Byung Hoon Kim
Sungkyunkwan University · 工学
研究室紹介
Professor Byung Hoon Kim's research lab specializes in biomaterials and tissue engineering, with a focus on developing advanced materials for regenerative medicine and cancer therapy. Key research directions include the application of cold atmospheric plasma and low-level light therapy in enhancing cancer cell death and wound healing, as well as the fabrication and surface modification of 3D scaffolds—particularly poly(ε-caprolactone)/β-tricalcium phosphate composites—for improved osteoblast and fibroblast responses. The lab also investigates nanohybrids of carbon-based quantum dots for sustainable energy applications, particularly in photoelectrochemical systems.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Cold atmospheric plasma (CAP) has been extensively investigated in the local treatment of cancer due to its potential of reactive oxygen species (ROS) generation in biological systems. In this study, we examined the synergistic effect of combination of CAP and cisplatin-mediated chemotherapy of oral squamous cell carcinoma (OSCC) in vitro. SCC-15 OSCC cells and human gingival fibroblasts (HGF-1) cells were treated with cisplatin, and then, the cells were irradiated with CAP. Following this, viab
Porous polycaprolactone (PCL) scaffolds were fabricated by using the CO 2 gas foaming/salt leaching process and then PCL scaffolds surface was treated by oxygen or nitrogen gas plasma in order to enhance the cell adhesion, spreading, and proliferation. The PCL and NaCl were mixed in the ratios of 3 : 1. The supercritical CO 2 gas foaming process was carried out by solubilizing CO 2 within samples at 50°C and 8 MPa for 6 hr and depressurization rate was 0.4 MPa/s. The oxygen or nitrogen plasma tr
A subcutaneous mass removed from the cheek showed histologic features of subcutaneous angiolymphoid hyperplasia (Kimura disease) at its early stage. The condition shows a wide spectrum of pathologic changes. At its early stage, the main findings consist of active vascular proliferation with plump endothelial cells and varying degrees of lymphocytic, histiocytic, and eosinophilic infiltration. The lesion at its later stage features hyperplastic blood vessels with inconspicuous endothelial cells,
Over a decade, a significant advancement in the development of nanohybrids has been observed to address the challenges related to sustainable energy systems. In this regard, the review critically examines the emerging functions of carbon-based quantum dots (CQDs) and graphene-based quantum dots (GQDs) and their nanohybrids in photoelectrochemical (PEC) applications, focusing on their different physicochemical properties. Nanohybrids constituting CQDs and GQDs can be breakthrough materials, which
Light in the red to near-infrared (NIR) range (630–1000 nm), which is generated using low energy laser or light-emitting diode (LED) arrays, was reported to have a range of beneficial biological effects in many injury models. NIR via a LED is a well-accepted therapeutic tool for the treatment of infected, ischemic, and hypoxic wounds as well as other soft tissue injuries in humans and animals. This study examined the effects of exposure to 660 nm red LED light at intensities of 2.5, 5.5, and 8.5
This study aims to investigate the surface characterization and pre-osteoblast biological behaviors on the three-dimensional (3D) poly(ε-caprolactone)/β-tricalcium phosphate (β-TCP) scaffold modified by amine plasma-polymerization. The 3D PCL scaffolds were fabricated using fused deposition modeling (FDM) 3D printing. To improve the pre-osteoblast bioactivity, the 3D PCL scaffold was modified by adding β-TCP nanoparticles, and then scaffold surfaces were modified by amine plasma-polymerization u
Despite the potential to increase the energy limit of Li-rich cathodes by using oxygen redox, its practicality has been limited by the accompanying structural changes and voltage hysteresis. While voltage hysteresis is commonly associated with transition metal (TM) migration and oxygen dimerization, the specific contribution of each is unclear. We provide a mechanistic insight into how each of these changes induces hysteresis in a representative Li-rich disordered rocksalt cathode, Li 1.2 Mn 0.4
Corrosion of nitinol (NiTi) is a major factor in the failure of implantable materials. Recently, as the importance of corrosion of metals has increased, testing according to international guidelines is essential. The purpose of this study was to evaluate the corrosion resistance of NiTi wire through heat treatment and passivation process. In this study, NiTi wire used two commercially available products and a self-manufactured stent. Experimental consideration was carried out according to ASTM s