Volume 15, Issue 1 pp. 84-91
Article

Prenatal diagnosis of systemic disorders of the respiratory chain in cultured amniocytes and chorionic villus fibroblasts by studying the formation of lactate and pyruvate from glucose

R. J. A. Wanders

R. J. A. Wanders

Department of Pediatrics, University Hospital Amsterdam (AMC), Meibergdreef 9, Amsterdam, 1105 AZ The Netherlands

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F. A. Wijburg

F. A. Wijburg

Department of Pediatrics, University Hospital Amsterdam (AMC), Meibergdreef 9, Amsterdam, 1105 AZ The Netherlands

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J. Ruiter

J. Ruiter

Department of Pediatrics, University Hospital Amsterdam (AMC), Meibergdreef 9, Amsterdam, 1105 AZ The Netherlands

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J. M. F. Trijbels

J. M. F. Trijbels

Department of Pediatrics, University Hospital Nijmegen, Nijmegen, 6500 HB The Netherlands

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W. Ruitenbeek

W. Ruitenbeek

Department of Pediatrics, University Hospital Nijmegen, Nijmegen, 6500 HB The Netherlands

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R. C. A. Sengers

R. C. A. Sengers

Department of Pediatrics, University Hospital Nijmegen, Nijmegen, 6500 HB The Netherlands

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J. A. J. M. Bakkeren

J. A. J. M. Bakkeren

Department of Pediatrics, University Hospital Nijmegen, Nijmegen, 6500 HB The Netherlands

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N. Feller

N. Feller

Department of Pediatrics, University Hospital Amsterdam (AMC), Meibergdreef 9, Amsterdam, 1105 AZ The Netherlands

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First published: 04 March 1991
Citations: 12

Summary

Formation of lactate and pyruvate from glucose was studied in cultured amniocytes and chorionic villus fibroblasts from controls, either untreated or treated with azide, an inhibitor of cytochromec oxidase, or other inhibitors of the mitochondrial respiratory chain. Amniocytes with an established cytochromec oxidase deficiency were also investigated.

Control amniocytes treated with azide as well as cytochromec oxidase deficient amniocytes displayed strongly increased lactate-to-pyruvate ratios after incubation with glucose, compared to control cells. Elevated lactate-to-pyruvate ratios were also found in chorionic villus fibroblasts in which complexes I, III or IV were inhibited by rotenone, antimycin or azide, respectively. We conclude that measurement of lactate and pyruvate production from glucose in cultured amniocytes and/or chorionic villus fibroblasts allows adequate prenatal diagnosis of systemic cytochromec oxidase deficiency and presumably of other systemic deficiencies of mitochondrial respiratory chain enzymes.

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