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Reversible Permeabilization of Cell Membranes with Pore-Forming Toxins
Christopher Thomas
, Nisha Shrestha
, Raquel Brown
, Devon Richtsmeier
, Andrew Bogard
,
Juliette Tinker
, Daniel Fologea
Biological Sciences
Physics Department
Boise State University
Research output
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Contribution to conference
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Poster
Overview
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Keyphrases
Cell Membrane
100%
Lysenin
100%
Pore-forming Toxins
100%
Reversible Permeabilization
100%
Permeabilization
100%
Living Cells
50%
Cell Viability
50%
Biomedical Applications
50%
Fluorescent Dye
50%
Ion Transport
50%
Large Cell
50%
Mammalian Cells
50%
Cell Population
50%
Chitosan
50%
Pore-forming Protein
50%
Cell Permeabilization
50%
Controlled Delivery
50%
Propidium Iodide
50%
Biotechnological Applications
50%
Valve Control
50%
Biochemistry, Genetics and Molecular Biology
Cell Membrane
100%
Pore-Forming Toxin
100%
Pore Forming Protein
50%
Cell Viability
50%
Propidium Iodide
50%
Chitosan
50%
Cell Permeabilization
50%
Neuroscience
Cell Membrane
100%
Pore-Forming Toxin
100%
Fluorescent Dye
50%
Cell Viability
50%
Propidium Iodide
50%
Chitosan
50%
Chemical Engineering
Chitosan
100%