Background Information. The satellite cells (SCs) associated with muscle fibres play a key role in postnatal growth and regeneration of skeletal muscle. Commonly used methods of isolation and in vitro culture of SCs lead to the mixture of their subpopulations that exist within muscle. To solve this problem, we used the well established technique, the hanging drop system, to culture SCs in a three-dimensional environment and thus, to monitor them in their original niche. Results. Using hanging drop technique, we were able to culture SCs associated with the fibre at least for 9 days with one transfer of fibres to the fresh drops. In comparison, in the classical method of myofibres culture, that is, on the dishes coated with Matrigel, SCs leav...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
INTRODUCTION: Adult stem cells reside in all tissues, where they maintain homeostatic conditions and...
<div><p>Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The st...
The satellite cells (SCs) associated with muscle fibres play a key role in postnatal growth and rege...
Satellite cells are myogenic cells responsible for muscle growth shortly after birth and muscle repa...
Satellite cells are anatomically localized along the surface of muscle fibers and have been regarded...
Skeletal muscle tissue is characterized by a population of quiescent mononucleated myoblasts, locali...
Single myofiber isolation protocols allow to obtain an in vitro system in which the physical associa...
Item does not contain fulltextIn the late stages of muscle development, a unique cell population eme...
Muscle tissue culture provides a system for studying the growth and differentiation of muscle cells ...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
Skeletal muscle is predominantly composed of highly specialised contractile myofibres, each maintain...
Satellite cells, normally quiescent underneath the myofibre basal lamina, are skeletal muscle stem c...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Skeletal muscle (SkM) regeneration relies on the activity of myogenic progenitors that reside beneat...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
INTRODUCTION: Adult stem cells reside in all tissues, where they maintain homeostatic conditions and...
<div><p>Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The st...
The satellite cells (SCs) associated with muscle fibres play a key role in postnatal growth and rege...
Satellite cells are myogenic cells responsible for muscle growth shortly after birth and muscle repa...
Satellite cells are anatomically localized along the surface of muscle fibers and have been regarded...
Skeletal muscle tissue is characterized by a population of quiescent mononucleated myoblasts, locali...
Single myofiber isolation protocols allow to obtain an in vitro system in which the physical associa...
Item does not contain fulltextIn the late stages of muscle development, a unique cell population eme...
Muscle tissue culture provides a system for studying the growth and differentiation of muscle cells ...
© Springer Nature Limited 2021Skeletal muscle contains a designated population of adult stem cells, ...
Skeletal muscle is predominantly composed of highly specialised contractile myofibres, each maintain...
Satellite cells, normally quiescent underneath the myofibre basal lamina, are skeletal muscle stem c...
Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The study of m...
Skeletal muscle (SkM) regeneration relies on the activity of myogenic progenitors that reside beneat...
Satellite cells (SC) are the stem cells of skeletal muscles. They are quiescent in adult animals but...
INTRODUCTION: Adult stem cells reside in all tissues, where they maintain homeostatic conditions and...
<div><p>Satellite cells are the chief contributor to skeletal muscle growth and regeneration. The st...