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临床试验/NCT05462938
NCT05462938已完成不适用

Comparative Study of Propofol Versus Dexmedetomidine for Conscious Sedation During Transcatheter Aortic Valve Implantation

University of Ioannina2 个研究点 分布在 1 个国家目标入组 65 人开始时间: 2021年11月11日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
不适用
状态
已完成
入组人数
65
试验地点
2
主要终点
Change of serum creatinine from baseline

研究概览

简要总结

Aortic valve stenosis is the heart valve disease with the highest prevalence among the elderly, and may lead to heart failure. Until recently, the only definitive treatment was surgical replacement (SAVR). However, the increased risk associated with the surgical procedure excluded patients with multiple co-morbidities. As the population is aging and more and more patients may present with aortic stenosis, the need of a less invasive approach has emerged. Transcatheter Aortic Valve Replacement (TAVR) offered an alternative therapy for these high risk patients. This new method has seen worldwide acceptance, has been proven very beneficial for these patients, and therefore its indications have been expanded to intermediate risk patients, as well. Until recently, general anesthesia was the primary anesthetic technique for TAVR, but conscious sedation or monitored anesthesia care (MAC) is gaining more and more popularity lately. Our knowledge regarding the comparison between general anesthesia and MAC in TAVR procedures is derived mainly from observational studies and few randomized trials. MAC seems to be associated with less inotropic drug usage, shorter procedural times, shorter intensive care unit (ICU) and hospital length of stay. However, according to published data, there were no differences in 30-day mortality and complications between these two techniques.

Even less are known about the most suitable anesthetic agent for MAC during TAVR. Many drugs have been used, with propofol and dexmedetomidine being the most popular. However, there are only few comparative studies and their results are not conclusive.

This study compares MAC under propofol and MAC under dexmedetomidine for TAVR in order to examine which method of conscious sedation comes with more beneficial postoperative outcomes for the patients.

详细描述

Aortic valve stenosis is the most common heart valve disease among the elderly, and eventually may lead to heart failure. Its surgical replacement (SAVR) was the only definitive treatment, but this operation is considered to be of increased risk for morbidity and mortality. Also, there is a growing number of elderly with severe co-morbidities, who are considered as high risk patients, that cannot undergo such an operation. Transcatheter Aortic Valve Replacement (TAVR) offered an alternative method of treatment for these patients. Furthermore, its indications were expanded to intermediate risk patients due to its advantages over SAVR.

At first, general anesthesia was the most popular anesthetic method for TAVR. However, conscious sedation and Monitored Anesthesia Care (MAC) have emerged as advantageous alternatives, in terms of inotropic drug usage, procedural times, intensive care unit (ICU) and hospital length of stay. However, few data exist about the anesthetic agents that are most suitable for TAVR under MAC, with propofol and dexmedetomidine being the most popular of them.

This is a prospective comparative study of propofol versus dexmedetomidine used for MAC in TAVR procedures. The patients will be randomly allocated into two groups and will be sedated by continuous infusion of either propofol or dexmedetomidine during the TAVR procedure. These two groups will be assessed for the overall quality of the sedation method, the clinical outcomes, the adverse events and the duration of hospitalization. At the preoperative evaluation, detailed patients' medical history will be taken, their comorbidities, physique, heart echocardiography measurements, level of frailty, renal function and neurocognitive level will be assessed and recorded and, finally, signed consent will be obtained.

During the procedure, the depth of sedation will be monitored with the use of Patient State Index (PSI) and the fluctuation of arterial pressure, heart rate, and oxygen saturation, the administration of vasoactive agents and fluids, apnea episodes and diuresis will be also recorded. By the end of the procedure, the volume and type of contrast agent used, the type of the implanted valve and the duration of both the sedation and the operation will be documented. Throughout their hospitalization, adverse events, renal function and neurocognitive level will be recorded, along with the occurrence of postoperative delirium. After patients' discharge, their duration of hospitalization, both in cardiac intensive care unit and cardiology clinic will be recorded. Follow up of the patients will be completed after thirty days. All-cause mortality will be assessed at this point and there will be a detailed recording of any adverse events and/or re-hospitalization along with long-term assessment of renal and cognitive function.

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
Single (Participant)

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

  • Patients scheduled for TAVR

排除标准

  • Emergency operation
  • Pre-existing neurocognitive dysfunction (Mini Mental State Examination score <23)
  • Inability to cooparate - communicate
  • End Stage Renal Disease
  • Allergy to any of the administrated drugs
  • No consent

研究组 & 干预措施

Propofol group

Active Comparator

Continuous infusion of propofol

干预措施: Continuous infusion of propofol (Drug)

Dexmedetomidine group

Active Comparator

Continuous infusion of dexmedetomidine

干预措施: Continuous infusion of dexmedetomidine (Drug)

结局指标

主要结局

Change of serum creatinine from baseline

时间窗: Up to 30 days

Assessment of renal function by serial measurements of serum creatinine (mg/dL) at four different time points (at baseline, at 24 hours, at 48 hours and at 30 days postoperatively).

Change of serum cystatin C from baseline

时间窗: Up to 30 days

Assessment of renal function by serial measurements of serum cystatin C (mg/l) at four different time points (at baseline, at 24 hours, at 48 hours and at 30 days postoperatively).

Change of glomerular filtration rate (GFR) from baseline using the Cockcoft-Gault equation

时间窗: Up to 30 days

Assessment of renal function by serial calculations of GFR (ml/min) at four different time points (at baseline, at 24 hours, at 48 hours and at 30 days postoperatively) using the Cockcoft-Gault equation.

Change of glomerular filtration rate (GFR) from baseline using the MDRD equation

时间窗: Up to 30 days

Assessment of renal function by serial calculations of GFR (ml/min) at four different time points (at baseline, at 24 hours, at 48 hours and at 30 days postoperatively) using the MDMR equation.

Postoperative dellirium

时间窗: 48 hours

Recording of postoperative delirium using the Confusion Assessment Method (CAM) score.

Change of blood urea nitrogen (BUN) from baseline

时间窗: Up to 30 days

Assessment of renal function by serial measurements of BUN (mg/dL) at four different time points (at baseline, at 24 hours, at 48 hours and at 30 days postoperatively).

次要结局

  • Neurocognitive level(Up to 48 hours)
  • Vasoactive and inotropic agents(Intraoperatively)
  • Stroke(Up to 30 days)
  • Myocardial infraction(Up to 30 days)
  • Death(Up to 30 days)
  • Acute heart failure(Up to 30 days)
  • Life threatening arrythmias(Up to 30 days)
  • Rehospitalization(Up to 30 days)
  • Pain intensity(Up to 48 hours)
  • Headache(Up to 48 hours)
  • Nausea/vomiting(Up to 48 hours)
  • Pruritus(Up to 48 hours)
  • Hypoxemia(Up to 48 hours)
  • Duration of sedation(Intraoperatively)
  • Procedural time(Intraoperatively)
  • Rapid pacing time(Intraoperatively)
  • ICU length of stay(Postoperatively and up to 30 days)
  • Length of stay(Postoperatively and up to 30 days)
  • Patient satisfaction(24 hours)
  • Cardiologist satisfaction(24 hours)
  • Awareness(Up to 30 days)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Agathi Karakosta

Assistant Professor of Anaesthesiology

University of Ioannina

研究点 (2)

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