Given the increasing frequency of simultaneous pancreas-kidney transplants performed in recipients with Type II diabetes and CKD, we sought to evaluate possible differences in the rates of allograft rejection, infection, and surgical complications in 298 Type I (T1D) versus 47 Type II (T2D) diabetic recipients of simultaneous pancreas-kidney transplants between 2006-2017. There were no significant differences in patient or graft survival. The risk of biopsy-proven rejection of both grafts was not significantly different between T2D and T1D recipients (HRpancreas = 1.04, p = 0.93; HRkidney = 0.96; p = 0.93). Rejection-free survival in both grafts were also not different between the two diabetes types (ppancreas = 0.57; pkidney = 0.41). T2D had a significantly lower incidence of de novo DSA at 1 year (21% vs. 39%, p = 0.02). There was no difference in T2D vs. T1D recipients regarding readmissions (HR = 0.77, p = 0.25), infections (HR = 0.77, p = 0.18), major surgical complications (HR = 0.89, p = 0.79) and thrombosis (HR = 0.92, p = 0.90). In conclusion, rejection, infections, and surgical complications after simultaneous pancreas-kidney transplant are not statistically significantly different in T2D compared to T1D recipients.
Abstract Type 1 Diabetes Mellitus (T1DM) results from the autoimmune destruction of insulin-producing pancreatic β cells. Despite advances in our understanding of the pathogenesis and management of diabetes, as well as treatment options, which primarily include injectable insulin and whole pancreas transplant, these advancements remain unsatisfactory, with only a small percentage of patients achieving their glycemic goals. Insulin gene therapy refers to the development of β cell substitutes by introducing an insulin producing gene into endogenous cell populations that do not normally produce insulin. This strategy has the promise to overcome the limitations of current treatments. Adeno-associated viral (AAV) vector-based gene therapy holds great promise for the treatment of inherited and many complex acquired disorders. The success of AAV vectors is determined by two major factors: 1) cell transduction efficiency, and 2) persistence of the introduced gene with minimal or no host immune response following vector administration. Previous research has suggested that certain small molecules can improve AAV vector transduction efficiency and lower the vector dose below the immunological response threshold. We explore the use of teniposide, a chemotherapeutic agent, in improving the efficacy of gene therapy using AAV. We co-administered teniposide at a final dosage of 20 mg/kg with an AAV vector encoding an insulin gene controlled by a liver-specific promotor into streptozotocin (STZ) induced diabetic Hsd: ICR mice. Teniposide co-treatment produced up to a 3-fold decrease in AAV dose compared to vector alone while reducing diabetic hyperglycemia to comparable degrees as AAV delivery alone. There was no additional systemic toxicity. While the mechanism of action of teniposide-enhanced viral delivery of gene therapy is unknown, our data suggest that teniposide co-administration could significantly enhance AAV transduction in vivo and provide a novel, useful strategy to improve the clinical efficacy of gene therapy. Presentation: Sunday, June 12, 2022 12:30 p.m. - 2:30 p.m.
Abstract Transplantation of the pancreas provides long-term physiological normoglycaemia in patients with insulin-dependent diabetes mellitus. Diabetes being a multi-organ disease often leads to secondary complications, triggering frequent hospital visits, life-threatening events such as hypoglycaemia unawareness, sepsis, and end-stage organ failures, leading to poor survival. Pancreatic transplants can halt the progression of secondary complications and improve patient survival. This chapter gives an overview of pancreas transplants, their expanding indications, the surgical technique, the types of pancreas transplants, and their impact on survival and quality of life. With an ever-increasing population of diabetes in the world, there is a current need for the option of pancreas transplants to reach patients across the world. The chapter explores the selection of patients for pancreas transplants and their post-operative course.
Abstract Transplantation of the pancreas provides long-term physiological normoglycaemia in patients with insulin-dependent diabetes mellitus. Diabetes being a multi-organ disease often leads to secondary complications, triggering frequent hospital visits, life-threatening events such as hypoglycaemia unawareness, sepsis, and end-stage organ failures, leading to poor survival. Pancreatic transplants can halt the progression of secondary complications and improve patient survival. This chapter gives an overview of pancreas transplants, their expanding indications, the surgical technique, the types of pancreas transplants, and their impact on survival and quality of life. With an ever-increasing population of diabetes in the world, there is a current need for the option of pancreas transplants to reach patients across the world. The chapter explores the selection of patients for pancreas transplants and their post-operative course.
OBJECTIVES:This study aimed to find the association between immediate postoperative increases in pancreatic enzymes and posttransplant complications among pancreas transplant recipients (PTRs).METHODS:We analyzed all PTRs transplanted at the University of Wisconsin between June 2009 and September 2018. Enzyme levels were presented as a ratio of absolute numbers to the upper limit of normal value, with value >1 considered as abnormal. We specifically evaluated bleeding, fluid collections, and thrombosis complications based on the amylase or lipase ratios on day 1 (Amylase1, Lipase1) and maximum ratios within 5 days of transplant (Amylasemax, Lipasemax). For early complications, we focused on technical complications that occurred within 90 days of transplant. For long-term outcomes, we assessed patient and graft survival, and rejections.RESULTS:There were a total of 443 PTRs, 287 were simultaneous pancreas and kidney recipients, and 156 were solitary pancreas recipients. Higher Amylase1, Liplase1, Amylasemax, and Lipasemax were associated with an increase in early complications, mainly need for pancreatectomy, fluid collections, bleeding complications, or graft thrombosis, particularly in the solitary pancreas group.CONCLUSIONS:Our finding suggests that cases of early perioperative enzyme increase merit consideration for early imaging investigation to mitigate detrimental outcomes.
The effects of HLA mismatching on pancreas outcomes among pancreas after kidney (PAK) recipients are undefined. Outcomes might potentially differ depending on whether there is a mismatch between pancreas donor and recipient (PD-R) or pancreas donor and kidney donor(PD-KD). All primary PAK at our centre were included in this study. Patients were divided into two groups based on the degree of HLA mismatching: low (L-MM) as 0-4 and high (H-MM) as 5-6. We analysed all (N = 73) PAK for PD-R mismatch and the subset of PAK for PD-KD mismatch (N = 71). Comparing PD-R L-MM (n = 39) and H-MM (n = 34) PAKs, we observed no difference in the rate of pancreas graft failure. There was also no difference in the rate of rejection (L-MM 33% vs. H-MM 41%) or the severity of rejection. However, we observed a significantly (P < 0.01) shorter time to acute pancreas rejection in the H-MM group (6.8 ± 8.7 mo) versus the L-MM cohort (29.0 ± 36.2 mo) (P < 0.001). Similar to the PD-R mismatched cohort, we did not observe a detrimental effect of HLA mismatching on graft outcomes in the PD-KD cohort; time to rejection was again shorter in the H-MM subset. In this study, we found no impact of HLA mismatch on either pancreas graft survival or rejection rates, though rejection occurred earlier in high mismatched PAK transplants.
OBJECTIVES:Despite advances in surgical techniques and organ preservation, transplant ureteric strictures remain a common complication in kidney transplantation. A variety of endourological and surgical techniques have been utilized; however, there is a lack of consensus on the optimal modality in dealing with these complex cases.MATERIALS AND METHODS:We present challenging ureteral reconstruction cases after failed attempts at ureteral dilatation, failed conventional open repairs, and/or with bladder dysfunction.RESULTS:All renal allografts were salvaged by successful use of bladder Boari flap and intestinal segment interpositions/diversions.CONCLUSIONS:Operative repair remains the most durable and successful approach, and minimally invasive options should be reserved for nonsurgical candidates, with consideration of a single attempt in patients with early, distal, short (<2 cm), nonischemic strictures.
Diabetic kidney disease (DKD) is a key microvascular complication of diabetes, with few therapies for targeting renal disease pathogenesis and progression. We performed transcriptional and protein studies on 103 unique blood and kidney tissue samples from patients with and without diabetes to understand the pathophysiology of DKD injury and its progression. The study was based on the use of 3 unique patient cohorts: peripheral blood mononuclear cell (PBMC) transcriptional studies were conducted on 30 patients with DKD with advancing kidney injury; Gene Expression Omnibus (GEO) data was downloaded, containing transcriptional measures from 51 microdissected glomerulous from patients with DKD. Additionally, 12 independent kidney tissue sections from patients with or without DKD were used for validation of target genes in diabetic kidney injury by kidney tissue immunohistochemistry and immunofluorescence. PBMC DKD transcriptional analysis, identified 853 genes (p < 0.05) with increasing expression with progression of albuminuria and kidney injury in patients with diabetes. GEO data was downloaded, normalized, and analyzed for significantly changed genes. Of the 325 significantly up regulated genes in DKD glomerulous (p < 0.05), 28 overlapped in PBMC and diabetic kidney, with perturbed FcER1 signaling as a significantly enriched canonical pathway. FcER1 was validated to be significantly increased in advanced DKD, where it was also seen to be specifically co-expressed in the kidney biopsy with tissue mast cells. In conclusion, we demonstrate how leveraging public and private human transcriptional datasets can discover and validate innate immunity and inflammation as key mechanistic pathways in DKD progression, and uncover FcER1 as a putative new DKD target for rational drug design.
Studies have found similar outcomes of Simultaneous Pancreas-Kidney transplantation (SPKT) in patients with Type 2 (T2D) and Type 1 diabetes (T1D). However, there are scarce data evaluating the association of recipient factors such as age, BMI, or pretransplant insulin requirements with outcomes, thus the criteria for the optimal recipient selection remains unclear. In this study, 284 T1D and 39 T2D patients, who underwent SPKT between 2006 and 2017 with 1 year of follow-up at minimum, were assessed for potential relationship of pretransplant BMI and insulin requirements with posttransplant diabetes and pancreatic graft failure. Kaplan-Meier analysis showed similar rates of freedom from posttransplant diabetes (94.7% T2D vs. 92.3% T1D at 1 yr, and 88.1% T2D vs. 81.1% T1D at 5 yrs) and graft survival (89.7% T2D vs. 90.4% T1D at 1 yr, and 89.7% T2D vs. 81.2% T1D at 5 yrs). There was no significant association between BMI or pretransplant insulin requirements with posttransplant diabetes occurrence in either T1D (p = .10, .43, respectively) or T2D (p = .12, .63) patients in the cohort; or with graft failure (T1D: p = .40, .09; T2D: p = .71, .28). These observations suggest a less restricted approach to selective use of SPKT in patients with T2D.
Despite good organ quality, pancreata from extremely small pediatric donors (<30 kg) are generally avoided by many centers because of concerns of reduced islet cell mass and early technical failure. Therefore, we sought to compare the outcomes of small pancreas grafts (<30 kg) to those from higher weight donors from transplants performed between 1994 and 2015 (n = 1183). A total of 33 pancreata were from donors' <= 30 kg (3%), with a mean weight of 23.8 kg and mean age of 7.8 years. Patient survival was similar at 1, 5, and 10 years between recipients of <= 30 and >30 kg donors (<= 30 kg: 96.8%, 86.8%, and 78.1% vs. >30 kg: 96.8%, 89.5%, and 79.1%,P = 0.5). Pancreas graft survival at 1, 5, and 10 years was also similar, <= 30 kg: 93.9%, 73.2%, and 61.0% vs. >30 kg: 87%, 73.3%, and 58.3% (P = 0.7). This graft survival pattern was also seen when comparing pancreata from <= 20 kg donors to those from >20 to 30 kg. Cause of graft loss, and metabolic and physiologic outcomes did not differ between the groups. After assessing the impact of donor weight as a continuous variable and calculating recipient-to-donor weight ratio (RDWR), we observed no effect of donor weight on patient and graft outcomes.
BACKGROUND:The first simultaneous pancreas and kidney (SPK) transplant was performed in 1966. Early procedures were associated with significant morbidity and mortality and were performed in very low numbers in select patients.METHODS:This study includes all recipients of an SPK at the University of Wisconsin-Madison between 1986 and 1993, who were actively followed and had a functional pancreas allograft for >25 years as of October 31, 2018.RESULTS:A total of 291 SPK were performed during the study period; of these, 39 patients still had a functional graft at last follow up and 9 (18.8%) pancreas grafts were lost due to patient death or graft failure after >25 years. At last follow up, all 39 patients with functional pancreas graft had at least one comorbidity, such as hypertension, hyperlipidemia, or coronary artery disease. Twenty-seven required enteric conversion; 11 patients experienced renal allograft failure (10 underwent a repeat kidney transplant); and 6 required amputation of part of the lower extremity. In the Cox regression analysis, bladder drained pancreas was associated with lower probability of prolonged pancreas graft survival (hazard ratio: 0.52; confidence interval: 0.32-0.85; P = 0.01).CONCLUSIONS:With careful and detailed follow-up and attention to complications, some recipients of pancreas grafts have outstanding outcomes. As the number of pancreas recipients with prolonged graft survival may be rising, healthcare providers should be aware of the management of complications associated with this unique group of patients.
Despite good organ quality, pancreata from extremely small pediatric donors ( 30 kg donors (≤30 kg: 96.8%, 86.8%, and 78.1% vs. \u003e30 kg: 96.8%, 89.5%, and 79.1%, P = 0.5). Pancreas graft survival at 1, 5, and 10 years was also similar, ≤30 kg: 93.9%, 73.2%, and 61.0% vs. \u003e30 kg: 87%, 73.3%, and 58.3% (P = 0.7). This graft survival pattern was also seen when comparing pancreata from ≤20 kg donors to those from \u003e20 to 30 kg. Cause of graft loss, and metabolic and physiologic outcomes did not differ between the groups. After assessing the impact of donor weight as a continuous variable and calculating recipient-to-donor weight ratio (RDWR), we observed no effect of donor weight on patient and graft outcomes.
BACKGROUND:Published literature on predictors of polyomavirus (BKV) and cytomegalovirus (CMV) infections in simultaneous pancreas and kidney (SPK) transplant and their impact on allograft outcomes remain sparse. We hypothesize that BKV and CMV viremia infections decrease allograft survival in SPK. Identifying modifiable predictors of BKV and CMV may help tailor immunosuppression and improve allograft survival.METHODS:All SPK recipients at our institution between January 2000 and April 2016 were included (n = 757). Thirty-nine recipients had BKV only and 25 had CMV only, and infection occurred at median follow-up times of 217 and 163 days, respectively. Event density sampling was used to match recipients with BKV or CMV to up to 10 recipients without infection by age, sex, and HLA mismatch status, and these were followed for a median of 4.3 years after infection.RESULTS:Older age (HR 1.49 for each decade; 95% CI: 0.95, 2.35; P = .083) and tacrolimus use (HR 20.6; 95% CI: 2.37, 179.53; P = .006) were associated with increased incidence of BKV, but not CMV, infection. Both BKV and CMV infections were associated with increased risk of allograft failure for both pancreas (BKV [HR 2.17; 95% CI 1.47, 3.208; P = .000], CMV [HR 1.7; 95% CI 1.077, 2.687; P = .023]) and kidney (BKV [HR 2.65; 95% CI 1.765, 3.984; P = .000], CMV [HR 2.07; 95% CI 1.295, 3.308; P = .002]).CONCLUSION:Older age at time of transplant and tacrolimus may help predict BKV infection in SPK recipients.
In the early experience of pancreas transplantation, bladder drainage was favored, but it often caused urologic, metabolic, and infectious complications that necessitated conversion to enteric drainage. Long-term graft survival after enteric conversion and the impact of time interval from transplantation to enteric conversion on graft survival is poorly understood. We studied all bladder-drained first-time pancreas transplantations performed at the University of Wisconsin from 1985 to 2000. Time to conversion was estimated with the Kaplan-Meier technique, whereas risk factors associated with conversion were estimated via a time-varying Cox proportional hazards model. Of 386 bladder-drained pancreata, 162 (41.9%) eventually required enteric conversion, 29 (17.9%) within the first year. Median time to conversion varied by indication: 0.68 years for surgical, 3.1 years for urologic, and 2.7 years for metabolic disorders. In a time-varying Cox model adjusting for donor and recipient factors, enteric conversion did not affect the risk of pancreas graft loss (hazard ratio [HR] 0.86, P = .26). Kidney survival was not associated with enteric conversion. When necessary due to symptoms or complications, enteric conversion of bladder-drained pancreata is safe and does not affect overall graft survival. This relationship appears to be true no matter when the conversion is performed.
Objectives: Nutcracker syndrome is rare, and a proportion of patients with this syndrome continue to have intractable pain and symptoms. Due to the heterogeneity of patients' chief complaints and symptoms, the surgeon's preferred approach may be inherently different but is of paramount importance to the outcome. Materials and Methods: We present 4 cases in which renal autotransplant with extraction and ligation of previously placed gonadal coils was performed following previously attempted renal vein stenting or combined renal vein transposition followed by renal vein stenting. Results: Autotransplant resulted in flank pain resolution with improvement in symptoms associated with pelvic congestion syndrome. Conclusions: The approach to such cases requires meticulous and adequate vena cava exposure, with preparation for potential caval reconstruction. No firm inferences can be made from such a small series; however, we believe in renal autotransplant as firstline therapy, and failure after an initial renal vein stent should be salvaged by renal autotransplant over further endovascular attempts.
BACKGROUND:Development of de novo donor-specific antibodies (dnDSA) has detrimental effects on graft survival in several types of solid organ transplants. However, limited information exists about the effect of dnDSA on pancreas transplant graft survival.METHODS:We report our experience with pancreas recipients transplanted between January 01, 2005, and August 31, 2017.RESULTS:We identified 541 pancreas transplant recipients, of which 121 developed dnDSA and 420 did not. Thirty-two percent developed dnDSA against HLA class I antigens, 56% developed against class II antigens, and 12% developed against both. Fifty-two percent of the patients in the dnDSA+ and 24% in the dnDSA- group underwent pancreas biopsy, mainly due to a rise in pancreatic enzymes. Rejection was found in 42% of the dnDSA+ group, and 20% of the dnDSA- group(P < 0.001). There were 36% uncensored graft failures in the dnDSA+ group and 17% uncensored failures in the dnDSA- group (P < 0.001). A similar trend was seen in death-censored graft failure between the groups. In univariate Cox regression analyses, male sex, older age, and recipients of simultaneous pancreas and kidney transplant were found to be protective for death-censored graft failure; multiple transplants, dnDSA, requirement for pancreas biopsy and presence of pancreas rejection were associated with increased risk of graft failure. In multivariate analysis, only older age and dnDSA were significantly associated with death-censored graft failure.CONCLUSIONS:Our findings suggest that dnDSA in pancreas transplant recipients are associated with increased rates of rejection and graft failure. Timely detection of dnDSA through regular screening and early treatment of pancreas rejection may ultimately improve graft outcomes.
Left renal vein transposition is often the preferred treatment of nutcracker syndrome. However, pain returns in some patients despite surgery. One solution to this problem is renal autotransplantation. Here we report our initial results of renal autotransplantation in patients with persistent flank pain despite a previous left renal vein transposition. We used the University of Wisconsin loin pain hematuria syndrome test as a diagnostic maneuver to determine who may benefit from renal autotransplantation; this procedure subsequently resulted in complete pain resolution in all three patients. All patients underwent successful renal autotransplantation and remain pain free. These cases support the test as a diagnostic maneuver to determine which patients may benefit from renal autotransplantation.