Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Curcumin protects rat hippocampal neurons against pseudorabies virus by regulating the BDNF/TrkB pathway

View through CrossRef
AbstractPseudorabies virus (PRV) infection can elicit nervous system disorders. Curcumin has been reported to have neuroprotective effects. However, whether curcumin can protect neurons against PRV infection and the underlying mechanisms remain unclear. In the present study, for the first time, the protective effects of curcumin against PRV-induced oxidative stress, apoptosis, and mitochondrial dysfunction in rat hippocampal neurons and the brain-derived neurotrophic factor (BDNF)/tropomyosin-related kinase B (TrkB) pathway were investigated. Results indicated that PRV with a titer of 3.06 × 106 TCID50 (50% tissue culture infective dose) induced oxidative damage of hippocampal neurons 2 h post-infection and that 10 μM curcumin improved the viability of PRV-infected hippocampal neurons. Blocking the BDNF/TrkB pathway reversed the neuroprotective effects of curcumin, which were imparted by decreasing the PRV-induced upregulation of nitric oxide synthase expression, repressing the PRV-activated mitochondrial apoptotic pathway, and mitochondrial dysfunction. To conclude, curcumin exhibited a neuroprotective role against PRV infection by upregulating the BDNF/TrkB pathway. This study provides insight into the anti-PRV neuroprotective application of curcumin and the underlying mechanism in the prophylaxis and treatment of neurological disorders caused by PRV infection.
Title: Curcumin protects rat hippocampal neurons against pseudorabies virus by regulating the BDNF/TrkB pathway
Description:
AbstractPseudorabies virus (PRV) infection can elicit nervous system disorders.
Curcumin has been reported to have neuroprotective effects.
However, whether curcumin can protect neurons against PRV infection and the underlying mechanisms remain unclear.
In the present study, for the first time, the protective effects of curcumin against PRV-induced oxidative stress, apoptosis, and mitochondrial dysfunction in rat hippocampal neurons and the brain-derived neurotrophic factor (BDNF)/tropomyosin-related kinase B (TrkB) pathway were investigated.
Results indicated that PRV with a titer of 3.
06 × 106 TCID50 (50% tissue culture infective dose) induced oxidative damage of hippocampal neurons 2 h post-infection and that 10 μM curcumin improved the viability of PRV-infected hippocampal neurons.
Blocking the BDNF/TrkB pathway reversed the neuroprotective effects of curcumin, which were imparted by decreasing the PRV-induced upregulation of nitric oxide synthase expression, repressing the PRV-activated mitochondrial apoptotic pathway, and mitochondrial dysfunction.
To conclude, curcumin exhibited a neuroprotective role against PRV infection by upregulating the BDNF/TrkB pathway.
This study provides insight into the anti-PRV neuroprotective application of curcumin and the underlying mechanism in the prophylaxis and treatment of neurological disorders caused by PRV infection.

Related Results

Reduced enteric BDNF-TrkB signaling drives stress-dependent glucocorticoid-mediated GI dysmotility
Reduced enteric BDNF-TrkB signaling drives stress-dependent glucocorticoid-mediated GI dysmotility
Abstract Stress is a key contributor to gastrointestinal (GI) dysmotility, particularly in patients with disorders of gut-brain interactions (DGB...
Identification of novel BDNF-specific corticostriatal circuitries
Identification of novel BDNF-specific corticostriatal circuitries
Abstract BDNF is released from axon terminals originating in the cerebral cortex onto striatal neurons. Here, we characterized BDNF neurons in th...
The serum protein levels of the tPA–BDNF pathway are implicated in depression and antidepressant treatment
The serum protein levels of the tPA–BDNF pathway are implicated in depression and antidepressant treatment
AbstractEvidence demonstrates that brain-derived neurotrophic factor (BDNF) has a pivotal role in the pathogenesis of major depressive disorder (MDD). Precursor-BDNF (proBDNF) and ...
Dysfunction of the BDNF-TrkB signaling pathway contributes to learning and memory impairments induced by neuroinflammation in mice
Dysfunction of the BDNF-TrkB signaling pathway contributes to learning and memory impairments induced by neuroinflammation in mice
Background and Purpose: Evidence suggests neuroinflammation is the main mechanism in cognitive dysfunction. The brain-derived neurotrophic factor (BDNF) is involved in learning and...
Abstract 1890: Bispecific T cell engagers targeting TrkB
Abstract 1890: Bispecific T cell engagers targeting TrkB
Abstract Tropomyosin kinase B (TrkB) plays an important role in survival, differentiation, and proliferation of neural cells. It belongs to the family of receptor ty...
Chemical-LTP induces confinment of BDNF mRNA under dendritic spines and BDNF protein accumulation inside the spines
Chemical-LTP induces confinment of BDNF mRNA under dendritic spines and BDNF protein accumulation inside the spines
Abstract The neurotrophin brain-derived neurotrophic factor (BDNF) plays a key role in neuronal development and synaptic plasticity. The discovery that BDNF mRNA ca...
Expression of BDNF and TrKB in Endometriosis and Dysmenorrhea
Expression of BDNF and TrKB in Endometriosis and Dysmenorrhea
Abstract Background: Brain-derived neurotrophic factor (BDNF) has been recognized as a regulator in the formation and maintenance of chronic pain in various chronic disorde...

Back to Top