김철호 교수
Cheol-ho Kim
성균관대학교 생명과학과 · 의학
연구실 소개
김철호 교수의 연구실은 헤드 앤드 네ック 스퀴amous 세포 낭종(예: 구강 백반증, 악성 종양)의 진행 과정에서 세포 간 상호작용과 이질성을 단일세포 유전자 발현 분석을 통해 규명하며, 3D 프린팅 기반 생체재료와 혈액 줄기세포를 활용한 기관지 및 기관 훼손의 조직 공학적 복구 기법을 개발하고 있습니다. 또한 비열성 대기압 플라즈마(NTP)를 이용한 새로운 암 치료 전략과 HSPA5를 타겟으로 한 세포 소기관 기능 조절 메커니즘을 연구하여 암 생존 및 전이 억제에 기여하고자 합니다. 특히, 종양 미세환경 모ulating 3D 구조적 스캐폴드와 세포-재료 상호작용의 기전을 중심으로 재생의학과 암 생물학의 융합 연구를 수행하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Head and neck squamous cell carcinoma (HNSCC) undergoes stepwise progression from normal tissues to precancerous leukoplakia, primary HNSCC, and metastasized tumors. To delineate the heterogeneity of tumor cells and their interactions during the progression of HNSCC, we employ single-cell RNA-seq profiling for normal to metastasized tumors. We can identify the carcinoma in situ cells in leukoplakia lesions that are not detected by pathological examination. In addition, we identify the cell type
Three-dimensional printing has come into the spotlight in the realm of tissue engineering. We intended to evaluate the plausibility of 3D-printed (3DP) scaffold coated with mesenchymal stem cells (MSCs) seeded in fibrin for the repair of partial tracheal defects. MSCs from rabbit bone marrow were expanded and cultured. A half-pipe-shaped 3DP polycaprolactone scaffold was coated with the MSCs seeded in fibrin. The half-pipe tracheal graft was implanted on a 10 × 10-mm artificial tracheal defect i
Recapitulating the in vivo microenvironments of damaged tissues through modulation of the physicochemical properties of scaffolds can boost endogenous regenerative capacity. A series of critical events in tissue healing including immune-responses, angiogenesis, and stem cell homing and differentiation orchestrate to relay the regeneration process. Herein, we report hierarchically structured ('microchanneled') 3D printed scaffolds (named 'μCh'), in contrast to conventional 3D printed scaffolds, i
Plasma, the fourth state of matter, is defined as a partially or completely ionized gas that includes a mixture of electrons and ions. Advances in plasma physics have made it possible to use non-thermal atmospheric pressure plasma (NTP) in cancer research. However, previous studies have focused mainly on apoptotic cancer cell death mediated by NTP as a potential cancer therapy. In this study, we investigated the effect of NTP on invasion or metastasis, as well as the mechanism by which plasma in
HSPA5/GRP78/BiP plays an important role in cell survival or tumor progression. For these reasons, HSPA5 is an emerging therapeutic target in cancer development. Here we report that HSPA5 contributes to head and neck cancer (HNC) survival via maintenance of lysosomal activity; however, a nonthermal plasma (NTP, considered as a next-generation cancer therapy)-treated solution (NTS) inhibits HNC progression through HSPA5-dependent alteration of lysosomal activity. HSPA5 prevents NTS-induced lysosom
The purpose of the present study was to describe the temporal trends in prevalence and management status of hypertension in Korea between 1998 and 2015. Data of adults who were aged 30 years or older were extracted from the Korea National Health and Nutrition Examination Survey, a nationwide representative population-based survey. Hypertension was prevalent in 30.5% of Korean adults. The age and sex standardized prevalence showed little change between 1998 and 2015. The elderly population and me
BACKGROUND: 1,3-propanediol (1,3-PDO) is the most widely studied value-added product that can be produced by feeding glycerol to bacteria, including Lactobacillus sp. However, previous research reported that L. reuteri only produced small amounts and had low productivity of 1,3-PDO. It is urgent to develop procedures that improve the production and productivity of 1,3-PDO. RESULTS: We identified a novel L. reuteri CH53 isolate that efficiently converted glycerol into 1,3-PDO, and performed batch
Much progress has been made since plasma was discovered in the early 1900s. The first form of plasma was thermal type, which was limited for medical use due to potential thermal damage on living cells. In the late 1900s, with the development of a nonthermal atmospheric plasma called cold plasma, profound clinical research began and 'plasma medicine' became a new area in the academic field. Plasma began to be used mainly for environmental problems, such as water purification and wastewater treatm
Positive rates of HGF and c-Met expression in hypopharyngeal SCC were 77.5% and 70%, respectively. HGF staining was significantly correlated with lymph node metastasis and pathologic stage (p < 0.05). c-Met staining was only significantly correlated with lymph node metastasis (p < 0.05). Increased expression of c-Met mRNA (RT-PCR) and protein (Western blotting) was detected in hypopharyngeal cancer tissue.
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