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[Effect of time of vascular anastomosis and of hot and cold ischemia, on survival of cadaver renal graft].

A retrospective study was performed on our series of 240 primary cadaveric renal transplant recipients to dissect the influence of vascular anastomosis time, warm ischemia time and cold ischemia time on ultimate graft survival. 177 patients received conventional immunosuppression with Azatioprine and steroids, and 63 patients received Cyclosporine A therapy. The data was analyzed for sub-groups of ischemia time and comparisons were performed using the method of Tarone-Ware. The present study fails to demonstrate a detrimental effect of ischemic insults on graft survival. The use of Cyclosporine A in the pre and post-transplant, monitoring periodically serum cyclosporine levels and the use of renal allograft biopsy, allows the use of this agent without a high incidence of nefrotoxicity.

Adult

The role of cold ischemia in a provincial organ-sharing program in the cyclosporine era.

Prolonged cold ischemia has been associated with impaired early cadaver renal allograft function. The role of CsA in potentiating these effects is not well understood, but CsA has been implicated in promoting delayed graft function and potentiating renal ischemic injury. In order to establish whether CsA is safely tolerated by kidneys subjected to protracted cold ischemia, we examined patient and graft outcome in a series of 1081 patients receiving cadaver-kidney transplants over an 8-year period (1981-1988). All patients received a standard immunosuppressive regimen that included CsA. Overall actuarial 1-year patient and graft survival rates were 96% and 80%, respectively. Renal preservation was achieved either by pulsatile perfusion (n = 261, 24%) or simple cold storage (n = 820, 76%). Results were analyzed according to total cold ischemic time as follows: 0-23 hr (n = 512; range, 0-23.9 hr); 24-35 hr (n = 380; range, 24.0-35.9 hr); 36-47 hr (n = 161; range, 36.0-47.7 hr); greater than or equal to 48 hr (n = 28; range, 48.0-70.6 hr). These groups did not differ significantly in recipient age, sex, incidence of diabetes, number of pretransplant blood transfusions, level of presensitization, or HLA match. There were no differences in overall actuarial 1-year patient or graft survival rates, incidence of rejection, or renal function at 1 year. There was a higher incidence of impaired early graft function for kidneys preserved greater than or equal to 48 hr, but eventual graft outcome, including serum creatinine at 1 year, was unchanged. Delayed introduction of CsA resulted in improved 1-year graft survival (84.4% vs. 74.7%, P less than 0.05) compared to CsA treatment begun at the time of transplantation ("initial CsA"). This improvement was present regardless of total cold ischemia time. The incidence of permanent graft nonfunction, which has been previously reported to increase with CsA therapy, was influenced by the timing of CsA therapy (initial: 12%; delayed: 3%, P less than 0.05) but was not affected by duration of cold ischemia. Thus, safe preservation of cadaver kidneys for up to 70 h can be achieved by standard techniques even when CsA is incorporated into the immunosuppressive regimen. The most important determinants of graft survival in these patients are the timing of CsA therapy and the presence of early graft function, not the duration of renal preservation.

Blood Group Incompatibility

Alterations in the fine structure of the pig liver upon cold ischemia.

The fine structure of the pig liver was examined after 30 min of warm ischemia at 37 degrees C, after 2 h of cold ischemia at 4 degrees C and after 30 min of warm ischemia followed by a further 30 min of cold ischemia. After warm ischemia, limited mitochondrial swelling was observed in hepatocytes. After cold ischemia, alone or following warm ischemia, vesiculation and vacuolation of the hepatocyte cytoplasm and appearance of intrasinusoidal blebs deriving from hepatocytes were observed with different intensity among the animals. These findings suggest that cooling and storing the liver at 4 degrees C may lead to injury, which could negatively influence the viability of the organ, with different intensity from case to case.

Animals

Ischemic injury in liver transplantation: difference in injury sites between warm and cold ischemia in rats.

Using liver allografts with warm or cold ischemia, we evaluated functional and morphological alterations in hepatocytes, sinusoidal endothelial cells and Kupffer cells in a rat transplantation model. All recipients of allografts with either 4 hr of cold or 30 min of warm ischemia lived more than 22 days and were judged viable. On the other hand, all recipients of grafts with 6 hr of cold or 60 min of warm ischemia died within 2 days and were therefore judged to be nonviable. With these viable and nonviable allograft models, hepatocyte function was evaluated by the bile output and serum glutamic-oxaloacetic transaminase, serum glutamic-pyruvic transaminase and serum lactate dehydrogenase levels; endothelial cell function was judged by the serum hyaluronic acid level, and Kupffer cell function was measured by an intravenous colloidal carbon clearance test. Hepatocyte injury was the prominent feature in warm ischemic grafts, especially in the nonviable ones. On the other hand, serum hyaluronic acid values were significantly higher in the nonviable cold ischemic group, compared with the viable counterpart, suggesting that the functional depression of endothelial cells was predominant in cold, nonviable livers. Histological examinations coincided with the above findings. The phagocytic activity of Kupffer cells was depressed by warm or cold ischemia, whereas the number of Kupffer cells was reduced in the warm ischemia group. We conclude that in liver allografts the main site of injury in warm ischemia is the hepatocytes and suggest that cold ischemia is associated with endothelial cell damage.

Animals

Oxygen free radical scavengers and reperfusion injury in dog lung preserved in cold ischemia.

Oxygen-derived free radicals are now considered important contributors to tissue injury associated with ischemia and reperfusion. The purpose of this study was to determine the influence of oxygen free radical scavengers on reperfusion injury. The left lower lobes of 15 canine lungs were isolated, preserved, and then reperfused for 120 minutes. Three groups of lobes were studied: Group 1 (n = 5), without ischemia, group 2 (n = 5) four hours of cold ischemia in Euro-Collins solution, group 3 (n = 5) four hours cold ischemia+oxygen free radical scavenger glutathione (0.1 nmol/L) given at the moment of perfusion. Extravascular lung water (grams per gram of blood-free dry lobe weight) after reperfusion was 2.82 +/- 0.32, 5.06 +/- 0.45, 4.21 +/- 0.33 for groups 1 through 3 respectively (p less than 0.001 group 1 versus group 2, p less than 0.001 group 2 versus group 3). Lung tissue lipid peroxidation, measured as thiobarbituric acid reactive material was 125 +/- 11, 270 +/- 30, and 185 +/- 17 nmol/g dry lobe weight for groups 1, 2 and 3 respectively (p less than 0.05 group 2 versus 1 and group 3 versus group 2). The data suggest that oxygen free radical scavengers attenuate reperfusion injury.

Animals

Effect of cold ischemia time on the early outcome of human hepatic allografts preserved with UW solution.

Five hundred ninety-three cadaveric livers were used for primary liver transplantation between October 24, 1987, and May 19, 1989. The grafts were procured with a combined method, using in situ cooling with cold electrolyte solution and backtable flushing with UW solution. The mean cold-ischemia time was 12.8 (range 2.4-34.7) hr. The cases were divided into 5 groups according to the cold-ischemia time: group 1: less than 10 hr (n = 223); group 2: 10-14 hr (n = 188); group 3: 15-19 hr (n = 101); group 4: 20-24 hr (n = 52); and group 5: greater than or equal to 25 hr (n = 29). There was no difference between the 5 groups in 1-year patient survival, highest SGOT in first week after operation, and SGOT and total bilirubin during the first month after operation. However, with a logistic regression model, the retransplantation rate (P = 0.001) and primary nonfunction rate (P = 0.006) significantly rose as cold-ischemia time increased, meaning that the equivalency of patient survival was increasingly dependent on aggressive retransplantation.

Adenosine

Influence of warm and cold ischemia time on initial function and one-year survival of renal allografts.

The influence of the duration of warm and cold ischemia on initial graft function on patient survival, graft survival, and graft function one year after transplantation was assessed in 234 consecutive cadaveric renal transplants. The number of grafts with delayed function was found to increase with increasing duration of the warm and cold ischemia times. On the other hand, the duration of the ischemia times and consequently the initial function, whether immediate or delayed, did not influence the survival of graft and patient nor the function of the graft one year after transplantation.

Adult

[Experimental study of liver allograft damage during cold ischemia].

Changes on the majority of structural complexes were observed in livers that underwent the influence of the preservant and cold ischemia. Cellular architecture of a such liver is disturbed. Hepatocites are with granular and vacuolar degeneration: focal cariolyzes and piasmolyzes are present, partial destruction of cellular membrane is noticeable. The dilatation of sinusoidal spaces is very emphasized and followed by the severe loss of endothelium. These changes along with the disturbed cellular architecture represent the findings of Pelosis hepatis. It is important to emphasize the significance of changes observed on liver sinusoids and endothelium especially since their intensity is much greater than of those changes observed on parenchim. We assume that these angioarchitectural damages play an important role in the onset and development of cardiopulmonal and coagulopatic components of the postreperfusional syndrome. The fact that the postreperfusional syndrome was also observed in cases with heterotopic transplantation could support this assumption.

Animals

Hand replantation after 54 hours of cold ischemia: a case report.

A number of case reports and series have reported successful replantation after prolonged periods of ischemia. However, the acceptable range of normothermic and hypothermic ischemic storage remains controversial. There is little question that the tolerance of composite tissue for ischemia is dependent on the quantity of contained skeletal muscle. We report a successful hand replantation after 54 hours of cold ischemia. We believe that this case documents the longest anoxic period yet reported for successful hand replantation. We further believe that the functional results obtained confirm the value of hand replantation even after such a prolonged ischemic interval.

Adolescent

Tumor specimen cold ischemia time impacts molecular cancer drug target discovery.

Tumor tissue collections are used to uncover pathways associated with disease outcomes that can also serve as targets for cancer treatment, ideally by comparing the molecular properties of cancer tissues to matching normal tissues. The quality of such collections determines the value of the data and information generated from their analyses including expression and modifications of nucleic acids and proteins. These biomolecules are dysregulated upon ischemia and decompose once the living cells start to decay into inanimate matter. Therefore, ischemia time before final tissue preservation is the most important determinant of the quality of a tissue collection. Here we show the impact of ischemia time on tumor and matching adjacent normal tissue samples for mRNAs in 1664, proteins in 1818, and phosphosites in 1800 cases (tumor and matching normal samples) of four solid tumor types (CRC, HCC, LUAD, and LUSC NSCLC subtypes). In CRC, ischemia times exceeding 15 min impacted 12.5% (mRNA), 25% (protein), and 50% (phosphosites) of differentially expressed molecules in tumor versus normal tissues. This hypoxia- and decay-induced dysregulation increased with longer ischemia times and was observed across tumor types. Interestingly, the proteomics analysis revealed that specimen ischemia time above 15 min is mostly associated with a dysregulation of proteins in the immune-response pathway and less so with metabolic processes. We conclude that ischemia time is a crucial quality parameter for tissue collections used for target discovery and validation in cancer research.

Humans