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The Efficacy of Vitamin D Supplementation in Patients With Severe and Extremely Severe COVID-19

The Efficacy of Vitamin D Supplementation in Patients With Severe and Extremely Severe COVID-19

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05092698
Acronym
COVID-VIT
Enrollment
110
Registered
2021-10-25
Start date
2020-05-01
Completion date
2022-01-31
Last updated
2022-03-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

SARS-CoV2 Infection

Keywords

severe acute respiratory syndrome coronavirus 2 (SARS-CoV2), coronavirus disease 2019 (COVID-19), severe and extremely severe disease, Vitamin D, cholecalciferol

Brief summary

Despite the successful treatment of patients with moderate coronavirus disease 2019 (COVID-19), outcomes for patients with severe disease remain unsatisfactory. In this category of patients, the course of the disease is complicated by the development of acute respiratory distress syndrome (ARDS) and the need for mechanical ventilation in the intensive care unit (ICU). Mortality in this category of patients reaches 85%. The lack of effective treatment for COVID-19 has prompted scientists to look for new strategies to reduce the incidence and severity of COVID-19, disease progression, and mortality. Disease severity and mortality rates due to COVID-19 infection are greater in the elderly and chronically ill patients, populations at high risk for vitamin D deficiency. Vitamin D plays an important role in immune function and inflammation. A number of experimental studies have shown that stimulation of vitamin D receptors can improve the course of ARDS due to inhibition of the hyperimmune inflammatory response, regulation of the renin-angiotensin system, modulation of neutrophil activity, maintenance of the integrity of the pulmonary epithelial barrier and stimulation of epithelial repair, as well as by reducing hypercoagulation. Several studies on ICU patients have reported that low vitamin D (25(OH)D) concentrations are associated with a higher risk of negative outcomes such as death, organ failure, prolonged mechanical ventilation, a higher rate of ventilation-associated pneumonia, and sepsis. While the available evidence to-date, from largely poor-quality observational studies, may be viewed as showing a trend for an association between low serum 25(OH)D levels and COVID-19 related health outcomes, this relationship was not found to be statistically significant. Calcifediol supplementation may have a protective effect on COVID-19 related ICU admissions.

Detailed description

The aim of the study is to evaluate the efficacy of vitamin D (cholecalciferol) supplementation in patients with severe and extremely severe disease caused by the SARS-CoV-2 virus, admitted to an ICU of the COVID-center on the first day and in dynamics until discharge from the hospital or death. Patients with vitamin D deficiency \[25-hydroxyvitamin D (25(OH)D) ≤ 30 ng/ml\] will be randomized to two groups: 1 - patients will receive 60,000 IU of cholecalciferol supplementation; 2 - patients will receive matched placebo. The demographic and clinical data will be collected. Laboratory data (hemoglobin, lymphocytes, neutrophil to lymphocyte ratio, D-dimer level, Interleukin-6, procalcitonin, ferritin, glucose level, high-sensitive troponin Т, vitamin D level (25(OH)D), acid-base balance, signs of a secondary bacterial infection, immunogram, Von Willebrand factor antigen and Instrumental data (CT-scan, Electrocardiography, echocardiography, arterial and venous ultrasound investigation) will be analysed. The frequency of complications, duration of mechanical ventilation, length of stay in the ICU and in the hospital, and mortality will be evaluated. This study is single-centre prospective randomized placebo-controlled trial.

Interventions

DIETARY_SUPPLEMENTVitamin D (cholecalciferol)

Patients will receive 60,000 IU of cholecalciferol dissolved in 45 ml herbal oil orally or via feeding tube after serum Vitamin D concentrations measurement followed by the same dose of cholecalciferol weekly and 5,000 IU of cholecalciferol (two drops) daily until discharge or death.

DIETARY_SUPPLEMENTHerbal oil

Patients will receive 45 ml of herbal oil orally or via feeding tube after serum Vitamin D concentrations measurement followed by the same dose of pure herbal oil weekly and two drops of herbal oil daily until discharge or death.

Sponsors

Federal Research Clinical Center of Federal Medical & Biological Agency, Russia
Lead SponsorOTHER_GOV

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Caregiver)

Eligibility

Sex/Gender
ALL
Age
18 Years to 100 Years
Healthy volunteers
No

Inclusion criteria

* all patients with COVID-19 admitted to the ICU with vitamin D deficiency \[25-hydroxyvitamin D (25(OH)D) ≤ 30 ng/ml\]

Exclusion criteria

* less than 24 hours in ICU by any reason * chronic decompensated disease with extrapulmonary organ dysfunction (tumour progression, liver cirrhosis, congestive heart failure) with a life expectancy of less than 48 hours * atonic coma * allergic reaction on cholecalciferol or herbal oil

Design outcomes

Primary

MeasureTime frameDescription
Proinflammatory marker 2on day 15 during ICU treatmentConcentration of D-dimer
Proinflammatory marker 3on day 21 during ICU treatmentConcentration of D-dimer
inflammatory markerChange from baseline on day 5 during ICU treatmentConcentration of Interleukin-6
inflammatory marker 1Change from baseline on day 10 during ICU treatmentConcentration of Interleukin-6
inflammatory marker 2Change from baseline on day 15 during ICU treatmentConcentration of Interleukin-6
inflammatory marker 3Change from baseline on day 21 during ICU treatmentConcentration of Interleukin-6
Infection markerChange from baseline on day 5 during ICU treatmentConcentration of Procalcitonin
Сomplete blood countChange from baseline on day 5 during ICU treatmentСomplete blood count
Сomplete blood count dynamics 1Change from baseline on day 10 during ICU treatmentСomplete blood count
Сomplete blood count dynamics 2Change from baseline on day 15 during ICU treatmentСomplete blood count
Сomplete blood count dynamics 3Change from baseline on day 21 during ICU treatmentСomplete blood count
C-reactive proteinChange from baseline on day 5 during ICU treatmentConcentration of C-reactive protein
C-reactive protein 1Change from baseline on day 10 during ICU treatmentConcentration of C-reactive protein
C-reactive protein 2Change from baseline on day 15 during ICU treatmentConcentration of C-reactive protein
C-reactive protein 3Change from baseline on day 21 during ICU treatmentConcentration of C-reactive protein
Von Willebrand factor antigenChange from baseline on day 7 during ICU treatmentConcentration of Von Willebrand factor antigen
Thrombotic complications60 daysArterial or venous thrombotic complications
ImmunogramChange from baseline on day 7 during ICU treatmentThe amount of NKT cells (CD3+CD56+CD16+), NK cells (CD3-CD56+CD16+)
Proinflammatory markerChange from baseline on day 5 during ICU treatmentConcentration of D-dimer
Proinflammatory marker 1on day 10 during ICU treatmentConcentration of D-dimer
Infection marker 1Change from baseline on day 10 during ICU treatmentConcentration of Procalcitonin

Secondary

MeasureTime frameDescription
Mortality60 daysThe dead and survived patients ratio
Mechanical ventilation duration30 daysThe amount of mechanical ventilation days
Non-invasive Mechanical ventilation duration30 daysThe amount of Non-invasive mechanical ventilation days
Length of stay in the ICU60 daysThe amount of day of ICU treatment
Length of stay in the hospital60 daysThe amount of day of hospital treatment
Infection complications60 dayThe amount of Infection complications

Countries

Russia

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 11, 2026