Abnormal biometal homeostasis is a central feature of many neurodegenerative disorders including Alzheimer’s disease (AD), Parkinson’s disease (PD), and motor neuron disease. Recent studies have shown that metal complexing compounds behaving as ionophores such as clioquinol and PBT2 have robust therapeutic activity in animal models of neurodegenerative disease; however, the mechanism of neuroprotective action remains unclear. These neuroprotective or neurogenerative processes may be related to the delivery or redistribution of biometals, such as copper and zinc, by metal ionophores. To investigate this further, we examined the effect of the bis(thiosemicarbazonato)-copper complex, CuII(gtsm) on neuritogenesis and neurite elongation (neuroge...
As a cofactor of proteins and enzymes involved in critical molecular pathways in mammals and low euk...
Copper dyshomeostasis is responsible for the neurological symptoms observed in the genetically inher...
Metal ions, particularly copper, zinc and iron, are implicated in several amyloidogenic neurodegener...
Abnormal biometal homeostasis is a central feature of many neurodegenerative disorders including Alz...
© 2014 Dr. Laura BicaAlzheimer’s disease (AD) is caused by a myriad of complex pathological factors ...
Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no effective ...
Developing new therapies for stroke is urgently needed, as this disease is the leading cause of deat...
Extracellular and intracellular copper and zinc regulate synaptic activity and plasticity, which may...
Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no effective ...
As a cofactor of proteins and enzymes involved in critical molecular pathways in mammals and low euk...
<div><p>Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no ef...
Copper dyshomeostasis is responsible for the neurological symptoms observed in the genetically inher...
Background: Neuroinflammation and biometal dyshomeostasis are key pathological features of several n...
In the brain, zinc and copper homeostasis is regulated by a small metalloprotein, metallothionein-3 ...
Copper is a transition metal that has been linked to pathological and beneficial effects in neurodeg...
As a cofactor of proteins and enzymes involved in critical molecular pathways in mammals and low euk...
Copper dyshomeostasis is responsible for the neurological symptoms observed in the genetically inher...
Metal ions, particularly copper, zinc and iron, are implicated in several amyloidogenic neurodegener...
Abnormal biometal homeostasis is a central feature of many neurodegenerative disorders including Alz...
© 2014 Dr. Laura BicaAlzheimer’s disease (AD) is caused by a myriad of complex pathological factors ...
Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no effective ...
Developing new therapies for stroke is urgently needed, as this disease is the leading cause of deat...
Extracellular and intracellular copper and zinc regulate synaptic activity and plasticity, which may...
Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no effective ...
As a cofactor of proteins and enzymes involved in critical molecular pathways in mammals and low euk...
<div><p>Amyotrophic lateral sclerosis (ALS) is a progressive, fatal, motor neuron disease with no ef...
Copper dyshomeostasis is responsible for the neurological symptoms observed in the genetically inher...
Background: Neuroinflammation and biometal dyshomeostasis are key pathological features of several n...
In the brain, zinc and copper homeostasis is regulated by a small metalloprotein, metallothionein-3 ...
Copper is a transition metal that has been linked to pathological and beneficial effects in neurodeg...
As a cofactor of proteins and enzymes involved in critical molecular pathways in mammals and low euk...
Copper dyshomeostasis is responsible for the neurological symptoms observed in the genetically inher...
Metal ions, particularly copper, zinc and iron, are implicated in several amyloidogenic neurodegener...