Seventy-two dog kidneys were stored under hypothermia as described by Collins and Sacks between 24 and 72 hr and then transplanted. The immediate function of the kidneys was measured by p-aminohippuric acid and inulin clearances. Twenty-four hr proved to be the maximum safe preservation time with both methods. The immediate function of the kidneys stored under hypothermia could not be improved by the addition of furosemide to the flushing solution. These results were compared with those gained by mechanical perfusion of the organ. Kidney function after 72 hr of hypothermic mechanical perfusion was significantly better than after 24 hr of hypothermic storage.
Fifty dog kidneys had hypothermic perfusion for 12 to 72 hours and then were transplanted. Prior to perfusion the kidneys were subjected to 15, 30, 45, and 60 minutes of warm ischemia. Fifteen minutes of warm ischemia was well tolerated (successful 72 hour preservation), but after 30 minutes successful preservation could be achieved for 24 hours only. Enzyme release and lactate formation were related to the prolongation of warm ischemia, and the highly significant concentration differences of these substances, between well functioning kidneys and those with small or no function, indicated the viability of the organ.
Wie lang ist die maximal mögliche, sichere Konservierungszeit bei den verschiedenen Verfahren und wie ist die Nierenfunktion unmittelbar nach Transplantation?
72 dog kidneys were stored under hypothermia as described by COLLINS and SACKS between 24 and 72 hrs and then transplanted. The immediate function of the kidneys was measured by PAH and inulin clearances. 24 hrs proved to be the maximum safe preservation time with both methods. The immediate function of the kidneys stored under hypothermia could not be improved by the addition of furosemide to the flushing solution. These results were compared with those gained by mechanical perfusion of the organ: kidney function after 72 hrs of hypothermic mechanical perfusion was significantly better than after 24 hrs of hypothermic storage.
50 dog kidneys were mechanically perfused under hypothermia for between 12 and 72 h and then transplanted. Before perfusion the kidneys were subjected to 15,30,45 and 60 min of warm ischaemia: 15 min of warm ischaemia were well tolerated (successful 72-h preservation), but after 30 min preservation was successful for only 24 h. Enzyme release and lactate formation depended on the duration of warm ischaemia. Furthermore, these perfusate concentrations indicated the viability of the organ (highly significant differences between well functioning kidneys and those with little or no function.