Steroid Treatment as Anti-inflammatory and Neuroprotective Agent Following Out-of-Hospital Cardiac Arrest. A Randomized Trial
试验速览
- 阶段
- 2 期
- 状态
- 已完成
- 发起方
- 入组人数
- 158
- 试验地点
- 2
- 主要终点
- Concentration of IL-6
研究概览
简要总结
Comatose patients resuscitated from Out-of-Hospital Cardiac Arrest (OHCA) often develop a complicated systemic inflammatory response and have a poor prognosis with neurological damage being the most common cause of death. This study will investigate the anti-inflammatory and neuroprotective effect of early treatment with the glucocorticoid methylprednisolone measured by interleukin-6 and neuron-specific enolase levels in resuscitated comatose OHCA-patients.
详细描述
BACKGROUND:
Each year approximately 5400 individuals suffer from Out-of-Hospital Cardiac Arrest (OHCA) in Denmark and despite an improved prognosis 30-day mortality is around 90%. For OHCA patients resuscitated successfully and admitted to an Intensive Care Unit (ICU) the 30-day mortality remains higher than 50% due to a complicated systemic response, referred to as the Post Cardiac Arrest Syndrome (PCAS). PCAS consists of four interacting components: 1) ischemic/reperfusion brain injury, 2) myocardial dysfunction, 3) a systemic inflammatory response and 4) persistent stress from the triggering cause of the cardiac arrest, e.g. acute myocardial infarction. PCAS progresses during the first 1-2 days following resuscitated cardiac arrest, and the treatment aims to reduce neurologic injury by cooling the patient to 33-36° C, circulatory support with vasopressors, inotropics or mechanical devices as well as identification and treatment of reversible causes to the cardiac arrest, e.g. acute revascularization of an AMI.
Several studies have shown that the systemic inflammatory response is associated with a high risk of poor outcome following OHCA. Inflammatory markers associated with poor outcome include interleukin (IL) 6, high sensitivity C-reactive protein (hsCRP), leucocytes, IL-1b, IL-10, IL-13, tumor necrosis factor alpha (TNF-alpha) and procalcitonin. Despite of this, there is no specific treatment that addresses this complicated and life-threatening systemic response, and guidelines remain inconclusive in this field.
Anoxic irreversible brain injury remains the leading cause of death following resuscitated OHCA. The complex mechanism is one of the components in the PCAS and is thought to develop due to neuron apoptosis and reperfusion/ischemic injury. Further, the biomarker neuron-specific enolase (NSE) is correlated to neuron damage in the blood stream and has a strong predictive value for poor outcome following OHCA. Inhibiting the causes of the systemic inflammatory response and thereby potentially the brain injury in the very early stages following resuscitation from OHCA may therefore be key to optimizing post-cardiac arrest care.
Following resuscitated OHCA, the function of the adrenal gland is compromised due to global ischemia and reduced levels of the hormone steroid, glucocorticoid, are produced. Glucocorticoid has an important role in several physiologic processes including an anti-inflammatory systemic response. As a result, resuscitated cardiac arrest patients are affected by a severe inflammatory response, while the natural defense mechanism of the body to modulate inflammation is suppressed. Systemic treatment with steroids serves as an anti-inflammatory mediator and counteracts acute microcirculation injury and free radical formation, resulting in diminished vasodilation and reduction of edema, e.g. brain edema. Two small studies have shown signs of improved survival and neurologic outcome among patients who was given injections with glucocorticoids after in-hospital cardiac arrest. The incidence of adverse events was not higher in patients receiving glucocorticoids. Long-term treatment with glucocorticoids is associated with a series of side effects, whereas short-term treatment only has a few side effects. Systemic treatment with glucocorticoids could therefore be an important and safe factor in the treatment of resuscitated cardiac arrest patients that could potentially improve survival and neurological outcome.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)
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
- •Age ≥18 years
- •OHCA of presumed cardiac cause
- •Unconsciousness (GCS ≤8) upon pre-hospital randomization
- •Sustained ROSC for at least 5 minutes
- •Randomization and start of study medicine infusion within 30 minutes of sustained ROSC.
排除标准
- •Advanced life support termination-of-resuscitation exclusion criteria
- •Asystole as primary ECG rhythm
- •Women of childbearing capacity
- •Known therapy limitation
- •Known allergy to methylprednisolone
- •Known pre-arrest modified Rankin Scale (mRS) score of 4-5
- •Temperature upon randomization <30° C
- •>30 minutes to sustained ROSC.
研究组 & 干预措施
Methylprednisolone
A five minutes bolus infusion of 250 mg (4 mL) methylprednisolone to inhibit inflammatory and neurological damage following resuscitated out-of-hospital cardiac arrest. The infusion of methylprednisolone will be given following five minutes of sustainable ROSC in the prehospital setting.
干预措施: Methylprednisolone (Drug)
Isotonic saline
A bolus infusion of 4 mL isotonic saline (NaCl 0.9%).
干预措施: Isotonic saline (Drug)
结局指标
主要结局
Concentration of IL-6
时间窗: Daily measurements from admission to 72 hours after admission
Interleukin 6 (ng/L)
Concentration of NSE
时间窗: Daily measurements from admission to 72 hours after admission
Neuron-specific-enolase (ng/L)
次要结局
- Markers of inflammation, biomarkers(Daily measurements the first three days following admission)
- Markers of inflammation, cell count(Daily measurements the first three days following admission)
- Marker of the coagulation system, biomarker(Plasma fibrinogen the first three days from admission)
- Marker of the coagulation system, functional analysis(Thromboelastography at admission and at 48 hours)
- Markers of kidney and hepatic injury(Daily measurements the first three days following admission)
- Hemodynamics, Swan-Ganz catheter(Daily Swan-Ganz catheter measurements the first five days from admission)
- Hemodynamics, arterial blood gasses (Lactate)(Arterial blood gasses bihourly the first 36 hours)
- Hemodynamics, arterial blood gasses(Arterial blood gasses bihourly the first 36 hours)
- Neuroprotection, biomarkers(Biomarkers the first three days from admission)
- Cardiac protection, biomarkers(Biomarkers the first three days from admission)
- Clinical endpoint, survival(180 days following discharge)
- Clinical endpoint, neurological outcome by mRS score(After five days of admission and at 30- and 180- days following discharge)
- Safety, adverse events(From admission till 7 days following admission)
研究者
Christian Hassager
Professor, MD, DMSc, FESC
Rigshospitalet, Denmark
