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1.
Am J Transplant ; 17(8): 2155-2164, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28276658

ABSTRACT

Donation after circulatory death (DCD) liver transplantation (LT) reportedly yields inferior survival and increased complication rates compared with donation after brain death (DBD). We compare 100 consecutive DCD LT using a protocol that includes thrombolytic therapy (late DCD group) to an historical DCD group (early DCD group n = 38) and a cohort of DBD LT recipients (DBD group n = 435). Late DCD LT recipients had better 1- and 3-year graft survival rates than early DCD LT recipients (92% vs. 76.3%, p = 0.03 and 91.4% vs. 73.7%, p = 0.01). Late DCD graft survival rates were comparable to those of the DBD group (92% vs. 93.3%, p = 0.24 and 91.4% vs. 88.2%, p = 0.62). Re-transplantation occurred in 18.4% versus 1% for the early and late DCD groups, respectively (p = 0.001). Patient survival was similar in all three groups. Ischemic-type biliary lesions (ITBL) occurred in 5%, 3%, and 0.2% for early DCD, late DCD, and DBD groups, respectively, but unlike in the early DCD group, in the late DCD group ITBL was endoscopically managed and resolved in each case. Using a protocol that includes a thrombolytic therapy, DCD LT yielded patient and graft survival rates comparable to DBD LT.


Subject(s)
Bile Duct Diseases/etiology , Donor Selection , Liver Transplantation/adverse effects , Thrombolytic Therapy , Tissue Donors , Tissue and Organ Procurement/methods , Vascular Diseases/etiology , Adult , Aged , Death , Female , Follow-Up Studies , Graft Rejection/etiology , Graft Survival , Humans , Male , Middle Aged , Postoperative Complications , Prognosis , Retrospective Studies , Risk Factors , Survival Rate , Young Adult
3.
Transplant Proc ; 36(2): 263-4, 2004 Mar.
Article in English | MEDLINE | ID: mdl-15050128

ABSTRACT

AIM: To analyze the role of P-selectin in intestinal ischemia and reperfusion injury (IRI) using murine models. METHODS: A model of warm IRI wherein the SMA was occluded for 100 minutes was undertaken in the following groups (10 mice per group): Group 1 (control) wild-type (WT) C57BL6, no treatment; Group 2: 0.4 mg/kg of r-PSGL1-lg 10 minutes before and after clamping; Group 3: PSGL KO mice. Survival was assessed at 7 days; the intestine was assayed for histopathology, apoptosis, myeloperoxidase (MPO), IL1, and TNF. A second model of cold IRI followed by intestinal transplantation (IT) was undertaken in the following groups (two mice per group): Group A WT --> WT: Group B PSGL KO --> WT (1-hour ischemia); Group C: PSGL KO --> WT (2 hour ischemia). Survival only was assessed. RESULTS: Survival was 50% in group 1, 90% in group 2, and 100% in group 3. Graded histopathology and crypt apoptosis demonstrated significantly less injury in groups B and C. MPO was not different between groups. IL1 and TNF were significantly reduce in groups 2 and 3. Following IT, survival was <12 hours in group A, >7 days in group B, and <72 hours in group C. CONCLUSION: This study clearly demonstrates the importance of P-selectin in warm and cold IRI in that the blockade of P-selectin using rPSGL1-lg or the absence of P-selectin using KO mice confers a survival advantage and reduction in tissue injury. The mechanism is unclear but appears to be independent of neutrophil infiltration.


Subject(s)
Intestine, Small/transplantation , P-Selectin/physiology , Animals , Intestine, Small/blood supply , Intestine, Small/pathology , Mice , Mice, Inbred C57BL , Mice, Knockout , P-Selectin/genetics , Reperfusion Injury , Survival Analysis , Transplantation, Homologous/pathology , Treatment Outcome
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