Bridging the gap: from 2D cell culture to 3D microengineered extracellular matrices
Historically the culture of mammalian cells in the laboratory has been performed on planar
substrates with media cocktails that are optimized to maintain phenotype. However, it is …
substrates with media cocktails that are optimized to maintain phenotype. However, it is …
Micro-and nanopatterned topographical cues for regulating macrophage cell shape and phenotype
Controlling the interactions between macrophages and biomaterials is critical for modulating
the response to implants. While it has long been thought that biomaterial surface chemistry …
the response to implants. While it has long been thought that biomaterial surface chemistry …
The role of mechanotransduction on vascular smooth muscle myocytes cytoskeleton and contractile function
Smooth muscle (SM) exhibits a highly organized structural hierarchy that extends over
multiple spatial scales to perform a wide range of functions at the cellular, tissue, and organ …
multiple spatial scales to perform a wide range of functions at the cellular, tissue, and organ …
Actomyosin contractility scales with myoblast elongation and enhances differentiation through YAP nuclear export
Skeletal muscle fibers are formed by the fusion of mononucleated myoblasts into long linear
myotubes, which differentiate and reorganize into multinucleated myofibers that assemble in …
myotubes, which differentiate and reorganize into multinucleated myofibers that assemble in …
A human in vitro model of Duchenne muscular dystrophy muscle formation and contractility
Tongue weakness, like all weakness in Duchenne muscular dystrophy (DMD), occurs as a
result of contraction-induced muscle damage and deficient muscular repair. Although …
result of contraction-induced muscle damage and deficient muscular repair. Although …
Coupling primary and stem cell–derived cardiomyocytes in an in vitro model of cardiac cell therapy
The efficacy of cardiac cell therapy depends on the integration of existing and newly formed
cardiomyocytes. Here, we developed a minimal in vitro model of this interface by …
cardiomyocytes. Here, we developed a minimal in vitro model of this interface by …
Transdifferentiation of human endothelial progenitors into smooth muscle cells
Access to smooth muscle cells (SMC) would create opportunities for tissue engineering,
drug testing, and disease modeling. Herein we report the direct conversion of human …
drug testing, and disease modeling. Herein we report the direct conversion of human …
Dissipation of contractile forces: the missing piece in cell mechanics
Mechanical forces are key regulators of cell and tissue physiology. The basic molecular
mechanism of fiber contraction by the sliding of actin filament upon myosin leading to …
mechanism of fiber contraction by the sliding of actin filament upon myosin leading to …
Valve interstitial cell contractile strength and metabolic state are dependent on its shape
The role of valvular interstitial cell (VIC) architecture in regulating cardiac valve function and
pathology is not well understood. VICs are known to be more elongated in a hypertensive …
pathology is not well understood. VICs are known to be more elongated in a hypertensive …
Fabrication of a perfusable 3D in vitro artery-mimicking multichannel system for artery disease models
Fabrication of a 3D in vitro model that mimics the artery takes an important role in
understanding pathological cell behaviors and mechanisms of vascular diseases by …
understanding pathological cell behaviors and mechanisms of vascular diseases by …