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An In Vitro Approach to Study Mitochondrial Dysfunction: A Cybrid Model
Published on: March 9, 2022
Circulating mitochondrial DNA is an early indicator of severe illness and mortality from COVID-19
Davide Scozzi1, Marlene Cano2, Lina Ma2
1Division of Cardiothoracic Surgery, Department of Surgery.
Abstract:
BackgroundMitochondrial DNA (MT-DNA) are intrinsically inflammatory nucleic acids released by damaged solid organs. Whether circulating cell-free MT-DNA quantitation could be used to predict the risk of poor COVID-19 outcomes remains undetermined.MethodsWe measured circulating MT-DNA levels in prospectively collected, cell-free plasma samples from 97 subjects with COVID-19 at hospital presentation. Our primary outcome was mortality. Intensive care unit (ICU) admission, intubation, vasopressor, and renal replacement therapy requirements were secondary outcomes. Multivariate regression analysis determined whether MT-DNA levels were independent of other reported COVID-19 risk factors. Receiver operating characteristic and area under the curve assessments were used to compare MT-DNA levels with established and emerging inflammatory markers of COVID-19.ResultsCirculating MT-DNA levels were highly elevated in patients who eventually died or required ICU admission, intubation, vasopressor use, or renal replacement therapy. Multivariate regression revealed that high circulating MT-DNA was an independent risk factor for these outcomes after adjusting for age, sex, and comorbidities. We also found that circulating MT-DNA levels had a similar or superior area under the curve when compared against clinically established measures of inflammation and emerging markers currently of interest as investigational targets for COVID-19 therapy.ConclusionThese results show that high circulating MT-DNA levels are a potential early indicator for poor COVID-19 outcomes.FundingWashington University Institute of Clinical Translational Sciences COVID-19 Research Program and Washington University Institute of Clinical Translational Sciences (ICTS) NIH grant UL1TR002345.
Insights
High levels of circulating mitochondrial DNA (MT-DNA) in COVID-19 patients indicate a higher risk of severe outcomes, including death and ICU admission. This finding suggests MT-DNA could be an early predictor of poor prognosis in COVID-19 patients.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- Mitochondrial DNA (MT-DNA) are known inflammatory molecules released from damaged cells.
- The predictive value of cell-free MT-DNA for severe COVID-19 outcomes is not yet established.
Purpose of the Study:
- To investigate if quantifying circulating cell-free MT-DNA can predict poor outcomes in hospitalized COVID-19 patients.
- To assess MT-DNA as an independent risk factor for COVID-19 severity.
Main Methods:
- Prospective measurement of circulating MT-DNA levels in 97 hospitalized COVID-19 patients.
- Analysis of primary outcome (mortality) and secondary outcomes (ICU admission, intubation, vasopressor use, renal replacement therapy).
- Multivariate regression and ROC curve analysis to compare MT-DNA with other inflammatory markers.
Main Results:
- Elevated MT-DNA levels were significantly associated with mortality, ICU admission, and other severe outcomes.
- High circulating MT-DNA independently predicted poor COVID-19 outcomes, even after adjusting for known risk factors.
- MT-DNA demonstrated comparable or superior predictive performance against established and emerging inflammatory markers.
Conclusions:
- Circulating mitochondrial DNA is a potential early biomarker for identifying COVID-19 patients at high risk of severe disease.
- Quantification of MT-DNA may aid in risk stratification and clinical decision-making for COVID-19 management.
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