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ATP Restoration by ATP-Deprived Cultured Primary Astrocytes

Study · animal · Neurochemical research · 2024 · DOI 10.1007/s11064-024-04276-9 · PMID 39549173

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This laboratory study in cultured primary rat astrocytes examined metabolic pathways contributing to ATP restoration after cellular ATP depletion. Incubating astrocytes in glucose-free buffer with the mitochondrial uncoupler BAM15 for 60 min lowered cellular ATP content by around 70%, total adenosine phosphates by around 50%, and adenylate energy charge from 0.9 to 0.6. After uncoupler removal, glucose alone allowed cells to restore around 80% of initial ATP within 6 h, while adenosine plus glucose allowed full restoration within 60 min; adenosine alone produced a rapid but incomplete, transient restoration, blocked by UK5099, antimycin A, or continuous BAM15, while these compounds increased lactate release. Adenosine-accelerated restoration in glucose-fed astrocytes was blocked by ABT-702.

Abstract

A high cellular concentration of adenosine triphosphate (ATP) is essential to fuel many important functions of brain astrocytes. Although cellular ATP depletion has frequently been reported for astrocytes, little is known on the metabolic pathways that contribute to ATP restoration by ATP-depleted astrocytes. Incubation of cultured primary rat astrocytes in glucose-free buffer for 60 min with the mitochondrial uncoupler BAM15 lowered the cellular ATP content by around 70%, the total amount of adenosine phosphates by around 50% and the adenylate energy charge (AEC) from 0.9 to 0.6. Testing for ATP restoration after removal of the uncoupler revealed that the presence of glucose as exclusive substrate allowed the cells to restore within 6 h around 80% of the initial ATP content, while coapplication of adenosine plus glucose enabled the cells to fully restore their initial ATP content within 60 min. A rapid but incomplete and transient ATP restoration was found for astrocytes that had been exposed to adenosine alone. This restoration was completely prevented by application of the pyruvate uptake inhibitor UK5099, the respiratory chain inhibitor antimycin A or by the continuous presence of BAM15. However, the presence of these compounds strongly accelerated the release of lactate from the cells, suggesting that the ribose moiety of adenosine can serve as substrate to fuel some ATP restoration via mitochondrial metabolism. Finally, the adenosine-accelerated ATP restoration in glucose-fed astrocytes was inhibited by the presence of the adenosine kinase inhibitor ABT-702. These data demonstrate that astrocytes require for a rapid and complete ATP restoration the presence of both glucose as substrate and adenosine as AMP precursor.

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