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临床试验/NCT02053675
NCT02053675已完成不适用

Hemodynamic Effects of Low Doses of Arginine Vasopressin in Early Septic Shock Stage

Federal University of São Paulo1 个研究点 分布在 1 个国家目标入组 18 人开始时间: 2008年5月最近更新:
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
发起方
入组人数
18
试验地点
1
主要终点
The primary objective of this study was to evaluate the effect of vasopressin infusion in microcirculation of septic shock patients

研究概览

简要总结

Vasopressin is a vasopressor used in patients with septic shock. However, its systemic hemodynamic effects and its microcirculation effects are not completely known and understood. This study aimed to evaluate the effect of exogenous vasopressin on sublingual microcirculation using the sidestream dark field technique and to correlate it with its systemic effects. To this prospective interventional study, patients with septic shock were included during the first 48 hours of use of catecholamine vasopressors, admitted to the intensive care unit of a university hospital. Vasopressin was administered at 0.04 U / min for one hour. Systemic hemodynamic measurements were obtained immediately before and 1 hour after vasopressin. In addition, images of sublingual microcirculation were collected through sidestream dark field technology. Further analysis with specific software was done after.

详细描述

Immediately before vasopressin infusion, fluid responsiveness was evaluated by delta PP (ΔPP) with ΔPP module attached to the monitor (DX 20x20, Dixtal, São Paulo, Brazil). Continuous sedation was maintained to control spontaneous ventilatory efforts. ΔPP > 13% receive crystalloid (Ringer's lactate or normal saline 0.9%) challenges until the ΔPP were below this value. Patients in whom was not possible to measure ΔPP, received crystalloid aliquots of 500 ml until there was no increase in cardiac output greater than 10%. Vasopressors were used to maintain mean arterial pressure above 65 mmHg. The fraction of inspired oxygen was adjusted to maintain oxygen saturation between 92-94%.

Thirty minutes after initial stabilization (the pre-vasopressin), all hemodynamic and respiratory measurements were obtained (pre-vasopressin), namely mean arterial pressure (MAP), heart rate (HR), right atrial pressure (RAP) , mean pulmonary artery pressure (MPAP), occluded pulmonary artery pressure (OPAP), cardiac index (CI), stroke index (SI), systemic vascular resistance index (SVRI), pulmonary vascular resistance index (PVRI). Samples were collected for blood gas analysis and arterial and mixed venous blood lactate.

Direct analysis of the sublingual microcirculation was done at that time by videomicroscopy obtained by SDF (Microscan; MicroVision Medical, Amsterdam, Netherlands), following the protocol previously described. Briefly, after removal of secretions, the lens of SDF was placed in the sublingual space without exerting any pressure. All images were obtained by a qualified physician using the recommended techniques to ensure image quality. We obtained three sequential images of high quality stable for at least 20 seconds, of both sides of the tongue while avoiding artifacts pressure. All images were captured using a notebook and a video converter analog / digital (ADVC110, Canopus Co, San Jose, California).

After obtaining baseline data, vasopressin was infused at fixed dose of 0.04 U / min. After one hour of vasopressin(post-vasopressin), the same variables were collected. If required, the adrenergic vasopressors infusion was adjusted during the study to maintain the target MAP from 65 to 70 mmHg. If patients were receiving dobutamine, its dose was kept constant during the study procedures. If fluid replacement or adjustment of ventilatory parameters or sedation were needed during the study, the patient was excluded.

All images were subsequently analyzed using the AVA 3.0 ® software (Microvision Medical, Amsterdam, Netherlands), considering only vessels with a diameter less than 20 micrometers. A blinded investigator analyzed all the images in a random order. The microcirculatory flow index (MFI), the total vascular density (TVD), the proportion of perfused vessels (PPV), the perfused vessel density (PVD), and the heterogeneity index (HI) were calculated.

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

入选标准

  • Patients over 18 years
  • Septic shock using adrenergic vasopressors for less than 48 hours
  • Arterial catheter and pulmonary artery catheter with semi measurement of cardiac output by thermodilution (Vigilance, Edwards Lifesciences, Irvine, CA, USA) inserted
  • Signed consent declaration

排除标准

  • Acute coronary disease
  • Suspected or confirmed acute mesenteric ischemia
  • Severe hyponatremia (Na + <130 mmol / L)
  • Raynaud's phenomenon
  • Sclerodermia
  • Pregnancy
  • Technical difficulties to capture videomicroscopy with sublingual SDF

研究组 & 干预措施

Vasopressin

Other

干预措施: Vasopressin infusion (Drug)

结局指标

主要结局

The primary objective of this study was to evaluate the effect of vasopressin infusion in microcirculation of septic shock patients

时间窗: one hour after vasopressin initiation

Significant changes in microcirculatory parameters - MFI (absolute number), TVD (mm/mm2), PVD (mm/mm2), PPV (%), HI (%)

次要结局

  • The secondary objectives were to evaluate the effects of vasopressin on macrocirculation, and correlate potential microcirculatory effects related to its use, with baseline systemic circulation and microcirculation.(one hour after vasopressin initiation)

研究者

发起方
Federal University of São Paulo
申办方类型
Other
责任方
Principal Investigator
主要研究者

Flavia Ribeiro Machado

Professor

Federal University of São Paulo

研究点 (1)

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