Atomic force microscopy (AFM) is the only technique that allows label-free imaging of nanoscale biomolecular dynamics, playing a crucial role in solving biological questions that cannot be addressed by other major bioimaging tools (fluorescence or electron microscopy). However, such imaging is possible only for systems either extracted from cells or reconstructed on solid substrates. Thus, nanodynamics inside living cells largely remain inaccessible with the current nanoimaging techniques. Here, we overcome this limitation by nanoendoscopy-AFM, where a needle-like nanoprobe is inserted into a living cell, presenting actin fiber three-dimensional (3D) maps, and 2D nanodynamics of the membrane inner scaffold, resulting in undetectable changes...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Imaging the nanoscale distribution of specific chemical and biological sites on live cells is an imp...
Atomic force microscopy (AFM) techniques provide a versatile platform for imaging and manipulating l...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
Atomic force microscopy (AFM) is a class of high-resolution scanning probe microscopy (SPM) for non-...
This paper presents a new and reliable approach for in-situ imaging and manipulation of membrane pro...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
Direct imaging of morphological dynamics of live mammalian cells with nanometer resolution under phy...
SummaryThe emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the...
Atomic Force Microscopy (AFM) based nanorobotics has been applied for building nano devices for almo...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
Utilizing cell culture medium to grow cells in vitro has been widely studied in the past decades and...
Utilizing cell culture medium to grow cells in vitro has been widely studied in the past decades and...
Exosomes play an important role in the fulfillment of cellular physiological activities and are stro...
Progress in nanomedicine relies on the development of advanced tools for imaging and manipulating bi...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Imaging the nanoscale distribution of specific chemical and biological sites on live cells is an imp...
Atomic force microscopy (AFM) techniques provide a versatile platform for imaging and manipulating l...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
Atomic force microscopy (AFM) is a class of high-resolution scanning probe microscopy (SPM) for non-...
This paper presents a new and reliable approach for in-situ imaging and manipulation of membrane pro...
Due to the lack of adequate tools for observation, native molecular behaviors at the nanoscale have ...
Direct imaging of morphological dynamics of live mammalian cells with nanometer resolution under phy...
SummaryThe emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the...
Atomic Force Microscopy (AFM) based nanorobotics has been applied for building nano devices for almo...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
Utilizing cell culture medium to grow cells in vitro has been widely studied in the past decades and...
Utilizing cell culture medium to grow cells in vitro has been widely studied in the past decades and...
Exosomes play an important role in the fulfillment of cellular physiological activities and are stro...
Progress in nanomedicine relies on the development of advanced tools for imaging and manipulating bi...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Imaging the nanoscale distribution of specific chemical and biological sites on live cells is an imp...
Atomic force microscopy (AFM) techniques provide a versatile platform for imaging and manipulating l...