Injury to the mammalian Central Nervous System (CNS), which consists of the brain and spinal cord, is permanent, meaning that symptoms of CNS injury such as paralysis are unable to be cured or ameliorated in humans. In comparison, spinal cord injury in some amphibian species, like axolotls, Ambystoma mexicanum, can be healed due to the pro-regenerative environment of their CNS. Thus, axolotls are perfect model organisms for studying the factors that enable CNS regeneration. Analysis of microglia, a tissue-resident macrophage cell of the CNS, is necessary for a better understanding of the regenerative properties of the axolotl spinal cord. We induced spinal cord injury (SCI) by amputating the caudal end of the axolotl tail. After 2-14 days, ...
Axolotls, as amphibians, have the ability to regenerate lost tissue. With this knowledge, we are go...
A major participant in neural regeneration is Sox2, expressed in neural stem cells, which differenti...
A major participant in neural regeneration is the transcription factor Sox2. It is expressed in neur...
Setting the precedent for regenerative biology, the axolotl (Ambystoma mexicanum) faithfully reconst...
The central nervous system (CNS), which consists of the spinal cord and brain, is complex and needs ...
Microglia are the immune response cell of the Central Nervous System. They play a role in inflammat...
Humans and other mammals cannot regrow lost limbs or damaged tissues the way some animals can. Speci...
Unlike mammals, there are some animals that are capable of regenerating their spinal cord and still ...
Microglial cells are responsible for inflammatory and immune responses in many living organisms. The...
Regenerative medicine offers hope for patients with diseases of the central and peripheral nervous s...
Regeneration in amphibians is a ubiquitous phenomenon, however, in mammals it is rare. Axolotls (Amb...
Regeneration in amphibians is a ubiquitous phenomenon, however, in mammals it is rare. Axolotls (Amb...
Axolotls, as amphibians, have the ability to regenerate lost tissue. With this knowledge, we are go...
While regeneration in amphibians is a ubiquitous phenomenon, in mammals it is rare. Axolotls (Ambyst...
While regeneration in amphibians is a ubiquitous phenomenon, in mammals it is rare. Axolotls (Ambyst...
Axolotls, as amphibians, have the ability to regenerate lost tissue. With this knowledge, we are go...
A major participant in neural regeneration is Sox2, expressed in neural stem cells, which differenti...
A major participant in neural regeneration is the transcription factor Sox2. It is expressed in neur...
Setting the precedent for regenerative biology, the axolotl (Ambystoma mexicanum) faithfully reconst...
The central nervous system (CNS), which consists of the spinal cord and brain, is complex and needs ...
Microglia are the immune response cell of the Central Nervous System. They play a role in inflammat...
Humans and other mammals cannot regrow lost limbs or damaged tissues the way some animals can. Speci...
Unlike mammals, there are some animals that are capable of regenerating their spinal cord and still ...
Microglial cells are responsible for inflammatory and immune responses in many living organisms. The...
Regenerative medicine offers hope for patients with diseases of the central and peripheral nervous s...
Regeneration in amphibians is a ubiquitous phenomenon, however, in mammals it is rare. Axolotls (Amb...
Regeneration in amphibians is a ubiquitous phenomenon, however, in mammals it is rare. Axolotls (Amb...
Axolotls, as amphibians, have the ability to regenerate lost tissue. With this knowledge, we are go...
While regeneration in amphibians is a ubiquitous phenomenon, in mammals it is rare. Axolotls (Ambyst...
While regeneration in amphibians is a ubiquitous phenomenon, in mammals it is rare. Axolotls (Ambyst...
Axolotls, as amphibians, have the ability to regenerate lost tissue. With this knowledge, we are go...
A major participant in neural regeneration is Sox2, expressed in neural stem cells, which differenti...
A major participant in neural regeneration is the transcription factor Sox2. It is expressed in neur...