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Effect of solution environment on the permeability of red blood cells
Leah J. Langsdorf
,
Andrew L. Zydney
Chemical Engineering
Research output
:
Contribution to journal
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Article
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peer-review
4
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Scopus citations
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Keyphrases
Aggregation Rate
20%
Application System
20%
Biotechnological Applications
20%
Buffer Solution
20%
Cell Aggregation
20%
Cell Deformability
20%
Cell Membrane
20%
Cell Membrane Transport
20%
Cell Permeability
40%
Chloride
20%
Creatinine
100%
Electrolyte
20%
Human Red Blood Cells
20%
Lipid Bilayer
20%
Membrane Transport
20%
Metabolic Potential
20%
Metabolic Processes
20%
Passive Diffusion
20%
Phase Composition
60%
Phosphate
20%
Physiological Systems
20%
Red Blood Cells
100%
Semipermeable Membrane
20%
Solute
20%
Solute Transport
20%
Solution Environment
100%
Transport Mechanism
20%
Ultrafiltration Device
20%
Uric Acid
80%
Immunology and Microbiology
Cell Membrane
50%
Cell Membrane Permeability
100%
Cell Membrane Transport
50%
Erythrocyte
100%
Lipid Bilayer
50%
Membrane Transport
50%
Metabolite
50%
Ultrafiltration
50%
Biochemistry, Genetics and Molecular Biology
Adenine
20%
Cell Membrane
20%
Cell Membrane Permeability
40%
Cell Membrane Transport
20%
Chloride
20%
Creatinine
100%
Lipid Bilayer
20%
Membrane Transport
20%
Metabolite
20%
Ultrafiltration
20%
Material Science
Buffer Solution
25%
Cell Membrane
100%
Chloride
25%
Lipid Bilayer
25%
Metabolite
25%
Phase Composition
75%