AbstractIon channels play pivotal roles in a wide variety of cellular functions; therefore, their physiological characteristics, pharmacological responses, and molecular structures have been extensively investigated. However, the mobility of an ion channel itself in the cell membrane has not been examined in as much detail. A total internal reflection fluorescence (TIRF) microscope allows fluorophores to be imaged in a restricted region within an evanescent field of less than 200 nm from the interface of the coverslip and plasma membrane in living cells. Thus the TIRF microscope is useful for selectively visualizing the plasmalemmal surface and subplasmalemmal zone. In this review, we focused on a single-molecule analysis of the dynamic mov...
Ion channels form the basis of electrical excitability of neurons and muscle cells. In response to s...
The goal in fluorescence microscopy is to detect the signal of fluorescently labeled molecules with ...
Based on near-field optical theory, total internal reflection fluorescence microscope shows a novel ...
Cell membranes are involved in a variety of cellular processes such as cell adhesion, ion conductivi...
Investigating biological mechanisms in ever greater detail requires continuous advances in microscop...
AbstractTIRF microscopy can be used in conjunction with CFP/YFP FRET to detect movements of the cyto...
Increases in bulk average cytoplasmic Ca2+ concentration ([Ca2+]c) are derived from the combined act...
ABSTRACT: The plasma membrane is the barrier which all molecules must cross to enter or exit the cel...
Increases in bulk average cytoplasmic Ca2+ concentration ([Ca2+]c) are derived from the combined act...
We describe an optical technique using total internal reflection fluorescence (TIRF) microscopy to o...
AbstractAdvances in imaging technology have allowed optical analysis of Ca2+-permeable ion channel a...
AbstractTotal internal reflection fluorescence correlation spectroscopy (TIR-FCS) allows us to measu...
Understanding membrane protein trafficking, assembly, and expression requires an approach that diffe...
AbstractIon channels are dynamic multimeric proteins that often undergo multiple unsynchronized stru...
Membrane ion channels regulate key cellular functions and their activity is dependent on their 3D st...
Ion channels form the basis of electrical excitability of neurons and muscle cells. In response to s...
The goal in fluorescence microscopy is to detect the signal of fluorescently labeled molecules with ...
Based on near-field optical theory, total internal reflection fluorescence microscope shows a novel ...
Cell membranes are involved in a variety of cellular processes such as cell adhesion, ion conductivi...
Investigating biological mechanisms in ever greater detail requires continuous advances in microscop...
AbstractTIRF microscopy can be used in conjunction with CFP/YFP FRET to detect movements of the cyto...
Increases in bulk average cytoplasmic Ca2+ concentration ([Ca2+]c) are derived from the combined act...
ABSTRACT: The plasma membrane is the barrier which all molecules must cross to enter or exit the cel...
Increases in bulk average cytoplasmic Ca2+ concentration ([Ca2+]c) are derived from the combined act...
We describe an optical technique using total internal reflection fluorescence (TIRF) microscopy to o...
AbstractAdvances in imaging technology have allowed optical analysis of Ca2+-permeable ion channel a...
AbstractTotal internal reflection fluorescence correlation spectroscopy (TIR-FCS) allows us to measu...
Understanding membrane protein trafficking, assembly, and expression requires an approach that diffe...
AbstractIon channels are dynamic multimeric proteins that often undergo multiple unsynchronized stru...
Membrane ion channels regulate key cellular functions and their activity is dependent on their 3D st...
Ion channels form the basis of electrical excitability of neurons and muscle cells. In response to s...
The goal in fluorescence microscopy is to detect the signal of fluorescently labeled molecules with ...
Based on near-field optical theory, total internal reflection fluorescence microscope shows a novel ...