Aug 2026· Molecular Genetics and Metabolism· Vol 149 1-2, pp.
110247
· 0 citations· 28 references
Medicine
TL;DR
Despite advances in molecular diagnosis, empirical vitamin and cofactor supplementation remains frequently used in patients with PMDs who lack established gene- or pathway-specific therapeutic options, and this findings underscore the persistent gap between molecular diagnosis and evidence-based therapy.
Abstract
Background
Primary mitochondrial diseases (PMDs) comprise a genetically and clinically heterogeneous group of disorders for which evidence-based therapeutic options remain limited. Despite advances in molecular diagnosis and the identification of gene-specific therapeutic targets for selected conditions, vitamin and cofactor supplementation continues to be frequently prescribed. We aimed to evaluate prescribing patterns, dosing practices and the balance between PMDs with established genotype-directed metabolic therapy and PMDs managed with empirical supplementation in a genetically confirmed PMD cohort.
Materials And Methods
We retrospectively reviewed 62 patients with genetically confirmed PMDs followed at a tertiary pediatric metabolism center between 2015 and 2025. Demographic, genetic and treatment-related data were collected, including vitamin and cofactor use and dosing regimens. Patients were categorized as PMDs with genotype-directed therapies and PMDs managed with empirical supplementation.
Results
Sixty-two patients were included (43.5% female; mean age 10.7 years). Oxidative phosphorylation (OXPHOS) complex defects were the most common genetic category (35.5%). Overall, 71% of patients received at least one vitamin or cofactor supplement. Coenzyme Q10 (62.9%), carnitine (53.2%), riboflavin (48.4%), biotin (37.1%) and thiamine (35.5%) were the most frequently prescribed agents. Thirteen patients (21%) had PMDs with established targeted therapies and received genotype-directed treatment. Among the remaining 49 patients, who lacked a defined genotype-directed therapeutic option and were therefore classified as being managed with empirical supplementation, 63.2% (31/49) received at least one vitamin or cofactor supplement.
Conclusion
Despite advances in molecular diagnosis, empirical vitamin and cofactor supplementation remains frequently used in patients with PMDs who lack established gene- or pathway-specific therapeutic options. These findings underscore the persistent gap between molecular diagnosis and evidence-based therapy and support the need for prospective multicenter studies to guide standardized treatment approaches in PMDs.
Several common drugs with potentially adverse effects on mitochondria are identified, including metformin, beta-blockers, statins, ciprofloxacin, fluoxetine, ibuprofen, and certain anti-seizure drugs.
Oskar Järvinen, M. Martikainen· Neurological Sciences· 0 citations
Abstract Background and aims Evidence-based, mechanism-guided therapies are urgently needed for treating monogenic inflammatory bowel disease (mIBD). For such rare diseases, mechanistic insight is essential to guide treatment when conventional clinical trials are often not feasible. We aimed to summarize literature-bas...
Pai-Jui Yeh, James E. G. Charlesworth, H. Taylor et al.· Journal of Crohn's & Colitis· 0 citations
Long-term metformin therapy is associated with reduced vitamin B12 status, but the clinical significance of biochemical abnormalities and optimal monitoring remain uncertain. This narrative review evaluates evidence on mechanisms, risk factors, clinical consequences, diagnosis, monitoring, and management, with emphasis...
A. Dobrowolska, Marta Rząsa, Martyna Grzywacz et al.· International Journal of Cur...· 0 citations
Advances in research enable precision medicine for rare metabolic diseases. The approval of therapies as melanocortin-4 receptor (MC4R) agonists for the treatment of hyperphagia and obesity in monogenic disorders (POMC, PCSK1, and LEPR deficiencies) and Bardet-Biedl syndrome (BBS), affecting fewer than 1 in 20,000 (BBS...
Karine Clément, I. Farooqi, Peter Kühnen et al.· Journal of Clinical Endocrin...· 0 citations
BACKGROUND
Glucose transporter type 1 deficiency syndrome (GLUT1-DS) is a rare, paediatric onset, neurometabolic disorder caused by impaired cerebral glucose transport, leading to chronic brain energy deficiency. The classic ketogenic diet (CKD) is its established cornerstone therapy but it is not universally effective...
R. Falsaperla, Salma Ben Amer, Vincenzo Sortino· Epilepsy Research· 0 citations