Heparin-Free Extracorporeal Life Support Using Tethered Liquid Perfluorocarbon: A Feasibility and Efficacy Study

Coagulation management is the leading challenge during extracorporeal life support (ECLS) due to shear stress and foreign-surface-induced coagulation disturbance during circulation. A nonadhesive, liquid-infused coating called tethered liquid perfluorocarbon (TLP) was developed to prevent adhesion o...

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Published inASAIO journal (1992) Vol. 66; no. 7; p. 809
Main Authors Roberts, Teryn R, Harea, George T, Singha, Priyadarshini, Sieck, Kyle N, Beely, Brendan M, Wendorff, Daniel S, Choi, Jae Hyek, Ande, Sreedevi, Handa, Hitesh, Batchinsky, Andriy I
Format Journal Article
LanguageEnglish
Published United States 01.07.2020
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Abstract Coagulation management is the leading challenge during extracorporeal life support (ECLS) due to shear stress and foreign-surface-induced coagulation disturbance during circulation. A nonadhesive, liquid-infused coating called tethered liquid perfluorocarbon (TLP) was developed to prevent adhesion of blood on medical materials. We investigated the novel application of TLP to commercial ECLS circuits compared with standard heparin-coated circuits in vivo in anesthetized swine for 6 hours veno-venous ECLS (1 L/min blood flow) without systemic anticoagulation (n = 3/group). We hypothesized that TLP coating permits heparin-free circulation without untoward effects while reducing thrombus deposition compared with controls. Vital signs, respiration, gas transfer, coagulation, and histology were assessed. Scanning electron microscopy (SEM), elemental mapping, and digital imaging were used to assess thrombus deposition after circulation. There were no group differences in vitals, gas exchange, coagulation, and histology. In both groups, ECLS enabled a decrease in minute volume and end-tidal CO2, with concomitant increase in pH (p < 0.05). Scanning electron microscopy and digital imaging revealed significant thrombus on heparin-coated membranes, which was reduced or absent on TLP-coated materials. Tethered liquid perfluorocarbon permitted heparin-free ECLS without altering device performance and prevented thrombus deposition versus immobilized heparin. Pending multiday in vivo testing, TLP is a promising biomaterial solution to eliminate anticoagulation requirements during ECLS.
AbstractList Coagulation management is the leading challenge during extracorporeal life support (ECLS) due to shear stress and foreign-surface-induced coagulation disturbance during circulation. A nonadhesive, liquid-infused coating called tethered liquid perfluorocarbon (TLP) was developed to prevent adhesion of blood on medical materials. We investigated the novel application of TLP to commercial ECLS circuits compared with standard heparin-coated circuits in vivo in anesthetized swine for 6 hours veno-venous ECLS (1 L/min blood flow) without systemic anticoagulation (n = 3/group). We hypothesized that TLP coating permits heparin-free circulation without untoward effects while reducing thrombus deposition compared with controls. Vital signs, respiration, gas transfer, coagulation, and histology were assessed. Scanning electron microscopy (SEM), elemental mapping, and digital imaging were used to assess thrombus deposition after circulation. There were no group differences in vitals, gas exchange, coagulation, and histology. In both groups, ECLS enabled a decrease in minute volume and end-tidal CO2, with concomitant increase in pH (p < 0.05). Scanning electron microscopy and digital imaging revealed significant thrombus on heparin-coated membranes, which was reduced or absent on TLP-coated materials. Tethered liquid perfluorocarbon permitted heparin-free ECLS without altering device performance and prevented thrombus deposition versus immobilized heparin. Pending multiday in vivo testing, TLP is a promising biomaterial solution to eliminate anticoagulation requirements during ECLS.
Author Harea, George T
Batchinsky, Andriy I
Sieck, Kyle N
Wendorff, Daniel S
Choi, Jae Hyek
Beely, Brendan M
Singha, Priyadarshini
Ande, Sreedevi
Roberts, Teryn R
Handa, Hitesh
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  surname: Singha
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  surname: Sieck
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  organization: College of Engineering, University of Georgia, Athens, Georgia
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  givenname: Andriy I
  surname: Batchinsky
  fullname: Batchinsky, Andriy I
  organization: From the The Geneva Foundation, Tacoma, Washington
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Snippet Coagulation management is the leading challenge during extracorporeal life support (ECLS) due to shear stress and foreign-surface-induced coagulation...
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StartPage 809
SubjectTerms Animals
Anticoagulants - pharmacology
Blood Coagulation - drug effects
Catheters, Indwelling
Extracorporeal Membrane Oxygenation - adverse effects
Extracorporeal Membrane Oxygenation - instrumentation
Extracorporeal Membrane Oxygenation - methods
Feasibility Studies
Fluorocarbons - pharmacology
Hemodynamics - drug effects
Swine
Thrombosis - etiology
Thrombosis - prevention & control
Title Heparin-Free Extracorporeal Life Support Using Tethered Liquid Perfluorocarbon: A Feasibility and Efficacy Study
URI https://www.ncbi.nlm.nih.gov/pubmed/31453831
Volume 66
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