International audiencedult skeletal muscle possesses remarkable regenerative capacity that has conventionally been attributed to the satellite cells. These precursor cells were thought to contain distinct populations with varying myogenic potential. Recently, the identification of multipotent stem cells capable of new myofiber formation has expanded the general view on the muscle regenerative process. Here we examined the characteristics of turkey skeletal muscle-derived cell (MDC) populations that were separated according to their adhesion abilities. We sought to determine whether these abilities could be a potential tool for separating cells with different myogenic commitment. Using the preplate technique, we showed that MDCs display a wi...
Adult skeletal muscle generates force in a controlled and directed manner through the contraction of...
In the laboratory, we are studying the mechanism involved in skeletal muscle regeneration by using a...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
International audienceAdult skeletal muscle possesses remarkable regenerative capacity that has conv...
Our lab developed and optimized a method, known as the modified pre-plate technique, to isolate stem...
Skeletal muscle (SkM) regeneration relies on the activity of myogenic progenitors that reside beneat...
In an attempt to determine whether muscle-derived stem cells are distinct from satellite cells, we i...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Satellite cells are unipotent stem cells involved in muscle regeneration. However, the skeletal musc...
In the vertebrate embryo, skeletal muscle originates from somites and is formed in discrete steps by...
BACKGROUND: Satellite cells (SC) and their descendants, muscle precursor cells (MPC), play a key rol...
Satellite cells are unipotent stem cells involved in muscle regeneration. However, the skeletal musc...
Proliferation and differentiation (fusion) of myogenic satellite cells derived from Nicholas tom and...
Early muscle development involves the proliferation and differentiation of stem cells (satellite cel...
Adult skeletal muscle generates force in a controlled and directed manner through the contraction of...
In the laboratory, we are studying the mechanism involved in skeletal muscle regeneration by using a...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...
International audienceAdult skeletal muscle possesses remarkable regenerative capacity that has conv...
Our lab developed and optimized a method, known as the modified pre-plate technique, to isolate stem...
Skeletal muscle (SkM) regeneration relies on the activity of myogenic progenitors that reside beneat...
In an attempt to determine whether muscle-derived stem cells are distinct from satellite cells, we i...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Satellite cells are unipotent stem cells involved in muscle regeneration. However, the skeletal musc...
In the vertebrate embryo, skeletal muscle originates from somites and is formed in discrete steps by...
BACKGROUND: Satellite cells (SC) and their descendants, muscle precursor cells (MPC), play a key rol...
Satellite cells are unipotent stem cells involved in muscle regeneration. However, the skeletal musc...
Proliferation and differentiation (fusion) of myogenic satellite cells derived from Nicholas tom and...
Early muscle development involves the proliferation and differentiation of stem cells (satellite cel...
Adult skeletal muscle generates force in a controlled and directed manner through the contraction of...
In the laboratory, we are studying the mechanism involved in skeletal muscle regeneration by using a...
Skeletal muscle is a highly specialized tissue composed of non-dividing, multi-nucleated muscle fibr...