跳至主要内容
临床试验/NCT04398004
NCT04398004已完成2 期

Anti-inflammatory Clarithromycin to Improve SARS-CoV-2 (COVID-19) Infection Early: The ACHIEVE Open-label Non-randomized Clinical Trial

Hellenic Institute for the Study of Sepsis9 个研究点 分布在 1 个国家目标入组 90 人开始时间: 2020年5月6日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
2 期
状态
已完成
入组人数
90
试验地点
9
主要终点
Clinical outcome negative for two parameters(hospital admission/disease progression)

研究概览

简要总结

Recent information appearing from different countries suggest that treatment of Coronavirus disease 2019 (COVID-19) with hydroxychloroquine or with a combination of hydroxychloroquine and azithromycin has either an indifferent effect on viral replication or substantial cardiotoxicity. This is a clinical trial aiming to prove that addition of oral clarithromycin to treatment regimen of COVID-19 is associated with early clinical improvement and attenuation of the high inflammatory burden of the host. The study will not comprise a placebo-comparator group since this is considered inappropriate in an era of a pandemic with substantial global mortality.

详细描述

Humanity is experiencing since December 2019 a new pandemic by the novel SARS Coronavirus-19 (SARS-CoV-2). As of March 25 2020 418,099 documented case were reported worldwide; 18,608 patients died. The analysis of the clinical characteristics of these patients showed that the natural course of this disease, known with the acronym COVID-19, is several times unpredictable. Most patients who develop pneumonia do not have worrying symptoms although their chest X-ray or chest computed tomography may be positive for diffuse infiltrates. Suddenly a certain proportion of these patients deteriorate into severe respiratory failure; this usually takes place between the 5th and the 10th day of illness and arrives without any preceding symptom. Published evidence suggests that this is due to the sudden arrival of an acute pro-inflammatory reaction of the host. With this in mind, it is reasonable to make the assumption than the early treatment with an agent that can efficiently modulate the host response and prevent sudden hyper-inflammatory reaction may prevent the development of severe respiratory failure (SRF).

The new guidelines published by the American Thoracic Society in 2019 clearly suggest that the management of community-acquired pneumonia (CAP) should rely on the combination of β-lactam antibiotics with macrolides. This position statement is pretty much influenced by the retrospective analyses of observational studies and of their meta-analyses in showing that the addition of a macrolide improves survival from severe CAP. Since patients leave in an era of antimicrobial resistance, it is profound that survival benefit is linked to the anti-inflammatory properties of the macrolide class of antibiotics. These properties are not only limited to the attenuation of the production of pro-inflammatory mediators but they involve the enhancement of pathogen clearance.

With this in mind, a small open-label trial among patients with COVID-19 showed better viral containment as assessed by the persistence of the virus in respiratory secretions, when patients were treated with a combination of azithromycin and hydroxychloroquine. However, the clinical benefit coming from this study has not yet been published. Contrary to azithromycin, clinical evidence suggests that clarithromycin is associated with substantial clinical benefit among critically ill patients. Two randomized clinical studies in a total of 800 patients with sepsis have shown 28-day survival benefit among the most severe cases. One of these studies enrolled patients with sepsis and ventilator-associated pneumonia; among 100 patients allocated to placebo treatment 40% survived until day 90; this was 57% among clarithromycin-treated patients.

In recent publication coming from the research network of the Hellenic Sepsis Study Group (HSSG) 130 patients with CAP were treated with a combination of β-lactam and clarithromycin. These patients were compared with 130 patients treated with a combination of β-lactam and azithromycin. Groups were well-matched for severity and comorbidities; 28-day mortality was 20.8% and 33.8% respectively.

Based on the above analysis, it seems likely that treatment of patients with COVID-19 with oral clarithromycin will substantially increase their anti-inflammatory properties and decrease the chances for development of severe respiratory failure.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Prevention
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age ≥18 years
  • Male of female gender
  • Written informed consent provided by the patients or by a first-degree relative in case of patients unable to consent
  • In case of women, unwillingness to remain pregnant during the study period achieved either by their partner using condom or by themselves using oral contraceptives.
  • Confirmed infection by SARS-CoV-2 virus
  • Infection of the upper respiratory tract or of the lower respiratory tract

排除标准

  • Age below 18 years
  • Denial of written informed consent
  • Intake of any macrolide for the current episode of infection under study
  • Intake of hydroxychloroquine or chloroquine phosphate.
  • Presence of severe respiratory failure
  • Oral or intravenous intake of corticosteroids defined as any more than 0.4mg/kg daily intake of equivalent prednisone for the last 15 days
  • Neutropenia defined as an absolute neutrophil count below 1,000/mm3
  • Presence of any contraindications for the study drugs as stated in local label information
  • QTc interval at rest electrocardiogram ≥500 msec or history of known congenital long QT syndrome
  • Pregnancy or lactation

研究组 & 干预措施

Clarithromycin arm

Experimental

Treatment will last for seven days. Every patient will receive one tablet of 500 mg of clarithromycin every 12 hours. It is explicitly stated that all other treatment is allowed with the only exclusion the parallel intake of a) any other drug of the macrolide class of antibiotics; and/or b) hydroxychloroquine or chloroquine phosphate. Drugs contraindicated with the intake of clarithromycin are also not allowed, as they are described in the local label information.

干预措施: Clarithromycin (Drug)

结局指标

主要结局

Clinical outcome negative for two parameters(hospital admission/disease progression)

时间窗: Day 1 to Day 8

This is defined on day 8 (End of Treatment - EOT). Patients with upper respiratory tract infection by SARS-CoV-2 meet the study primary endpoint if they were not admitted to hospital or their symptoms did not progress to lower respiratory tract infection. Patients who develop by day 8 severe respiratory failure do not meet the study primary endpoint.

At least 50% change of the score of respiratory symptoms from the baseline

时间窗: Day 1 to Day 8

This is defined on day 8 (EOT visit). Patients with lower respiratory tract infection by SARS-CoV-2 meet the primary endpoint if they present at least 50% decrease of the score of respiratory symptoms from the baseline. This score is the sum of scoring for the symptoms of cough, dyspnea, purulent sputum expectoration and pleuritic chest pain. Patients who develop by day 8 severe respiratory failure do not meet the study primary endpoint. Score ranges from 0 (no symptoms) to 9 (worst for all symptoms).

次要结局

  • Comparison of two parameters with historical comparators from Hellenic Sepsis Study Group Database(Day 1 to Day 8)
  • Comparison of the score of respiratory symptoms with historical comparators from Hellenic Sepsis Study Group Database(Day 1 to Day 8)
  • Clinical outcome negative for two parameters(hospital admission/disease progression) on day 4(Day 4)
  • Range of hospital readmission until day 14(Day 1 to Day 14)
  • Change of function of monocytes at days 1 and 8(Day 1 to Day 8)
  • Change of function of Th1 cells at days 1 and 8(Day 1 to Day 8)
  • Change of function of Th2 cells at days 1 and 8(Day 1 to Day 8)
  • Change of serum interleukin-6 (IL-6) cytokine levels between days 1 and 8(Day 1 to day 8)
  • Change of serum interleukin-8 (IL-8) cytokine levels between days 1 and 8(Day 1 to day 8)
  • Change of serum human beta defensin-2 (hBD-2) between days 1 and 8(Day 1 to day 8)
  • At least 50% change of the score of respiratory symptoms from the baseline on day 4(Day 4)
  • Range of development of severe respiratory failure(Day 1 to Day 14)
  • Change of viral load in respiratory secretions from baseline on day 8(Day 1 to Day 8)
  • Change of cytokine levels interleukin-6 (IL-6) at the rhinopharynx between days 1,4 and 8(Day 1 to day 8)
  • Change of interleukin-1 (IL-1) cytokine levels at the rhinopharynx between days 1,4 and 8(Day 1 to day 8)
  • Change of the IL-10/TNFα ratio between days 1 and 8(Day 1 to Day 8)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (9)

Loading locations...

相似试验