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Professor

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Kwon Byeong Ju

Professor/Sc.D.

  • Field of specialty : Medical engineering
  • email : BJKWON@yuhs.ac
  • Location : Future Medicine Research Center
  • contact : 02-2019-5443

Research Field

Biological stability of medical devices
Research on biologically active substances
Biomaterial and systems engineering

Affiliations and Career

(Current) Professor at Department of Medical Devices Industry, College of Medicine, Yonsei University
(Current) Research Assistant Professor, Office of Medical Engineering, College of Medicine, Yonsei University
(Former) Post. Doc, Office of Medical Engineering, College of Medicine, Yonsei University

Educational Background

Ph.D., Department of Medical Science, Yonsei University
Masters, Department of Medical Science, Yonsei University
Bachelor, Department of Chemistry, Kyeongsang University

Education and Research Career

• ​Mar. 2018.~Current Research Professor, Department of Medical Devices Industry, Graduate School, Yonsei University • Mar. 2018.~Current Research Professor, Office of Medical Engineering, College of Medicine, Yonsei University • Mar. 2017.~Feb. 2018. Post. Doc., Office of Medical Engineering, College of Medicine, Yonsei University • Mar. 2009.~Feb. 2016. Test Inspector at Yonsei Medical Technology Quality Evaluation Center • Jun. 2009.~Feb. 2017. Teaching Assistant, Office of Medical Engineering, College of Medicine, Yonsei University

Miscellaneous Academia Career

[Thesis]
• Suppression of T24 human bladder cancer cells by ROS from locally delivered hematoporphyrin-containing polyurethane films.
Photochem Photobiol Sci. 2018;17(6):763-772
• Recombinant batroxobin-coated nonwoven chitosan as hemostatic dressing for initial hemorrhage control.
Int J Biol Macromol. 2018;113:757-763
• Exogenous ROS-induced cell sheet transfer based on hematoporphyrin-polyketone film via a one-step process.
Biomaterials. 2018 ;161:47-56.
• Locally delivered ethyl-2, 5-dihydroxybenzoate using 3D printed bone implant for promotion of bone regeneration in osteoporotic animal model.
European Cells and Materials. 2018;35:1-12
• Design of polymeric culture substrates to promote pro-angiogenic potential of stem cells.
Macromolecular Bioscience. 2018:18(2)
• Homogeneity evaluation of mesenchymal stem cells based on electrotaxis analysis.
Scientific Reports 2017:7:9582
• Control of neonatal human dermal fibroblast migration on poly(lactic-co-glycolic acid)-coated surfaces by electrotaxis.
Journal of Tissue Engineering and Regenerative Medicine 2017:11;862-868.
• Functional improvement of hemostatic dressing by addition of recombinant batroxobin
Acta Biomaterialia 2017:48:175-185.
• Controlled Delivery of Extracellular ROS Based on Hematoporphyrin-Incorporated Polyurethane Film for Enhanced Proliferation of Endothelial Cells.
ACS Applied Materials & Interfaces,2016:8(42):28448-28457.
• Golgi polarization effects on infiltration of mesenchymal stem cells into electrospun scaffolds by fluid shear stress: Analysis by confocal microscopy
and Fourier transform infrared spectroscopy.
Applied Spectroscopy Reviews, 2016:51(7-9):570-581.
• Ethyl-2, 5-dihydroxybenzoate displays dual activity by promoting osteoblast differentiation and inhibiting osteoclast differentiation.
Biochemical and Biophysical Research Communications, 2016:471(3):335-341.
• Biological safety evaluation of polyketones as biomaterials.
Polymer-Korea 2016:40(2):225-231.
• Exovascular application of epigallocatechin-3-O-gallate-releasing electrospun poly(l-lactide glycolic acid) fiber sheets to reduce intimal hyperplasia in
injured abdominal aorta
Biomedical Materials, 2015:10(5):055010.
• Enhancement of human mesenchymal stem cell infiltration into the electrospun poly(lactic-co-glycolic acid) scaffold by fluid shear stress
Biochemical and Biophysical Research Communications, 2015:463(1-2):137-142.
• Titanium surface modification by using microwave-induced argon plasma in various conditions to enhance osteoblast biocompatibility
Biomaterials Research, 2015:19(13):1-7.
• Golgi polarization plays a role in the directional migration of neonatal dermal fibroblasts induced by the direct current electric fields
Biochemical and Biophysical Research Communications, 2015:460(2):255-260.

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