Pages that link to "Q36853743"
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The following pages link to Minocycline inhibits contusion-triggered mitochondrial cytochrome c release and mitigates functional deficits after spinal cord injury (Q36853743):
Displaying 50 items.
- The therapeutic profile of rolipram, PDE target and mechanism of action as a neuroprotectant following spinal cord injury (Q21089854) (← links)
- Current and future medical therapeutic strategies for the functional repair of spinal cord injury (Q26824854) (← links)
- Profile of minocycline and its potential in the treatment of schizophrenia (Q26864400) (← links)
- Spinal cord injury: a review of current therapy, future treatments, and basic science frontiers (Q27025166) (← links)
- EphB3 receptors function as dependence receptors to mediate oligodendrocyte cell death following contusive spinal cord injury (Q27329888) (← links)
- Derivation of multivariate syndromic outcome metrics for consistent testing across multiple models of cervical spinal cord injury in rats (Q27333128) (← links)
- Characterization of inflammatory gene expression and galectin-3 function after spinal cord injury in mice (Q27863426) (← links)
- Neurogenic inflammation after traumatic brain injury and its potentiation of classical inflammation (Q28069959) (← links)
- Update on the treatment of spinal cord injury (Q28235777) (← links)
- Respiratory abnormalities resulting from midcervical spinal cord injury and their reversal by serotonin 1A agonists in conscious rats (Q28248573) (← links)
- Astrocytes, but not microglia, are activated in oxaliplatin and bortezomib-induced peripheral neuropathy in the rat (Q28390312) (← links)
- Role of caspase 2 in apoptotic signaling in primate and murine germ cells (Q28574177) (← links)
- Neuroprotective mechanisms of minocycline against sphingomyelinase/ceramide toxicity: Roles of Bcl-2 and thioredoxin (Q28580515) (← links)
- Multifunctional drugs for head injury (Q30371428) (← links)
- Pro-epileptogenic effects of viral-like inflammation in both mature and immature brains (Q30831728) (← links)
- Therapeutic targets and limits of minocycline neuroprotection in experimental ischemic stroke (Q33508929) (← links)
- Biomaterials for Local, Controlled Drug Delivery to the Injured Spinal Cord. (Q33653678) (← links)
- A novel target of action of minocycline in NGF-induced neurite outgrowth in PC12 cells: translation initiation [corrected] factor eIF4AI. (Q33769500) (← links)
- Blockade of peroxynitrite-induced neural stem cell death in the acutely injured spinal cord by drug-releasing polymer. (Q33805034) (← links)
- Minocycline chelates Ca2 , binds to membranes, and depolarizes mitochondria by formation of Ca2 -dependent ion channels (Q33874297) (← links)
- Dipyrone Inhibits Neuronal Cell Death and Diminishes Hypoxic/Ischemic Brain Injury (Q33892305) (← links)
- N-acetylcysteine amide preserves mitochondrial bioenergetics and improves functional recovery following spinal trauma (Q33965277) (← links)
- Effect of minocycline on cerebral ischemia-reperfusion injury (Q34094612) (← links)
- Role of microglia in neurotrauma (Q34168279) (← links)
- Expression of suppressor of cytokine signaling-3 (SOCS3) and its role in neuronal death after complete spinal cord injury (Q34325082) (← links)
- Glial TLR4 signaling does not contribute to opioid-induced depression of respiration (Q34353901) (← links)
- Activated microglia contribute to the maintenance of chronic pain after spinal cord injury. (Q34515061) (← links)
- Recent advances in the pharmacologic treatment of spinal cord injury (Q34518608) (← links)
- Clinical and experimental advances in regeneration of spinal cord injury (Q34591366) (← links)
- Improving outcomes of neuroprotection by minocycline: guides from cell culture and intracerebral hemorrhage in mice (Q34659673) (← links)
- Minocycline mitigates the gliogenic effects of proinflammatory cytokines on neural stem cells (Q34674246) (← links)
- The Effect of Minocycline on Motor Neuron Recovery and Neuropathic Pain in a Rat Model of Spinal Cord Injury (Q34811137) (← links)
- Oligodendrocyte Fate after Spinal Cord Injury (Q35006477) (← links)
- Deleterious effects of minocycline after in vivo target deprivation of thalamocortical neurons in the immature, metallothionein-deficient mouse brain (Q35097284) (← links)
- Minocycline upregulates pro-survival genes and downregulates pro-apoptotic genes in experimental glaucoma (Q35102478) (← links)
- A systematic review of non-invasive pharmacologic neuroprotective treatments for acute spinal cord injury (Q35127468) (← links)
- Anti-inflammatory treatments during the chronic phase of spinal cord injury improve locomotor function in adult mice (Q35212541) (← links)
- Minocycline treatment for HIV-associated cognitive impairment: results from a randomized trial (Q35215604) (← links)
- Delayed inflammatory mRNA and protein expression after spinal cord injury (Q35416093) (← links)
- Fluoxetine prevents oligodendrocyte cell death by inhibiting microglia activation after spinal cord injury (Q35540600) (← links)
- Human dental pulp-derived stem cells promote locomotor recovery after complete transection of the rat spinal cord by multiple neuro-regenerative mechanisms (Q35640614) (← links)
- Endothelial sulfonylurea receptor 1-regulated NC Ca-ATP channels mediate progressive hemorrhagic necrosis following spinal cord injury (Q35901019) (← links)
- The PPAR gamma agonist Pioglitazone improves anatomical and locomotor recovery after rodent spinal cord injury. (Q38634730) (← links)
- The promise of minocycline in neurology. (Q35958974) (← links)
- Inflammation & apoptosis in spinal cord injury (Q35993239) (← links)
- Setting the stage for functional repair of spinal cord injuries: a cast of thousands (Q36020714) (← links)
- Guanosine reduces apoptosis and inflammation associated with restoration of function in rats with acute spinal cord injury (Q36131065) (← links)
- Minocycline as a neuroprotective agent (Q36215217) (← links)
- Molecular targets in spinal cord injury (Q36216362) (← links)
- Update on antimicrobial agents: new indications of older agents (Q36222046) (← links)