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Pilot trial of high-dose vitamin C in critically ill COVID-19 patients
Jing Zhang1,2, Xin Rao1,2, Yiming Li1,2
1Dept. of Critical Care Medicine, Zhongnan Hospital of Wuhan University, Wuhan, 430071, Hubei, China.
Insights
High-dose vitamin C infusion did not improve ventilation-free days or mortality in severe COVID-19 patients. However, it showed potential benefits in improving oxygenation and reducing inflammation markers.
Area of Science:
- Critical care medicine
- Nutritional biochemistry
- Infectious disease
Background:
- Severe COVID-19 presents limited effective treatment options.
- Investigating novel therapeutic interventions is crucial.
Purpose of the Study:
- To evaluate the efficacy of high-dose intravenous vitamin C (HDIVC) in treating severe COVID-19.
- To assess the impact of HDIVC on clinical outcomes and inflammatory markers.
Main Methods:
- A randomized, controlled clinical trial involving 56 severe COVID-19 patients in the ICU.
- Patients received either HDIVC (12g every 12 hours for 7 days) or placebo.
- Primary outcome: invasive mechanical ventilation-free days in 28 days (IMVFD28); Secondary outcomes: mortality, organ failure, and IL-6 levels.
Main Results:
- No significant difference in IMVFD28 between HDIVC and placebo groups.
- HDIVC did not reduce 28-day mortality.
- A significant improvement in PaO2/FiO2 ratio and a reduction in IL-6 levels were observed in the HDIVC group.
Conclusions:
- HDIVC did not improve key clinical outcomes like IMVFD28 in severe COVID-19.
- A potential benefit in oxygenation (PaO2/FiO2) and reduced inflammation (IL-6) warrants further investigation.
Background:
Few specific medications have been proven effective for the treatment of patients with severe coronavirus disease 2019 (COVID-19). Here, we tested whether high-dose vitamin C infusion was effective for severe COVID-19.
Methods:
This randomized, controlled, clinical trial was performed at 3 hospitals in Hubei, China. Patients with confirmed severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection in the ICU were randomly assigned in as 1:1 ratio to either the high-dose intravenous vitamin C (HDIVC) or the placebo. HDIVC group received 12 g of vitamin C/50 ml every 12 h for 7 days at a rate of 12 ml/hour, and the placebo group received bacteriostatic water for injection in the same way within 48 h of arrival to ICU. The primary outcome was invasive mechanical ventilation-free days in 28 days (IMVFD28). Secondary outcomes were 28-day mortality, organ failure (Sequential Organ Failure Assessment (SOFA) score), and inflammation progression (interleukin-6).
Results:
Only 56 critical COVID-19 patients were ultimately recruited due to the early control of the outbreak. There was no difference in IMVFD28 between two groups (26.0 [9.0-28.0] in HDIVC vs 22.0 [8.50-28.0] in control, p = 0.57). HDIVC failed to reduce 28-day mortality (P = 0.27). During the 7-day treatment period, patients in the HDIVC group had a steady rise in the PaO2/FiO2 (day 7: 229 vs. 151 mmHg, 95% CI 33 to 122, P = 0.01), which was not observed in the control group. IL-6 in the HDIVC group was lower than that in the control group (19.42 vs. 158.00; 95% CI -301.72 to -29.79; P = 0.04) on day 7.
Conclusion:
This pilot trial showed that HDIVC failed to improve IMVFD28, but might show a potential signal of benefit in oxygenation for critically ill patients with COVID-19 improving PaO2/FiO2 even though.
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