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Biomedical subjects

Daniel S Warren

Publications and source records attributed to Daniel S Warren.

10 recordsLinked to original sources

Clinical results from transplanting incompatible live kidney donor/recipient pairs using kidney paired donation.

CONTEXT: First proposed 2 decades ago, live kidney paired donation (KPD) was considered a promising new approach to addressing the shortage of organs for transplantation. Ethical, administrative, and logistical barriers initially proved formidable and prevented the implementation of KPD programs in the United States. OBJECTIVE: To determine the feasibility and effectiveness of KPD for the management of patients with incompatible donors. DESIGN, SETTING, AND PATIENTS: Prospective series of paired donations matched and transplanted from a pool of blood type or crossmatch incompatible donors and recipients with end-stage renal disease (6 conventional and 4 unconventional KPD transplants) at a US tertiary referral center (between June 2001 and November 2004) with expertise in performing transplants in patients with high immunologic risk. INTERVENTION: Kidney paired donation and live donor renal transplantation. MAIN OUTCOME MEASURES: Patient survival, graft survival, serum creatinine levels, rejection episodes. RESULTS: A total of 22 patients received transplants through 10 paired donations including 2 triple exchanges at Johns Hopkins Hospital. At a median follow-up of 13 months (range, 1-42 months), the patient survival rate was 100% and the graft survival rate was 95.5%. Twenty-one of the 22 patients have functioning grafts with a median 6-month serum creatinine level of 1.2 mg/dL (range, 0.8-1.8 mg/dL) (106.1 micromol/L [range, 70.7-159.1 micromol/L]). There were no instances of antibody-mediated rejection despite the inclusion of 5 patients who were highly sensitized to HLA antigens due to previous exposure to foreign tissue. Four patients developed acute cellular rejection (18%). CONCLUSIONS: This series of patients who received transplants from a single-center KPD pool provides evidence that recipients with incompatible live donors, even those with rare blood type combinations or high degrees of HLA antigen sensitization, can receive transplants through KPD with graft survival rates that appear to be equivalent to directed, compatible live donor transplants. If these results can be generalized, broader availability of KPD to the estimated 6000 patients with incompatible donors could result in a large expansion of the donor pool.

Adolescent↗

Kidney paired donation and optimizing the use of live donor organs.

CONTEXT: Blood type and crossmatch incompatibility will exclude at least one third of patients in need from receiving a live donor kidney transplant. Kidney paired donation (KPD) offers incompatible donor/recipient pairs the opportunity to match for compatible transplants. Despite its increasing popularity, very few transplants have resulted from KPD. OBJECTIVE: To determine the potential impact of improved matching schemes on the number and quality of transplants achievable with KPD. DESIGN, SETTING, AND POPULATION: We developed a model that simulates pools of incompatible donor/recipient pairs. We designed a mathematically verifiable optimized matching algorithm and compared it with the scheme currently used in some centers and regions. Simulated patients from the general community with characteristics drawn from distributions describing end-stage renal disease patients eligible for renal transplantation and their willing and eligible live donors. MAIN OUTCOME MEASURES: Number of kidneys matched, HLA mismatch of matched kidneys, and number of grafts surviving 5 years after transplantation. RESULTS: A national optimized matching algorithm would result in more transplants (47.7% vs 42.0%, P<.001), better HLA concordance (3.0 vs 4.5 mismatched antigens; P<.001), more grafts surviving at 5 years (34.9% vs 28.7%; P<.001), and a reduction in the number of pairs required to travel (2.9% vs 18.4%; P<.001) when compared with an extension of the currently used first-accept scheme to a national level. Furthermore, highly sensitized patients would benefit 6-fold from a national optimized scheme (2.3% vs 14.1% successfully matched; P<.001). Even if only 7% of patients awaiting kidney transplantation participated in an optimized national KPD program, the health care system could save as much as $750 million. CONCLUSIONS: The combination of a national KPD program and a mathematically optimized matching algorithm yields more matches with lower HLA disparity. Optimized matching affords patients the flexibility of customizing their matching priorities and the security of knowing that the greatest number of high-quality matches will be found and distributed equitably.

Algorithms↗

ABO incompatible high-titer renal transplantation without splenectomy or anti-CD20 treatment.

Most successful protocols for renal transplantation across ABO incompatible (ABOi) barriers have utilized splenectomy as part of the pre-conditioning process. We recently described successful ABOi transplantation using anti-CD20 monoclonal antibody in lieu of splenectomy. In the current study, we hypothesized that plasmapheresis (PP) and low dose CMV hyper-immunoglobulin (CMVIg) alone would be sufficient to achieve successful engraftment of ABOi kidneys. We describe four blood type incompatible patients who received live donor renal transplants from A1 (two patients), A2 (one patient), and B (one patient) donors. All patients started with antihuman globulin (AHG) phase titers of 64 or higher and were pre-conditioned with PP/CMVIg but not splenectomy or anti-CD20. All 4 patients underwent successful transplantation and have a mean current serum creatinine of 1.1 (range: 0.9-1.2). There were no episodes of antibody mediated rejection. Rapid allograft accommodation may limit the need for long-term antibody suppression provided by splenectomy or anti-CD20, thereby eliminating the added infectious risk of these modalities and removing another disincentive to ABOi transplantation.

ABO Blood-Group System↗

Modulating alloimmune responses with plasmapheresis and IVIG.

Antibody-mediated barriers to renal transplantation, including donor specific anti-HLA and anti-blood group antibodies, have become an increasingly important issue over the last forty years as the organ shortage has continued to expand. The inevitable result of the unmet demand for compatible organs has been a continuous increase in recipient waiting times. Over the last decade, two treatment strategies have been developed to address this problem. These regimens rely on the immunomodulatory properties of intravenous immunoglobulin (IVIG) administered alone at relatively high doses, or at lower doses in combination with the non-selective depletion of antibodies from plasmapheresis. Both protocols have been successfully used for desensitization of patients with donor-specific anti-HLA antibody and have allowed for renal transplantation with excellent outcomes. The combined strategy of plasmapheresis/IVIG has also been successfully employed for renal transplantation in recipients of ABO blood group incompatible kidneys. This review will provide an overview of these therapies and their application to incompatible renal transplantation.

ABO Blood-Group System↗

A novel chimeric ribozyme vector produces potent inhibition of ICAM-1 expression on ischemic vascular endothelium.

BACKGROUND: Inhibition of intercellular adhesion molecule-1 (ICAM-1) expression can ameliorate the inflammation induced by ischemia-reperfusion injury (IRI) in animal models. However, current strategies to reduce ICAM-1 expression have been limited by the lack of stability, poor specificity, and the transient nature of synthesized regulatory molecules (antisense/ribozyme). METHODS: A chimeric expression vector was generated by fusing a ribozyme targeting sequence against ICAM-1 to stabilizing stem-loop structures and nuclear localization signals that are components of endogenous U1 small nuclear RNA. Oligonucleotide scanning was used to predict accessible sites for targeting within the rat ICAM-1 transcript. Efficacy of the chimeric ribozyme vector was tested by transfection of rat aortic endothelial (RAE) cells (in vitro) and intraportal delivery in a rat hepatic IRI model (in vivo). RESULTS: Transfection of RAE cells with the chimeric ribozyme vector produced potent and specific inhibition of ICAM-1 mRNA and protein levels by >65%. This reduction in ICAM-1 expression was accompanied by a proportional decrease in neutrophil adhesion to RAE cells. In vivo intraportal delivery of the chimeric targeting vector to rats sustaining hepatic IRI produced a marked reduction in ICAM-1 expression on liver endothelium after reperfusion. CONCLUSIONS: A chimeric ribozyme vector effectively inhibited ICAM-1 expression in vascular endothelial cells and in rat liver following IRI, demonstrating a novel gene targeting technique that may be ideally suited to clinical applications aimed at ameliorating IRI.

Animals↗

Antibody, complement and accommodation in ABO-incompatible transplants.

Many facets of accommodation have been explored since this process was first observed in ABO-incompatible renal allografts over 17 years ago. Intriguing new pieces of the puzzle have emerged to be fitted into the picture in several places. For example, vascular endothelial cells can be stimulated to secrete substantial amounts of blood group A and B antigens linked to von Willebrand factor; the antibody response to A and B antigens stimulated by ABO-incompatible renal allografts can show epitope spreading; complement can inhibit inflammation through actions of some complement split products, particularly iC3b and C3a; endothelial cells can upregulate various cytoprotective mechanisms; and clinically, new protocols for achieving accommodation have been implemented with improved results.

ABO Blood-Group System↗

Successful renal transplantation across simultaneous ABO incompatible and positive crossmatch barriers.

ABO incompatibility and human leukocyte antigen (HLA) sensitization remain the two largest barriers to optimal utilization of kidneys from live donors. Here we describe the first successful transplantation of patients who were both ABO incompatible and crossmatch positive with their only available donor. A preconditioning regimen of plasmapheresis (PP) and low-dose CMV hyperimmune globulin (CMVIg) was delivered every other day until donor-specific antibody (DSA) titers were reduced to a safe level and isoagglutinin titers were < or =16. Each patient received quadruple sequential immunosuppression, splenectomy and three protocol post-transplant PP/CMVIg treatments. There was no hyperacute rejection. Two of the three patients had a persistent positive cytotoxic crossmatch on the day of transplant and eliminated their DSA subsequently. Antibody-mediated rejection (AMR) in one patient was reversed by reinitiating PP/CMVIg and anti-CD20. The patients are more than 9 months post-transplant with excellent graft function. Preconditioning with PP/CMVIg results in a durable suppression of DSA and permits accommodation of the allograft to a discordant blood type. The ability to cross these two barriers simultaneously is clinically important as sensitized patients have often exhausted their blood type compatible living donors during previous transplants.

ABO Blood-Group System↗

Plasmapheresis, CMV hyperimmune globulin, and anti-CD20 allow ABO-incompatible renal transplantation without splenectomy.

The majority of preconditioning protocols developed to allow ABO-incompatible (ABOi) renal transplantation include concurrent splenectomy as a prerequisite to successful engraftment. Our center has developed a preconditioning protocol that includes plasmapheresis (PP), low-dose CMV hyperimmune globulin (CMVIg), and anti-CD20 monoclonal antibody (rituximab) to allow ABOi renal transplantation without splenectomy. Our initial experience has included treatment of six recipients and successful transplantation from blood group A(1), A(2), and group B living donors. Mean (+/- SD) serum creatinine was 1.3 +/- 0.1 mg/dL among the six recipients and no episodes of antibody-mediated rejection (AMR) occurred at a median follow-up of 12 months. ABO antibody titers have remained below pretreatment levels. The absence of AMR and stable allograft function in this series show the potential of this preconditioning protocol to increase ABOi renal transplantation. The use of rituximab, allowing avoidance of splenectomy, may further remove one of the significant disincentives to ABOi transplantation, and eliminate the risk of post-splenectomy infections.

ABO Blood-Group System↗

Renal transplantation at the Johns Hopkins Comprehensive Transplant Center.

A stagnant supply of transplantable organs in the face of a relentless burgeoning of transplant waiting lists has created a crisis. Necessity continues to be the mother of invention and as the crisis has deepened it has served as a crucible for the development of new ways to think about perennial problems. Our program has taken a 2-pronged approach to increasing the organ supply for our patients. First, through innovations like the laparoscopic donor nephrectomy, ABO-incompatible and positive-crossmatch transplantation protocols, unconventional paired kidney exchanges, and the use of altruistic donors we have more than doubled our utilization of live donor organs. At the same time, we have developed algorithms and interrogative techniques to enhance the intelligent use of kidneys from expanded criteria donors for patients who do not have an available live donor. The laparoscopic nephrectomy has proven to be a safe and effective way of removing a significant barrier to live donation. Our results from 100 ABOi, (+)XM, and PKE transplants are similar to national statistics for compatible live donor transplants, suggesting that existing paradigms of compatibility can be safely expanded. These encouraging early outcomes and the savings they transmit to the health care system have allowed us to obtain insurance coverage for the InKTP programs, setting the stage for further expansion of these opportunities to broaden the options for patients with end-stage renal disease.

ABO Blood-Group System↗