Esmolol to Treat the Hemodynamic Effects of Septic Shock
试验速览
- 阶段
- 2 期
- 状态
- 终止
- 入组人数
- 40
- 试验地点
- 1
- 主要终点
- Need for Vasopressor Support, Measured as Mean Norepinephrine Equivalent Dose (mcg/kg/Min), at 6hr Time Point
研究概览
简要总结
The main purpose of this study is to determine the effects of controlling the heart rate of patients with septic shock using an intravenous medication called esmolol.
详细描述
Septic shock is a leading cause of death around the world, with a mortality that often ranges 30-50% but in some locations may be even higher. Despite advances in critical care medicine over the last several decades, few therapeutic interventions have demonstrated mortality benefit in this population besides antimicrobial medications, intravenous fluids, and controlling the source of the infection; multiple agents which at one time showed promise have ultimately failed to deliver meaningful clinical benefit. As such, there is an ongoing need to identify therapeutic interventions which can modify the course of disease for these patients.
Septic shock is traditionally characterized by a hyperdynamic hemodynamic profile with a high cardiac output (CO) and low systemic vascular resistance (SVR) in association with excessive catecholamine stimulation. Tachycardia is a common finding in septic shock as an early compensatory mechanism to increase cardiac output in the setting of low SVR. Often tachycardia persists beyond the initial stages of septic shock, and has been associated with restricted diastolic ventricular filling, increased oxygen requirements, and tachycardia-induced cardiomyopathy, as well as myocardial depression, immunosuppression, and direct myocyte toxicity via calcium overload. Generally, clinical practice has been to avoid trying to control the tachycardic response for fear of worsening cardiac output and causing cardiovascular collapse. However, a recent single center randomized trial of the intravenous beta-1 adrenoreceptor antagonist esmolol demonstrated that control of heart rate to a more 'normal' range was safe, well-tolerated, and appeared beneficial, with a 30% reduction in mortality found in this trial.
While an intriguing concept with results that appear promising, further investigation among an ICU cohort in the United States is necessary before the administration of beta-blockade therapy to a patient in septic shock should be implemented in routine clinical practice. We hypothesize that the provision of esmolol to patients in vasopressor-dependent septic shock with tachycardia will lower the heart rate, thereby improving diastolic filling time and improving cardiac output, resulting in a reduction in need for vasopressor support. To test our hypothesis, we are conducting a Phase II randomized trial to determine if esmolol decreases vasopressor requirements (primary endpoint) and alters the inflammatory cascade as well as oxygen consumption in patients with septic shock (secondary endpoints).
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
- 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
- •Adult (≥ 18 years)
- •Sepsis defined as suspected or confirmed infection with at least two systemic inflammatory response syndrome (SIRS) criteria
- •Norepinephrine (minimum 0.1 mcg/kg/min) support to maintain a mean arterial pressure ≥ 65 mmHg despite appropriate volume resuscitation (as defined by the clinical team, however at least 30mL/kg intravenous fluid
- •Heart rate ≥ 95 per minute for at least 2 hours prior to enrollment
- •6-24 hours since ICU admission
排除标准
- •Intravenous β-blocker therapy prior to randomization
- •Pronounced cardiac dysfunction (i.e. cardiac index [CI] ≤ 2.2 L/min/m2)
- •Known significant valvular heart disease
- •Research-protected populations (pregnant women, prisoners, intellectually disabled)
- •Known "Do-not-resuscitate" or "do-not-intubate" order at the time of enrollment
- •Infusion of epinephrine, dopamine, dobutamine or milrinone at time of enrollment
- •Known allergy/sensitivity to esmolol or history of asthma/COPD
研究组 & 干预措施
Esmolol infusion
Esmolol infusion for 24 hours. Esmolol will be titrated to a heart rate of 80 - 94 per minute, starting at 10mcg/kg/min and subsequently increasing every 20 minutes in increments of 10 mcg/kg/min (or slower at the discretion of the team) until target is achieved. The maximum allowed dose will be 300mcg/kg/min.
Patients, irrespective of treatment group, will be managed at the discretion of the clinical team. BIDMC has internal guidelines for the management of septic shock which reflect the most recent 2012 Surviving Sepsis Campaign guidelines and are incorporated into the care of patients with septic shock in the ICUs
干预措施: Esmolol (Drug)
Standard care, Saline
Standard care (no esmolol). Patients, irrespective of treatment group, will be managed at the discretion of the clinical team. BIDMC has internal guidelines for the management of septic shock which reflect the most recent 2012 Surviving Sepsis Campaign guidelines and are incorporated into the care of patients with septic shock in the ICUs
干预措施: Saline (Other)
结局指标
主要结局
Need for Vasopressor Support, Measured as Mean Norepinephrine Equivalent Dose (mcg/kg/Min), at 6hr Time Point
时间窗: 6 hours
The primary endpoint will be mean norepinephrine equivalent dose (mcg/kg/min) at 6 hours after onset of study drug. For the vasopressor vasopressin, the dose of vasopressin was multiplied by 2.5 in order to create a norepinephrine equivalent dose. For the vasopressor phenylephrine, the dose of phenylephrine was divided by 10 in order to create a norepinephrine equivalent dose.
次要结局
- Time to Shock Reversal(Duration of hospitalization, limit 180 days)
- Oxygen Consumption (VO2)(12 and 24 hours)
- Interleukin-10(12 and 24 hours)
- TNF-alpha(12 and 24 hours)
- C-reactive Protein(12 and 24 hours)
- Overall Need for Vasopressor Support(12 and 24 hours)
- Heart Rates Between Groups(6 and 12 hours)
- Lactate(6, 12, and 24 hours)
- Interleukin-4(12 and 24 hours)
- Interleukin-6(12 and 24 hours)
研究者
Michael N. Cocchi, MD
Michael N Cocchi MD
Beth Israel Deaconess Medical Center
