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Editorial
. 2009 Mar 27;104(6):717-9.
doi: 10.1161/CIRCRESAHA.109.195495.

Innate short-circuiting of mitochondrial metabolism in cardiac hypertrophy: identification of novel consequences of enhanced anaplerosis

Editorial

Innate short-circuiting of mitochondrial metabolism in cardiac hypertrophy: identification of novel consequences of enhanced anaplerosis

Michael N Sack. Circ Res. .
No abstract available

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Figures

Figure
Figure
Schematic of pathway perturbations by increased malic enzyme–driven anaplerosis. The arrow line thickness and text size reflect the hypothetical relative reaction rates and the putative deficits in reducing equivalent generation and reduction in NADPH-dependent pathways associated with malic enzyme carboxylation of pyruvate in cardiac hypertrophy.

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