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B Ringe

Publications and source records attributed to B Ringe.

At least 19 recordsLinked to original sources

What is the best immunosuppression in living donor liver transplantation?

INTRODUCTION: As we have learned, there are no golden rules of immunosuppression in solid organ transplantation, and every transplant program is using its own regimen to prevent or treat rejection. We have retrospectively analyzed the incidence and severity of acute rejection in a consecutive series of living donor liver transplants. The major objective during the whole study period was to ultimately avoid any steroids from the beginning. METHODS: Twenty one adult patients and five children received 23 right, one left, and two left lateral lobe grafts from genetically or emotionally related living donors, including four ABO-incompatible pairs. The majority of patients had triple initial immunosuppression, based on tacrolimus, mycophenolate mofetil or sirolimus, and basiliximab or daclizumab. Except methylprednisolone administered before reperfusion in 13 patients, only seven had prednisolone after transplantation, and 12/26 had a completely steroid-free regimen. RESULTS: The overall incidence of biopsy-proven acute rejection was 4/21 in adults (19%) and 4/5 in children (80%). Rejections were mild in five and moderate in three cases, respectively, and easily reversed with steroids in all patients. Different combinations of immunosuppressive drugs or ABO incompatibility did not seem to have an influence on the risk of rejection. CONCLUSION: Despite the small number of patients in this series, completely steroid-free triple-drug immunosuppression with tacrolimus, mycophenolate mofetil, and basiliximab is safe and efficient to prevent acute rejection in adult recipients of living donor liver transplants. At least short-term administration of prednisolone should be considered in pediatric patients.

ABO Blood-Group System↗

Expression of E-selectin and its transcripts during intestinal ischemia-reperfusion injury in pigs.

BACKGROUND: Ischemia-reperfusion injury (IRI) can result in severe organ dys- or nonfunction. Interaction of leukocytes and endothelial cells mediated by E-selectin appears to be a key step for disturbed microcirculation. Therefore we studied gene and protein expression as well as localization of E-selectin during intestinal IRI. METHODS: Intestinal tissue samples were obtained from extracorporeal perfused intestines (cold ischemia time [CIT] 2 or 20 hours, each n = 5) and additionally in intestinal transplanted pigs (CIT 2 or 20 hours, each n = 1). Mucosal damage was graded according to the Chiu classification. E-selectin mRNA was determined by PCR and quantitative RT-PCR. Localization of E-selectin mRNA was performed by in situ hybridization and of the protein by immunohistochemistry. RESULTS: Histologically, mucosal damage occurred during reperfusion and was earlier and more severe after 20 hours of CIT. E-selectin mRNA expression was detected by PCR already after laparotomy and was elevated after reperfusion. Interestingly, mRNA expression was already increased after 20 hours of CIT. E-selectin mRNA was localized to the luminal surface of muscular, submucosal, and mucosal endothelial cells and the protein was detected on submucosal arterial endothelium as early as 2 hours after reperfusion. CONCLUSION: Prolongation of CIT results in more severe mucosal damage during reperfusion, which is associated with protein expression of E-selection that might be used as a marker for activated endothelial cells. Increased E-selectin mRNA at end of 20 hours of CIT might indicate a preactivated state of endothelial cells potentially triggered by bacterial translocation or products.

Animals↗

Kinetics and localization of interleukin-2, interleukin-6, heat shock protein 70, and interferon gamma during intestinal-rerfusion injury.

BACKGROUND: Intestinal ischemia-reperfusion injury (IRI) represents an exaggerated inflammatory cascade with a complex pathophysiology. IL-2, IL-6, HSP70, and INF-gamma are mediators of the inflammatory process. Therefore, we investigated their kinetics and localization during intestinal IRI. METHODS: Pig intestinal specimens were obtained during cold preservation (cold ischemia time 2 hours) and extracorporeal perfusion. Mucosal damage was graded according to the Chiu classification. MRNA expression was determined by Northern blot (IL-2, IL-6, IFN-gamma) or by quantitative RT-PCR (IL-6, HSP70) and localized by in situ hybridization. RESULTS: Histologically, mucosal damage occurred during reperfusion. Expression of IL-2 mRNA was up-regulated after HTK perfusion and was highest at the start and 7 hours after reperfusion. Expression of IL-6 mRNA increased at 2 hours after reperfusion and HSP70 at 3 hours after reperfusion. IFN-gamma mRNA was expressed after HTK perfusion, with expression of this cytokine increasing to 1 hour after the start of reperfusion, and decreasing thereafter. IL-2 mRNA was localized to endothelial cells (EC) and leukocytes and in close relation to ganglion cells (GC): IL-6 mRNA in EC, smooth muscle cells (SMC), and GC: HSP70 mRNA in EC and SMC; and IFN-gamma mRNA in leukocytes. CONCLUSION: IL-2, IL-6, HSP70, and INF-gamma are parameters of early mRNA expression during intestinal IRI. EC, SMC, leukocytes, and GC have been identified as sources of transcripts that might afford potential targets for intervention strategies to attenuate IRI.

Animals↗

Reduction of severe ischemia/reperfusion injury in rat kidney grafts by a soluble P-selectin glycoprotein ligand.

BACKGROUND: Inflammatory leukocyte-endothelium interactions, mediated by selectins, contribute to renal ischemia/reperfusion (I/R) injury. We examined the influence of the soluble P-selectin glycoprotein ligand 1 (sPSGL) on early I/R-induced changes in a rat kidney transplantation model with long cold ischemia. METHODS: After 24 hr of cold storage, syngeneic kidneys were grafted into bilaterally nephrectomized rats. Before transplantation, recipients received either 1 mg/kg of sPSGL or vehicle (n=8 per group). Six hours after reperfusion, grafts were removed for light microscopy and immunohistochemistry. Capillary blood flow was measured under a fluorescence microscope by using the concentric-circles method. RESULTS: A greater proportion, 74.7+/-7.2% (sPSGL) vs. 28+/-7.4% (controls), of all dye-labeled outer medullary capillaries appeared in the 12-microm radius (P<0.01), indicating dense blood flow, whereas 7.6+/-2.9% vs. 43.3+/-9.7%, respectively, appeared in the 60-microm radius (P<0.05), indicating rarefied blood flow. In the sPSGL-treated group, the extent of severe tubular damage within the inner stripe of the outer medulla was lower compared with controls (37.5+/-8.3% vs. 78.4+/-3.5%, P<0.01). Outer medullary heat shock protein 72 expression was 14.5+/-1.6% in the sPSGL-treated group compared with 9.6+/-1.4% in controls (P<0.05). The number of infiltrating polymorphonuclear leukocytes was similar in both groups. Treatment with sPSGL had no influence on the serum creatinine level. CONCLUSIONS: Our data suggest that impairment of outer medullary blood flow is crucial in I/R injury of kidney grafts with prolonged cold storage. Reduction of capillary blood flow perturbations by sPSGL protects tubular cells from severe structural damage. Blocking early selectin-mediated leukocyte adhesion may have therapeutic implications in improving the prognosis of renal transplants with severe I/R injury.

Animals↗

A novel management strategy of steroid-free immunosuppression after liver transplantation: efficacy and safety of tacrolimus and mycophenolate mofetil.

BACKGROUND: Corticosteroids have been used traditionally for immunosuppression after solid organ transplantation. The variety of modern immunosuppressive agents offers the chance to replace drugs with an unfavorable risk-benefit ratio. The objective of this prospective pilot study was to investigate a novel steroid-free immunosuppressive regimen after clinical liver transplantation. METHODS: 30 adult liver graft recipients were included in an intent-to-treat analysis. Dual induction immunosuppression consisted of tacrolimus and mycophenolate mofetil. Prophylactic steroids were not given. Efficacy and safety parameters analyzed were patient and graft survival, incidence and severity of rejection, and adverse events in correlation to immunosuppressive drug levels. RESULTS: Patient and graft survival at 2 years was 86.7 and 83.9%, respectively. Acute rejection occurred in 26.2%, and was associated with subtherapeutic tacrolimus blood levels and diarrhea. All rejections were completely reversible by temporary addition of steroids. Acute renal failure was seen in 10/30 patients, and was related to high tacrolimus blood levels together with primary liver graft dysfunction. 43% of all patients never received any steroids, and 73% were on a steroid-free maintenance regimen. CONCLUSIONS: These results confirm that corticosteroids can be completely avoided from the beginning after liver transplantation. Double drug immunosuppression with tacrolimus and mycophenolate mofetil is effective and safe in terms of patient and graft survival as well as incidence and severity of rejection. In order to avoid under- or over-immunosuppression, which may be caused by impaired absorption or metabolism, close drug monitoring is advised.

Acute Disease↗

Treatment of hepatic metastases from gastroenteropancreatic neuroendocrine tumors: role of liver transplantation.

The role of liver transplantation in malignancy has been discussed, but controversially, over the past two decades. This is particularly true for hepatic metastases from neuroendocrine tumors, which have a wide variety of primary tumor localizations, morphologic types, functional activities, and clinical presentations. Despite generally slow tumor progression, the prognosis is often unpredictable. Total hepatectomy and liver replacement has been offered primarily to patients with nonresectable metastases and symptomatic disease. The results from retrospective single and multicentric analyses show that most liver recipients experience significant palliation despite tumor recurrence, and in some patients long-term cure can be achieved. The existing data emphasize the importance of proper selection and timing for this approach.

Humans↗

Preliminary report on the effect of xenoperfusion with human blood on cyclosporin A metabolism and cytochrome-P-4503A4-mRNA expression in a pig liver perfusion model.

OBJECTIVES: Little is known about the effect of ischemia/reperfusion with xenogenic blood on function and gene expression of CYP3A4, the enzyme largely responsible for the metabolism of the immunosuppressants Cyclosporin A (CsA) and Tacrolimus. DESIGN AND METHODS: In a pig liver perfusion model, we have compared the effect of perfusion (3 h) after 20 h cold storage, with either pig or human blood on CsA metabolism and CYP3A4-mRNA expression. mCYP3A4-mRNA was quantified by RT-PCR, CsA and its major metabolites AM1, AM9, AM4N by RP-HPLC. IL-6 served as inflammation marker, GLDH and ALT to estimate tissue damage. RESULTS: Inflammatory response and tissue damage were more extensive during xenoperfusion. CYP3A4 expression decreased similarly during xenogenic and allogenic perfusion. CsA conversion to its metabolites was also comparable during xeno- and alloperfusion. CONCLUSION: There is no evidence that during the early reperfusion period pig liver CYP3A4 is severely affected if the organ is xenoperfused with human blood in comparison with alloperfusion.

Animals↗

No influence of the MDR-1 C3435T polymorphism or a CYP3A4 promoter polymorphism (CYP3A4-V allele) on dose-adjusted cyclosporin A trough concentrations or rejection incidence in stable renal transplant recipients.

BACKGROUND: A substantial proportion of the variability in the absorption and clearance of cyclosporin A (CsA) after oral administration has been attributed to variability in liver cytochrome P-450 3A4 (CYP3A4) activity and intestinal P-glycoprotein (P-gp) concentration. A polymorphism in the CYP3A4 promoter region, termed "variant" allele CYP3A4-V, was postulated to be associated with altered CYP3A4 enzyme activity. A polymorphism in exon 26 (C3435T) of the multidrug resistance-1 (MDR-1) gene was correlated with intestinal expression and in vivo activity of P-gp. METHODS: We investigated the occurrence of both polymorphisms in 124 stable Caucasian renal transplant recipients (>6 months after transplantation) on CsA as the primary immunosuppressant. Real-time, rapid-cycle PCR methods were developed and used for genotyping. RESULTS: The estimated allele frequencies for the MDR-1 C3435T allele (54%) and the CYP3A4-V allele (4.8%) were similar to those reported for Caucasian populations. No significant differences were found for the CsA doses needed to maintain similar CsA trough concentrations in patients with and without the CYP3A4-V allele or in patients with different MDR-1 C3435T genotypes. Furthermore, neither of the polymorphisms investigated was associated with renal function as assessed by creatinine plasma concentration or, in a retrospective analysis, the incidence of acute rejection. CONCLUSIONS: These findings suggest that the MDR-1 C3435T mutation and the CYP3A4-V variant are not major determinants of CsA efficacy in renal transplant recipients.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Development of liver size and perfusion after reduced-size liver transplantation in children.

The technique of segmental liver transplantation (s-LTx) provides a method to overcome the shortage of suitable livers for small recipients. Patient survival rates are parallel to those obtained with whole liver transplantation (w-LTx). For long-term rehabilitation, adaptive liver growth and adequate perfusion is crucial; however, morphometric and hemodynamic parameters in growing children with s-LTx are not available. Seventeen children who received a s-LTx and 25 with a w-LTx who had follow-up evaluation 1 and 2 yr after LTx were studied. Mean age at time of transplantation was 4.3 +/- 3.5 yr for s-LTx and 10.3 +/- 6.0 yr for w-LTx, mean height 98 +/- 21 cm and 122 +/- 30 cm respectively. At follow-up evaluation mean values for liver enzymes, bilirubin and prothrombin time were in the normal ranges for both groups. Liver dimensions were measured by gray scale ultrasound, and hemodynamic parameters by Doppler sonography in the portal vein and hepatic artery using an Acuson 128 machine. Maximal (Vmax), minimal (Vmin) and time-average velocity (TAV) were measured and the resistive index (RI) calculated. We found that 1 and 2 yr after LTx liver dimensions were at a mean in the upper normal range of healthy controls. Spleen size was above the normal range and did not show any tendency towards regression. Mean Vmax in the hepatic artery in s-LTx and w-LTx was 48 cm/sec vs. 28 cm/sec after 1 yr and 30 cm/sec vs. 35 cm/sec after 2 yr, the RI 0.66 vs. 0.55 and 0.59 vs. 0.73, respectively (p for all parameters > 0.05). Maximal portal vein flow was 25 cm/sec in s-LTx vs. 29 cm/sec in w-LTx. Blood flow calculated by vessel diameter and TAV showed no statistical difference between both groups. In conclusion, liver size after s-LTx and w-LTx was increased to the upper normal range, and portal vein blood flow velocities were within the normal range. Vmax in the hepatic artery was reduced in s-LTx; however, the reduction was to the same extent as in w-LTx. In the view of long-term functional adaptation, s-LTx is not inferior to w-LTx.

Adolescent↗