Methodologies in Mitochondrial Testing: Diagnosing a Primary Mitochondrial Respiratory Chain Disorder

Author:

Gill Emily L12ORCID,Wang Jing1,Viaene Angela N12,Master Stephen R1ORCID,Ganetzky Rebecca D134ORCID

Affiliation:

1. Department of Pathology and Laboratory Medicine, Children’s Hospital of Philadelphia , Philadelphia, PA , United States

2. Department of Pathology and Laboratory Medicine, University of Pennsylvania , Philadelphia, PA , United States

3. Division of Human Genetics, Children’s Hospital of Philadelphia, Mitochondrial Medicine Frontier Program , Philadelphia, PA , United States

4. Department of Pediatrics, University of Pennsylvania , Philadelphia, PA , United States

Abstract

Abstract Background Mitochondria are cytosolic organelles within most eukaryotic cells. Mitochondria generate the majority of cellular energy in the form of adenosine triphosphate (ATP) through oxidative phosphorylation (OxPhos). Pathogenic variants in mitochondrial DNA (mtDNA) and nuclear DNA (nDNA) lead to defects in OxPhos and physiological malfunctions (Nat Rev Dis Primer 2016;2:16080.). Patients with primary mitochondrial disorders (PMD) experience heterogeneous symptoms, typically in multiple organ systems, depending on the tissues affected by mitochondrial dysfunction. Because of this heterogeneity, clinical diagnosis is challenging (Annu Rev Genomics Hum Genet 2017;18:257–75.). Laboratory diagnosis of mitochondrial disease depends on a multipronged analysis that can include biochemical, histopathologic, and genetic testing. Each of these modalities has complementary strengths and limitations in diagnostic utility. Content The primary focus of this review is on diagnosis and testing strategies for primary mitochondrial diseases. We review tissue samples utilized for testing, metabolic signatures, histologic findings, and molecular testing approaches. We conclude with future perspectives on mitochondrial testing. Summary This review offers an overview of the current biochemical, histologic, and genetic approaches available for mitochondrial testing. For each we review their diagnostic utility including complementary strengths and weaknesses. We identify gaps in current testing and possible future avenues for test development.

Publisher

Oxford University Press (OUP)

Subject

Biochemistry (medical),Clinical Biochemistry

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