Currently, the fabrication of scaffolds for engineered skeletal muscle tissues is unable to reach the millimeter size. The main drawbacks are the poor nutrient diffusion, lack of an internal structure to align the precursor cells, and poor mechanical and electric properties. Herein, we present a combination of gelatin-carboxymethyl cellulose materials polymerised by a cryogelation process that allowed us to reach scaffold fabrication up to millimeter size and solve the main problems related to the large size muscle tissue constructs. (1) By incorporating carbon nanotubes (CNT), we can improve the electrical properties of the scaffold, thereby enhancing tissue maturation when applying an electric pulse stimulus (EPS). (2) We have fabricated ...
Biological scaffolds with tunable electrical and mechanical properties are of great interest in many...
Contractile dysfunction of smooth muscle (SM) is a feature of chronic cardiovascular, respiratory an...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Recreating native microenvironment and providing appropriate guidance cues are instrumental in the d...
Biological scaffolds with tunable electrical and mechanical properties are of great interest in many...
Objectives: A realistic goal for cardiac muscle engineering is the design of a scaffold able to mimi...
In the past few years, a considerable amount of effort has been devoted toward the development of bi...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle engineering aims at tissue reconstruction to replace muscle loss following traumatic...
Skeletal muscle engineering aims at tissue reconstruction to replace muscle loss following traumatic...
WOS: 000339035000009PubMed ID: 24927679In the past few years, a considerable amount of effort has be...
The objective of this study was to develop a novel three-dimensional biomimetic gelatin/multiwalled ...
While several scaffolds have been proposed for skeletal muscle regeneration, multiscale hierarchical...
Biological scaffolds with tunable electrical and mechanical properties are of great interest in many...
Contractile dysfunction of smooth muscle (SM) is a feature of chronic cardiovascular, respiratory an...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Recreating native microenvironment and providing appropriate guidance cues are instrumental in the d...
Biological scaffolds with tunable electrical and mechanical properties are of great interest in many...
Objectives: A realistic goal for cardiac muscle engineering is the design of a scaffold able to mimi...
In the past few years, a considerable amount of effort has been devoted toward the development of bi...
We engineered functional cardiac patches by seeding neonatal rat cardiomyocytes onto carbon nanotube...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle engineering aims at tissue reconstruction to replace muscle loss following traumatic...
Skeletal muscle engineering aims at tissue reconstruction to replace muscle loss following traumatic...
WOS: 000339035000009PubMed ID: 24927679In the past few years, a considerable amount of effort has be...
The objective of this study was to develop a novel three-dimensional biomimetic gelatin/multiwalled ...
While several scaffolds have been proposed for skeletal muscle regeneration, multiscale hierarchical...
Biological scaffolds with tunable electrical and mechanical properties are of great interest in many...
Contractile dysfunction of smooth muscle (SM) is a feature of chronic cardiovascular, respiratory an...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...