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R B Colvin

Publications and source records attributed to R B Colvin.

At least 55 records · Page 3Linked to original sources

Protection from toxicant-mediated renal injury in the rat with anti-CD54 antibody.

BACKGROUND: The benefit of the potent chemotherapeutic agent cisplatin in treating neoplasms is limited by nephrotoxicity. We tested the hypothesis that CD54 [intercellular adhesion molecule-1 (ICAM-1)] is an important mediator in cisplatin-mediated renal failure. METHODS: The effect of a monoclonal anti-CD54 antibody was evaluated in a rat model of cisplatin toxicity. Renal function, histopathology, renal myeloperoxidase activity, and mortality were determined in the anti-CD54 and placebo groups. RESULTS: Renal CD54 mRNA expression was markedly increased by 24 hours after exposure to cisplatin in mice. An improvement in renal function, mortality, and histological abnormalities was evident in animals exposed to cisplatin and treated with anti-CD54 antibody (mAb). Seven days after the administration of cisplatin, the mean creatinine was 0.65+/-0.05 mg/dl in the rats that received anti-CD54 mAb and 4.76+/-1.42 in control animals (P<0.02). Mortality was lower in experimental animals (0 vs. 29% in control rats seven days following cisplatin, P<0.04). Histological evidence of cell injury was markedly attenuated (P<0.04) in the treated compared with the control rats. CONCLUSION: CD54 may be critical in the pathophysiology of renal injury following cisplatin, perhaps by its effects on leukocyte-endothelial interactions.

Acute Kidney Injury↗

Complement activation in acute humoral renal allograft rejection: diagnostic significance of C4d deposits in peritubular capillaries.

The distinction between acute humoral rejection (AHR) and acute cellular rejection (ACR) in renal allografts is therapeutically important, but pathologically difficult. Since AHR is probably mediated by antibodies to the donor endothelium that activate the classical complement pathway, it was hypothesized that peritubular capillary C4d deposition might distinguish this group. Renal biopsies (n = 16) from 10 patients with AHR who had acute graft dysfunction, neutrophils in peritubular capillaries, and a concurrent positive cross-match were stained for C4d by immunofluorescence. Control biopsies for comparison showed ACR (n = 14), cyclosporin A toxicity (n = 6), or no abnormality (n = 4). Peribiopsy sera were tested for anti-donor HLA antibody. C4d deposited prominently and diffusely in the peritubular capillaries in all AHR biopsies (16 of 16). IgM and/or C3 were also present in 19 and 44%, respectively. With two-color immunofluorescence, C4d was localized in basement membranes (type IV collagen+) and in the endothelium (Ulex europaeus agglutinin-I+). In ACR, no more than trace C4d was found in peritubular capillaries (P < 0.0001 versus AHR), and no patient had anti-donor HLA antibodies (0 of 8); 27% had neutrophils in peritubular capillaries. One of six biopsies with cyclosporin A toxicity had similar C4d deposits, and circulating anti-donor class I antibody was detected. Grafts with AHR were lost (40%) more often than those with ACR (0%; P < 0.02). C4d in peritubular capillary walls distinguishes AHR from ACR, is more specific and sensitive than traditional criteria, and is a potentially valuable adjunct in the diagnosis of graft dysfunction.

Acute Disease↗

Renal thrombotic microangiopathy associated with anticardiolipin antibodies in hepatitis C-positive renal allograft recipients.

Hepatitis C virus (HCV) infection has been associated with de novo or recurrent membranoproliferative glomerulonephritis and acute transplant glomerulopathy in transplanted kidneys. Recently, anticardiolipin antibodies (ACA) have been linked with chronic HCV infection. A few reports have suggested an association between ACA and renal allograft thrombosis. This study examines the clinical and pathologic features of HCV-positive renal allograft recipients at our institution. From 1990 to 1996, 379 kidney transplants were performed. We identified 18 recipients (4.8%) with HCV-positive serology pretransplant. Determination of IgG and IgM ACA was performed by enzyme-linked immunosorbent assay, using pretransplant sera. Among the 18 patients, five patients presented with biopsy-proven de novo renal thrombotic microangiopathy (RTMA), occurring 5 to 120 d (median, 14 d) after transplant. No differences in pretransplant characteristics were observed between patients with (n = 5) or without (n = 13) RTMA. All five patients had a positive ACA test (either IgG or IgM titer > 2 SD above normal), compared with only one of 13 patients without RTMA. The mean value for IgG ACA was significantly higher in the RTMA patients than in patients without RTMA (22.9 +/- 14.1 versus 6.9 +/- 4.9 IgG phospholipid units, P = 0.02); however, there were no significant differences in IgM ACA titers. Rheumatoid factor and complement C4 levels were normal in pretransplant sera of patients with RTMA. Patients with RTMA had their cyclosporine withdrawn (four of five) or the dose was decreased (one of five), and one of five underwent plasmapheresis. Four of five patients died within 5 yr after transplant, compared with no deaths in the other 13 patients. Finally, as a control group, seven HCV-negative renal allograft recipients who presented with RTMA/hemolytic uremic syndrome during the same time period were found to have normal ACA values (IgG or IgM). RTMA associated with ACA in HCV-positive renal allograft recipients may represent a new clinical entity. The occurrence of this syndrome may have deleterious consequences for patient and graft survival.

Adult↗

A critical role for human CD4+ T-cells in rejection of porcine islet cell xenografts.

T-cell-mediated rejection is likely to present a significant barrier to porcine islet xenotransplantation. Little is known, however, about human anti-porcine islet rejection because no suitable model exists to study this process. To address this problem, we have developed an immunodeficient mouse model to study rejection of fetal porcine islet cell clusters (ICCs) by human lymphocytes. Transplantation of porcine ICCs into hyperglycemic recombinase activating gene-deficient (R-) mice restores normal blood glucose levels within 5 weeks. Adoptive transfer of in vitro-stimulated human peripheral blood mononuclear cells into R- mice before islet cell transplantation leads to acute cellular rejection of porcine ICCs. The first human cells observed to infiltrate rejecting grafts are CD4+ T-cells. Although CD8+ T-cells are observed within the grafts at later time points, CD4+ T-cells predominate until the graft is destroyed. Adoptive transfer of purified human CD4+ T-cells before ICC transplantation is sufficient to cause acute cellular rejection. These data demonstrate that human CD4+ T-cells play a critical role in porcine ICC xenograft rejection.

Adoptive Transfer↗

Disseminated intravascular coagulation in association with the delayed rejection of pig-to-baboon renal xenografts.

BACKGROUND: Intravascular fibrin deposition and platelet sequestration occur with porcine xenograft rejection by baboons. Disseminated intravascular coagulopathy may arise either as a direct consequence of the failure to fully deplete xenoreactive natural antibodies and block complement, or because of putative cross-species molecular incompatibilities in this discordant species combination. METHODS: Three baboons were conditioned with retrovirally transduced autologous bone marrow to induce tolerance to swine antigens. Xenoreactive natural antibodies and complement were depleted by plasmapheresis and the use of Gal alpha1-3Gal column adsorptions; baboons were then splenectomized and underwent renal xenografting from inbred, miniature pigs. Soluble complement receptor type-1 with protocol immunosuppression (mycophenolate mofetil, 15-deoxyspergualin, steroids, and cyclosporine) was administered. RESULTS: A bleeding diathesis was clinically evident from days 5 to 12 after transplantation in two baboons. Low levels of circulating C3a, C3d, and iC3b were measured despite the absence of functional circulating complement components. Profound thrombocytopenia with abnormalities in keeping with disseminated intravascular coagulopathy were observed. Prolongation of prothrombin and partial thromboplastin times was accompanied by evidence for tissue factor-mediated coagulation pathways, high levels of thrombin generation (prothrombin fragment F(1+2) production and thrombin-antithrombin complex formation), fibrinogen depletion, and production of high levels of the fibrin degradation product D-dimer. Importantly, these disturbances resolved rapidly after the excision of the rejected xenografts in two surviving animals. Histopathological examination of the rejected xenografts confirmed vascular injury, fibrin deposition, platelet deposition, and localized complement activation. CONCLUSIONS: Systemic coagulation disturbances are associated with delayed xenograft rejection.

Animals↗

Plasma exchange and tacrolimus-mycophenolate rescue for acute humoral rejection in kidney transplantation.

BACKGROUND: Acute renal allograft rejection associated with the development of donor-specific alloantibody (acute humoral rejection, AHR) typically carries a poor prognosis. The best treatment of this condition remains undefined. METHODS: During a 14-month period, 73 renal transplants were performed. During the first postoperative month, five recipients (6.8%) with AHR were identified. The diagnosis was based on: (1) evidence of severe rejection, resistant to steroid and antilymphocyte therapy; (2) typical pathologic features; and (3) demonstration of donor-specific alloantibody (DSA) in recipient's serum at the time of rejection. Pretransplant donor-specific T- and B-cell cross-matches were negative. RESULTS: Plasma exchange (PE, four to seven treatments per patient) significantly decreased circulating DSA to almost pretransplant levels in four of five patients, and improvement in renal function occurred in all patients. One patient had recurrent renal dysfunction in the setting of an increase in circulating DSA. A second series of five PE treatments decreased DSA and reversed the rejection episode. Rescue therapy with tacrolimus (initial mean dose: 0.14+/-0.32 mg/kg/day) and mycophenolate mofetil (2 g/day) was used in five of five and four of five patients, respectively. With a mean follow-up of 19.6+/-5.6 months, patient and allograft survival are 100%. Renal function remains excellent with a mean current serum creatinine of 1.2+/-0.3 mg/dl. (range: 0.9-1.8 mg/dl). CONCLUSIONS: Our findings suggest that a therapeutic approach combining PE and tacrolimus-mycophenolate mofetil rescue has the potential to improve the outcome of AHR.

Acute Disease↗

De novo collapsing glomerulopathy in renal allografts.

BACKGROUND: Collapsing glomerulopathy is a recently described form of glomerular injury characterized by capillary collapse and visceral epithelial hypercellularity associated with nephrotic range proteinuria and a rapid, progressive decline in renal function. The lesion has rarely been described in allografts. METHODS: We reviewed 892 allograft biopsies from a population of 1079 recipients who received renal transplants between 1978 and 1996. RESULTS: Five cases of de novo collapsing glomerulopathy were identified (0.6% of biopsies; 3.2% since 1993). None occurred before 1993. The patients were 31 to 66 years of age and they presented 6 to 25 months after transplantation. The 24-hr urinary protein ranged from 1.8 to 11.8 g. All patients and donors were negative for the human immunodeficiency virus and had no risk factors for human immunodeficiency virus infection. Diffuse or focal, global or segmental collapse of glomerular capillaries, swelling and hypercellularity of the visceral epithelium, hyaline arteriolosclerosis, and interstitial fibrosis were characteristic histologic features. Two cases had concomitant glomerular immune complex deposits. Progressive decline in allograft function occurred within 2-24 months after diagnosis, culminating in return to dialysis in all patients. CONCLUSION: Collapsing glomerulopathy can arise in renal allografts as a de novo disease. Although its pathogenesis remains to be clarified, it is important to distinguish this lesion in allografts as it can be associated with rapidly progressive graft failure.

Adult↗

Humanized IgG1 and IgG4 anti-CD4 monoclonal antibodies: effects on lymphocytes in the blood, lymph nodes, and renal allografts in cynomolgus monkeys.

BACKGROUND: Optimizing therapeutic monoclonal antibody (mAb) depends on the incorporation of the necessary effector functions and the development of hypoantigenic "humanized" antibodies by genetic engineering, which then need to be tested in appropriate preclinical trials. METHODS: Constructs of humanized OKT4A containing the complementarity-determining region (CDR) of murine OKT4A and the framework and constant regions of human light (kappa) and heavy chains (IgG1 and IgG4) were prepared and tested in cynomolgus monkeys who received a renal allograft. A prophylactic course of CDR-OKT4A/human (h) IgG1 or CDR-OKT4A/ hIgG4, either as high-dose single bolus (10 mg/kg) or as low-dose multiple infusion (1 mg/kg for 12 days) was given, and the effects on graft survival, immunohistology, circulating cells, and lymph node cells were assessed. RESULTS: The IgG1 isotype induced coating of T cells, modulation of surface CD4 molecules, and profound depletion of CD4+ lymphocytes in peripheral blood, which persisted as long as the animals were followed (up to 7 weeks). The IgG4 isotype induced only cell coating without cell clearance or modulation. In lymph nodes, coating of lymphocytes (approximately 60%) was seen with both isotypes in the earliest sample (6 hr). After 2 days, significant depletion of lymph node CD4 cells was evident, with a decrease in the CD4 to CD8 ratio in the IgG1-treated group; no depletion occurred in the IgG4 group. The emigration of CD4+ cells into the allograft was significantly delayed in the CDR-OKT4A/hIgG1-treated animals when compared with the CDR-OKT4A/hIgG4 group as judged by immunocytochemistry (23.8+/-13.2 days vs. 7.4+/-1.5 days, P<0.001) or interleukin-2-promoted T-cell outgrowth from allograft biopsies (22.2+/-11.0 days vs. 6.3+/-0.5 days, P<0.01). CONCLUSIONS: This study demonstrates that the in vivo effects of CDR-grafted OKT4A are dependent on its isotype. The depleting mAb CDR-OKT4A/hIgG1 significantly delays the entry of CD4+ cells into the graft, inhibiting the early phase of rejection. However, graft rejection occurs when CD4+ cells eventually infiltrate the graft, even in the presence of depressed levels of circulating CD4+ cells. Both isotypes demonstrated therapeutic efficacy: graft survival was prolonged over controls. In the case of CDR-OKT4A/hIgG4, neither lymphocyte depletion, antigenic modulation, nor prevention of infiltration is necessary for a beneficial effect, which indicates that this mAb blocks CD4 function or renders the CD4+ cell less responsive. The lack of depletion is a feature of potential clinical advantage in minimizing the risk of excessive immunosuppression.

Animals↗

Expression of heme oxygenase-1 can determine cardiac xenograft survival.

The rejection of concordant xenografts, such as mouse-to-rat cardiac xenografts, is very similar to the delayed rejection of porcine-to-primate discordant xenografts. In concordant models, this type of rejection is prevented by brief complement inhibition by cobra venom factor (CVF) and sustained T-cell immunosuppression by cyclosporin A (CyA). Mouse hearts that survive indefinitely in rats treated with CVF plus CyA express the anti-inflammatory gene heme oxygenase-1 (HO-1) in their endothelial cells and smooth muscle cells. The anti-inflammatory properties of HO-1 are thought to rely on the ability of this enzyme to degrade heme and generate bilirubin, free iron and carbon monoxide. Bilirubin is a potent anti-oxidant, free iron upregulates the transcription of the cytoprotective gene, ferritin, and carbon monoxide is thought to be essential in regulating vascular relaxation in a manner similar to nitric oxide. We show here that the expression of the HO-1 gene is functionally associated with xenograft survival, and that rapid expression of HO-1 in cardiac xenografts can be essential to ensure long-term xenograft survival.

Animals↗

Comparative histopathology of hepatic allografts and xenografts in the nonhuman primate.

Liver transplantation was performed in the following groups: Group 1, baboon-to-baboon allografting (n=8) (control group); Group 2, ABO-compatible vervet monkey-to-baboon xenografting (n=8); Group 3, ABO-incompatible vervet monkey-to-baboon xenografting (n=6); Group 4, pig-to-baboon xenografting (n=2); and Group 5, pig-to-rhesus monkey xenografting (n=6). Immunosuppressive therapy (cyclosporine, cyclophosphamide, and methylprednisolone) was begun 2-7 days before liver transplantation (LTx) and continued indefinitely after LTx. The liver grafts were biopsied pre-LTx and subsequently post-LTx at approximately 1 hr, 2-3 hr, 7-10 days, 20-30 days, 60 days, 120 days, and at euthanasia or spontaneous death. There were 19 successful LTxs with grafts functioning from one hour to 123 days. No pig liver (Groups 4 and 5) survived more than 5.5 hr, as there was an immediate severe vascular response after reperfusion, typical of hyperacute rejection (congestion and hemorrhage). Vascular rejection was not seen in allografts (Group 1), but early mild-to-moderate congestion and neutrophil infiltration were present in concordant xenografts (Groups 2 and 3), which were associated with moderate deposition of immunoglobulin, C3, and fibrinogen. Lymphoid cell infiltration, bile duct damage, and portal vein endothelialitis in the portal zones occurred later in both allografts (Group 1) and concordant xenografts (Groups 2 and 3), developing earlier in the presence of ABO-incompatibility (Group 3). In concordant xenografts it was usually followed by fibrosis.

Animals↗

Demonstration of multilineage chimerism in a nonhuman primate concordant xenograft model.

Prior studies from our laboratory have demonstrated that a nonmyeloablative conditioning regimen can induce transient mixed chimerism and renal allograft tolerance between MHC disparate cynomolgus monkeys. We have also shown that this preparative regimen can be extended to a concordant baboon to cynomolgus xenograft model by adding, to the post transplant protocol, therapy designed to prevent antibody production. Here we examine the use of brequinar (BQR) for this purpose and the efficacy of two new reagents developed to demonstrate the establishment of chimerism in the xenograft recipients. The cynomolgus recipients were conditioned with WBI (300 cGy), TI (700 cGy), ATG, cyclosporine, and brequinar sodium. To detect engraftment of the donor marrow, we prepared a polyclonal cynomolgus anti-baboon antibody (CABA) and a monoclonal antibody (215.1), which distinguish baboon and cynomolgus lymphocytes and granulocytes. We employed flow cytometry analysis to detect multilineage chimerism in the xenograft recipients. Five of the six recipients monitored using our new reagents (CABA and 215.1) developed detectable chimerism and only one of these animals lost its kidney to rejection. However, other complications have not permitted assessment of long-term outcome. The features of the multilineage chimerism included the detection of donor granulocytes (1.8-77.4%) and lymphocytes (2.4-22.2%) for 9 to 37 days. Our new reagents permit the detection of multilineage mixed chimerism, which may be a predictor of xenograft tolerance. We also conclude that brequinar may be effective in preventing antibody formation, but because of its toxicity, it is probably not the drug of choice for extension of the mixed chimerism protocol to concordant xenografts.

Animals↗

Hepatitis C viral infection is associated with fibrillary glomerulonephritis and immunotactoid glomerulopathy.

The most common form of glomerular disease seen in association with hepatitis C virus (HCV) infection is membranoproliferative glomerulonephritis, with or without associated cryoglobulinemia. This study examines four cases of fibrillary glomerulonephritis and two cases of immunotactoid glomerulopathy in association with HCV infection. Findings at presentation included proteinuria, renal insufficiency, and hematuria. Renal biopsy revealed a membranoproliferative pattern of glomerular disease in five cases, and a membranous glomerulopathy with mesangial proliferative features in one. On immunofluorescence, all cases stained with IgG and C3. Electron microscopy revealed fibrils of the expected diameter, 16 to 28 nm in fibrillary glomerulonephritis and 33 to 45 nm in immunotactoid glomerulopathy. In only one case were cryoglobulins detected (at low titer and on only one of three assays). Antiviral therapy was not given in any of the six cases. Outcomes were mixed, with progression to renal failure occurring in two patients and persistent proteinuria with stable or improved renal function in three. Follow-up is not available on the sixth case. Both fibrillary glomerulonephritis and immunotactoid glomerulopathy have features that overlap with cryoglobulinemic glomerulonephritis. The relatedness of these three entities in a subset of patients with HCV infection suggests a common pathogenic mechanism of glomerular deposition of organized deposits.

Adult↗

The prognostic significance of specific arterial lesions in acute renal allograft rejection.

Diagnosis of allograft dysfunction relies on the assessment of arterial lesions. This study was designed to evaluate the prognostic significance of common specific vascular lesions in acute allograft rejection. Renal allograft biopsies (n = 111) with acute cellular rejection were scored for endarteritis, mononuclear cell adherence to endothelial cells, endothelial activation, fibrinoid necrosis, foam cells, and intimal fibrosis. These vascular lesions and other classic histologic features were correlated with outcome. Rejection with endarteritis (found in 54% of biopsies) was less responsive to steroid treatment than rejection without endarteritis, as judged by recovery of creatinine in 3 wk (P = 0.03). Larger numbers of sampled arteries improved the predictive accuracy. Sticking of mononuclear cells to endothelial cells also correlated with steroid resistance (P < 0.05). Rejection with or without endarteritis responded to OKT3/antithymocyte globulin treatment equally well (61% versus 65%, respectively). Rejection with fibrinoid arterial necrosis (4% of biopsies) did not respond to either steroids or antibodies (0%). One-year graft failure was 21% without endarteritis, 28% with endarteritis, and 100% with fibrinoid necrosis. Activated endothelial cells and interstitial hemorrhage were associated with endarteritis and graft failure (all P < 0.05). None of the other scored features had any statistically significant correlation with outcome. Thus, specific arterial lesions (endarteritis, fibrinoid necrosis, activated endothelial cells, mononuclear cell margination) and interstitial hemorrhage, but not the extent of the interstitial infiltrate or tubulitis, are correlated with response to antirejection therapy and/or 1-yr clinical outcome. Grading systems for therapeutic trials and clinical management should emphasize scoring of specific vascular lesions.

Acute Disease↗

Alloantibody- and T cell-mediated immunity in the pathogenesis of transplant arteriosclerosis: lack of progression to sclerotic lesions in B cell-deficient mice.

BACKGROUND: The relative roles of humoral and cell-mediated immunity in generating chronic allograft arteriopathy have been considered for several years. We have sought definitive evidence regarding these questions using heart transplants between mouse strains selected to isolate the effects of each form of immune responsiveness. METHODS: B10.BR hearts were transplanted to B cell-deficient recipients that are devoid of immunoglobulins (muMT). Their vessels were compared with those of transplants to fully reactive recipients of the same genetic background (C57BL/6). Additional evidence came from comparisons in other strain combinations. RESULTS: Transplants to B cell-deficient and normal recipients developed cellular coronary endothelialitis, with destruction of the arterial media, accompanied by the adherence of T lymphocytes and macrophages to endothelial surfaces. In B cell-deficient recipients, there was no centripetal migration of smooth muscle, alpha-actin-positive myointimal cells and little deposition of collagen or ground substance, compared with lesions in fully reactive C57BL/6 recipients in which these changes are prominent. In two other donor-recipient combinations in which anti-donor antibodies are generally undetectable (B10.BR-->B10.A and 129-->C57BL/6), intimal fibrosis was uncommon. However, B10.A recipients became capable of producing fibrous lesions in B10.BR hearts when given anti-donor, class I antibody by passive transfer, as we have observed previously in scid recipients. CONCLUSIONS: Taken together, these findings indicate that endothelialitis is antibody-independent, whereas antibodies potentiate and can be sufficient for fully developed, fibrous, chronic allograft vasculopathy. Therapeutic strategies for controlling chronic lesions must consider inhibition of the humoral response.

Animals↗

Expression of an allogeneic MHC DRB transgene, through retroviral transduction of bone marrow, induces specific reduction of alloreactivity.

BACKGROUND: Transfer of MHC class II genes, through allogeneic bone marrow (BM) transplantation, induced long-lasting acceptance of renal allografts in miniature swine. To adapt this approach to the clinic, we have now examined whether somatic transfer of allogeneic class II DR genes, into otherwise autologous bone marrow cells (BMC), can provide the matching required for inducing immune tolerance. METHODS: Autologous BMC were transduced ex vivo with recombinant retroviruses for allogeneic DRB followed by BM transplantation. The recipients were then challenged with kidney allografts solely matched to the DRB transgene. RESULTS: Five miniature swine received autologous BMC conditioned with growth factors and transduced with recombinant retrovirus vectors containing allogeneic (n=4) or syngeneic (n=1) class II DRB genes and a drug-resistance marker. Expression of retrovirus-derived products in BM-derived cells was demonstrated by the detection of drug-resistant colony-forming progenitors and the presence of DRB retrovirus transcripts in peripheral cells. Analysis of selective mixed lymphocyte reaction responses to DR or DQ antigens indicated decreased reactivity toward the transduced DR gene product. Among all of the animals receiving fully mismatched kidney allografts, but with DRB matched to the transduced DRB, the one with the highest gene transduction rate showed stable allograft function and essentially normal renal histology for 2.5 years. A control animal, which received a syngeneic DRB gene, rejected its kidney allograft in 120 days after an earlier rejection crisis. CONCLUSIONS: These studies demonstrate that allogeneic MHC gene transfer into BM provides a new strategy for inducing tolerance across MHC barriers.

Animals↗