭秉汶) 교수

화학·나노과학전공

정병문 프로필 사진
정병문 교수는 이화여자대학교 화학·나노과학전공/분자생명과학부 소속 교수로 고분자생체재료를 연구하는 과학자이다. 서울대 화학과에서 학사, KAIST 화학과에서 석사, 및 미국 유타대 약제학 및 약제화학 대학원에서 박사학위를 받았으며, 새로운 자극감응성 하이드로젤을 발굴하고 이들을 의약전달시스템 및 조직공학 등 의학적 응용에 대한 연구를 진행하고 있다. 현재 한국생체재료학회 부회장겸 학회 공식 논문인 Biomaterials Research의 편집위원장, 한국고분자학회 이사 등으로 활동하고 있으며, 현재까지 총 130여편의 논문을 <Nature>, <Advanced Materials>, <Biomaterials>, <J. Controlled Release>, <Macromolecules>등 SCI급 국제학술지에 발표하였다.
  • 종합과학관 A동 A408호
  • 02-3277-3411
  • 면담 가능시간
    • 목 2-3시
  • 연구관심분야
    • 고분자 생체재료, 의약전달시스템, 조직공학 및 세포치료, 하이드로젤, 자극민감성 고분자
연구실적
  • Cytogel: A Cell-Crosslinked Thermogel ACS Applied Materials and Interfaces, 2023, v.15 no.14, 17688-17695
    SCIE Scopus dColl.
  • Drug-Releasing Thermogel for Osteoarthritis Induction in an Animal Model Biomacromolecules, 2023, v.24 no.12, 6025-6031
    SCIE Scopus dColl.
  • Oligonucleotides as Inhibitors of Ice Recrystallization Biomacromolecules, 2023, v.24 no.5, 2118-2126
    SCIE Scopus dColl.
  • Poly(l-alanine-co-l-threonine succinate) as a Biomimetic Cryoprotectant ACS Applied Materials and Interfaces, 2023, v.15 no.50, 58092-58102
    SCIE Scopus dColl.
  • Rediscovery of poly(ethylene glycol)s as a cryoprotectant for mesenchymal stem cells BIOMATERIALS RESEARCH, 2023, v.27 no.1, 17
    SCIE Scopus KCI dColl.
  • Dl -Polyalanine as a PEG-Free Thermogel ACS Macro Letters, 2022, v.11 no.6, 825-829
    SCIE Scopus dColl.
  • Effects of Nanofillers Based on Cetyltrimethylammonium-Modified Clays in a Polypropylene Nanocomposite POLYMERS, 2022, v.14 no.19, 4110
    SCIE Scopus dColl.
  • Folic acid pretreatment and its sustained delivery for chondrogenic differentiation of MSCs Journal of Controlled Release, 2022, v.343, 118-130
    SCIE Scopus dColl.
  • Hyaluronic acid-g-PPG and PEG-PPG-PEG hybrid thermogel for prolonged gel stability and sustained drug release Carbohydrate Polymers, 2022, v.291, 119559
    SCIE Scopus dColl.
  • Ice Recrystallization Inhibition Using l -Alanine/ l -Lysine Copolymers ACS Applied Polymer Materials, 2022, v.4 no.4, 2896-2907
    SCIE Scopus dColl.
  • Poly(L-alanine-co-L-lysine)-g-Trehalose as a Biomimetic Cryoprotectant for Stem Cells BIOMACROMOLECULES, 2022, v.23 no.5, 1995-2006
    SCIE Scopus dColl.
  • Pralatrexate Sustainably Released from Polypeptide Thermogel Is Effective for Chondrogenic Differentiation of Mesenchymal Stem Cells ACS Applied Materials and Interfaces, 2022, v.14 no.3, 3773-3783
    SCIE Scopus dColl.
  • Thermosensitive core-rigid micelles of monomethoxy poly(ethylene glycol)-deoxy cholic acid Biomaterials Research, 2022, v.26 no.1, 16
    Scopus dColl.
  • Hypothermic Stem Cell Storage Using a Polypeptide Thermogel BIOMACROMOLECULES, 2021, v.22 no.12, 5390-5399
    SCIE Scopus dColl.
  • Janus Nanosheets with Face-Selective Molecular Recognition Properties from DNA-Peptide Conjugates SMALL, 2021, v.17 no.12, 2006110
    SCIE Scopus dColl.
  • Poly(Ethylene glycol)-poly(l-alanine)/hyaluronic acid complex as a 3d platform for understanding cancer cell migration in the tumor microenvironment Polymers, 2021, v.13 no.7, 1042
    SCIE Scopus dColl.
  • Poly(l -Ala- co- l -Lys) Exhibits Excellent Ice Recrystallization Inhibition Activity ACS Macro Letters, 2021, v.10 no.11, 1436-1442
    SCIE Scopus dColl.
  • Size and Shape Control of Ice Crystals by Amphiphilic Block Copolymers and Their Implication in the Cryoprotection of Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2021, v.13 no.29, 33969-33980
    SCIE Scopus dColl.
  • Alpha-beta transition induced by C18-conjugation of polyalanine and its implication in aqueous solution behavior of poly(ethylene glycol)-polyalanine block copolymers Biomaterials Research, 2020, v.24 no.1, 23
    Scopus dColl.
  • Iron Ion-Releasing Polypeptide Thermogel for Neuronal Differentiation of Mesenchymal Stem Cells BIOMACROMOLECULES, 2020, v.21 no.1, 143-151
    SCIE Scopus dColl.
  • ROS-Sensitive Degradable PEG–PCL–PEG Micellar Thermogel Small, 2020, v.16 no.12, 1903045
    SCIE Scopus dColl.
  • Thermogelling Inclusion Complex System for Fine-Tuned Osteochondral Differentiation of Mesenchymal Stem Cells Biomacromolecules, 2020, v.21 no.8, 3176-3185
    Scopus dColl.
  • Visible-Light Photocatalytic Conversion of Carbon Dioxide by Ni(II) Complexes with N4S2 Coordination: Highly Efficient and Selective Production of Formate JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2020 , 19142-19149
    SCIE Scopus dColl.
  • Polypeptide Thermogel-Filled Silk Tube as a Bioactive Nerve Conduit ACS Applied Bio Materials, 2019, v.2 no.5, 1967-1974
    Scopus dColl.
  • Tonsil-derived stem cells as a new source of adult stem cells WORLD JOURNAL OF STEM CELLS, 2019, v.11 no.8, 506-518
    SCIE Scopus dColl.
  • Coordinating Thermogel for Stem Cell Spheroids and Their Cyto-Effectiveness Advanced Functional Materials, 2018, v.28 no.7
    SCIE Scopus dColl.
  • Fast Degradable Polycaprolactone for Drug Delivery Biomacromolecules, 2018, v.19 no.6, 2302-2307
    SCIE Scopus dColl.
  • Injectable thermogel for 3D culture of stem cells Biomaterials, 2018, v.159, 91-107
    SCIE Scopus dColl.
  • Polypeptide Thermogels as Three-Dimensional Scaffolds for Cells TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2018, v.15 no.5, 521-530
    SCIE Scopus KCI dColl.
  • Chiro-Optical Modulation for NURR1 Production from Stem Cells ACS CHEMICAL NEUROSCIENCE, 2017, v.8 no.7, 1455-1458
    SCIE Scopus dColl.
  • Hepatogenic Supported Differentiation of Mesenchymal Stem Cells in a Lactobionic Acid-Conjugated Thermogel ACS MACRO LETTERS, 2017, v.6 no.11, 1305-1309
    SCIE Scopus dColl.
  • Injectable Polypeptide Thermogel as a Tissue Engineering System for Hepatogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2017, v.9 no.13, 11568-11576
    SCIE Scopus dColl.
  • Layered Double Hydroxide and Polypeptide Thermogel Nanocomposite System for Chondrogenic Differentiation of Stem Cells ACS Applied Materials and Interfaces, 2017, v.9 no.49, 42668-42675
    SCIE Scopus dColl.
  • α,ω-Diphenylalanine-End-Capping of PEG-PPG-PEG Polymers Changes the Micelle Morphology and Enhances Stability of the Thermogel Biomacromolecules, 2017, v.18 no.7, 2214-2219
    SCIE Scopus dColl.
  • Bioreducible Cationic Poly(amido amine)s for Enhanced Gene Delivery and Osteogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells JOURNAL OF BIOMEDICAL NANOTECHNOLOGY, 2016, v.12 no.5, 1023-1034
    SCIE Scopus dColl.
  • Composite System of Graphene Oxide and Polypeptide Thermogel As an Injectable 3D Scaffold for Adipogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ACS Applied Materials and Interfaces, 2016, v.8 no.8, 5160-5169
    SCIE Scopus dColl.
  • EF-Hand Mimicking Calcium Binding Polymer Biomacromolecules, 2016, v.17 no.3, 1075-1082
    SCIE Scopus dColl.
  • Feasibility of injectable thermoreversible gels for use in intramuscular injection of parathyroid autotransplantation European Archives of Oto-Rhino-Laryngology, 2016, 19 MAR 2016, 1-8
    SCIE Scopus dColl.
  • Nanocomposite versus Mesocomposite for Osteogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells Advanced Healthcare Materials, 2016, v.5 no.3
    SCIE Scopus dColl.
  • Structural sensitivity of peptoid-based low molecular mass organogelator Materials and Design, 2016, v.108, 659-665
    Scopus dColl.
  • 2D and 3D Hybrid Systems for Enhancement of Chondrogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells Advanced Functional Materials, 2015, v.25 no.17, 2573-2582
    SCIE Scopus dColl.
  • Control of rhGH release profile from PEG-PAF thermogel Biomacromolecules, 2015, v.16 no.5, 1461-1469
    SCIE Scopus dColl.
  • Microsphere-Incorporated Hybrid Thermogel for Neuronal Differentiation of Tonsil Derived Mesenchymal Stem Cells ADVANCED HEALTHCARE MATERIALS, 2015, v.4 no.10, 1565-1574
    SCIE Scopus dColl.
  • PEG-Poly(l-alanine) Thermogel As a 3D scaffold of bone-marrow-derived mesenchymal stem cells Macromolecular Bioscience, 2015, v.15 no.4, 464-472
    SCIE Scopus dColl.
  • Phosphorylcholine-Based Zwitterionic Biocompatible Thermogel Biomacromolecules, 2015, v.16 no.12, 3853-3862
    SCIE Scopus dColl.
  • Temperature-sensitive polypeptide nanogels for intracellular delivery of a biomacromolecular drug Journal of Materials Chemistry B, 2015, v.3 no.17, 3525-3530
    SCIE Scopus dColl.
  • Tonsil-derived Mesenchymal Stem Cells Ameliorate CCl4-induced Liver Fibrosis in Mice via Autophagy Activation SCIENTIFIC REPORTS, 2015, v.5
    SCIE Scopus dColl.
  • 3D Culture of Tonsil-Derived Mesenchymal Stem Cells in Poly(ethylene glycol)-Poly(L-alanine-co-L-phenyl alanine) Thermogel ADVANCED HEALTHCARE MATERIALS, 2014, v.3 no.11, 1782-1791
    SCIE dColl.
  • CO2- and O-2-Sensitive Fluorophenyl End-Capped Poly(ethylene glycol) MACROMOLECULAR RAPID COMMUNICATIONS, 2014, v.35 no.1, 66-70
    SCIE Scopus dColl.
  • Differentiation of Tonsil-Tissue-Derived Mesenchymal Stem Cells Controlled by Surface-Functionalized Microspheres in PEG-Polypeptide Thermogels BIOMACROMOLECULES, 2014, v.15 no.6, 2180-2187
    SCIE Scopus dColl.
  • Ion and Temperature Sensitive Polypeptide Block Copolymer BIOMACROMOLECULES, 2014, v.15 no.10, 3664-3670
    SCIE Scopus dColl.
  • Polypeptide Thermogels as a Three Dimensional Culture Scaffold for Hepatogenic Differentiation of Human Tonsil-Derived Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2014, v.6 no.19, 17034-17043
    SCIE Scopus dColl.
  • Thermal gelation or gel melting: (ethylene glycol)113-(l-alanine)12 and (ethylene glycol)113-(l-lactic acid)12 Journal of Polymer Science, Part A: Polymer Chemistry, 2014, v.52 no.17
    SCIE Scopus dColl.
  • [학술지논문] Cytogel: A Cell-Crosslinked Thermogel ACS APPLIED MATERIALS & INTERFACES, 2023, v.15 no.14 , 17688-17695
    SCIE
  • [학술지논문] Drug-Releasing Thermogel for Osteoarthritis Induction in an Animal Model BIOMACROMOLECULES, 2023, v.24 no.12 , 6025-6031
    SCIE
  • [학술지논문] Oligonucleotides as Inhibitors of Ice Recrystallization BIOMACROMOLECULES, 2023, v.24 no.5 , 2118-2126
    SCIE
  • [학술지논문] Poly(l-alanine-co-l-threonine succinate) as a Biomimetic Cryoprotectant ACS APPLIED MATERIALS & INTERFACES, 2023, v.15 no.50 , 58092-58102
    SCIE
  • [학술지논문] Rediscovery of poly(ethylene glycol)s as a cryoprotectant for mesenchymal stem cells BIOMATERIALS RESEARCH, 2023, v.27 no.1 , 17-17
    SCIE
  • [학술지논문] DL-Polyalanine as a PEG-Free Thermogel ACS MACRO LETTERS, 2022, v.11 no.6 , 825-829
    SCI
  • [학술지논문] Folic acid pretreatment and its sustained delivery for chondrogenic differentiation of MSCs JOURNAL OF CONTROLLED RELEASE, 2022, v.343 no.3 , 118-130
    SCI
  • [학술지논문] Hyaluronic acid-g-PPG and PEG-PPG-PEG hybrid thermogel for prolonged gel stability and sustained drug release CARBOHYDRATE POLYMERS, 2022, v.291 no.5 , 119559-119569
    SCI
  • [학술지논문] Ice Recrystallization Inhibition Using L-Alanine/L-Lysine Copolymers ACS APPLIED POLYMER MATERIALS, 2022, v.4 no.4 , 2896-2907
    SCIE
  • [학술지논문] Poly(L-alanine-co-L-lysine)-g-Trehalose as a Biomimetic Cryoprotectant for Stem Cells BIOMACROMOLECULES, 2022, v.23 no.5 , 1995-2006
    SCI
  • [학술지논문] Pralatrexate Sustainably Released from Polypeptide Thermogel Is Effective for Chondrogenic Differentiation of Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2022, v.14 no.3 , 3773-3783
    SCI
  • [학술지논문] Thermosensitive core-rigid micelles of monomethoxy poly(ethylene glycol)-deoxy cholic acid Biomaterials Research, 2022, v.26 no.1 , 16-16
    SCIE
  • [학술지논문] Hypothermic Stem Cell Storage Using a Polypeptide Thermogel BIOMACROMOLECULES, 2021, v.22 no.12 , 5390-5399
    SCI
  • [학술지논문] Janus Nanosheets with Face-Selective Molecular Recognition Properties from DNA-Peptide Conjugates SMALL, 2021, v.17 no.12 , 2006110-2006110
    SCI
  • [학술지논문] Poly(L-Ala-co-L-Lys) Exhibits Excellent Ice Recrystallization Inhibition Activity ACS MACRO LETTERS, 2021, v.10 no.11 , 1436-1442
    SCI
  • [학술지논문] Size and Shape Control of Ice Crystals by Amphiphilic Block Copolymers and Their Implication in the Cryoprotection of Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2021, v.13 no.29 , 33969-33980
    SCI
  • [학술지논문] Iron Ion-Releasing Polypeptide Thermogel for Neuronal Differentiation of Mesenchymal Stem Cells BIOMACROMOLECULES, 2020, v.21 no.1 , 143-151
    SCI
  • [학술지논문] ROS-Sensitive Degradable PEG-PCL-PEG Micellar Thermogel SMALL, 2020, v.16 no.12 , 1903045-1903045
    SCI
  • [학술지논문] Thermogelling Inclusion Complex System for Fine-Tuned Osteochondral Differentiation of Mesenchymal Stem Cells BIOMACROMOLECULES, 2020, v.21 no.8 , 3176-3185
    SCI
  • [학술지논문] Visible-Light Photocatalytic Conversion of Carbon Dioxide by Ni(II) Complexes with N4S2 Coordination: Highly Efficient and Selective Production of Formate JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2020, v.142 no.45 , 19142-19149
    SCI
  • [학술지논문] Polypeptide Thermogel-Filled Silk Tube as a Bioactive Nerve Conduit ACS Applied Bio Materials, 2019, v.2 no.5 , 1967-1974
    Scopus
  • [학술지논문] Tonsil-derived stem cells as a new source of adult stem cells WORLD JOURNAL OF STEM CELLS, 2019, v.11 no.8 , 506-518
    SCIE
  • [학술지논문] Coordinating Thermogel for Stem Cell Spheroids and Their Cyto-Effectiveness ADVANCED FUNCTIONAL MATERIALS, 2018, v.28 no.7 , 00000-1706286
    SCI
  • [학술지논문] Fast Degradable Polycaprolactone for Drug Delivery BIOMACROMOLECULES, 2018, v.19 no.6 , 2302-2307
    SCI
  • [학술지논문] Injectable thermogel for 3D culture of stem cells BIOMATERIALS, 2018, v.159 no.3 , 91-107
    SCI
  • [학술지논문] Chiro-Optical Modulation for NURR1 Production from Stem Cells ACS CHEMICAL NEUROSCIENCE, 2017, v.8 no.7 , 1455-1458
    SCIE
  • [학술지논문] Hepatogenic Supported Differentiation of Mesenchymal Stem Cells in a Lactobionic Acid-Conjugated Thermogel ACS MACRO LETTERS, 2017, v.6 no.11 , 1305-1309
    SCI
  • [학술지논문] Injectable Polypeptide Thermogel as a Tissue Engineering System for Hepatogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2017, v.9 no.13 , 11568-11576
    SCI
  • [학술지논문] Layered Double Hydroxide and Polypeptide Thermogel Nanocomposite System for Chondrogenic Differentiation of Stem Cells ACS APPLIED MATERIALS & INTERFACES, 2017, v.9 no.49 , 42668-42675
    SCI
  • [학술지논문] alpha,omega-Diphenylalanine-End-Capping of PEG-PPG-PEG Polymers Changes the Micelle Morphology and Enhances Stability of the Thermogel BIOMACROMOLECULES, 2017, v.18 no.7 , 2214-2219
    SCI
  • [학술지논문] Composite System of Graphene Oxide and Polypeptide Thermogel As an Injectable 3D Scaffold for Adipogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ACS APPLIED MATERIALS INTERFACES, 2016, v.8 no.8 , 5160-5169
    SCI
  • [학술지논문] EF-Hand Mimicking Calcium Binding Polymer BIOMACROMOLECULES, 2016, v.17 no.3 , 1075-1082
    SCI
  • [학술지논문] Nanocomposite versus Mesocomposite for Osteogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ADVANCED HEALTHCARE MATERIALS, 2016, v.5 no.3 , 353-363
    SCIE
  • [학술지논문] 2D and 3D Hybrid Systems for Enhancement of Chondrogenic Differentiation of Tonsil-Derived Mesenchymal Stem Cells ADVANCED FUNCTIONAL MATERIALS, 2015, v.25 no.17 , 2573-2582
    SCI
  • [학술지논문] Control of rhGH Release Profile from PEG-PAF Thermogel BIOMACROMOLECULES, 2015, v.16 no.5 , 1461-1469
    SCI
  • [학술지논문] Microsphere-Incorporated Hybrid Thermogel for Neuronal Differentiation of Tonsil Derived Mesenchymal Stem Cells ADVANCED HEALTHCARE MATERIALS, 2015, v.4 no.10 , 1565-1574
    SCIE
  • [학술지논문] PEG-Poly(l-alanine) Thermogel As a 3D Scaffold of Bone-Marrow-Derived Mesenchymal Stem Cells MACROMOLECULAR BIOSCIENCE, 2015, v.15 no.4 , 464-472
    SCI
  • [학술지논문] Phosphorylcholine-Based Zwitterionic Biocompatible Thermogel BIOMACROMOLECULES, 2015, v.16 no.12 , 3853-3862
    SCI
  • [학술지논문] Temperature-sensitive polypeptide nanogels for intracellular delivery of a biomacromolecular drug Journal of Materials Chemistry B, 2015, v.3 no.17 , 3525-3530
    SCI
  • [학술지논문] Tonsil-derived Mesenchymal Stem Cells Ameliorate CCl4-induced Liver Fibrosis in Mice via Autophagy Activation SCIENTIFIC REPORTS, 2015, v.5 no.1 , 1-7
    SCIE
  • [학술지논문] 3D Culture of Tonsil-Derived Mesenchymal Stem Cells in Poly(ethylene glycol)-Poly(L-alanine-co-L-phenyl alanine) Thermogel ADVANCED HEALTHCARE MATERIALS, 2014, v.3 no.11 , 1782-1791
    SCI
  • [학술지논문] CO2- and O-2-Sensitive Fluorophenyl End-Capped Poly(ethylene glycol) MACROMOLECULAR RAPID COMMUNICATIONS, 2014, v.35 no.0 , 66-70
    SCI
  • [학술지논문] Differentiation of Tonsil-Tissue-Derived Mesenchymal Stem Cells Controlled by Surface-Functionalized Microspheres in PEG-Polypeptide Thermogels BIOMACROMOLECULES, 2014, v.15 no.0 , 2180-2187
    SCI
  • [학술지논문] Ion and Temperature Sensitive Polypeptide Block Copolymer BIOMACROMOLECULES, 2014, v.15 no.10 , 3664-3670
    SCI
  • [학술지논문] Polypeptide Thermogels as a Three Dimensional Culture Scaffold for Hepatogenic Differentiation of Human Tonsil-Derived Mesenchymal Stem Cells ACS APPLIED MATERIALS INTERFACES, 2014, v.6 no.19 , 17034-17043
    SCI
  • [학술지논문] Thermal Gelation or Gel Melting: (Ethylene glycol)(113)-(L-alanine)(12) and (Ethylene glycol)(113)-(L-lactic acid)(12) JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2014, v.52 no.17 , 2434-2441
    SCI
  • [학술지논문] 3D culture of adipose-tissue-derived stem cells mainly leads to chondrogenesis in poly(ethylene glycol)-poly(l-alanine) diblock copolymer thermogel Biomacromolecules 14 (9), 2013, v.14 no.9 , 3256-3266
    Scopus
  • [학술지논문] Changes in nanoassembly of oligocaprolactone end-capped Pluronic F127 and the abnormal hydrophobicity trend of phase transition Macromolecules, 2013, v.46 no.10 , 4215-4222
    Scopus
  • [학술지논문] Incorporation of d-alanine into poly(ethylene glycol) and l-poly(alanine-co-phenylalanine) block copolymers affects their nanoassemblies and enzymatic degradation Soft Matter, 2013, v.9 no.33 , 8014-8022
    Scopus
  • [학술지논문] Recent progress of in situ formed gels for biomedical applications Progress in Polymer Science, 2013, v.38 no.3-4 , 672-701
    Scopus
  • [학술지논문] Biodegradable Thermogels ACCOUNTS OF CHEMICAL RESEARCH, 2012, v.45 no.3 , 424-433
    SCI
  • [학술지논문] Cell Therapy for Skin Wound Using Fibroblast Encapsulated Poly(ethylene glycol)-poly(L-alanine) Thermogel BIOMACROMOLECULES, 2012, v.13 no.4 , 1106-1111
    SCI
  • [학술지논문] Chondrocyte 3D-culture in RGD-modified crosslinked hydrogel with temperature-controllable modulus MACROMOLECULAR RESEARCH, 2012, v.20 no.1 , 106-111
    SCI
  • [학술지논문] Complexation-Induced Biomimetic Long Range Fibrous Orientation in a Rigid-Flexible Block Copolymer Thermogel ADVANCED FUNCTIONAL MATERIALS, 2012, v.22 no.24 , 5118-5125
    SCI
  • [학술지논문] Molecular captain: A light-sensitive linker molecule in poly(ethylene glycol)-poly(L-alanine)-poly(ethylene glycol) triblock copolymer directs molecular nano-assembly, conformation, and sol-gel transition JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2012, v.50 no.15 , 3184-3191
    SCI
  • [학술지논문] PEG-L-PAF and PEG-D-PAF: Comparative Study on Thermogellation and Biodegradation MACROMOLECULES, 2012, v.45 no.4 , 2007-2013
    SCI
  • [학술지논문] Sol-gel transition of PEG-PAF aqueous solution and its application for hGH sustained release JOURNAL OF MATERIALS CHEMISTRY, 2012, v.22 no.13 , 6072-6079
    SCI
  • [학술지논문] Temperature-responsive compounds as in situ gelling biomedical materials CHEMICAL SOCIETY REVIEWS, 2012, v.41 no.14 , 4860-4883
    SCI
  • [학술지논문] Thermogelling Chitosan-g-(PAF-PEG) Aqueous Solution As an Injectable Scaffold BIOMACROMOLECULES, 2012, v.13 no.6 , 1750-1757
    SCI
  • [학술지논문] Block sequence affects thermosensitivity and nano-assembly: PEG-L-PA-DL-PA and PEG-DL-PA-L-PA block copolymers SOFT MATTER, 2011, v.7 no.14 , 6515-6521
    SCI
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  • [학술지논문] Enzymatically degradable temperature-sensitive polypeptide as a new in-situ gelling biomaterial JOURNAL OF CONTROLLED RELEASE, 2009, v.137 , 25-30
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  • [학술지논문] Reverse Thermal Organogelation of Poly(ethylene glycol)-Polypeptide Diblock Copolymers in Chloroform MACROMOLECULAR BIOSCIENCE, 2009, v.9 , 869-874
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  • [학술지논문] Reverse thermogelling biodegradable polymer aqueous solutions JOURNAL OF MATERIALS CHEMISTRY, 2009, v.19 , 5891-5905
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  • [학술지논문] Stereoisomeric effect on reverse thermal gelation of poly(ethylene glycol)/poly(lactide) multiblock copolymer MACROMOLECULES, 2007, v.40 no.14 , 5111-5115
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  • [학술지논문] pH/temperature sensitive poly(aspartic acid)-g-poly(propylene glycol) JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY, 2006, v.16 , 71-76
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  • [지적재산권] 온도민감성 졸-젤 전이 폴리(에틸렌글리콜)/폴리펩타이드 블록공중합체, 이의 제조방법 및 이의 의학적응용 국내 : 특허, 출원
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학력

The University of Utah Ph.D.(제약및의약화학)

한국과학기술원 이학석사(화학)

서울대학교 이학사(화학)