Engineered adenosine-releasing cells for epilepsy therapy: human mesenchymal stem cells and human embryonic stem cells
about
Adenosine signaling and function in glial cellsAdenosine-associated delivery systemsMesenchymal stem/stromal cells as a delivery platform in cell and gene therapiesPurinergic signaling: a common pathway for neural and mesenchymal stem cell maintenance and differentiationAdenosine kinase, glutamine synthetase and EAAT2 as gene therapy targets for temporal lobe epilepsy.Defining the optimal window for cranial transplantation of human induced pluripotent stem cell-derived cells to ameliorate radiation-induced cognitive impairmentStem cell paracrine actions and tissue regeneration.Adenosine dysfunction and adenosine kinase in epileptogenesis.Inhibitory RNA in epilepsy: research tools and therapeutic perspectivesCell-mediated drug delivery.Adenosine kinase as a target for therapeutic antisense strategies in epilepsy.Modulators of nucleoside metabolism in the therapy of brain diseases.Subventricular zone-derived neural stem cell grafts protect against hippocampal degeneration and restore cognitive function in the mouse following intrahippocampal kainic acid administrationCranial grafting of stem cell-derived microvesicles improves cognition and reduces neuropathology in the irradiated brain.Mesenchymal stem cells for the sustained in vivo delivery of bioactive factors.Rescue of radiation-induced cognitive impairment through cranial transplantation of human embryonic stem cells.Transplantation of human fetal-derived neural stem cells improves cognitive function following cranial irradiation.miRNAs: Key Players in Neurodegenerative Disorders and EpilepsyMicroRNA-based therapy: a new dimension in epilepsy treatment.MicroRNA regulation and dysregulation in epilepsy.Regenerative therapy for hippocampal degenerative diseases: lessons from preclinical studies.Magnetic N-succinyl chitosan/alginate beads for carbamazepine delivery.Role of adenosine in the antiepileptic effects of deep brain stimulation.Reconstruction of the adenosine system by bone marrow-derived mesenchymal stem cell transplantation.Stable Knockdown of Adenosine Kinase by Lentiviral Anti-ADK miR-shRNAs in Wharton's Jelly Stem Cells.
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Engineered adenosine-releasing cells for epilepsy therapy: human mesenchymal stem cells and human embryonic stem cells
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on April 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Engineered adenosine-releasing ...... and human embryonic stem cells
@en
Engineered adenosine-releasing ...... nd human embryonic stem cells.
@nl
type
label
Engineered adenosine-releasing ...... and human embryonic stem cells
@en
Engineered adenosine-releasing ...... nd human embryonic stem cells.
@nl
prefLabel
Engineered adenosine-releasing ...... and human embryonic stem cells
@en
Engineered adenosine-releasing ...... nd human embryonic stem cells.
@nl
P2860
P1433
P1476
Engineered adenosine-releasing ...... and human embryonic stem cells
@en
P2093
Detlev Boison
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P2888
P304
P356
10.1016/J.NURT.2008.12.001
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2009-04-01T00:00:00Z
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P6179
1042985316