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Lipids and Membranes: Detection by Imaging and Lipidomics, Volume 727 covers lipids, a chemically diverse set of biological molecules subject to rapid metabolism and transport. This dynamic behavior has motivated the development of methods across multiple disciplines for their detection and manipulation. Split into three parts, the chapters in this new release include Measurement of fatty acid esters of hydroxy fatty acids, Superresolution organelle imaging with lipophilic HIDE probes, Ultra-high resolution analysis of membrane lipids from 15N metabolically labeled mice, Superresolution lipid imaging with expansion microscopy, High-resolution phosphoinositide analysis in healthy versus disease cells, and much more.
Additional chapters focus on Alkyne lipids as tracers of lipid metabolism, Imaging oxidative stress in biomembranes, Imaging the dynamics of phosphatidylinositol 4-phosphate metabolism, Lipidomics for studying sphingolipids in cell death, Non-invasive imaging of phosphoinositides with genetically encoded lipid biosensors, Profiling lipotypes at the single cell level in heterogenous populations, MS imaging of phosphoinositides, and much more.
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Lipids and Membranes: Detection by Imaging and Lipidomics, Volume 727 covers lipids, a chemically diverse set of biological molecules subject to rapid metabolism and transport. This dynamic behavior has motivated the development of methods across multiple disciplines for their detection and manipulation. Split into three parts, the chapters in this new release include Measurement of fatty acid esters of hydroxy fatty acids, Superresolution organelle imaging with lipophilic HIDE probes, Ultra-high resolution analysis of membrane lipids from 15N metabolically labeled mice, Superresolution lipid imaging with expansion microscopy, High-resolution phosphoinositide analysis in healthy versus disease cells, and much more.
Additional chapters focus on Alkyne lipids as tracers of lipid metabolism, Imaging oxidative stress in biomembranes, Imaging the dynamics of phosphatidylinositol 4-phosphate metabolism, Lipidomics for studying sphingolipids in cell death, Non-invasive imaging of phosphoinositides with genetically encoded lipid biosensors, Profiling lipotypes at the single cell level in heterogenous populations, MS imaging of phosphoinositides, and much more.