Nova Patents
IL310657A

Ex vivo organ care system

Abstract

This record has no abstract on file.

IL310657A, drawing sheet 1
Sheet 1 of 157

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

50 claims: 6 independent, 44 dependent

  1. 1
    A perfusion circuit comprising:a pump configured to pump a perfusion fluid through the perfUsion circuit;an oxygenator;a hepatic artery interface configured to provide the perfusion fluid to a hepatic artery of the ex-vivo liver;a portal vein interface configured to provide the perfusion fluid to a portal vein of the exvivo liver;a clamp adapted to be positioned between the pump and the portal vein interface, the clamp configured to be usable to control a pressure of the perfusion fluid provided to the hepatic artery;a solution pump configured to provide a maintenance solution to the perfusion fluid;an inferior vena cava interface in fluid communication with an inferior vena cava of the ex-vivo liver;and a reservoir configured to receive the perfusion fluid from the inferior vena cava of the exvivo liver and store a volume of the perfusion fluid.
  2. 8
    An organ care system comprising the perfusion circuit of any of claims 1-7.
  3. 9
    A system for perfusing an ex-vivo liver, the system comprising:a pump configured to pump a perfusion fluid through a perfusion circuit, the pump in fluid communication with a hepatic artery interface and a portal vein interface;a controller configured to cause the system to: provide, via the pump and the hepatic artery interface, the perfusion fluid to a hepatic artery of the ex-vivo liver;and provide, via the pump and the portal vein interface, the perfusion fluid to a portal vein of the ex-vivo liver;an oxygenator;a clamp adapted to be positioned between the pump and the portal vein interface, the clamp configured to be usable to control a pressure of the perfusion fluid provided to the hepatic artery;a heater configured to maintain a temperature of the perfusion fluid;a solution pump configured to provide a maintenance solution to the perfusion fluid;an inferior vena cava interface in fluid communication with an inferior vena cava of the ex-vivo liver;and a reservoir configured to receive the perfusion fluid from the inferior vena cava of the exvivo liver and store a volume of the perfusion fluid.
  4. 19
    A system for preserving an ex-vivo liver, the system comprising:a single-use module comprising: a pump interface assembly configured to translate a pumping from a pump to the perfusion fluid;a hepatic artery interface configured to provide the perfusion fluid to a hepatic artery of the ex-vivo liver;a portal vein interface configured to provide the perfusion fluid to a portal vein of the ex-vivo liver;and an organ chamber configured to hold the ex-vivo liver, wherein the organ chamber comprises: a housing;a support surface suspended within the organ chamber;and a bile container configured to collect bile produced by the ex-vivo liver;and a multiple-use module comprising: the pump;a solution pump configured to provide a maintenance solution to the perfusion circuit;and a clamp adapted to be positioned between the pump and the portal vein interface, the clamp configured to be usable to control a pressure of the perfusion fluid provided to the hepatic artery.
  5. 28
    A system for perfusing an ex-vivo liver, the system comprising:a pump configured to pump a perfusion fluid through a perfusion circuit, the pump in fluid communication with a hepatic artery interface and a portal vein interface;a clamp adapted to be positioned between the pump and the portal vein interface, the clamp configured to be usable to control a pressure of the perfusion fluid provided to the hepatic artery of the ex-vivo liver;a controller configured to cause the system to: provide, via the pump and the hepatic artery interface, the perfusion fluid to a hepatic artery of the ex-vivo liver;provide, via the pump and the portal vein interface, the perfusion fluid to a portal vein of the ex-vivo liver;and receive a temperature signal from a temperature sensor;and a heating subsystem configured to maintain a temperature of the perfusion fluid, wherein the heating subsystem comprises: a heating assembly comprising a heater in communication with the perfusion fluid;the temperature sensor configured to measure the temperature of the perfusion fluid;and a driver configured to convert the temperature signal to a heat drive signal, wherein the heater is configured to heat the perfusion fluid in response to the heat drive signal.
  6. 31
    The system of claim 31, wherein the at least two signals correspond to the temperature of the perfusion fluid in the heating assembly.
  7. 41
    A system for perfusing an ex-vivo liver, the system comprising:a pump configured to pump a perfusion fluid, the pump in fluid communication with a hepatic artery interface and a portal vein interface;a controller configured to cause the system to: provide, via the pump and the hepatic artery interface, the perfusion fluid to a hepatic artery of the ex-vivo liver;and provide, via the pump and the portal vein interface, the perfusion fluid to a portal vein of the ex-vivo liver;and a clamp adapted to be positioned between the pump and the portal vein interface, the clamp configured to be usable to control a pressure of the perfusion fluid provided to the hepatic artery.