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Completed

NCT Number: NCT04379037

Vagus Nerve Stimulation ARDS Prevention Trial for COVID-19 Hospitalized Patients

This trial is designed to determine if the inflammation modulating effect of vagus nerve stimulation can improve pulmonary function and limit progression to ARDS in hospitalized COVID-19 hospitalized patients.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Hospital Zonal Virgen del Carmen de Zárate

Zárate, Buenos Aires, B2800DDF, Argentina

About this study

Patients hospitalized with COVID-19 predominantly die of organ failure due to a surge of pro-inflammatory cytokines triggering the need for mechanical ventilation, often due to acute respiratory distress syndrome (ARDS). Known as a cytokine storm, the surge in cytokines is similar to the excessive inflammatory reaction associated with septic shock.

Anti-viral agents will most likely be required to reduce the molecular viral burden in COVID-19 patients, but an additional approach to control the damaging cytokine release is required to alter the course of disease in hospitalized patients and improve chances of survival. Immunosuppressant drugs may reduce inflammation and the tissue damaging cytokines, but they could also be detrimental by inhibiting natural anti-viral immune responses (i.e., suppression of interferons), thereby delaying viral clearance and increasing the risk of secondary infections and death.

The reason for the severity of the disease course in some individuals may lie in the regulation of the immune system by the vagus nerve. The vagus nerve is involved in an inflammation controlling reflex similar to the blood pressure regulating baroreflex. The vagus inflammatory reflex is triggered when the afferent vagus nerve senses inflammatory products through peripheral receptors.

Vagus nerve activity is relayed through the central nervous system to the efferent vagus nerve. This pathway involves the splenic nerve, which when activated releases norepinephrine and results in suppression of pro-inflammatory cytokine production by macrophages and alleviates inflammation in many pathological settings (e.g., endotoxemia, peritonitis, or acute kidney injury).

Electrical stimulation of the vagus nerve using VNS can improve the body's natural ability to regulate the inflammatory response and may be potent enough to suppress pro-inflammatory cytokines and prevent death from COVID-19, especially if used early enough in the course of hospitalization.

In rat models of sepsis, VNS attenuates the release of pro-inflammatory cytokines, prevents hypotension, modulates coagulation, and prevents fibrinolysis activation, decreasing organ dysfunction, and improving survival. Human studies also demonstrate that VNS suppresses the production of pro-inflammatory cytokines and improves clinical symptoms in rheumatoid arthritis, intractable epilepsy, atrial fibrillation, and Crohn's Disease.

This suggests that VNS may be effective in treating disorders characterized by cytokine dysregulation and that it has the potential to prevent hospitalized patients with COVID-19 from progressing to respiratory failure and death.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patients who are 18 years of age
  • Tested positive or suspected/presumed positive for COVID-19 infection
  • Patients requiring hospital admission moderate to severe pneumonia and pneumopathy
  • Patients showing fever and respiratory symptoms with radiological findings of pneumonia
  • Respiratory distress (≧30 breaths/ min) or Oxygen saturation ≤93% at rest in ambient air; or oxygen saturation ≤97 % with O2 > 5L/min
  • Patient is able to provide signed and witnessed Informed Consent

Exclusion criteria

  • Already enrolled in a trial for COVID-19 therapy
  • Potentially life threatening heart rhythm
  • Pregnancy or potential pregnancy
  • Current implantation of an electrical and/or neurostimulator device, including but not limited to a cardiac pacemaker or defibrillator, vagal neurostimulator, deep brain stimulator, spinal stimulator, bone growth stimulator, or cochlear implant
  • History of aneurysm, intracranial hemorrhage, brain tumors, or significant head trauma
  • Belongs to a vulnerable population or has any condition such that his or her ability to provide informed consent, comply with the follow-up requirements, or provide self-assessments is compromised (e.g. homeless, developmentally disabled and prisoner)

Treatment and study plan

Transcutaneous Auricular Vagus Nerve Stimulation

Device

Transcutaneous vagus nerve stimulation involves stimulating the auricular branch of the vagus nerve with a imperceptible electrical current within the concha of the ear.

Primary outcomes

  1. Survival without need of mechanical ventilation

    Time frame: Day 14 since symptom onset

    Survival

  2. Cumulative incidence of successful tracheal extubation at day 14 since symptom onset.

    Time frame: Day 14 since symptom onset

    Successful tracheal extubation

Secondary outcomes

  1. Survival at day 14 of hospitalization

    Time frame: Day 14

    Survival

  2. Duration of hospitalization

    Time frame: Day 28

    Duration of hospitalization

Sponsors and collaborators

Lead sponsor

Nemechek Technologies

Industry

Registry information

Important dates

Study start
2020
Primary completion
2020
Study completion
2020
First posted
May 7, 2020
Registry last updated
Jun 4, 2021

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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