Javascript must be enabled to continue!
Phosphodiesterase 7 Inhibition Induces Dopaminergic Neurogenesis in Hemiparkinsonian Rats
View through CrossRef
Abstract
Parkinson's disease is characterized by a loss of dopaminergic neurons in a specific brain region, the ventral midbrain. Parkinson's disease is diagnosed when approximately 50% of the dopaminergic neurons of the substantia nigra pars compacta (SNpc) have degenerated and the others are already affected by the disease. Thus, it is conceivable that all therapeutic strategies, aimed at neuroprotection, start too late. Therefore, an urgent medical need exists to discover new pharmacological targets and novel drugs with disease-modifying properties. In this regard, modulation of endogenous adult neurogenesis toward a dopaminergic phenotype might provide a new strategy to target Parkinson's disease by partially ameliorating the dopaminergic cell loss that occurs in this disorder. We have previously shown that a phosphodiesterase 7 (PDE7) inhibitor, S14, exerts potent neuroprotective and anti-inflammatory effects in different rodent models of Parkinson's disease, indicating that this compound could represent a novel therapeutic agent to stop the dopaminergic cell loss that occurs during the progression of the disease. In this report we show that, in addition to its neuroprotective effect, the PDE7 inhibitor S14 is also able to induce endogenous neuroregenerative processes toward a dopaminergic phenotype. We describe a population of actively dividing cells that give rise to new neurons in the SNpc of hemiparkinsonian rats after treatment with S14. In conclusion, our data identify S14 as a novel regulator of dopaminergic neuron generation.
Significance
Parkinson's disease is a neurodegenerative disorder characterized by the loss of dopaminergic neurons in the ventral midbrain. Currently, no cure and no effective disease-modifying therapy are available for Parkinson's disease; therefore, an urgent medical need exists to discover new pharmacological targets and novel drugs for the treatment of this disorder. The present study reports that an inhibitor of the enzyme phosphodiesterase 7 (S14) induces proliferation in vitro and in vivo of neural stem cells, promoting its differentiation toward a dopaminergic phenotype and therefore enhancing dopaminergic neuron generation. Because this drug is also able to confer neuroprotection of these cells in animal models of Parkinson's disease, S14 holds great promise as a therapeutic new strategy for this disorder.
Oxford University Press (OUP)
Title: Phosphodiesterase 7 Inhibition Induces Dopaminergic Neurogenesis in Hemiparkinsonian Rats
Description:
Abstract
Parkinson's disease is characterized by a loss of dopaminergic neurons in a specific brain region, the ventral midbrain.
Parkinson's disease is diagnosed when approximately 50% of the dopaminergic neurons of the substantia nigra pars compacta (SNpc) have degenerated and the others are already affected by the disease.
Thus, it is conceivable that all therapeutic strategies, aimed at neuroprotection, start too late.
Therefore, an urgent medical need exists to discover new pharmacological targets and novel drugs with disease-modifying properties.
In this regard, modulation of endogenous adult neurogenesis toward a dopaminergic phenotype might provide a new strategy to target Parkinson's disease by partially ameliorating the dopaminergic cell loss that occurs in this disorder.
We have previously shown that a phosphodiesterase 7 (PDE7) inhibitor, S14, exerts potent neuroprotective and anti-inflammatory effects in different rodent models of Parkinson's disease, indicating that this compound could represent a novel therapeutic agent to stop the dopaminergic cell loss that occurs during the progression of the disease.
In this report we show that, in addition to its neuroprotective effect, the PDE7 inhibitor S14 is also able to induce endogenous neuroregenerative processes toward a dopaminergic phenotype.
We describe a population of actively dividing cells that give rise to new neurons in the SNpc of hemiparkinsonian rats after treatment with S14.
In conclusion, our data identify S14 as a novel regulator of dopaminergic neuron generation.
Significance
Parkinson's disease is a neurodegenerative disorder characterized by the loss of dopaminergic neurons in the ventral midbrain.
Currently, no cure and no effective disease-modifying therapy are available for Parkinson's disease; therefore, an urgent medical need exists to discover new pharmacological targets and novel drugs for the treatment of this disorder.
The present study reports that an inhibitor of the enzyme phosphodiesterase 7 (S14) induces proliferation in vitro and in vivo of neural stem cells, promoting its differentiation toward a dopaminergic phenotype and therefore enhancing dopaminergic neuron generation.
Because this drug is also able to confer neuroprotection of these cells in animal models of Parkinson's disease, S14 holds great promise as a therapeutic new strategy for this disorder.
Related Results
Adult Human Neurogenesis: Early Studies Clarify Recent Controversies and Go Further
Adult Human Neurogenesis: Early Studies Clarify Recent Controversies and Go Further
Evidence on adult mammalian neurogenesis and scarce studies with human brains led to the idea that adult human neurogenesis occurs in the subgranular zone (SGZ) of the dentate gyru...
Can neurogenesis act as a neural regularizer?
Can neurogenesis act as a neural regularizer?
Abstract
New neurons are continuously generated in the subgranular zone of the dentate gyrus throughout adulthood. These new neurons gradually integrate into hippoc...
Neurogenesis in the Maternal Rodent Brain: Impacts of Gestation-Related Hormonal Regulation, Stress, and Obesity
Neurogenesis in the Maternal Rodent Brain: Impacts of Gestation-Related Hormonal Regulation, Stress, and Obesity
In order to maintain maternal behavior, it is important that the maternal rodent brain promotes neurogenesis. Maternal neurogenesis is altered by the dynamic shifts in reproductive...
Acute kidney injury during pregnancy leads to increased sFlt-1 and sEng and decreased renal T regulatory cells in pregnant rats with HELLP syndrome
Acute kidney injury during pregnancy leads to increased sFlt-1 and sEng and decreased renal T regulatory cells in pregnant rats with HELLP syndrome
Abstract
Background
The incidence of acute kidney injury (AKI) during pregnancy precedes a high maternal mortality rate o...
Using causal models to distinguish between neurogenesis-dependent and -independent effects on behaviour
Using causal models to distinguish between neurogenesis-dependent and -independent effects on behaviour
AbstractThere has been a substantial amount of research on the relationship between hippocampal neurogenesis and behaviour over the past fifteen years, but the causal role that new...
The Effects and Regulatory Mechanism of Flavonoids from Stems and
Leaves of Scutellaria baicalensis Georgi in Promoting Neurogenesis and Improving
Memory Impairment Mediated by the BDNF-ERK-CREB Signaling
Pathway in Rats
The Effects and Regulatory Mechanism of Flavonoids from Stems and
Leaves of Scutellaria baicalensis Georgi in Promoting Neurogenesis and Improving
Memory Impairment Mediated by the BDNF-ERK-CREB Signaling
Pathway in Rats
Background:
It is well known that Alzheimer's Disease (AD) is a neurodegenerative disease
accompanied by memory impairment and major pathological changes of the extracellular Senil...
Heightened reward response is associated with HCN2 overexpression in the ventral tegmental area in morphine-sensitized rats
Heightened reward response is associated with HCN2 overexpression in the ventral tegmental area in morphine-sensitized rats
Morphine sensitization is associated with increased locomotion and stereotypies in rats. This persistent condition has been proposed as a model of manic-like symptoms. Modification...
New neurons in old brains: implications of age in the analysis of neurogenesis in post-mortem tissue
New neurons in old brains: implications of age in the analysis of neurogenesis in post-mortem tissue
AbstractAdult neurogenesis, the proliferation and integration of newly generated neurons, has been observed in the adult mammalian hippocampus of many species. Numerous studies hav...

