Results 161 to 170 of about 672,429 (301)
F-actin organization excludes E-cadherin from the division furrow to ensure cytokinesis fidelity. [PDF]
Mondal D, Rai M, Padmanabhan A.
europepmc +1 more source
Binding of Myosin A to F-Actin
Y, TONOMURA, S, TOKURA, K, SEKIYA
openaire +2 more sources
We describe a microfluidic tumor‐stroma co‐culture model, engineered to resist collagen‐hydrogel contraction driven by fibroblast activity. Surface silanization with APTES covalently anchors the matrix to the chip, while Genipin crosslinking progressively increases stiffness and elasticity without harming cells. This supports >10 days of co‐culture and
Doriane Le Manach +4 more
wiley +1 more source
Correction: Actin arginylation alters myosin engagement and F-actin patterning despite structural conservation. [PDF]
Pinto CS +10 more
europepmc +1 more source
Here, we present a novel 3D cell patterning and culture platform. The “Floor‐Ceiling‐Chip” (FC‐Chip) consists of two opposing track‐etched membranes, creating a pseudo‐3D microenvironment for the cells in between. By providing the membranes with micropatterned cell‐adhesive islands of varying geometries and sizes, the FC‐Chip enables control over cell ...
Urandelger Tuvshindorj +10 more
wiley +1 more source
ADPact: A versatile sensor for ADP-F-actin. [PDF]
Ma Q, Han X, Zhu K, Ng CX, He D, Miao Y.
europepmc +1 more source
A droplet microfluidic platform is employed to enable high‐throughput, uniform tumor spheroid generation for evaluating siRNA‐loaded nanomedicines at the protein level. As a proof of concept, breast (MCF‐7) and brain (U87 MG) cancer cell lines are investigated using this platform, revealing penetration profiles and therapeutic responses between the two
Ling Liu +4 more
wiley +1 more source
ARAP1 fine-tunes F-actin polymerization level in lymphocytes through RhoA inhibition. [PDF]
Ueda Y, Kondo N, Kamioka Y, Kinashi T.
europepmc +1 more source
3D printed hybrid scaffolds combining bioactive silica–calcium chemistry with elastic polymers guide human bone stem cells to form bone. The scaffolds support cell survival, organization, and invasion while releasing osteogenic ions. Together, architecture and composition drive bone‐specific gene expression, extracellular matrix organization, and ...
David R. Sory +3 more
wiley +1 more source
Engineering of Glioblastoma‐Derived Biomimetic Vesicles and Their Structural and Molecular Features
ABSTRACT Biomimetic nanosystems and vesicles have arisen as a novel approach to design vesicular transport systems with diverse therapeutic potential. The ‘biomimetic’ strategy involves the integration of cell membrane components into lipid bilayers, conferring them with biological properties originating from the cell of origin. Until now, most studies
Noelia Hernández‐Lobato +6 more
wiley +1 more source

