The atomic force microscope is broadly used to study the morphology of cells1–5 but it can also probe the mechanics of cells. It is now known that cancerous cells may have different mechanical properties than normal cells6–8 but the reasons for these differences are poorly understood9. Here we report quantitatively the differences between normal and cancerous human cervical epithelial cells by considering the brush layer on the cell surface. These brush layers, which consist mostly of microvilli, microridges, and cilia are important for interacting with the environment. Deformation force curves obtained from cells in vitro are processed according to the 'brush on soft cell model 10. We found that normal cells have brushes with one leng...
The mechanical properties of living cells reflect their physiological and pathological state. In par...
Cell mechanics is a novel label-free biomarker for indicating cell states and pathological changes. ...
<div><p>The metastatic potential of cells is an important parameter in the design of optimal strateg...
Atomic Force Microscopy (AFM) is a powerful technique widely employed in biophysics, for instance to...
The mechanical properties of living cells reflect their physiological and pathological state. In par...
Atomic force microscopy (AFM) is becoming an increasingly important tool-of-the-trade in the life sc...
Despite enormous advances in breast cancer biology, there is an increased demand for new technologie...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
To investigate the nanoscale mechanical properties of exfoliated cervical epithelial cells from pati...
The forces of adhesion of the normal and tumor cells of the human stomach epithelium to the probe of...
Mechanical properties of single cells are of increasing interest both from a fundamental cell biolog...
Cancer cells have different characteristics from normal cells in terms of morphology, cell–cell inte...
Cell mechanics plays an important role in cellular physiological activities. Recent studies have sho...
Investigating the mechanical properties of cells could reveal a potential source of label-free marke...
Various studies have demonstrated that alterations in the deformability of cancerous cells are stron...
The mechanical properties of living cells reflect their physiological and pathological state. In par...
Cell mechanics is a novel label-free biomarker for indicating cell states and pathological changes. ...
<div><p>The metastatic potential of cells is an important parameter in the design of optimal strateg...
Atomic Force Microscopy (AFM) is a powerful technique widely employed in biophysics, for instance to...
The mechanical properties of living cells reflect their physiological and pathological state. In par...
Atomic force microscopy (AFM) is becoming an increasingly important tool-of-the-trade in the life sc...
Despite enormous advances in breast cancer biology, there is an increased demand for new technologie...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
To investigate the nanoscale mechanical properties of exfoliated cervical epithelial cells from pati...
The forces of adhesion of the normal and tumor cells of the human stomach epithelium to the probe of...
Mechanical properties of single cells are of increasing interest both from a fundamental cell biolog...
Cancer cells have different characteristics from normal cells in terms of morphology, cell–cell inte...
Cell mechanics plays an important role in cellular physiological activities. Recent studies have sho...
Investigating the mechanical properties of cells could reveal a potential source of label-free marke...
Various studies have demonstrated that alterations in the deformability of cancerous cells are stron...
The mechanical properties of living cells reflect their physiological and pathological state. In par...
Cell mechanics is a novel label-free biomarker for indicating cell states and pathological changes. ...
<div><p>The metastatic potential of cells is an important parameter in the design of optimal strateg...