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Идёт набор NCT07258875

Effect of VExUS Ultrasound Protocol (Venous Excess Ultrasound) on Perioperative Fluid Management, on the Incidence of Postoperative Pulmonary Complications and Postoperative Acute Kidney Injury in Patients Undergoing Thoracic Surgery

Без фазы С лечением Thoracic Surgery With One-lung Ventilation VExUS Fluid Management Acute Kidney Injury

Ориентир для пациента и семьи

Простыми словами

Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.

Что изучают
В протоколе указаны: Venous Excess Ultrasound, Standard of Care (SOC).
Кому может быть актуально
Состояния в реестре: Thoracic Surgery With One-lung Ventilation, VExUS, Fluid Management, Acute Kidney Injury. Базовые параметры: от 18 лет · Все.
Что важно проверить
Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
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Греция
Следующий шаг
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Обзор

This study aims to investigate the effect of a VExUS ultrasound guided protocol of perioperative fluid management within a goal-directed therapy framework, on postoperative respiratory complications, and the occurrence of acute kidney injury (AKI) in patients undergoing thoracic surgery.

Подробное описание

In thoracic surgery, intraoperative fluid management presents a challenge for anesthesiologists, as patients are at high risk of developing interstitial and alveolar edema of the lungs. A history of pulmonary disease, previous chemotherapy or radiation therapy in the area, one-lung ventilation, surgical manipulation, and ischemia-reperfusion injury can all damage the respiratory epithelium's glycocalyx, the alveolar epithelium, and surfactant, ultimately leading to pulmonary injury. These factors, combined with liberal perioperative fluid management, increase the risk of acute respiratory distress syndrome (ARDS), atelectasis, pneumonia, and ultimately postoperative mortality. Traditionally, a restrictive fluid management strategy is employed intraoperatively, with crystalloid administration at a rate of 1-2 ml/kg/h, ensuring that the perioperative fluid balance does not exceed 1500 ml. This restrictive strategy may increase the risk of hypovolemia, which can lead to tissue hypoperfusion, target organ dysfunction, and acute kidney injury. Within the Enhanced Recovery After Surgery (ERAS) protocols, goal-directed therapy (GDT) for fluid management in thoracic surgery is discussed but not explicitly recommended. Recommendations include avoiding overly restrictive or completely liberal fluid strategies, maintaining euvolemia, and preventing tissue hypoperfusion with balanced use of inotropic agents and fluid administration.

Pulmonary injury is the leading cause of death following thoracic surgery. Pre-existing respiratory disease, surgical manipulation, lung parenchyma resection, and the detrimental effects of one-lung ventilation increase the risk of postoperative respiratory complications. Although overhydration and ventilation with high tidal volumes have been replaced by a restrictive fluid strategy and the application of protective mechanical ventilation, it appears that all factors involved in ventilator-induced lung injury (VILI) also play a harmful role in one-lung ventilation. High strain on the ventilated lung, oxidative stress, surgical trauma, recruitment maneuvers, biological trauma, atelectatic trauma, and ischemia-reperfusion injury are the pathophysiological mechanisms leading to postoperative acute respiratory failure and, in 2-5% of cases, to ARDS.

Postoperative acute kidney injury (AKI) represents 18-47% of in-hospital AKI and is associated with prolonged hospitalization and high morbidity and mortality. Recently, the implementation of new AKI classifications (RIFLE, AKIN, KDIGO) has facilitated its early recognition for immediate preventive measures. Additionally, the detection of two early urinary biomarkers of kidney stress, the tissue inhibitor of metalloproteinases-2 (TIMP-2) and the insulin-like growth factor-binding protein 7 (IGFBP7), has contributed to this. Postoperatively, an increase in serum creatinine by up to 0.5 mg/dL from baseline has been associated with a threefold increase in mortality following cardiac surgery. Potential pathophysiological mechanisms of postoperative AKI include ischemia, inflammation, and toxins. However, in thoracic surgeries, both the hypovolemia of a restrictive fluid administration strategy and overhydration and venous congestion can equally lead to acute kidney injury postoperatively.

The VExUS protocol is a standardized point-of-care ultrasound examination that includes measurements of the inferior vena cava (IVC) diameter, combined with Doppler analysis of waveforms in the hepatic vein, portal vein, and renal veins. From this analysis, the presence of venous congestion-classified as mild or severe-or its absence is determined. A high VExUS score (grade 3) has been strongly associated with the occurrence of acute kidney injury in patients undergoing cardiac surgery and has more recently been linked to elevated right atrial pressure (RAP ≥ 12 mmHg). The protocol includes the following classification:

Grade 0: IVC \< 2 cm Grade 1: IVC ≥ 2 cm, with normal or mildly abnormal waveforms in the hepatic, portal, and renal veins (mild congestion) Grade 2: IVC ≥ 2 cm, with severely altered waveforms in at least one vein (moderate congestion) Grade 3: IVC ≥ 2 cm, with severely altered waveforms in multiple veins (severe congestion).

A single-center clinical study conducted in the Anesthesiology Clinic of the University General Hospital of Heraklion.

Parallel design in two groups.Preoperative assessment, fasting, and premedication according to the routine of the department:

* Discontinuation of fluid intake 2 hours before surgery * cessation of food intake 6 hours preoperatively * discontinuation on the day of surgery of ACE inhibitors, angiotensin receptor blockers, thiazide diuretics, and loop diuretics.

Upon entering the operating room, patients will be connected standard ASA monitors: 5 lead ECG, pulse oximetry (SpO2), non-invasive blood pressure measurement. Under local anaesthesia an arterial catheter will be placed for invasive blood pressure measurement and blood gas sampling, along with at least two venous catheters of 16-20 G. Anesthesia and postoperative analgesia management will depend solely on the discretion of the responsible anesthesiologist. After anesthesia induction and double-lumen endotracheal tube placement, patients will be connected to the anesthesia machine, recruitment maneuvers will be performed with PEEP titration, and they will be mechanically ventilated applying the principles of protective mechanical ventilation. The correct placement of the endotracheal tube will be confirmed with fiberoptic bronchoscopy immediately after placement. A urinary catheter will be placed for hourly urine measurement, along with a thermometer.

Intraoperatively, the total administered fluids, hourly urine output, type and dose of vasopressor medications, and blood pressure (SAP, DAP, MAP) will be recorded every 15 minutes (unless a significant change occurs), along with arterial blood gases and lactate.

Protective Mechanical Ventilation of One Lung:

Ventilated lung:

Tidal volume (Vt): 4-5 ml/kg ideal body weight, Appropriate PEEP of 5-15 cmH2O, possible repeat of recruitment maneuver Plateau pressure - PEEP: up to 15 cmH2O, Management of respiratory rate (RR) aiming for permitted mild hypercapnia (PaCO2 = 40-60 mmHg), Modification of the I ratio to avoid air trapping and the emergence of PEEPi, Titration of FiO2 to achieve SpO2 = 88-92%, Protection against hypoxic pulmonary vasoconstriction by avoiding vasodilators, hypoventilation, alkalosis, hypothermia, and if inhaled anesthetics are used, maintaining MAC \< 1, Mechanical ventilation model: Volume Control- Auto Flow on the Perseus A500 and Atlan A350 machines from Drager available in the Anesthesia Clinic.

Non-ventilated lung with SpO2 \< 88%:

Recruitment maneuvers with the use of PEEP if possible, Use of CPAP, FiO2 = 100% and cessation of one lung ventilation.

Control Group:

Intraoperatively patients of the control group will be administered isotonic crystalloids (Lactated Ringer's, Plasma-Lyte) at a rate of 3 mL/kg/h.

VExUS-guided Group:

VExUS Evaluation. The VExUS evaluation will be performed pre- and immediately post-intubation before one-lung ventilation initiation. A trained anesthesiologist (will evaluate the patient according to the VExUS protocol, measuring the IVC diameter and performing Doppler analysis of the hepatic, portal, and renal veins. A VExUS score will be assigned as outlined in the section above.

Ultrasound monitoring will be performed according to the VExUS protocol before positioning the patient in the lateral decubitus position. In patients with VExUS grade 0, a bolus of 250-500 mL (approximately 3 mL/kg) will be administered, followed by the infusion of crystalloids at a rate of 3 mL/kg/h. The inferior vena cava (IVC) diameter will be measured three times: once prior to anesthesia induction, once immediately after intubation, and once before patient emergence from anesthesia. In patients with VExUS grade 1, no bolus will be given, and only a fluid infusion at 3 mL/kg/h will be administered. In patients with VExUS grades 2 and 3, 10 mg of furosemide will be administered intravenously, followed by crystalloids infusion at a rate of 2 mL/kg/h.

In both groups, blood losses will be replaced with a 5% albumin solution at a 1:1 ratio. Transfusion will be administered to maintain hemoglobin levels at 9 mg/dL. Both groups will follow the same multimodal anesthesia-analgesia protocol, with restricted opioid use in accordance with the departmental routine.

Intraoperative hypotension (systolic arterial pressure \< 90 mmHg or a decrease \> 20% from baseline) will be managed with titrated norepinephrine infusion.

Post-Anesthesia Care Unit (PACU)

Control Group:

Fluid administration will continue at a rate of 3 mL/kg/h as per standard practice.

VExUS-guided Group:

VExUS ultrasound will be repeated postoperatively. In patients with VExUS grade 0, a bolus of 250-500 mL (approximately 3 mL/kg) will be administered, followed by the infusion of crystalloids at a rate of 3 mL/kg/h. In patients with grades 1 to 3, 10 mg of intravenous furosemide will be administered, followed by a fluid infusion at 3 mL/kg/h and reassessment.

Patients will be monitored daily for the occurrence of postoperative respiratory complications as defined by the European Society of Anaesthesiology. Preoperative blood gas values (PaO2, PaCO2) will be measured as baseline, and postoperative blood gases will be collected on the 1st and 3rd postoperative days in the PACU. Oxygenation will be assessed using the PaO2/FiO2 ratio, and lactate levels will be measured concurrently.

Additionally, for each patient, estimated glomerular filtration rate (eGFR) using serum creatinine, cystatin C or both will be calculated preoperatively and on the 1st and 3rd postoperative days in PACU. To assess acute kidney injury (AKI), serum creatinine and cystatin C will be measured on the 1st and 3rd postoperative days, and AKI diagnosis and classification will follow KDIGO (Kidney Disease Improving Global Outcomes) criteria.

The following kidney injury biomarkers will also be measured:

Serum cystatin C, Total urine protein and albumin, Urine beta-2 microglobulin, Urine creatinine. Kidney stress biomarkers TIMP-2 and IGFBP7 in urine, as described above, will be measured immediately postoperatively in the PACU.

These biomarkers will also be measured in the PACU and on the 1st and 3rd postoperative days.

Вмешательства

  • Диагностический тест Venous Excess Ultrasound
    The VExUS protocol is a standardized point-of-care ultrasound examination that includes measurements of the inferior vena cava (IVC) diameter, combined with Doppler analysis of waveforms in the hepatic vein, portal vein, and renal veins. From this analysis, the presence of venous congestion-classified as mild or severe-or its absence is determined. A high VExUS score (grade 3) has been strongly associated with the occurrence of acute kidney injury in patients undergoing cardiac surgery and has m
  • Другое Standard of Care (SOC)
    Intraoperatively patients of the control group will be administered isotonic crystalloids (Lactated Ringer's, Plasma-Lyte) at a rate of 3 mL/kg/h.Fluid administration will continue at a rate of 3 mL/kg/h as per standard practice in the PACU.

Первичные конечные точки

  • Kidney function-estimated glomerular filtration rate preoperatively [Срок оценки: preoperatively]
  • Kidney function-estimated glomerular filtration rate in the PACU [Срок оценки: in the PACU]
  • Kidney function- estimated glomerular filtration rate on postoperative day 1 [Срок оценки: postoperative day 1]
  • Kidney function-estimated glomerular filtration rate on postoperative day 3 [Срок оценки: on postoperative day 3]
  • Urine output intraoperatively [Срок оценки: From anesthesia induction, until the end of surgery]
  • Urinary output postoperatively in the PACU [Срок оценки: during the PACU stay]
  • Renal stress biomarkers TIMP-2,IGFBP-7 [Срок оценки: postoperatively in the PACU]
  • Serum Creatinine preoperatively [Срок оценки: preoperatively]
  • Serum creatinine in the PACU [Срок оценки: during the PACU stay]
  • Serum creatinine on postoperative day 1 [Срок оценки: postoperative day 1]
Вторичные конечные точки (6)
  • long term kidney impairment [Срок оценки: from enrollment to day 30 approximately]
  • Noradrenaline equivalent dose [Срок оценки: from the surgery onset to the discharge from the post anesthesia care unit]
  • Length of stay - Hospital Discharge [Срок оценки: From date of randomization (day before surgery) until the date of the discharge from the hospital]
  • intraoperative hypotension [Срок оценки: Baseline: 5 minutes prior to anaesthesia induction. Intraoperative Hypotension: From anesthesia induction, until the end of surgery]
  • hemodynamic stability: pulse contour analysis monitoring [Срок оценки: Baseline: 5 minutes prior to anaesthesia induction.From anesthesia induction, until the end of surgery]
  • RBCs tranfusion, FFP transfusion, PLT tranfusion intraoperatively [Срок оценки: From anesthesia induction, until the end of surgery]

Критерии участия

Критерии включения

  • Adults >18 years undergoing video assisted thoracic surgery/ lobectomy requiring one-lung ventilation.

Критерии исключения

  • Refusal to participate.
  • Pneumonectomy.
  • Young athletes (risk of physiologically large IVC >2 cm).
  • Moderate-severe tricuspid regurgitation, moderate to severe pulmonary hypertension
  • Heart failure with reduced ejection fraction, EF<35%
  • Portal hypertension, portal vein thrombosis, or liver cirrhosis.
  • Stage 4 or end-stage chronic kidney disease (eGFR <30 mL/min/1.73 m² or dialysis).
  • Transfusion with more than 2 packed red blood cells unit perioperatively (intraoperatively, in the PACU, in the ward)

Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.

Здоровые добровольцы: Да

Дизайн исследования

Распределение
Рандомизированное
Модель
Параллельные группы
Маскирование
Открытое
Основная цель
Профилактика

Центры проведения

Греция · 1 центр
  • University General Hospital of Heraklion — Heraklion

Публикации

  • Dharnidharka VR, Kwon C, Stevens G. Serum cystatin C is superior to serum creatinine as a marker of kidney function: a meta-analysis. Am J Kidney Dis. 2002 Aug;40(2):221-6. doi: 10.1053/ajkd.2002.34487. PMID 12148093
  • 13. Kidney Disease: Improving Global Outcomes (KDIGO) Acute Kidney Injury Work vexusGroup. KDIGO Clinical Practice Guideline for Acute Kidney Injury. Kidney inter., Suppl. 2012; 2: 1-138.
  • Jammer I, Wickboldt N, Sander M, Smith A, Schultz MJ, Pelosi P, Leva B, Rhodes A, Hoeft A, Walder B, Chew MS, Pearse RM; European Society of Anaesthesiology (ESA) and the European Society of Intensive Care Medicine (ESICM); European Society of Anaesthesiology; European Society of Intensive Care Medicine. Standards for definitions and use of outcome measures for clinical effectiveness research in p PMID 25058504
  • Longino A, Martin K, Leyba K, Siegel G, Gill E, Douglas IS, Burke J. Correlation between the VExUS score and right atrial pressure: a pilot prospective observational study. Crit Care. 2023 May 26;27(1):205. doi: 10.1186/s13054-023-04471-0. PMID 37237315
  • Magin JC, Wrobel JR, An X, Acton J, Doyal A, Jia S, Krakowski JC, Schoenherr J, Serrano R, Flynn D, McLean D, Grant SA. Venous Excess Ultrasound (VExUS Grading to Assess Perioperative Fluid Status for Noncardiac Surgeries: a Prospective Observational Pilot Study. POCUS J. 2023 Nov 27;8(2):223-229. doi: 10.24908/pocus.v8i2.16792. eCollection 2023. PMID 38099161
  • Beaubien-Souligny W, Rola P, Haycock K, Bouchard J, Lamarche Y, Spiegel R, Denault AY. Quantifying systemic congestion with Point-Of-Care ultrasound: development of the venous excess ultrasound grading system. Ultrasound J. 2020 Apr 9;12(1):16. doi: 10.1186/s13089-020-00163-w. PMID 32270297
  • Romagnoli S, Ricci Z. Postoperative acute kidney injury. Minerva Anestesiol. 2015 Jun;81(6):684-96. Epub 2014 Jul 24. PMID 25057935
  • Park M, Yoon S, Nam JS, Ahn HJ, Kim H, Kim HJ, Choi H, Kim HK, Blank RS, Yun SC, Lee DK, Yang M, Kim JA, Song I, Kim BR, Bahk JH, Kim J, Lee S, Choi IC, Oh YJ, Hwang W, Lim BG, Heo BY. Driving pressure-guided ventilation and postoperative pulmonary complications in thoracic surgery: a multicentre randomised clinical trial. Br J Anaesth. 2023 Jan;130(1):e106-e118. doi: 10.1016/j.bja.2022.06.037. Ep PMID 35995638

Идентификаторы

NCT: NCT07258875 · 18721

Первоисточники (государственные реестры)

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