Engineering Proteins to Visualize and Manipulate Cells
Editat de Tetsuya Kitaguchi, Madoka Suzukien Limba Engleză Hardback – 25 noi 2026
Authoritative and practical, Engineering Proteins to Visualize and Manipulate Cells aims to stimulate new perspectives on cell visualization and manipulation and advance the boundaries of biological discovery.
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Cuprins
Highly-Biocompatible Multiplexed Super-Resolution Imaging by SPoD-OnSPAN.- Quantitative Imaging of Calcium Dynamics with a Green Fluorescent Biosensor and Fluorescence Lifetime Imaging.- Genetically Encoded Multimeric Nanoparticles for Measuring Intracellular Diffusion and Cytoplasmic Viscosity.- GPCR-Based Genetically Encoded Fluorescent Indicators.- Using All Probes Plasmids to Lower the Barrier for Quantifying Single-mRNA Translation Dynamics in Live Cells.- Full-Spectrum Spectroscopic Characterization of Extracellular pH Effects on FRET-Based Genetic Voltage Indicators Expressed in Xenopus laevis Oocytes.- Super Photostable Organic Dye for Single Molecule Imaging and Single Particle Tracking in Live Cells.- Optochemical Proximity Labeling for Mapping Endogenous Receptor Networks in the Live Mouse Brain.- Tailored Methods to Develop High-Performance Chemigenetic Indicators.- Cell Labeling with Fluorescent Nanodiamonds for Visualization and Manipulation.- Radiation-Crosslinked Protein Hydrogels and Nanogels: Preparation and Applications in Cell Culture and Nanomedicine.- Generating and Evaluating New Chemigenetic Fluorescent Biosensors for Protein Kinase A Based on Synthetic Organic Fluorophores.- Wash-Free Live-Cell Imaging Using Homogeneous Immunosensors.- Optogenetic Tool for Controlling p53 Signaling Pathway.- Chemo-Optogenetic Control of Protein Activities in Living Cells Using Photoswitchable Molecular Glues.- Reversible Sequestration and Release of GFP-Tagged Proteins in Mammalian Cells Using Small-Molecule-Responsive Synthetic Condensates.- Calibration of Intracellular Thermometers Using Localized Microheating.- Protocells with Fluorescent Response to Extracellular Signals.- An Effective Pipeline to Develop Modification-Specific Intracellular Antibodies Using AI Tools.- Engineered Antibody-Like Bivalent Binders for Manipulating Receptor Functions.- Using the Function Prediction Server and Queryome for Functional Protein Design.