25 results for “Peripheral Nerve Injury”. Showing 25 of 39,449.
GDNF to the rescue: GDNF delivery effects on motor neurons and nerves, and muscle re-innervation after peripheral nerve injuries.
Peripheral nerve injuries commonly occur due to trauma, like a traffic
The Role of Microglia in Neuroinflammation of the Spinal Cord after Peripheral Nerve Injury.
Peripheral nerve injuries induce a pronounced immune reaction within the spinal
Enhancing Motor and Sensory Axon Regeneration after Peripheral Nerve Injury Using Bioluminescent Optogenetics.
peripheral nerve injuries is poor even though injured peripheral axons
Macrophage-specific RhoA knockout delays Wallerian degeneration after peripheral nerve injury in mice.
peripheral nerve injury is still unknown. Herein, we come up with
Macrophage monocarboxylate transporter 1 promotes peripheral nerve regeneration after injury in mice.
Peripheral nerves have the capacity for regeneration, but the rate of regeneration is so slow that many nerve injuries
Injectable anti-inflammatory, antioxidant supramolecular nanofiber hydrogel for peripheral nerve injury repair and neuropathic pain relief.
peripheral nerve injury (PNI) often experience neuropathic pain (NP), which
The oncomodulin receptor ArmC10 enables axon regeneration in mice after nerve injury and neurite outgrowth in human iPSC-derived sensory neurons.
nerve injury or peripheral nerve injury, yet the mechanisms underlying
Microglial TREM2/DAP12 Signaling: A Double-Edged Sword in Neural Diseases.
peripheral nerve injury. Intriguingly, while TREM2/DAP12-mediated microglial activation is detrimental
Stigmasterol alleviates neuropathic pain by reducing Schwann cell-macrophage cascade in DRG by modulating IL-34/CSF1R.
peripheral nerve injury, Schwann cells secrete IL-34 to act on CSF1R
Peripheral nerve repair: innovations and future directions.
Peripheral nerve injuries (PNIs) remain a major clinical and socioeconomic
Optogenetic approaches for neural tissue regeneration: A review of basic optogenetic principles and target cells for therapy.
spinal cord injuries, peripheral nerve injuries, and other neurodegenerative diseases.
Astrocyte senescence-like response related to peripheral nerve injury-induced neuropathic pain.
peripheral nerve injury, and suggest that targeting CLU activation in astrocytes
Expression of Regeneration-Associated Proteins in Primary Sensory Neurons and Regenerating Axons After Nerve Injury-An Overview.
Peripheral nerve injury results in profound alterations of the affected
Disruption of G3BP1 granules promotes mammalian CNS and PNS axon regeneration.
nerve injury, bringing a potential therapeutic strategy for peripheral nerve
ROCK inhibition promotes axon and myelin regeneration via PI3K/Akt/GSK3β in a mouse sciatic nerve injury model.
peripheral nerve injury (PNI). Using a mouse sciatic nerve crush
A wireless optogenetic stimulation system for long-term function evaluation of mice forelimb with sub-nerve resolution.
peripheral nerve plexus, shining light upon personalized diagnosis and treatment after nerve injuries
Schwann cell-secreted frizzled-related protein 1 dictates neuroinflammation and peripheral nerve degeneration after neurotrauma.
peripheral nerve injuries (PNIs) result in abundant secreted frizzled-related
Circular RNA circNrip1 Interacts with SYNCRIP to Promote Neuropathic Pain by Stabilizing Tlr2 mRNA in Primary Sensory Neurons.
Peripheral nerve injury upregulates circNrip1, but not Nrip1 mRNA, in injured
Histone methyltransferase Ezh2 coordinates mammalian axon regeneration via regulation of key regenerative pathways.
peripheral nerve injury to facilitate spontaneous axon regeneration. In addition
Schwann cell promotes macrophage recruitment through IL-17B/IL-17RB pathway in injured peripheral nerves.
peripheral nerve injury, we identify interleukin-17B (IL-17B) as a key regulator
Netrin-1-engineered endothelial cell exosomes induce the formation of pre-regenerative niche to accelerate peripheral nerve repair.
peripheral nerve injury (PNI). Herein, we demonstrated that NTN1-high
NLRP3-Mediated Piezo1 Upregulation in ACC Inhibitory Parvalbumin-Expressing Interneurons Is Involved in Pain Processing after Peripheral Nerve Injury
A period of transient synaptic density unbalancing in the motor cortex after peripheral nerve injury and the involvement of microglial cells
Analysis of fractalkine receptor CX(3)CR1 function by targeted deletion and green fluorescent protein reporter gene insertion.
peripheral nerve injury indicates unimpaired neuronal-glial cross talk in the absence
TYROBP/DAP12 knockout in Huntington's disease Q175 mice cell-autonomously decreases microglial expression of disease-associated genes and non-cell-autonomously mitigates astrogliosis and motor deterioration.
peripheral nerve injury, it is beneficial for other diseases. We sought