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transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

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[DOI] [PubMed] [Google Scholar] Salic K., Gart E., Seidel F., Verschuren L., Caspers M., van Duyvenvoorde W., Wong K.E., Keijer J., Bobeldijk-Pastorova I., Wielinga P.Y., Kleemann R

transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

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transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

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transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

Genome-wide analysis in vivo of translation with nucleotide resolution using ribosome profiling

transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

Kulpa D

transition temperature lipid c The temperature-dependent physical state of polar lipids and their miscibility impact the topography and mechanical properties of bilayer models of the milk fat globule membrane Liposome Phase Transition Temperature Analysis

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