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Acetylsalicylic Acid in the Prevention of Severe SARS-CoV2 Pneumonia in Hospitalised Patients With COVID-19

Multicenter Randomized, Double-blind, Placebo-controlled, Clinical Trial of Acetylsalicylic Acid in the Prevention of Severe SARS-CoV2 Pneumonia in Hospitalised Patients (Asperum)

Status
UNKNOWN
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04808895
Acronym
Asperum
Enrollment
204
Registered
2021-03-22
Start date
2021-04-01
Completion date
2021-08-31
Last updated
2021-03-22

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

Conditions

COVID-19, Thrombosis Pulmonary

Keywords

Acetylsalicylic acid, Heparin, Pulmonary thrombosis, COVID-19, Platelets, Inflammation, Respiratoty failure

Brief summary

Inflammatory diseases favour the onset of venous thromboembolic events in hospitalized patients. Thromboprophylaxis with a fixed dose of heparin/low molecular weight heparin (LMWH) is recommended if concomitant inflammatory disease. In severe acute respiratory syndrome coronavirus 2 (SARS-CoV2) pneumonia an inflammation-dependent thrombotic process occurs and platelet activation may promote thrombosis and amplify inflammation, as indicated by previous experimental evidence, and the similarities with atherothrombosis and thrombotic microangiopathies. Antiplatelet agents represent the cornerstone in the prevention and treatment of atherosclerotic arterial thromboembolism, with limited efficacy in the context of venous thromboembolism. The use of acetylsalicylic acid may improve inflammation and respiratory function in humans as indicated by the results of observational studies. There are no validated protocols for thrombosis prevention in Covid-19. There is scientific rationale to consider acetylsalicylic acid for the prevention of thrombosis in the pulmonary circulation and attenuation of inflammation. This is supported by numerous demonstrations of the anti-inflammatory activity of antiplatelet agents and the evidence of improvement in respiratory function both in human and experimental pathology. The hypothesis underlying the present study project is that in Covid-19 platelet activation occurs through an inflammation-dependent mechanism and that early antithrombotic prophylaxis in non-critical patients could reduce the incidence of pulmonary thrombosis and respiratory and multi-organ failure improving clinical outcome in patients with SARS-CoV2 pneumonia. The prevention of thrombogenic platelet activity with acetylsalicylic acid could be superior to fixed dose enoxaparin alone. The proposed treatment is feasible in all coronavirus disease 2019 (COVID-19) patients, regardless of the treatment regimen (antivirals, anti-inflammatory drugs), except for specific contraindications. To this aim, the investigators a randomised, placebo-controlled, double blind, parallel arms study to investigate the potential protection of acetylsalicylic acid towards the progression of lung failure in patients admitted to a medical ward for SARS-CoV-2 pneumonia. A 15-day treatment period is considered. Primary endpoint is the occurrence of one of the following events: admission to an intensive care unit, requirement of mechanical ventilation, PaO2/FiO2 less than 150 mm Hg.

Detailed description

Severe respiratory failure and multi-organ damage in coronavirus disease 2019 (COVID-19) patients have not a unitary pathophysiological interpretation. There is evidence of an association between the clinical entity of the disease and its severity with the plasma levels of D-dimer and inflammatory indexes. On the basis of retrospective investigations there is accumulating evidence of alterations in the haemostatic parameters that with increased D-dimer values, increased coagulation time and platelets may be predictors of worse prognosis. A systematic survey conducted in the coronavirus disease 2019 (COVID-19) Centre of the AOUI Verona, as part of the Database and Study on the role of platelets in the clinical manifestations of COVID-19 (Ethics Committee CESC Verona and Rovigo approved) revealed by means of computerized tomography (CT) angiograph in patients with a persistent respiratory deficit and very high D-dimer values mainly multiple, bilateral vascular occlusions involving the segmental and subsegmental branches of the pulmonary arteries. This finding is suggestive of a frequent and clinically relevant thrombotic process in a appreciable number (approximately 20%) of patients with COVID-19 pneumonia hospitalized in medical wards. It is a well-established clinical notion that acute and chronic inflammatory diseases may favour the onset of venous thromboembolic events in hospitalized patients. Thromboprophylaxis with a fixed dose of heparin/low molecular weight heparin (LMWH) is recommended for medical patient with concomitant neoplasia or inflammatory disease. It is conceivable that under conditions, such as SARS-CoV2 pneumonia, an inflammation-dependent thrombotic process takes place and that platelet activation may play a pathogenic role both in the thrombotic process and in the amplification of the inflammatory process. In fact, there is experimental evidence that platelet activation in inflammation would lead to accelerated coagulation and a thrombotic vascular occlusion, with similarities to what is widely documented in atherothrombosis and thrombotic microangiopathies. The administration of antiplatelet drugs represents the cornerstone for the prevention and treatment of arterial thromboembolism in atherosclerotic disease and has also shown some limited efficacy also in the context of venous and arterial thromboembolism associated with atrial fibrillation. The use of acetylsalicylic acid may improve inflammation and respiratory function in humans as indicated by the results of observational studies. There are currently no validated protocols for thrombosis prevention in the field of pulmonary viral diseases, in particular COVID-19. There is scientific rationale to consider acetylsalicylic acid for the prevention of thrombosis in the pulmonary circulation and attenuation of inflammation. This is supported by numerous demonstrations of the anti-inflammatory activity of antiplatelet agents and the evidence of improvement in respiratory function both in human and experimental pathology. A retrospective observational study showed that patients with COVID-19 pneumonia treated with acetyl salicylic acid had a lower incidence of progression to respiratory failure requiring mechanical ventilation, without evidence of increased incidence of bleeding complications. The hypothesis underlying the present study project is that in Covid-19 platelet activation occurs via an inflammation-dependent mechanism and that early antithrombotic prophylaxis in non-critical patients, like those admitted to medical wards, could reduce the incidence of pulmonary thrombosis as well as respiratory and multi-organ failure, contributing to improve clinical outcome of the patients with pneumonia caused by SARS-CoV2 viruses. The anticoagulant activity exerted by a fixed dose of enoxaparin (4000U/day), recommended in patients with the described clinical features, according to a note of the Italian Medicines Agency (AIFA), together with the prevention of thrombogenic activity of platelets by acetylsalicylic acid could prevent aggravation of COVID-19 patients to a greater extent than enoxaparin alone given at the same dose. Early initiation of treatment should mitigate the presentation of pneumonia. The proposed treatment is feasible in all coronavirus disease 2019 (COVID-19) patients, regardless of the treatment regimen (antivirals, anti-inflammatory drugs), except for specific contraindications. To this aim, it was designed a randomised, placebo-controlled, double blind, parallel arms study to investigate the potential protection of acetylsalicylic acid towards the progression of lung failure in patients admitted to a medical ward for SARS-CoV-2 pneumonia. A 15-day treatment period is considered. Primary endpoint is the occurrence of one of the following events: admission to an intensive care unit, requirement of mechanical ventilation, PaO2/FiO2 less than 150 mm Hg.

Interventions

DRUGAcetylsalicylic acid

administration of one tablet daily for 15 days. On the first day a loading dose of 300 mg will be administered

DRUGPlacebo

administration of one tablet daily for 15 days. On the first day 3 tablets will be administered

Sponsors

Azienda Ospedaliera Universitaria Integrata Verona
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Masking description

Use of placebo tablets of the same shape, colour of the investigational drug. Identical time and route of administration.

Intervention model description

Experimental phase 3 drug trial, randomized 1:1, double-blind, multicentre in patients treated with acetylsalicylic acid vs placebo.

Eligibility

Sex/Gender
ALL
Age
18 Years to 99 Years
Healthy volunteers
No

Inclusion criteria

* in a medical area ward dedicated to Covid-19 patients * Positivity by RT\_PCR of the search for genetic material of SARS-CoV2 * Covid-19 pneumonia with moderate clinical picture based on clinical parameters * O2 saturation\> 94% with maximum FiO2 32% * Respiratory acts \<30 / minute * age \>18 years * Consent to participate in the study

Exclusion criteria

* Any Antithrombotic treatment including acetylsalicylic acid * Active Bacterial infection * Active or in maintenance therapy neoplasm * Inability to provide consent * Any contraindication to the acetylsalicylic acid use * Active peptic disease * Active Major pathological bleeding * Recent (\<30 days) major bleeding * Recent intracranial bleeding * Need to use therapeutic doses of oral anticoagulants or heparins * Need to use combination antiplatelet drugs for clinical indication * Hypersensitivity to acetylsalicylic acid or to any of the excipients * Hypersensitivity to non-steroidal anti-inflammatory drugs (NSAIDs) * Severe hepatic insufficiency (Child-Pugh class C). * Severe heart failure (NYHA class 3-4) * Platelet count less than 150000 / mmc * Haemostasis alteration (INR\> 1.5, APTT\> 1.5) * Plasma fibrinogen \<100 mg / dL * Blood pressure \>160/100 mmHg * Concomitant treatment with serotonin reuptake inhibitors * Participation in another pharmacological clinical trial

Design outcomes

Primary

MeasureTime frameDescription
Prevention of clinical worseningday 15Transfer to ICU
Prevention of lung function worseningday 15PaO2/FiO2 lower than 150 mm Hg
Prevention of deathday 15Death for any cause

Secondary

MeasureTime frameDescription
Change in blood cell countDaily for 15 daysblood cell count
Change in blood oxygenDaily for 15 daysOxygen administration when O2 saturation \<92%
Change in clinical markers of lung functionDaily for 15 daysPaO2/FiO2; progression of disease at Rx
Change in clinical markers of liver damageDaily for 15 daysmarkers of organ damage (ALT)
Change in clinical markers of hearth damageDaily for 15 daysmarkers of organ damage (troponin)
Change in clinical markers of renal damageDaily for 15 daysmarkers of organ damage (creatinine)
Effects on blood cell countBaseline, day 1, 2, 7 and 15.Inflammatory markers (blood cell count)
Effects on CRPBaseline, day 1, 2, 7 and 15.Inflammatory markers (CRP)
Effects on D-dimerBaseline, day 1, 2, 7 and 15.Inflammatory markers (D-dimer)
Effects on interleukin-1Baseline, day 1, 2, 7 and 15.Inflammatory markers ( IL-1)
Effects on interleukin-6Baseline, day 1, 2, 7 and 15.Inflammatory markers (IL-6)
Effects on fibrinogenBaseline, day 1, 2, 7 and 15.Inflammatory markers (fibrinogen)
Effects on plasma albuminBaseline, day 1, 2, 7 and 15.Inflammatory markers (albumin)
Effects on protrombin timeBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (prothrombin time)
Effects on activated partial thromboplastin timeBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (activated partial thromboplastin time)
Effects on serum thromboxaneBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets ( serum TxB2)
Effects on thromboxane metaboliteBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (urinary 11-dehydro TXB2)
Effects on platelet countBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (platelet count)
Effects on reticulated plateletsBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (reticulated platelets)
Effects on platelet/leukocyte conjugatesBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (platelets/leukocytes conjugates)
Effects on plasma P-selectinBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (plasma P-selectin)
Effects on P-selectin expressionBaseline, day 1, 2, 7 and 15.platelet and hemostatic markets (platelet expression of P-selectin)
Clincal mixed outcome of lung function, ROX scoreDays 7 and 15ROX score
Clincal mixed outcome of lung function, SOfa scoreDays 7 and 15SOfa score
Clincal mixed outcome of lung function, Apache indexDays 7 and 15Apache index
Clincal mixed outcome of lung function, need to perform CT scan due to worsening of blood gasesDays 7 and 15need to perform CT scan due to worsening of blood gases
Clincal mixed outcome of lung function, need to transfer the patient to ICUDays 7 and 15need to transfer the patient to ICU
Clincal mixed outcome of lung function, need for mechanical ventilationDays 7 and 15need for mechanical ventilation
Clincal mixed outcome of lung function, days without need of mechanical ventilationDays 7 and 15days without need of mechanical ventilation
Clincal mixed outcome of lung function, venous thromboembolismDays 7 and 15venous thromboembolism
Clincal mixed outcome of lung function, pulmonary thrombosisDays 7 and 15pulmonary thrombosis
Clincal mixed outcome of lung function, cardiovascular eventDays 7 and 15cardiovascular event
Clincal mixed outcome of lung function, deathDays 7 and 15death
Clincal mixed outcome of lung function, multiorgan failureDays 7 and 15multiorgan failure
Clincal mixed outcome of lung function, discharge due to resolution of signs and symptomsDays 7 and 15discharge due to resolution of signs and symptoms
Safety outcomes, Major or clinically relevant bleedingdays 1,2,7 and 15Major or clinically relevant bleeding
Safety outcomes, total bleeding based on ISTH bleeding scoredays 1,2,7 and 15total bleeding based on ISTH bleeding score
Safety outcomes, minor bleeding according to ISTH BSdays 1,2,7 and 15minor bleeding according to ISTH BS
Change in body temperatureDaily for 15 daysBody temperature
Safety outcomes, decrease of al least 2 g/dl Hb levelsdays 1,2,7 and 15decrease of al least 2 g/dl Hb levels
Safety outcomes, need for blood transfusiondays 1,2,7 and 15need for blood transfusion
Safety outcomes, alterations of clinical or laboratory parametersdays 1,2,7 and 15alterations of clinical or laboratory parameters
Safety outcomes, decrease in platelet count below 100x109/Ldays 1,2,7 and 15decrease in platelet count below 100x109/L
Change in oxygen saturationDaily for 15 daysOxygen saturation
Change in blood gasesDaily for 15 daysblood gas analysis

Countries

Italy

Contacts

Primary ContactPietro Minuz, Professor
pietro.minuz@univr.it+39 045-8124414
Backup ContactMarco Cattaneo, Professor
marco.cattaneo@unimi.it+390250323095

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026