Su Bin Lee
Hanbat National University
6 Papers
27 Citations
Su Bin Lee is an academic researcher from Hanbat National University. The author has contributed to research in topics: Medicine & Interleukin 21. The author has an hindex of 1, co-authored 1 publications.
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Papers
Adhesion Improvement of Polyimide/Metal Interface by He/O2/NF3 Atmospheric Pressure Plasma
Su Bin Lee,Yoon-Kee Kim +1 more
TL;DR: The surface of polyimide (PI) was modified with He/O2/NF3 dielectric barrier discharge generated by 13.56MHz r.f. power as mentioned in this paper.
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EGFR‐Induced and c‐Src‐Mediated CD47 Phosphorylation Inhibits TRIM21‐Dependent Polyubiquitylation and Degradation of CD47 to Promote Tumor Immune Evasion
Linyong Du,Zhipeng Su,Silu Wang,Ying-Hsuan Meng,Fei Xiao,Daqian Xu,Xinjian Li,Xu Qian,Su Bin Lee,Jongho Lee,Zhimin Lu,Jianxin Lyu +11 more
TL;DR: It is demonstrated that epidermal growth factor receptor (EGFR) activation induces CD47 expression by increasing the binding of c‐Src to CD47, leading to c-Src‐mediated CD47 Y288 phosphorylation, which elucidate a novel mechanism underlying CD47 upregulation in EGFR‐activated tumor cells.
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Alleviation of hippocampal necroptosis and neuroinflammation by NecroX-7 treatment after acute seizures
Y. Roh,Su Bin Lee,Min Seuk Kim,Mi-Hye Kim,Hee Jung Kim,Kyung-Ok Cho +5 more
TL;DR: NecroX-7 has potential as a novel medication for TLE with its neuroprotective, anti-inflammatory, and anti-necroptotic effects.
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Recent Trends in Macromolecule-Based Approaches for Hair Loss Treatment.
TL;DR: In this paper , a review examines the latest developments in the use of macromolecules for the treatment of hair loss, including microneedle (MN) and nanoparticle (NP) delivery systems.
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3D printing of micropatterned stamps with tunable horizontal surface properties
TL;DR: In this paper, a glossy surface can be created on an elastic 3D printed component by extreme overexposure of the cap layer and how this can be analyzed, showing that the average roughness (Ra) values of the surface in the X and Y directions could be reduced by a factor of 4.5 (X) to 5.0 (Y) from initially 0.182/0.343 to 0.041/ 0.069μm (X/Y).
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