Impact of poloxamer 188 (Pluronic F-68) additive on cell mechanical properties, quantification by real-time deformability cytometry

scientific article published on 01 July 2018

Impact of poloxamer 188 (Pluronic F-68) additive on cell mechanical properties, quantification by real-time deformability cytometry is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1063/1.5040316
P932PMC publication ID6404947
P698PubMed publication ID30867863

P50authorNik WilloughbyQ52354041
Melanie JimenezQ55704965
Oliver OttoQ56794541
Ewa GuzniczakQ89890108
P2093author name stringHelen Bridle
Matthew Irwin
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Pluronic F-68: a promising new skin wound cleanserQ43914724
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Real-Time Deformability Cytometry: Label-Free Functional Characterization of CellsQ47715851
The fate of Pluronic F-68 in chondrocytes and CHO cellsQ47790570
Pluronic enhances the robustness and reduces the cell attachment of mammalian cells.Q47860076
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Effects of Poloxamer 188 on red blood cell membrane properties in sickle cell anaemiaQ50262758
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Correlation between cell deformability and metastatic potential in B16-F1 melanoma cell variantsQ68484484
Pluronic F-68 reduces the endothelial adherence and improves the rheology of liganded sickle erythrocytesQ69016137
Poloxamer-188 as an adjunct to primary percutaneous transluminal coronary angioplasty for acute myocardial infarctionQ71656142
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P433issue4
P304page(s)044118
P577publication date2018-07-01
P1433published inBiomicrofluidicsQ3170210
P1476titleImpact of poloxamer 188 (Pluronic F-68) additive on cell mechanical properties, quantification by real-time deformability cytometry
P478volume12

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Q89890110Purifying stem cell-derived red blood cells: a high-throughput label-free downstream processing strategy based on microfluidic spiral inertial separation and membrane filtrationcites workP2860

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