International audienceNeuroimmune dysfunction is thought to promote the development of several acute and chronic complications in spinal cord injury (SCI) patients. Putative roles for adrenal stress hormones and catecholamines are increasingly being recognized, yet how these adversely affect peripheral tissue homeostasis and repair under SCI conditions remains elusive. Here, we investigated their influence in a mouse model of SCI with acquired neurogenic heterotopic ossification. We show that spinal cord lesions differentially influence muscular regeneration in a level-dependent manner and through a complex multi-step process that creates an osteopermissive environment within the first hours of injury. This cascade of events is shown to cri...
Abstract Background Spinal cord injury (SCI) is a devastating condition mainly deriving from a traum...
The role of AMP-activated protein kinase (AMPK) in the regulation of energy metabolism and the contr...
AbstractObjectiveTo map the progression of osteoporosis following spinal cord injury in mice in spec...
International audienceNeuroimmune dysfunction is thought to promote the development of several acute...
Despite promising advances in experimental therapies and robotic rehabilitation, traumatic spinal co...
We previously reported the development of a new acquired neurogenic HO (NHO) mouse model, combining ...
La morbi-mortalité associée aux lésions vertébro-médullaires traumatiques (SCI) reste significative ...
International audienceThe cells of origin of neurogenic heterotopic ossifications (NHOs), which deve...
Neurological heterotopic ossification (NHO) is the abnormal formation of bone in soft tissues as a c...
Neurogenic heterotopic ossifications (NHO) are very incapacitating complications of traumatic brain ...
Neurogenic heterotopic ossifications (NHO) are incapacitating heterotopic bones in periarticular mus...
International audienceNeurogenic heterotopic ossifications (NHOs) are incapacitating heterotopic bon...
Spinal cord injury (SCI) causes a significant amount of bone loss, which results in osteoporosis (OP...
Neurogenic heterotopic ossifications (NHOs) form in periarticular muscles after severe spinal cord (...
The neural cell adhesion molecule (NCAM) plays important functional roles in development of the nerv...
Abstract Background Spinal cord injury (SCI) is a devastating condition mainly deriving from a traum...
The role of AMP-activated protein kinase (AMPK) in the regulation of energy metabolism and the contr...
AbstractObjectiveTo map the progression of osteoporosis following spinal cord injury in mice in spec...
International audienceNeuroimmune dysfunction is thought to promote the development of several acute...
Despite promising advances in experimental therapies and robotic rehabilitation, traumatic spinal co...
We previously reported the development of a new acquired neurogenic HO (NHO) mouse model, combining ...
La morbi-mortalité associée aux lésions vertébro-médullaires traumatiques (SCI) reste significative ...
International audienceThe cells of origin of neurogenic heterotopic ossifications (NHOs), which deve...
Neurological heterotopic ossification (NHO) is the abnormal formation of bone in soft tissues as a c...
Neurogenic heterotopic ossifications (NHO) are very incapacitating complications of traumatic brain ...
Neurogenic heterotopic ossifications (NHO) are incapacitating heterotopic bones in periarticular mus...
International audienceNeurogenic heterotopic ossifications (NHOs) are incapacitating heterotopic bon...
Spinal cord injury (SCI) causes a significant amount of bone loss, which results in osteoporosis (OP...
Neurogenic heterotopic ossifications (NHOs) form in periarticular muscles after severe spinal cord (...
The neural cell adhesion molecule (NCAM) plays important functional roles in development of the nerv...
Abstract Background Spinal cord injury (SCI) is a devastating condition mainly deriving from a traum...
The role of AMP-activated protein kinase (AMPK) in the regulation of energy metabolism and the contr...
AbstractObjectiveTo map the progression of osteoporosis following spinal cord injury in mice in spec...