Circular dorsal ruffles (CDRs) are transient actin-rich ring-like structures which form on the dorsal surface of growth-factor stimulated cells. However, the dynamics and mechanism of formation of CDRs are still unknown. It has been observed that CDR formation leads to stress fibers disappearing near the CDRs. Since stress fiber formation can be modified by substrate stiffness, we examined the effect of substrate stiffness on CDR formation by seeding NIH 3T3 fibroblasts on glass and polydimethylsiloxane (PDMS) substrates of varying stiffnesses from 20 kPa to 1800 kPa. We found that increasing substrate stiffness increased the lifetime of the CDRs. We developed a mathematical model of the signaling pathways involved in CDR formation to provi...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Circular dorsal ruffles (CDRs) are transient actin-rich ring-like structures which form on the dorsa...
AbstractCircular dorsal ruffles (CDRs) are transient actin-rich ringlike structures that form on the...
<p>Cell-substrate interactions influence various cellular processes such as morphology, motility, pr...
Circular Dorsal Ruffles (CDRs) are actin rich, ring-shaped structures that form across the dorsal su...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Dynamic structures of polymerized actin play a crucial role in different cellular processes. These i...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Dynamic structures of polymerized actin play a crucial role in different cellular processes. These i...
Cells construct a number of plasma membrane structures to meet a range of physiological demands. Dri...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Circular dorsal ruffles (CDRs) are transient actin-rich ring-like structures which form on the dorsa...
AbstractCircular dorsal ruffles (CDRs) are transient actin-rich ringlike structures that form on the...
<p>Cell-substrate interactions influence various cellular processes such as morphology, motility, pr...
Circular Dorsal Ruffles (CDRs) are actin rich, ring-shaped structures that form across the dorsal su...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Dynamic structures of polymerized actin play a crucial role in different cellular processes. These i...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Dynamic structures of polymerized actin play a crucial role in different cellular processes. These i...
Cells construct a number of plasma membrane structures to meet a range of physiological demands. Dri...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Circular Dorsal Ruffles (CDRs) have been known for decades, but the mechanism that organizes these a...
Cells exhibit propagating membrane waves which involve the actin cytoskeleton. One type of such memb...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...