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Updated: Apr 21, 2026

Measuring Single-Cell Mitochondrial DNA Copy Number and Heteroplasmy Using Digital Droplet Polymerase Chain Reaction
Published on: July 12, 2022
Paediatric single mitochondrial DNA deletion disorders: an overlapping spectrum of disease
Alexander Broomfield1, Mary G Sweeney, Cathy E Woodward
1Genetic Medicine, Central Manchester University Hospitals NHS Foundation trust, St Mary's Hospital, 6th Floor, Oxford Road, Manchester, M 13 9WL, UK.
Insights
Single large-scale mitochondrial DNA deletions (SLSMDs) cause heterogeneous childhood mitochondrial disease. Multisystem involvement is common, with kidney issues frequent, and Pearson syndrome associated with worse survival.
Area of Science:
- Genetics
- Pediatrics
- Neurology
Background:
- Single large-scale mitochondrial DNA deletions (SLSMDs) are common childhood mitochondrial disorders.
- The natural history of SLSMDs is not well understood.
- This study investigates a large multicenter cohort of children with SLSMDs.
Purpose of the Study:
- To describe the clinical course and outcomes of childhood-onset mitochondrial disease due to SLSMDs.
- To compare survival rates between patients with Pearson syndrome and other presentations.
- To identify key clinical features and affected organ systems.
Main Methods:
- Retrospective case note review of 34 patients across three UK centers.
- Analysis of clinical presentations, disease progression, and organ involvement.
- Kaplan-Meier survival analysis comparing patient subgroups.
Main Results:
- Ptosis was the most common initial presentation (47%).
- Pearson syndrome (32%) had significantly worse mortality than other SLSMD presentations.
- Kidney dysfunction was frequent (85% with investigations); SLSMDs detected in blood/urine, negating need for muscle biopsy in children.
Conclusions:
- Childhood mitochondrial disease from SLSMDs is clinically diverse, often presenting outside classical syndromes.
- Multisystem disease is typical, with anemia, renal, and endocrine issues common.
- SLSMDs are a key consideration for pediatric ptosis differential diagnosis.
Background:
Single large-scale mitochondrial DNA (mtDNA) deletions (SLSMDs) are amongst the most frequently diagnosed mtDNA disorders in childhood, yet their natural history remains poorly understood. We report the natural history of a large multicentre cohort of such children.
Methods:
We reviewed case notes from three different UK centres to determine the clinical course of 34 patients (16 female, 18 male) with childhood-onset mitochondrial disease caused by SLSMDs. Kaplan-Meier analysis was used to compare survival of patients presenting with haematological features (Pearson syndrome) and those with nonhaematological presentations.
Results:
The most frequent initial presentation was with isolated ptosis (16/34, 47%). Eleven (32%) patients presented with transfusion-dependent anaemia soon after birth and were diagnosed with Pearson syndrome, whilst ten were classified as having Kearns-Sayre syndrome, three as having progressive external ophthalmoplegia (PEO) and seven as having PEO-plus. Three patients did not conform to any specific mitochondrial syndrome. The most frequently affected organ during the disease course was the kidney, with documented tubular or glomerular dysfunction in 17 of 20 (85%) cases who had detailed investigations. SLSMDs were present in blood and/or urine cells in all cases tested, indicating that muscle biopsy is not necessary for diagnosis in the paediatric age range. Kaplan-Meier survival analysis revealed significantly worse mortality in patients with Pearson syndrome compared with the rest of the cohort.
Conclusions:
Mitochondrial disease caused by SLSMDs is clinically heterogeneous, and not all cases conform to a classical mitochondrial syndrome. Multisystem disease is the norm, with anaemia, renal impairment and endocrine disturbance being the most frequent extraneurological features. SLSMDs should be considered in the differential diagnosis of all children presenting with ptosis.
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