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In This Article

  • Summary
  • Abstract
  • Introduction
  • Protocol
  • Representative Results
  • Discussion
  • Acknowledgements
  • Materials
  • References
  • Reprints and Permissions

Summary

We present a protocol for establishing a long-term awake extracorporeal membrane oxygenation (ECMO) model in sheep. Special attention is given to the management and evaluation of the coagulation system during the ECMO model.

Abstract

This study aimed to investigate the effects of long-term awake extracorporeal membrane oxygenation (ECMO) on the coagulation system in a sheep model. A total of ten healthy sheep were included in the study, with 5 sheep in each group. In the veno-arterial ECMO (V-A ECMO) group, cannulation was performed in the right carotid artery and the right external jugular vein. In the veno-venous ECMO (V-V ECMO) group, a dual-lumen catheter was utilized to insert into the right external jugular vein. After initiating ECMO, the sheep were recovered from anesthesia and remained awake for 7 days. The target activated clotting time (ACT) goal was set at 220-250 s. In both groups, the actual ACT fluctuated around 250 s with the dose of heparin gradually increasing, reaching almost 60 IU/kg/min at the end of the experiments. Moreover, the activated partial thromboplastin time (APTT) and thrombin time (TT) values were significantly higher in the V-A ECMO group compared to the V-V ECMO group, despite receiving the same doses of heparin. Although laboratory test results fluctuated within a normal and reasonable range, infarct foci in the kidneys were observed in both groups at the end of the study.

Introduction

Extracorporeal membrane oxygenation (ECMO) serves as a life-saving intervention, providing cardiopulmonary support for severely ill patients. It is classified into two primary forms: veno-arterial ECMO (V-A ECMO) and veno-venous ECMO (V-V ECMO)1,2. V-A ECMO is employed for patients experiencing circulatory failure, whereas V-V ECMO is preferred for those with respiratory failure but without severe cardiovascular dysfunction3,4.

Thrombosis and bleeding are prevalent complications in ECMO patients5. The....

Protocol

This experimental protocol received approval from the Institutional Animal Care and Use Committee of Fuwai Hospital (no. 0101-2-20-HX(X)). All procedures adhered to the guidelines outlined in the National Institutes of Health's Guide for the Use and Care of Laboratory Animals. The experiment took place at the Beijing Key Laboratory of Pre-clinical Research and Evaluation for Cardiovascular Implant Materials, Animal Experimental Center of Fuwai Hospital (registration no. CNAS LA0009). Healthy sheep that met the requir.......

Representative Results

A total of ten sheep were evaluated during the entire experiment, with five sheep in each group (Table 1). Following the initiation of ECMO, all sheep recovered from anesthesia and remained awake for 7 days. In both groups, ECMO flow exceeded 1.8 L/min. In the V-V ECMO group, the flow fluctuated around 1.8 L/min, while in the V-A ECMO group, it ranged from 2.3 L/min to 1.8 L/min (Figure 1A). The vital signs of each sheep remained stable. The blood lactic acid level was below.......

Discussion

This study outlines the procedure for establishing robust, long-term survival models for V-V and V-A ECMO in sheep. All surviving animals exhibited stable vital signs, and no severe bleeding or coagulation events occurred. ECMO flow and oxygenation performance remained stable, with no major pathological injuries observed. The study provides detailed information on anticoagulation management.

Anticoagulation management plays a crucial role in ECMO perioperative care. Initially, based on previou.......

Acknowledgements

None.

....

Materials

NameCompanyCatalog NumberComments
ACT analyzerHemochron, USAJr Signature
Anaesthesia machineDrager, Germany Primus
Arterial catheterEdwards Lifescience, USA18-FrProvide return access into an artery for VA-EMCO
Blood chemistry analyzerIDEXX Laboratories, USA Catalyst One
Blood gas analyzerAbbott, USAAbbott i-STAT1
Centrifugal pumpJiangsu STMed Technologies, ChinaSTM CP-24 I
Centrifugal pump drive and consoleJiangsu STMed Technologies, ChinaOASSIST STM001
Coagulation test analyzerBeijing Succeeder Technology, ChinaSF-8050
Complete blood count analyzerSiemens Healthcare, GermanyADVIA 2120i
Dual-channel micro-injection pumpZhejiang Smith Medical Instrument, ChinaWZS-50F6
Dual-lumen catheterMAQUET Avalon Elite, Germany23-FrProvide return and drainage accesses into the right external jugular vein for VV-ECMO
FlurbiprofenBeijing Tide Pharmaceutical Co., Ltd., China5ml: 50mg
GraphPad softwareGraphPad Software, USAGraphPad Prism v9.0Statistical analysis
Heparin Shanghai Shangyao No.1 Biochemical Pharmaceutical Co., Ltd., China2ml: 12500IU
High-frequency electrosurgicalCOVIDIEN, USAForce F
Multi-parameter medical monitorPhilips, NetherlandsMP60
Oxygenator kitMedos, GermanyHilite 7000LT
Oxygenator kitMaquet, GermanyBE-PLS 2050
Propofol  Xi’an Libang Pharmaceutical Co. Ltd, China20ml: 0.2g
Single-lumen central venous catheterTuoRen, China18FrInsert in left carotid artery  for hemodynamic monitoring and blood sampling.
Small Tail Han sheepJinyutongfeng Commercial and Trade Co. Ltd, Chinaweight: 50-65 kg, age: 12-24 months
Triple-lumen central venous catheterTuoRen, China7FrInsert in left jugular vein for intravenous fluid administration, drug injection, and blood sampling.
Ultrasound machineGE, USAE9
Venous catheterEdwards Lifescience, USA24-FrProvide the drainage access into a vein for VA-ECMO
VentilatorDrager, Germany Savina

References

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Extracorporeal Membrane OxygenationECMOCoagulation SystemSheep ModelVeno arterial ECMOVeno venous ECMOActivated Clotting TimeACTActivated Partial Thromboplastin TimeAPTTThrombin TimeTTHeparinKidney Infarction

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