: Mesenchymal stem cells are multipotent stem cells that reside in many human tissues and organs. Mesenchymal stem cells are widely used in experimental and clinical regenerative medicine due to their capability to transdifferentiate into various lineages. However, when transplanted, they lose part of their multipotency and immunomodulatory properties, and most of them die after injection into the damaged tissue. In this review, we discuss the potential utility of melatonin in preserving mesenchymal stem cells' survival and function after transplantation. Melatonin is a pleiotropic molecule regulating critical cell functions including apoptosis, endoplasmic reticulum stress, and autophagy. Melatonin is also synthesized in the mitochondria w...
Stem cell therapy for tissue regeneration has several limitations in the fact that transplanted cell...
It is known that, besides a wide range of functions, melatonin provides protection against oxidative...
Oxidative stress increase induces cellular damage and apoptosis activation, a mechanism believed to ...
: Mesenchymal stem cells are multipotent stem cells that reside in many human tissues and organs. Me...
Efficient cell-to-cell communication is essential for tissue development, homeostasis, and the maint...
Mitochondrial dysfunction is considered one of the hallmarks of ischemia/reperfusion injury. Mitocho...
Mendivil-Perez, Miguel et al.Neural stem cells (NSCs) are regarded as a promising therapeutic approa...
Melatonin is a hormone, synthesized in the pineal gland, which primarily controls the circadian rhyt...
International audienceBone marrow mesenchymal stem cells (MSCs) have shown great potential in cell t...
BACKGROUND: Adipose-derived stem cells (ASCs) have applications in regenerative medicine based on th...
Oxidative stress-induced mitochondrial dysfunction plays a crucial role in the pathogenesis of a wid...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Stem cell therapy for tissue regeneration has several limitations in the fact that transplanted cell...
It is known that, besides a wide range of functions, melatonin provides protection against oxidative...
Oxidative stress increase induces cellular damage and apoptosis activation, a mechanism believed to ...
: Mesenchymal stem cells are multipotent stem cells that reside in many human tissues and organs. Me...
Efficient cell-to-cell communication is essential for tissue development, homeostasis, and the maint...
Mitochondrial dysfunction is considered one of the hallmarks of ischemia/reperfusion injury. Mitocho...
Mendivil-Perez, Miguel et al.Neural stem cells (NSCs) are regarded as a promising therapeutic approa...
Melatonin is a hormone, synthesized in the pineal gland, which primarily controls the circadian rhyt...
International audienceBone marrow mesenchymal stem cells (MSCs) have shown great potential in cell t...
BACKGROUND: Adipose-derived stem cells (ASCs) have applications in regenerative medicine based on th...
Oxidative stress-induced mitochondrial dysfunction plays a crucial role in the pathogenesis of a wid...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Stem cell therapy for tissue regeneration has several limitations in the fact that transplanted cell...
It is known that, besides a wide range of functions, melatonin provides protection against oxidative...
Oxidative stress increase induces cellular damage and apoptosis activation, a mechanism believed to ...