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Reduced mtDNA Copy Number Links to Vascular Calcification and Restores After Transplantation
Angelina Schwarz1, Abdul Rashid Qureshi1, Leah Hernandez1
1Karolinska Institutet, Department of Clinical Science, Intervention and Technology, Division of Renal Medicine, SE-141 52 Huddinge, Sweden.
Insights
Low mitochondrial DNA copy number (mtDNA-cn) is linked to vascular aging in chronic kidney disease (CKD) patients. Renal transplantation can restore mtDNA-cn levels, suggesting potential therapeutic benefits for vascular health in CKD.
Area of Science:
- Mitochondrial biology
- Vascular biology
- Nephrology
Background:
- Chronic kidney disease (CKD) is associated with accelerated vascular aging, vascular calcification, and increased mortality.
- Declining mitochondrial DNA copy number (mtDNA-cn) is linked to aging, frailty, and mortality in cardiovascular diseases and cancer.
- The role of mtDNA-cn in vascular calcification within the uremic environment is not well understood.
Purpose of the Study:
- To investigate the association between mtDNA-cn and vascular calcification in CKD patients.
- To assess the impact of renal transplantation (RTx) on mtDNA-cn levels.
- To explore mtDNA-cn as a potential biomarker for vascular aging in CKD.
Main Methods:
- Quantitative PCR (qPCR) was used to measure mtDNA-cn in 211 CKD5 patients and 196 healthy controls.
- mtDNA-cn was re-evaluated one year post-RTx in 32 patients.
- Associations with vascular calcification, cell-free mtDNA (ccf-mtDNA), biological age, and cardiovascular disease (CVD) risk were analyzed.
Main Results:
- CKD5 patients exhibited significantly lower mtDNA-cn compared to controls.
- Lower mtDNA-cn correlated with increased biological age, vascular calcification, and CVD risk.
- Male patients showed significant recovery of mtDNA-cn one year after RTx; mtDNA-cn and ccf-mtDNA were inversely correlated.
Conclusions:
- Low mtDNA-cn is associated with vascular aging and calcification in CKD.
- Renal transplantation can restore mtDNA levels, potentially improving vascular health.
- mtDNA may serve as a biomarker and therapeutic target for vascular aging in uremia.
Abstract:
Patients with chronic kidney disease (CKD) face an increased risk of early vascular aging, progressive vascular calcification, and premature death. With increasing age, mitochondrial function and mitochondrial DNA copy number (mtDNA-cn) decline. This has been identified as an independent predictor of frailty and mortality in cardiovascular diseases (CVDs) and cancer. However, the relationship between mtDNA-cn and vascular calcification in the context of a uremic milieu remains ambiguous. We hypothesize that a lower mtDNA-cn is associated with medial calcification, as both are linked to impaired vascular health and accelerated aging. mtDNA-cn was analyzed in 211 CKD5 patients undergoing renal transplantation (RTx) and 196 healthy controls using quantitative PCR (qPCR) for three mtDNA genes (mtND1, mtND4, and mtCOX1) and single-locus nuclear gene hemoglobin beta (HbB). In 32 patients, mtDNA-cn was also quantified one year after RTx. The association between mtDNA-cn and vascular calcification scores, circulatory cell-free (ccf) mtDNA in plasma, and the surrogate marker of biological aging (skin autofluorescence) and CVD risk was assessed. mtDNA-cn was significantly lower in CKD5 patients than in controls and correlated with biological age, vascular calcification, and CVD risk. One year after RTx there was a significant recovery of mtDNA-cn in male patients compared to baseline levels. mtDNA-cn and ccf-mtDNA were inversely correlated. This prospective study provides novel insights into the link between low mtDNA-cn and vascular aging. It demonstrates that RTx restores mtDNA levels and may improve oxidative phosphorylation capacity in CKD. Further investigation is warranted to evaluate mtDNA as a biologically relevant biomarker and a potential therapeutic target for early vascular aging in the uremic environment.

