SummaryLearning and memory are fundamental brain functions affected by dietary and environmental factors. Here, we show that increasing brain magnesium using a newly developed magnesium compound (magnesium-L-threonate, MgT) leads to the enhancement of learning abilities, working memory, and short- and long-term memory in rats. The pattern completion ability was also improved in aged rats. MgT-treated rats had higher density of synaptophysin-/synaptobrevin-positive puncta in DG and CA1 subregions of hippocampus that were correlated with memory improvement. Functionally, magnesium increased the number of functional presynaptic release sites, while it reduced their release probability. The resultant synaptic reconfiguration enabled selective e...
We evaluated the neuroprotective effects of systemically administered magnesium against (NMDA)-medi...
Dietary magnesium (Mg2+) supplementation can enhance memory in young and aged rats. Memory-enhancing...
Abstract Background: Failure to pass the blood-brain barrier is a serious challenge to the use of m...
SummaryLearning and memory are fundamental brain functions affected by dietary and environmental fac...
Learning and memory are fundamental brain functions affected by dietary and environmental factors. H...
Alzheimer’s disease (AD) is characterized by profound synapse loss and impairments of learning and m...
Elevation of cerebral Mg2+ with a novel orally delivered ionophore, magnesium threonate, enhances co...
Although a magnesium-mediated attenuation of memory deficits was reported in animal models of ageing...
AbstractOral administration of the combination of L-threonate (threonate) and magnesium (Mg2+) in th...
<p>The experiments were designed as shown in panel A. Rats were divided into six groups, i.e., sham-...
Copyright © 2002 Elsevier Science Ireland Ltd. All rights reserved.Although a number of studies have...
International audienceAgeing is associated with a general decline in physiological functions. Amongs...
Profound synapse loss is one of the major pathological hallmarks associated with Alzheimer's di...
Calcium and magnesium are divalent multipotent ions playing a major role in metabolism, excitability...
<p>Rats were divided into sham operated control (Con), sham operated plus 100 mg/kg magnesium contro...
We evaluated the neuroprotective effects of systemically administered magnesium against (NMDA)-medi...
Dietary magnesium (Mg2+) supplementation can enhance memory in young and aged rats. Memory-enhancing...
Abstract Background: Failure to pass the blood-brain barrier is a serious challenge to the use of m...
SummaryLearning and memory are fundamental brain functions affected by dietary and environmental fac...
Learning and memory are fundamental brain functions affected by dietary and environmental factors. H...
Alzheimer’s disease (AD) is characterized by profound synapse loss and impairments of learning and m...
Elevation of cerebral Mg2+ with a novel orally delivered ionophore, magnesium threonate, enhances co...
Although a magnesium-mediated attenuation of memory deficits was reported in animal models of ageing...
AbstractOral administration of the combination of L-threonate (threonate) and magnesium (Mg2+) in th...
<p>The experiments were designed as shown in panel A. Rats were divided into six groups, i.e., sham-...
Copyright © 2002 Elsevier Science Ireland Ltd. All rights reserved.Although a number of studies have...
International audienceAgeing is associated with a general decline in physiological functions. Amongs...
Profound synapse loss is one of the major pathological hallmarks associated with Alzheimer's di...
Calcium and magnesium are divalent multipotent ions playing a major role in metabolism, excitability...
<p>Rats were divided into sham operated control (Con), sham operated plus 100 mg/kg magnesium contro...
We evaluated the neuroprotective effects of systemically administered magnesium against (NMDA)-medi...
Dietary magnesium (Mg2+) supplementation can enhance memory in young and aged rats. Memory-enhancing...
Abstract Background: Failure to pass the blood-brain barrier is a serious challenge to the use of m...