Literature DB >> 11640951

Glia-related pathomechanisms in Alzheimer's disease: a therapeutic target?

P Schubert1, T Ogata, C Marchini, S Ferroni.   

Abstract

Reactive glial cell properties could contribute to pathomechanisms underlying Alzheimer's disease by favoring oxidative neuronal damage and beta-amyloid toxicity. A critical step is apparently reached when pathological glia activation is no longer restricted to microglia and includes astrocytes. By giving up their differentiated state, astrocytes may lose their physiological negative feed-back control on microglial NO production and even contribute to neurotoxic peroxynitrate formation. Another consequence is the impairment of the astrocyte-maintained extracellular ion homeostasis favoring excitotoxic damage. By the production of apolipoprotein-E, triggered by the microglial cytokine interleukine-1beta, reactive astrocytes could promote the transformation of beta-amyloid into the toxic form. A pharmacologically reinforced cAMP signaling in rat glial cell cultures depressed oxygen radical formation in microglia and their release of TNF-alpha and interleukine-1beta, feed-forward signals which mediate oxidative damage and secondary astrocyte activation. Cyclic AMP also favored differentiation and expression of a mature ion channel pattern in astrocytes improving their glutamate buffering. A deficient cholinergic signaling that increases the risk of pathological APP processing was compensated by an adenosine-mediated reinforcement of the second messenger calcium. A combination therapy with acetylcholine-esterase inhibitors together with adenosine raising pharmaca, therefore, may be used to treat cholinergic deficiency in Alzheimer's disease.

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Year:  2001        PMID: 11640951     DOI: 10.1016/s0047-6374(01)00343-8

Source DB:  PubMed          Journal:  Mech Ageing Dev        ISSN: 0047-6374            Impact factor:   5.432


  15 in total

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Review 2.  The neglected co-star in the dementia drama: the putative roles of astrocytes in the pathogeneses of major neurocognitive disorders.

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3.  Astrocyte-neuron interactions in neurological disorders.

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4.  Metabolic Dysfunction of Astrocyte: An Initiating Factor in Beta-amyloid Pathology?

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Journal:  Aging Neurodegener       Date:  2013-08

Review 5.  Oxidative stress and β-amyloid protein in Alzheimer's disease.

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Review 6.  Iatrogenic risk factors for Alzheimer's disease: surgery and anesthesia.

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7.  HIV-1-infected astrocytes and the microglial proteome.

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8.  Extraordinary changes in excitatory amino acid levels in cerebrospinal fluid of influenza-associated encephalopathy of children.

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9.  CaV1.2 calcium channel expression in reactive astrocytes is associated with the formation of amyloid-β plaques in an Alzheimer's disease mouse model.

Authors:  Nina Daschil; Gerald J Obermair; Bernhard E Flucher; Nadia Stefanova; Birgit Hutter-Paier; Manfred Windisch; Christian Humpel; Josef Marksteiner
Journal:  J Alzheimers Dis       Date:  2013       Impact factor: 4.472

10.  Effects of L-NAME, a non-specific nitric oxide synthase inhibitor, on AlCl3-induced toxicity in the rat forebrain cortex.

Authors:  Ivana D Stevanović; Marina D Jovanović; Ankica Jelenković; Miodrag Colić; Ivana Stojanović; Milica Ninković
Journal:  J Vet Sci       Date:  2009-03       Impact factor: 1.672

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