| Literature DB >> 15240812 |
Tonya M Bliss1, Miranda Ip, Elise Cheng, Masabumi Minami, Luc Pellerin, Pierre Magistretti, Robert M Sapolsky.
Abstract
Increasing evidence suggests that glutamate activates the generation of lactate from glucose in astrocytes; this lactate is shuttled to neurons that use it as a preferential energy source. We explore this multicellular "lactate shuttle" with a novel dual-cell, dual-gene therapy approach and determine the neuroprotective potential of enhancing this shuttle. Viral vector-driven overexpression of a glucose transporter in glia enhanced glucose uptake, lactate efflux, and the glial capacity to protect neurons from excitotoxicity. In parallel, overexpression of a lactate transporter in neurons enhanced lactate uptake and neuronal resistance to excitotoxicity. Finally, overexpression of both transgenes in the respective cell types provided more protection than either therapy alone, demonstrating that a dual-cell, dual-gene therapy approach gives greater neuroprotection than the conventional single-cell, single-gene strategy.Entities:
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Year: 2004 PMID: 15240812 PMCID: PMC6729663 DOI: 10.1523/JNEUROSCI.0805-04.2004
Source DB: PubMed Journal: J Neurosci ISSN: 0270-6474 Impact factor: 6.167