Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical testing and its potential for transplantation to replace damaged tissue. Despite recent work in rodent tissue or cell lines, there is a paucity of literature concerned with the culture of human muscle derived cells (MDCs) in engineered constructs. Here we aimed to tissue engineer for the first time in the literature human skeletal muscle in self-assembling fibrin hydrogels and determine the effect of MDC seeding density and myogenic proportion on the structure and maturation of the constructs. Constructs seeded with 4×10 MDCs assembled to a greater extent than those at 1×10 or 2×10, and immunostaining revealed a higher fusion index and a high...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
The size of in vitro engineered skeletal muscle tissue is limited due to the lack of a vascular netw...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...
Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical ...
Many congenital skeletal muscle disorders including muscular dystrophies are caused by genetic mutat...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
Adult skeletal muscle progenitor cells can be embedded in an extracellular matrix (ECM) and tissue-e...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Skeletal muscle is the most abundant tissue in the lean human body and is responsible for all motor ...
Skeletal muscle tissue is characterized by high metabolic requirements, defined structure and high r...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
In vitro skeletal muscle engineering involves the culture of isolated primary myogenic cells in an e...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
The size of in vitro engineered skeletal muscle tissue is limited due to the lack of a vascular netw...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...
Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical ...
Many congenital skeletal muscle disorders including muscular dystrophies are caused by genetic mutat...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
Adult skeletal muscle progenitor cells can be embedded in an extracellular matrix (ECM) and tissue-e...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Skeletal muscle is the most abundant tissue in the lean human body and is responsible for all motor ...
Skeletal muscle tissue is characterized by high metabolic requirements, defined structure and high r...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
In vitro skeletal muscle engineering involves the culture of isolated primary myogenic cells in an e...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
The size of in vitro engineered skeletal muscle tissue is limited due to the lack of a vascular netw...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...