Cerebral Autoregulation and Severe Coronavirus Disease 19 [CA-COVID]: a Single-center Physiological Study
试验速览
- 阶段
- 不适用
- 状态
- 终止
- 发起方
- 入组人数
- 7
- 试验地点
- 2
- 主要终点
- Cerebral autoregulation
研究概览
简要总结
This study aims to assess cerebral autoregulation by near-infrared spectroscopy (NIRS) in patients with severe coronavirus disease 19 (COVID-19). Results on COVID-19 participants will be compared with prior results of patients with septic shock and cardiac arrest, who participated in NCT03649633 and NCT02790788, respectively.
详细描述
Background and Rationale:
Septic encephalopathy is a serious complication of sepsis / septic shock. In postmortem, human brain samples, two forms of neuraxonal injury have been described, namely, scattered ischemic lesions and diffuse injury. Prior evidence suggests that cerebral autoregulation is impaired in patients with septic shock, and this may render the central nervous system more vulnerable to direct ischemic damage, especially during episodes of hypotension. Recent observational data suggest that impaired cerebral autoregulation is associated with death within 3 months in patients with septic shock. Near-infrared spectroscopy (NIRS) constitutes an established method of noninvasive assessment of cerebral autoregulation and also provides the capability of semiquantitative assessment of regional cerebral blood flow. Severe coronavirus disease (COVID-19) is characterized by hypoxemia due to pneumonia, thromboembolic events that often affect the cerebral and pulmonary vascular network, vasodilatory shock and multiorgan failure. Pathophysiological mechanisms have features in common with those of septic shock and include "cytokine storm", diffuse vascular endothelial involvement, micro- and macro-vascular thrombosis and dysregulation of micro-circulation and vascular tone. In the present study, the following 3 hypotheses will be tested: 1. Cerebral autoregulation is likely to be severely impaired or even abolished in patients with COVID-19 who require admission to an Intensive Care Unit (ICU). In addition, the correlation between the NIRS Tissue Oxygenation Index and the mean arterial pressure may be stronger in COVID-19 compared to septic shock and comparable to that determined after cardiac arrest. 2. Cerebral autoregulation is likely to be associated with known COVID-19 severity markers such as lymphopenia and elevated C-reactive protein (CRP), ferritin, delta dimers (D-dimers) and lactate dehydrogenase (LDH) 3. The early (ie on ICU days 1 and 3) absence of cerebral autoregulation is likely to be associated with residual neurological deficits.
METHODS:
NIRS monitoring will be performed for approximately 90 minutes at 2 mean blood pressure levels (MAP, i.e. 65-70 mmHg and 95-100 mmHg) within 12-48 hours and 60-84 hours after admission to the ICU for severe COVID-19 infection. Autoregulation will be assessed using Tissue Oxygenation Index values and mean arterial pressure (MAP) values in a regression analysis and will be considered sufficient if the relative Pearson correlation coefficient is less than 0.3 Cerebral blood flow will be assessed by blood flow index (BFI) determination after intravenous infusion of 5 mg indocyanine.
ICU Protocol: All COVID-19 patients participating in this study will be treated in a standardized manner that includes: An intermediate dose of Enoxaparin, e.g. 4000 units x 2 subcutaneously 2. Treatment with remdesivir and dexamethasone 3. Up to 2 broad-spectrum antibiotics to treat possibly co-existing bacterial respiratory tract infection 4. A conservative fluid management strategy 5. A protective ventilation strategy in a semirecumbent position 5. Anesthesia with Midazolam, Propofol and Remifentanil 7. Enteral nutrition that will start within 24 hours after admission to the ICU, 8. Permissive hyperglycemia (blood glucose 150-200 mg / dL).
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Diagnostic
- 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
- 否
入选标准
- •Admission to ICU and endotracheal intubation/mechanical ventilation for severe COVID-19 infection
排除标准
- •Age <18 years
- •Pregnancy
- •Patients with a terminal underlying disease who are unlikely to survive until discharge from the hospital
- •Patients with acquired immunodeficiency and ("pre-COVID") lymphocyte Cluster Differentiation 4+ count <50 / μL
- •Patients with COVID-19 who have been transferred from another hospital
- •Patients with a history of allergic reaction
- •Use of prone position to facilitate mechanical ventilation
- •Absence of signed informed consent from a first degree relative
结局指标
主要结局
Cerebral autoregulation
时间窗: Days 1-4 of ICU admission
The tissue oxygenation index of the frontal cortex will be determined (at a rate of 180 measurements / min) while increasing MAP from a minimum of 65-75 mmHg to a maximum of 90-100 mmHg by changing the vasopressor infusion rate. Cooncurrent changes in MAP will also be recorded. Subsequently, linear regression between MAP and the Tissue Oxygenation Index will be performed. A Pearson correlation coefficient of \>0.3 will be considered as "absence" of autoregulation of the cerebral vasculature.
Cerebral blood flow
时间窗: Days 1-4 of ICU admission
Cerebral blood flow at MAP 65-75 mmHg and MAP 90-100 mmHg by determination of the blood flow index.
次要结局
- Neurologic failure free days(Days 1-60 after ICU admission)
- Ventilator free days(Days 1-60 after ICU admission)
- Serum Cytokines(Days 1-7 after ICU admission)
- Survival to hospital discharge and neurological outcome(Days 1-60 after ICU admission)
研究者
Spyros D. Mentzelopoulos
Professor of Intensive Care Medicine, National and Kapodistrian University of Athens Medical School
University of Athens
