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In vitro antiplasmodium effects of dermaseptin S4 derivatives
Arie Dagan
, Leah Efron
, Leonid Gaidukov
, Amram Mor
*
,
Hagai Ginsburg
*
Corresponding author for this work
Alexander Silberman Institute of Life Sciences
Research output
:
Contribution to journal
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Article
›
peer-review
89
Scopus citations
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Keyphrases
Growth Inhibition
100%
Plasmodium
100%
Acyl
100%
Dermaseptin S4
100%
Erythrocytes
66%
Hydrophobicity
66%
Host Cell
66%
Lysis
66%
N-terminus
33%
Infected Cells
33%
Potassium
33%
Plasmodium Falciparum
33%
Malaria Parasite
33%
Hemolytic Activity
33%
Cytotoxic Effect
33%
Antimalarial Drugs
33%
Parallel for
33%
Investigative Tool
33%
Acyl Derivatives
33%
Parasite Viability
33%
Parasite Growth
33%
Dose Dependence
33%
Strategy for Development
33%
Plasma Membrane Potential
33%
Bulkiness
33%
Variable Structure
33%
Antiparasitic Effect
33%
Non-hemolytic
33%
Intraerythrocytic
33%
Immunology and Microbiology
Peptides
100%
Dermaseptin
100%
In Vitro
100%
Growth Inhibition
42%
Parasite
42%
Host Cell
28%
Hydrophobicity
28%
Erythrocyte
28%
Amino Terminal Sequence
14%
Cell Membrane
14%
Cytotoxicity
14%
Plasmodium
14%
Dose Response
14%
Antimalarial Agent
14%
Parasite Viability
14%