COVID-19 is a disease caused by the virus, SARS-CoV-2. Patients with this viral infection are at risk for developing pneumonia and acute respiratory distress syndrome (ARDS). Approximately 20% to 30% of hospitalized patients with COVID-19 and pneumonia require intensive care for respiratory support. Clinically, ARDS presents with severe hypoxemia evolving over several days to a week in combination with bilateral pulmonary infiltrates on chest X-ray. Widespread alveolar epithelial cell and pulmonary capillary endothelial injury can lead to severe impairment in gas exchange. In one report of 1,099 patients hospitalized with COVID-19, ARDS occurred in 15.6% of patients with severe pneumonia. In a smaller case series of 138 hospitalized patients, ARDS occurred in 19.6% of patients and in 61.1% of patients admitted to an intensive care unit (ICU). To date, no effective treatment has been established to treat COVID-19 or to prevent progression of ARDS. It is thought that a heightened immune response with an unbalanced release of inflammatory mediators in the airway is a major cause of morbidity and mortality associated with the disease. It is therefore reasonable to postulate that improved outcomes may be obtained in patients with a balanced immune response with adequate viral control and appropriate counter-regulatory immune responses whereas a poor outcome may be expected in patients with inadequate viral control or a heightened immune response or what is referred to as a "cytokine storm". Thus, modulating the pulmonary immune response without suppressing the immune system would be a viable strategy for patients with COVID-19. The current literature supports the role of neuromodulation, particularly vagal nerve stimulation (VNS), in modulating the immune response. Modulating the pro-inflammatory pathway through VNS has been demonstrated to decrease inflammatory mediators and improve outcomes in several animal models and in humans. Percutaneous electrical nerve field stimulation (PENFS) provides a novel, non-invasive method of VNS through a non-implantable device applied to the external ear. Already, the FDA has cleared this technology for reducing symptoms of opioid withdrawal in patients with opioid use disorder. Symptoms of opioid withdrawal can be decreased by approximately 90% after 1 hour of stimulation. Similarly, the IB-Stim device has been shown to improve symptom in children with abdominal-pain-related functional GI disorders and recently received market approval by the FDA for that indication. Unpublished studies have demonstrated marked decrease in inflammation with PENFS compared to sham stimulation in a model of TNBS colitis. While the efficacy of PENFS in modulating the progression of pulmonary disease in patients with COVID-19 is unknown, several proposed mechanisms for regulation of the immune response through VNS have already been demonstrated. We propose to perform an open label, randomized study to evaluate the efficacy of PENFS for the treatment of respiratory symptoms in patients with COVID-19.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
55
The BRIDGE/PENFS device manufactured by Key Electronics, consists of a battery activated generator and wire harness that connects to the generator. Four leads are also attached to the generator, each with a sterile 2 mm, titanium needle. The BRIDGE device settings are standardized and deliver 3.2 volts with alternating frequencies (1 ms pulses of 1 Hz and 10 Hz) every 2 s. This stimulation targets central pain pathways through branches of cranial nerves V, VII, IX, and X, which innervate the external ear. The PENFS device generator has a battery life of 5 days and delivers almost continuous stimulations throughout the 120 hours.
Olive View-UCLA Medical Center
Sylmar, California, United States
Hypoxemia via oxygen level, or saturation (SpO2) in percent
COVID-19 patients with dyspnea from worsening hypoxemia by measuring daily oxygen level, or saturation (SpO2) in percent.
Time frame: up to 14 days or until hospital discharge
Progression to mechanical ventilation, ECLS or death
Progression of COVID-19 patients with dyspnea to mechanical ventilation, ECLS or death.
Time frame: up to 14 days or until hospital discharge
Oxygen requirements
Change in oxygen requirements measured in days of hypoxemia (defined as SpO2 ≤93% on room air or requiring supplemental oxygen)
Time frame: up to 14 days or until hospital discharge
Days of hospitalization
Days of hospitalization among survivors
Time frame: up to 14 days or until hospital discharge
Time to hospital discharge
Time to hospital discharge or "ready for discharge" (as evidenced by normal body temperature and respiratory rate, and stable oxygen saturation on ambient air or ≤2L supplemental oxygen)
Time frame: up to 14 days or until hospital discharge
Time to resolution of fever
Fever will be recorded twice daily. Time to resolution of fever defined as body temperature (≤36.6°C \[axilla\], or ≤37.2 °C \[oral\], or ≤37.8°C \[rectal or tympanic\]) for at least 48 hours without antipyretics or until discharge, whichever is sooner, by clinical severity
Time frame: up to 14 days or until hospital discharge
Days of resting respiratory rate
Days of resting respiratory rate \>24 breaths/min recorded twice daily
Time frame: up to 14 days or until hospital discharge
Serious adverse events or patient or worsening condition
Any serious adverse events or patient or worsening condition will be recorded to establish safety and tolerability of PENFS therapy. These include but not limited to skin irritation or reaction at site, pain at site, hypotension, seizure disorders, cardia dysrhythmia, progression to mechanical ventilation.
Time frame: up to 14 days or until hospital discharge
Erythrocyte Sedimentation Rate (ESR)
Evaluation of erythrocyte sedimentation rate (ESR) in mm/hr. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
C-Reactive Protein (CRP)
Evaluation of C-reactive protein (CRP) in mg/dL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Ferritin
Evaluation of ferritin in ng/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
D-Dimer
Evaluation of D-dimer in ng/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Creatine Phosphokinase, Total (CK)
Evaluation of creatine phosphokinase, total (CK) in U/L. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Troponin
Evaluation of troponin in ng/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Lactate Dehydrogenase (LDH)
Evaluation of lactate dehydrogenase (LDH) in U/L. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Procalcitonin (PCT)
Evaluation of procalcitonin (PCT) in ng/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
B-Type Natriuretic Peptide (BNP)
Evaluation of B-type natriuretic peptide (BNP) in pg/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
N-Terminal Pro B-Type Natriuretic Peptide (NT-proBNP)
Evaluation of N-terminal Pro B-type natriuretic peptide (NT-proBNP) in pg/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Interleukin-6 (IL-6), High Sensitive ELISA
Evaluation of Interleukin-6 (IL-6), high sensitive ELISA in pg/mL. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Complete Blood Count (CBC) with Differential
Evaluation of complete blood count (CBC) with differential. This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
Comprehensive Metabolic Panel (CMP)
Evaluation of comprehensive metabolic panel (CMP). This will be based on standard of care and additional lab draws for the purpose of the study will not be done.
Time frame: up to 14 days or until hospital discharge
7-Point Ordinal Scale of Clinical Status
Clinical status based on: 1. Death 2. Hospitalized, on invasive mechanical ventilation or extracorporeal membrane oxygenation (ECMO) 3. Hospitalized, on non-invasive ventilation or high-flow oxygen devices 4. Hospitalized, requiring low-flow supplemental oxygen 5. Hospitalized, not requiring supplemental oxygen, but requiring ongoing medical care (related or not related to Covid-19) 6. Hospitalized, not requiring supplemental oxygen or ongoing medical care (other than that specified in the protocol for remdesivir administration) 7. Not hospitalized
Time frame: up to 14 days or until hospital discharge
Modified Borg Dyspnea Scale (MBS)
Dyspnea based on: 0 - Nothing at all 0.5 - Very, very slight (just noticeable) 1. \- Very slight 2. \- Slight 3. \- Moderate 4. \- Somewhat severe 5. \- Severe 7 - Very severe 8 9 - Very, very severe (almost maximal) 10 - Maximal
Time frame: up to 14 days or until hospital discharge
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.