Current extracellular matrix (ECM) derived scaffolds offer promising regenerative responses in many settings, however in some applications there may be a desire for more robust and long lasting mechanical properties. A biohybrid composite material that offers both strength and bioactivity for optimal healing towards native tissue behavior may offer a solution to this problem. A regionally distinct biocomposite scaffold composed of a biodegradable elastomer (poly(ester urethane)urea) and porcine dermal ECM gel was generated to meet this need by a concurrent polymer electrospinning/ECM gel electrospraying technique where the electrosprayed component was varied temporally during the processing. A sandwich structure was achieved with polymer fi...
Polypropylene mesh was created by Usher in 1962 after he experienced unsatisfactory results from usi...
\u3cp\u3eAlthough mesh use has significantly improved the outcomes of hernia and pelvic organ prolap...
Although mesh use has significantly improved the outcomes of hernia and pelvic organ prolapse repair...
Biological and synthetic laminar absorbable prostheses are available for the repair of hernia defect...
Scaffolds composed of extracellular matrix (ECM) have been shown to promote the formation of site-sp...
INTRODUCTION: Biological and synthetic laminar absorbable prostheses are available for the repair of...
Most approaches to tissue engineering and regenerative medicine include a scaffold component. The sc...
Development of biomaterials for hernia and pelvic organ prolapse (POP) repair is encouraged because ...
The ECM of mammalian tissues has been used as a scaffold to facilitate the repair and reconstruction...
Scaffolds for engineering soft tissue would ideally be mechanically compliant and anisotropic while ...
Purpose: Electrospun meshes mimic the extracellular matrix, which may improve their integration. We ...
The aim of this study was to design and evaluate a degradable biomaterial for the repair of abdomina...
Polypropylene mesh was created by Usher in 1962 after he experienced unsatisfactory results from usi...
\u3cp\u3eAlthough mesh use has significantly improved the outcomes of hernia and pelvic organ prolap...
Although mesh use has significantly improved the outcomes of hernia and pelvic organ prolapse repair...
Biological and synthetic laminar absorbable prostheses are available for the repair of hernia defect...
Scaffolds composed of extracellular matrix (ECM) have been shown to promote the formation of site-sp...
INTRODUCTION: Biological and synthetic laminar absorbable prostheses are available for the repair of...
Most approaches to tissue engineering and regenerative medicine include a scaffold component. The sc...
Development of biomaterials for hernia and pelvic organ prolapse (POP) repair is encouraged because ...
The ECM of mammalian tissues has been used as a scaffold to facilitate the repair and reconstruction...
Scaffolds for engineering soft tissue would ideally be mechanically compliant and anisotropic while ...
Purpose: Electrospun meshes mimic the extracellular matrix, which may improve their integration. We ...
The aim of this study was to design and evaluate a degradable biomaterial for the repair of abdomina...
Polypropylene mesh was created by Usher in 1962 after he experienced unsatisfactory results from usi...
\u3cp\u3eAlthough mesh use has significantly improved the outcomes of hernia and pelvic organ prolap...
Although mesh use has significantly improved the outcomes of hernia and pelvic organ prolapse repair...