Electrospun fibrous matrices, mimicking extracellular matrix (ECM) hierarchical structures, are potential scaffolds for wound healing. To design functional scaffolds, it is important to explore the interactions between scaffold topographic features and cellular responses, especially directional migration and phenotypic changes, which are critical functional aspects during wound healing. Here, accelerated and persistent migration of human dermal fibroblasts (HDFs) is observed on fibers with aligned orientation. Furthermore, aligned fibers can induce fibroblast-to-myofibroblast differentiation of HDFs. During wound healing, the presence of myofibroblasts advances wound repair by rendering contractile force and ECM deposition within the early ...
Here, we describe an engineering approach to quantitatively compare migration, morphologies, and adh...
Fibrous scaffolds replicating the extracellular matrix (ECM) have been widely researched to help reg...
For proper wound healing, dermal contraction and remodeling are critical; during the natural healing...
Electrospun fibrous scaffolds, which closely mimic native extracellular matrix (ECM) fibrous hierarc...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Replicating the nanostructured components of extracellular matrix is a target for dermal tissue engi...
Tissue engineered scaffolds were constructed to mimic the native extracellular matrix (ECM) and prom...
Tissue engineered scaffolds were constructed to mimic the native extracellular matrix (ECM) and prom...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
<div><p>Here, we describe an engineering approach to quantitatively compare migration, morphologies,...
Here, we describe an engineering approach to quantitatively compare migration, morphologies, and adh...
Fibrous scaffolds replicating the extracellular matrix (ECM) have been widely researched to help reg...
For proper wound healing, dermal contraction and remodeling are critical; during the natural healing...
Electrospun fibrous scaffolds, which closely mimic native extracellular matrix (ECM) fibrous hierarc...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Biomaterial scaffolds that can form a template for tissue growth and repair forms the basis of many ...
Replicating the nanostructured components of extracellular matrix is a target for dermal tissue engi...
Tissue engineered scaffolds were constructed to mimic the native extracellular matrix (ECM) and prom...
Tissue engineered scaffolds were constructed to mimic the native extracellular matrix (ECM) and prom...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
Nanofiber meshes holds great promise in wound healing applications by mimicking the topography of ex...
<div><p>Here, we describe an engineering approach to quantitatively compare migration, morphologies,...
Here, we describe an engineering approach to quantitatively compare migration, morphologies, and adh...
Fibrous scaffolds replicating the extracellular matrix (ECM) have been widely researched to help reg...
For proper wound healing, dermal contraction and remodeling are critical; during the natural healing...