IL201739A

Systems and methods for ex-vivo organ care and for using lactate as an indication of donor organ status

Abstract

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Term

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  4. Today

24 claims: 5 independent, 19 dependent

  1. 1
    CLAIMS:1. An organ care system for perfusing a heart comprising: a module including a chassis, an organ chamber assembly mounted to the chassis for containing the heart during perfusion and including a fluid conduit with a first interface for connecting to an aorta of the heart and a second interface for connecting to a pulmonary vein of the heart, a Lactate A sensor for sensing lactate in the fluid conduit connected to the aorta of the heart, a Lactate V sensor for sensing lactate in the fluid conduit connected to the pulmonary vein of the heart, a controller configured to calculate a Lactate V-A differential using lactate values sensed by the Lactate A sensor and the Lactate V sensor, wherein the controller is configured to repeatedly calculate the Lactate V-A differential at later points in time to measure subsequent V-A lactate differentials over time, and to correlate a change between the lactate V-A differentials over time with suitability of the heart for transplantation.
  2. 7
    A method of preserving a heart ex vivo comprising:placing a heart in a protective chamber of an organ care system, connecting the heart to a perfusion fluid circuit to perfuse fluid to the heart, and pumping a perfusion fluid to the heart, monitoring over time a lactate value of the perfusion fluid in an arterial conduit of the perfusion circuit, monitoring over time a lactate value of the perfusion fluid in a venous conduit of the perfusion circuit, repeatedly calculating a V-A lactate differential value over time using the lactate values of the perfusion fluid in the venous conduit and the lactate values of the perfusion fluid in the arterial conduit, and correlating a change between the V-A lactate differential over time with suitability of the heart for transplantation.
  3. 13
    A method of preserving a heart ex vivo comprising:placing a heart in a protective chamber of a portable organ care system, providing a perfusion fluid to the heart while the heart is in the protective chamber, flowing the perfusion fluid in a conduit circuit including the heart, monitoring over time a lactate value of the perfusion fluid provided to the heart, monitoring over time a lactate value of the perfusion fluid flowing from the heart, repeatedly calculating a lactate differential value over time using the lactate values of the fluid provided to the heart and flowing from the heart, and 93 correlating a change between the lactate differential over time with suitability of the heart for transplantation.
  4. 20
    A method for evaluating heart perfusion status ex vivo comprising:placing a heart in a protective chamber of an organ care system, pumping a perfusion fluid into the heart via a retrograde perfusion of an aorta of the heart, providing a flow of the perfusion fluid away from the heart via a right ventricle of the heart, and measuring a lactate value of the fluid leading to the aorta of the heart, measuring a lactate value of the fluid leading away from the right ventricle of the heart, repeatedly evaluating the status of the heart using the measured lactate values by calculating a differential in the lactate values of the fluid leading to the aorta and the fluid leading away from the right ventricle, determining a change in the differential over time, and 94 based on the change in the differential over time, determining a suitability of the heart for transplantation.
  5. 23
    A method for evaluating heart perfusion status ex vivo comprising:placing a heart in a protective chamber of an organ care system, pumping a perfusion fluid into the heart, providing a flow of the perfusion fluid away from the heart, and measuring a lactate value of the fluid leading to the heart, measuring a lactate value of the fluid leading away from the heart subtracting te lactate value of the fluid leading to the heart from the lactate value of the fluid leading away from the heart to determine a V-A lactate differential, repeating the subtracting step over time to generate a plurality of the V-A lactate differentials;correlating a change between the V-A lactate differential over time with the suitability of the heart for transplantation.