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职业迁徙
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Many diseases are the result of deficient or abnormal protein-lipid interactions. The elucidation of these interactions and the ability to examine and manipulate biomembranes that mimic real life systems hold the key to better understanding these diseases. Using microscopy and scattering techniques on two-dimensional monolayers and supported bilayers as model systems, we carry out fundamental studies on the interactions between lipids and proteins to gain a better understanding of respiratory distress syndrome and Alzheimer's disease.
Other research projects in our group include the insertion of antimicrobial peptide protegrin-1 into model membrane systems, structures and dynamics of monolayer and bilayer domains, membrane sealing using poloxamers, and two-dimensional ordering of rod-coil copolymers. Experimental techniques employed in these studies include optical and scanning probe microscopy as well as x-ray and neutron scattering.
Other research projects in our group include the insertion of antimicrobial peptide protegrin-1 into model membrane systems, structures and dynamics of monolayer and bilayer domains, membrane sealing using poloxamers, and two-dimensional ordering of rod-coil copolymers. Experimental techniques employed in these studies include optical and scanning probe microscopy as well as x-ray and neutron scattering.
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Biophysical Journal (2024)
Journal of the mechanical behavior of biomedical materials (2023): 105743-105743
Tiffany Suwatthee,Daniel Kerr, Sofiya Maltseva,Charles L. Dulberger, Luke Hyeondo Hwang,Benjamin R. Slaw,Wei Bu,Binhua Lin,Erin J. Adams,Ka Yee C. Lee
The European physical journal. E, Soft matterno. 11 (2023): 1-10
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