자연과학대학 - 바이오융합연계전공
-
more
-
- 031-290-7869
- dhkweon@skku.edu
- 생명공학관62동 2층 62204호실
-
[관심분야]
- 나노디스크를 이용한 항바이러스제 개발. 코로나바이러스 치료제 및 인플루엔자 바이러스 치료제 - 지질나노입자를 이용한 mRNA 전달 기술 및 이를 이용한 바이러스 백신 개발 - 재조합 보눌리눔 독소의 안전한 생산 기술 - 단백질공학 기술 및 단백질 생산 기술 (protein expression control, purification, refolding and protein characterization through spectroscopies)
-
more
-
- 031-290-7788
- insukim@skku.edu
- 약학관 7층 530702호실
-
[관심분야]
Transition-metal-catalyzed C-H Functionalization Heterocycle Synthesis Total Synthesis of Natural Products Synthesis and Biological Evaluation of Noble Scaffolds
-
more
-
- 부교수 생명정보학, 계산유전체학
- 김준호
-
[관심분야]
계산유전체학, 생명정보학, NGS 분석기법 및 알고리즘 개발, 체성 돌연변이 분석, 단일 세포 유전체학
-
more
-
- 031-290-7727
- chungsub.kim@skku.edu
- 약학관 7층 530738호실
-
[관심분야]
Elucidation of structure and biosynthetic pathway of small molecules from human microbiome. Characterization of small molecules-mediated bacterial signaling pathways Discovery of lead compounds for new drug from natural sources
-
more
-
- 교수 바이오센서, 줄기세포, 나노바이오소재
- 김태형
-
- thkim0512@skku.edu
- N센터 4층 86418호실
-
[관심분야]
나노소재/패턴 기반 줄기세포 분화 제어, 세포 대사의 전기화학 센싱, 오가노이드/스페로이드 기반 약물 스크리닝, 2차원 소재의 바이오 응용
-
more
-
- 031-290-7789
- hkims@skku.edu
- 약학관 5층 530543호실
-
[관심분야]
- Pyruvate kinase M2 (PKM2)표적 기반 암세포 대사 조절 표적분자 발굴 및 기전연구: 암세포 대사과정에서 생성되는 유기산에 의한 저항성 획득 기전 및 전이에 미치는 영향를 통한 표적치료제 개발 - 오믹스 기반 동물모델을 이용한 표적분자 독성 예측 바이오마커 발굴 Histone deacetylase (HDAC) inhibitor의 항암활성 및 항암제 저항성 극복을 위한 기전연구 - 당뇨성 대사질환 및 합병증 유발 조기진단 키트 개발 및 치료제 연구
-
more
-
- 부교수
- 김홍숙
-
- 제2과학관32동 1층 32110호실
-
[관심분야]
암생물학, 발생생물학, 후성유전학, 유전체학, 정밀의료, 유전자 발현
-
more
-
- 부교수 유전자교정
- 김희권
-
- 031-290-7864
- huikwonkim@skku.edu
-
[관심분야]
Biotechnology, Genome editing technology, Gene therapeutics, Machine learning
-
more
-
- 031-290-5912
- parks@skku.edu
- 제2과학관32동 3층 32366호실
-
[관심분야]
TGF-beta is a pivotal cytokine which is involved in a variety of cellular functions. Our group has been focused on the signaling pathways mediated by TGF-beta superfamily cytokines regarding cancer progression and anti-inflammation during the past decade. Our current research focuses on the identification of novel mechanism of TGF-beta or BMP-mediated tumorigenesis and metastasis. In addition, we are also doing the studies about how specific signaling pathways in the inflammation and cancer biology are regulated by ubiquitination and deubiquitinating mechanism. Through these diverse approaches, the final goal in our group is to understand the molecular mechanisms regarding cancer and inflammation and subsequently to identify therapeutic target proteins to treat cancer and inflammation.
-
more
-
- 부교수 바이오의약품 전달
- 박우람
-
- 031-299-4857
- parkwr@skku.edu
- 생명공학관62동 3층 62301A호실
-
[관심분야]
Drug Delivery, Nanoparticles, Lipid Nanoparticle (LNP), mRNA Delivery, Hybrid Materials, Cancer Immunotherapy, Biomedical Imaging, Cell Engineering, Medical Devices
-
more
-
- 부교수
- 발라찬드란마나발란
- 2026 SKKU Rising-Fellowship
-
- 031-299-4858
- bala2022@skku.edu
- 생명공학관61동 1층 61110호실
-
more
-
- 교수 감염 및 염증질환
- 배외식
-
- 031-290-5914
- yoesik@skku.edu
- 제2과학관32동 3층 32302B호실
-
[관심분야]
We are interested in the development of bioactive molecules that can be used to treat infectious or inflammatory diseases. Our major target diseases include polymicrobial sepsis, rheumatoid arthritis, inflammatory bowel disease, and colon cancer. To generate useful target molecules that can be used to develop therapeutic agents against these infectious or inflammatory diseases, we are focusing on several chemoattractant G-protein coupled receptors (GPCRs). Since leukocyte trafficking in vivo is a crucial event that modulate immune and inflammatory responses, and chemotactic GPCRs mediate these response, the receptors can be considered as important primary targets to control infectious or inflammatory disorders. Currently, we are testing the effects and mechanism of action of chemotactic GPCR ligands against these diseases in experimental animal models.
-
more
-
- 부교수 바이오에너지
- 백가현
-
- 031-299-4856
- gbaek@skku.edu
- 생명공학관61동 1층 61157B호실
-
[관심분야]
Bioenergy and biofuel productions via microbial processes, bioelectrochemical system, microbial electrosynthesis, anaerobic digestion, environmental microbiology
-
more
-
- 부교수 T 세포 및 종양 면역
- 송민경
-
- 031-290-7863
- piscesmk@skku.edu
- 생명공학관62동 1층 62102호실
-
[관심분야]
Investigation of transcriptional, epigenetic and metabolic regulatory mechanisms of T cell function in diverse disease settings Exploring the specific role of the ER for sensing microenvironmental conditions and controlling cellular responses Devising novel strategies for cancer treatment
-
more
-
- 교수 약동/약력학
- 신범수
-
- 031-290-7705
- bsshin@skku.edu
- 약학관 6층 530603호실
-
[관심분야]
약동-약력학 연구 약물동태 모델링/시물레이션 연구 (IVIVC, PK-PD, PBPK) 방출제어 제형 설계연구
-
more
-
- 부교수
- 양시영
-
- 031-290-5924
- yangsy@skku.edu
- 제2과학관32동 1층 32108호실
-
[관심분야]
관절염 자가면역질환 치료제
-
more
-
- 부교수 유전자∙세포리프로그래밍
- 양유수
-
- 031-299-4855
- yangys@skku.edu
- 생명공학관61동 1층 61106C호실
-
[관심분야]
Extracellular vesicle-mediated cell-to-cell communication, Gene delivery, Cell reprogramming
-
more
-
- 031-290-7865
- ohjs@skku.edu
- 생명공학관62동 1층 62152호실
-
[관심분야]
Regulation of meiotic cell cycle: Cell division is a highly regulated process, driven by the action of cyclin-dependent kinases (Cdks) and their regulatory subunits, cyclins. Inappropriate activation of Cdk/cyclin complexes can drive unregulated cell division resulting in cell death or tumor formation. Cdk/cyclin complexes also play essential roles in a variety of cellular processes such as development and differentiation. Our lab is focused on the action of Cdk/cyclin complexes and all pathways that control or are controlled by Cdk/cyclin complexes during female meiosis. Homologous chromosome segregation and aneuploidy: Reduction of chromosome number during meiosis is essential for producing haploid gametes from diploid parental cells. This reduction is achieved by two successive rounds of chromosome segregation, meiosis I (MI) and meiosis II (MII), after a single round of DNA replication. Although MII resembles mitosis in that sister chromatids separate and segregate to different daughter cells, the pattern of chromosome segregation during MI is unique. During MI, homologous chromosomes pair and then segregate from each other. Defects in this process result in aneuploidy, leading to miscarriages, infertility and genetic disorders such as Down’s syndrome. Therefore, our lab studies the molecular mechanisms that control homologous chromosome segregation during meiosis. Control of oocyte quality: Mammalian oocytes are arrested at the prophase of the first meiosis. After LH surge, the oocytes resume meiosis. During these processes, the oocytes is subjected to various sources of damage-inducing factors, which may lead to a progressive deterioration of oocyte quality. Thus, the control of oocyte quality is critical to reproductive success and survival of a species; however, the precise mechanisms underlying this process remain elusive. Our lab is interesting in identifying the molecular mechanisms that control oocyte quality and eventually leading to identification of diagnostic markers that are predictive of oocyte quality in a clinical setting. Chromatin remodeling during fertilization: Fertilization leads to the transformation of two haploid gametes into a totipotent zygote. During this process, highly condensed chromatins are largely reorganized, preparing to initiate the transcription of embryonic genes which are essential for obtaining the pluripotency. Our lab is exploring the mechanisms of the chromatin remodeling upon fertilization and investigating the role of maternal factors in this process.
-
more
-
- 031-290-7808
- hmwoo@skku.edu
- 생명공학관62동 2층 62212호실
-
[관심분야]
지속가능한 건강한 사회를 만들기 위해서 그린바이오/산업바이오 분야 산업미생물 개발하고 연구 가속화를 위해서 자동화 플랫폼/유전자편집 플랫폼 연구를 수행합니다. (주제) 그린바이오 소재개발, 산업바이오 융합기술, 생물공학, 생물전환기술 (기술) 합성생물학, 대사공학, CRISPR-Cas, BioFoundry (소재) 산업미생물, 박테리아 Microbial cell designs to produce valuable chemicals such as biofuels, biomaterials, and biochemicals etc. from renewable resources i.e. biomass and carbon dioxide using recent genetic engineering tools (CRISPR genetics, Metabolic engineering and Synthetic Biology).
-
more
-
- 031-290-7785
- ysyoun@skku.edu
- 약학관 6층 530610호실
-
[관심분야]
Peptide and protein drug delivery Nanoparticulate drug delivery systems Polymer conjugation technology for long-acting biopharmaceuticals Inhalation delivery systems
-
more
-
- 부교수
- 이대한
-
- 031-290-5923
- 기초학문관51동 3층 51315호실
-
more
-
- 조교수 표적분자치료
- 이상아
-
- angelna88@skku.edu
- 약학관 4층 530438호실
-
more
-
- 031-290-5913
- sangholee@skku.edu
- 제2과학관32동 1층 32116호실
-
[관심분야]
Life is controlled by a milieu of macromolecular interactions. We focus on understanding structural basis for protein interactions and their applications using a variety of biophysical and biochemical techniques such as crystallography and solution scattering as well as standard techniques in molecular cell biology. We study proteins interactions in ubiquitin signaling, host-pathogen relationship and abiotic stress response signaling. We also develop mini-antibody based bionano sensors for both diagnostic and therapeutic purposes.
-
more
-
- 031-290-5939
- wonhwalee@skku.edu
-
[관심분야]
∙ Molecular research on sepsis and respiratory diseases ∙ Fundamental mechanisms involved in blood and lymphatic vessel function, atherogenesis, blood coagulation, and inflammation ∙ Theragnostic biomaterials for infectious diseases and cancers ∙ Bio-efficacy evaluation biochip-platform using human immune system
-
more
-
- 031-290-7726
- jaecheol@skku.edu
- DRC관 2층 840213호실
-
[관심분야]
자가면역질환 모델 시스템 확립 연구 질환 특이적인 역분화 줄기세포 생성 환자의 역분화 줄기세포를 이용한 다양한 질환 modeling 기술 개발 역분화 줄기세포를 이용한 drug screening system 구축 세포치료제 기반 바이오 의약품 개발 연구 구조 기반 유전체 통합 조절 시스템 구축
-
more
-
- 031-299-4348
- jungseunglee@skku.edu
- N센터 2층 86211호실
-
[관심분야]
조직공학, 재생의학, 생체재료, 오가노이드, 줄기세포
-
more
-
- 031-290-7861
- bioneer@skku.edu
- 생명공학관62동 2층 62251A호실
-
[관심분야]
Skin physiology & Signal transduction, Skin diseases & Immunology, Cancer research (melanoma, prostate cancer, etc.) Development of functional agents for abnormal skin conditions,
-
more
-
- 031-299-4359
- joonyeol@g.skku.edu
- N센터 3층 86362호실
-
[관심분야]
Perception, Sensorimotor transformation, Attention and cognition, Probabilistic inference, Population decoding How attention and cognition modulate sensory neural representation and transmission of the neural information to the downstream motor areas in the brain The neural basis of cognition in sensorimotor behaviors
-
more
-
- 031-290-7703
- sjchung@skku.edu
- DRC관 3층 840303호실
-
[관심분야]
화학생물학(Chemical Biology) : 항체-약물 복합체(ADC), 재조합항체, 분자이미징, HTS 기술개발, 단백질화학, 효소동력학, 표적지향형약물전달
-
more
-
- 부교수 대사생화학, 분자세포생물학
- 정수명
-
- 031-290-7001
- sumyung.jung@skku.edu
- 제2과학관32동 2층 32209호실
-
more
-
- 031-299-4859
- wjchung@skku.edu
-
[관심분야]
Phage/peptide-based biomaterials Biomimetic materials Bioprinting Therapeutic bionanomaterials
-
more
-
- 부교수 식물 생화학
- 정재훈
-
- 031-290-7013
- jhjung19@skku.edu
-
[관심분야]
식물 프리온 단백질의 온도센서로서의 역할 규명 상분리 기작을 통한 식물 온도인지 메커니즘 연구 온도신호 전달물질로 기능하는 활성산소 물질 연구
-
more
-
- 031-290-7868
- jaecho@skku.edu
- 생명공학관62동 1층 62107호실
-
[관심분야]
Study of functional role of cell cytoskeleton in inflammatory and tumorgenic responses Understanding of signal transduction pathway in inflammatory signaling Development of anti-inflammatory and anti-cancer drugs Functional role of protein methylation in immune responses
-
more
-
- 부교수
- 조홍백
-
- 031-299-4498
- hongbaek@skku.edu
- 제2과학관32동 2층 32208호실
-
[관심분야]
세균 세포벽 합성 기전 그람음성균의 cell envelope 합성 기전 및 온전성 유지 기전 항생제 내성 및 퍼시스턴스 기전
-
more
-
- 031-290-7008
- dchoe@skku.edu
- 제2과학관32동 1층 32158B호실

