Functional engineered muscles are still a critical clinical issue to be addressed, although different strategies have been considered so far for the treatment of severe muscular injuries. Indeed, the regenerative capacity of skeletal muscle (SM) results inadequate for large-scale defects, and currently, SM reconstruction remains a complex and unsolved task. For this aim, tissue engineered muscles should provide a proper biomimetic extracellular matrix (ECM) alternative, characterized by an aligned/microtopographical structure and a myogenic microenvironment, in order to promote muscle regeneration. As a consequence, both materials and fabrication techniques play a key role to plan an effective therapeutic approach. Tissue-specific decellula...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Surgical repair of large muscular defects requires the use of autologous graft transfer or prostheti...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
Functional engineered muscles are still a critical clinical issue to be addressed, although differen...
Functional engineered muscles are still a critical clinical issue to be addressed, although differen...
Severe muscle injuries are a real clinical issue that still needs to be successfully addressed. Tiss...
Engineered skeletal muscle tissues that mimic the structure and function of native muscle have been ...
Volumetric muscle loss (VML) is an irrecoverable injury associated with muscle loss greater than 20%...
Extracellular matrix (ECM) is composed of many types of fibrous structural proteins and glycosaminog...
The number of skeletal muscle injuries derived from myopathies, exercise, and trauma, is growing due...
International audienceEffective clinical treatments for volumetric muscle loss resulting from trauma...
The debilitating effects of muscle damage, either through ischemic injury or volumetric muscle loss ...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Surgical repair of large muscular defects requires the use of autologous graft transfer or prostheti...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
Functional engineered muscles are still a critical clinical issue to be addressed, although differen...
Functional engineered muscles are still a critical clinical issue to be addressed, although differen...
Severe muscle injuries are a real clinical issue that still needs to be successfully addressed. Tiss...
Engineered skeletal muscle tissues that mimic the structure and function of native muscle have been ...
Volumetric muscle loss (VML) is an irrecoverable injury associated with muscle loss greater than 20%...
Extracellular matrix (ECM) is composed of many types of fibrous structural proteins and glycosaminog...
The number of skeletal muscle injuries derived from myopathies, exercise, and trauma, is growing due...
International audienceEffective clinical treatments for volumetric muscle loss resulting from trauma...
The debilitating effects of muscle damage, either through ischemic injury or volumetric muscle loss ...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Surgical repair of large muscular defects requires the use of autologous graft transfer or prostheti...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...