Chronic renal allograft dysfunction: a role for mycophenolate mofetil?
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Publications and source records attributed to A B Cosimi.
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The effect of long-term pharmacologic immunosuppression (PI) on anti-Galalpha1-3Gal (alphaGal) antibody (Ab) levels has not been determined previously in humans. In this study, we measured alpha Gal Ab levels by ELISA in 14 healthy volunteers (controls) and in 70 patients with grafts (kidney, heart, liver) who had received different combinations of PI (including cyclosporine, tacrolimus, azathioprine, mycophenolate mofetil, and steroids) for >3 months. There was great variation in Gal IgM (<80-fold) and IgG (<160-fold). There was no difference in Gal IgM or Gal IgG between any one group and any other. In kidney patients with either high (mean 68%) or low (mean 6%) panel-reactive alloantibodies, there was no difference in alpha Gal Ab level or serum cytotoxicity to pig cells. In vitro immunoadsorption of alphaGal Ab from the serum did not change panel-reactive alloantibody positivity. Therapy with OKT3, a mouse product that might stimulate alphaGal Ab production, led to no significant change in patient Ab levels. We conclude that long-term (>3 months) PI does not reduce Gal Ab levels sufficiently to be of clinical value in xenotransplantation.
BACKGROUND: The optimal regimen for the prevention and treatment of cytomegalovirus (CMV) disease in solid organ transplant recipients remains to be defined, particularly for patients with abnormal or changing renal function. METHODS: A prospective trial was conducted in patients receiving i.v. ganciclovir using a standardized dosing nomogram that corrects for renal function. Steady state peak (P) and trough (T) serum levels were determined by high-performance liquid chromatography and correlated with therapeutic outcomes and toxicities attributable to ganciclovir. RESULTS: Over the study period, 44 individuals received ganciclovir prophylaxis (5 mg(kg/day) and 25 patients were treated (5 mg/kd q12 hr) for symptomatic CMV disease. Ganciclovir levels (microg/ml+/-SD) achieved in prophylaxis were P: 7.98+/-3.34, T: 3.03+/-2.63; and in treatment were P: 9.00+/-3.72, T: 2.65+/-1.82. Despite corrections for renal dysfunction, undialyzed patients with serum creatinine >3.0 mg/dl had trough levels in excess of the population mean (T: range 3-8 microg/ml). Failure of prophylaxis (disease) or therapy (relapse) occurred in 14 patients; 8 of these were at risk for primary infection (donor CMV seropositive, recipient seronegative, P<0.01). Patients at greatest risk for relapse after treatment of CMV disease were liver transplant recipients, patients with ganciclovir-resistant viral isolates, and renal patients with six antigen MHC donor-recipient mismatches. CONCLUSIONS: This trial demonstrates the efficacy of a nomogram for ganciclovir dosing during renal dysfunction; reduced doses can be used for prophylaxis for undialyzed patients with renal dysfunction (1.25 mg/kg/day for Cr > or =3.0, 1.25 mg/kg QOD for Cr > or =5.0). Some groups of transplant recipients may require more intensive anti-CMV regimens.
BACKGROUND: Sentinel lymph node (SLN) biopsy has rapidly become the procedure of choice for assessing the lymph node status of patients with 1992 American Joint Committee on Cancer stages I and II melanoma. The procedure was designed to be less invasive and, therefore, less likely to cause complications than a complete lymph node dissection. To our knowledge, this is the first report in the literature documenting extremity lymphedema following SLN biopsy. OBSERVATION: We report 5 cases of lymphedema after SLN biopsy in patients being routinely followed up after melanoma surgery at the Massachusetts General Hospital Melanoma Center, Boston. Three cases were mild, and 2 were moderate. Potential contributing causes of lymphedema were present in 4 patients and included the transient formation of hematomas and seromas, obesity, the possibility of occult metastatic melanoma, and the proximal extremity location of the primary melanoma excision. Four of the patients underwent an SLN biopsy at our institution. We used the total number of SLN procedures (N = 235) that we have performed to calculate a 1.7% baseline incidence of lymphedema after SLN biopsy. CONCLUSIONS: Sentinel lymph node biopsy can be complicated by mild and moderate degrees of lymphedema, with an incidence of at least 1.7%. Some patients may have contributing causes for lymphedema other than the SLN biopsy, but many of these causes are difficult to modify or avoid.
Hepatitis C virus (HCV) infection is associated with mixed cryoglobulinemia and membranoproliferative glomerulonephritis. After orthotopic liver transplantation (OLT), isolated cases of HCV-associated mixed cryoglobulinemia have been reported. We determined the prevalence and clinical characteristics of mixed cryoglobulinemia in HCV-infected liver transplant recipients at our institution. Between January 1991 and February 1998, a total of 191 OLTs were performed in 178 patients. Among these transplant recipients, 53 patients (29.8%) had positive serological test results for HCV infection by second-generation enzyme-linked immunosorbent assay. We studied 31 HCV-positive (HCV+) and 21 HCV-negative (HCV-) transplant recipients (control group). Renal and liver function studies were performed, and cryoglobulin, rheumatoid factor, C3, C4, and serum HCV RNA levels and genotype were determined. Results were compared using unpaired Student's t-test for continuous variables and Fisher's exact test for categorical variables. Baseline characteristics were similar between the groups. Six patients in the HCV+ group (19%) had mixed cryoglobulins present at the time of evaluation compared with none in the HCV- group (P =. 036). The only parameter associated with cryoglobulins in the HCV+ group was rheumatoid factor (P <.01). In 3 HCV+ patients with cryoglobulins, extrarenal signs of cryoglobulinemia were present. Glomerulonephritis was found in 4 HCV+ patients. Two patients with purpura and cryoglobulinemia had reduced clinical manifestations after antiviral therapy. In conclusion, mixed cryoglobulinemia was found in approximately 20% of the HCV+ liver transplant recipients. The presence of purpura or glomerulonephritis suggests HCV-associated mixed cryoglobulinemia, a clinical syndrome that may respond favorably to antiviral therapy.
BACKGROUND: Although the primary treatment of symptomatic cytomegalovirus (CMV) disease in organ transplant recipients is successful in >90% of individuals, relapsing disease, particularly in those with primary infection, remains an important problem. Previously, we had observed that the rate of symptomatic recurrence was >60% in those with primary disease (seronegative for CMV prior to transplant), and approximately 20% in those who were seropositive prior to transplant. The present study was undertaken to determine whether a maintenance regimen of oral ganciclovir for 2-3 months added to the routine 14-21 days of intravenous ganciclovir would further prevent symptomatic CMV recurrence. METHODS: From May 1995 until June 1998, all kidney and liver transplant recipients with confirmed tissue-invasive CMV disease or CMV syndrome were treated with 14-21 days of intravenous ganciclovir (5 mg/kg b.i.d. with dose adjusted for renal dysfunction) followed by 2-3 months of oral ganciclovir (2 g daily). The incidence of recurrence of CMV disease and/or viremia during and after oral therapy was then determined over a mean follow-up of 530.6 days. RESULTS: Thirty-seven patients, 19 kidney and 18 liver transplant recipients, were studied; 5 had biopsy-proven tissue-invasive disease (13.5) and 32 suffered a CMV syndrome (86.5). Twenty-one of these patients (58.6) were seronegative for CMV prior to transplant and received an allograft from a seropositive donor (D+/R-). Overall, 10 patients (27.0) developed CMV recurrence. Eight of 21 patients who were D+/R- for CMV (38.1) developed recurrence as opposed to 2 of 16 patients with other serologic status (12.5) (P=0.14). Patients with recurrent CMV disease and/or viremia had a peak antigenemia assay titer during their initial CMV event of 319.2 positive cells/2 slides compared with 109.8 positive cells/2 slides for patients without recurrent CMV infection (P=0.14); the trend of having a higher peak antigenemia assay titer among patients who recurred occurred both in patients who were at risk of primary CMV infection (D+/R- for CMV) and in those who were not. Two patients developed recurrent infection with strains of CMV that were resistant to ganciclovir. CONCLUSIONS: This new therapeutic regimen of oral ganciclovir following intravenous ganciclovir slightly reduced the overall rate of recurrent CMV disease and/or viremia, but it still did not adequately prevent CMV recurrence in patients who are at risk of primary infection prior to transplant. Of particular concern, 2 patients with primary infection treated with this regimen developed ganciclovir-resistant recurrent disease.
BACKGROUND: Leukopenia is not infrequently encountered following solid organ transplantation, most often in the setting of cytomegalovirus (CMV) disease and/or its treatment with ganciclovir. The present study was undertaken to determine the safety and efficacy of granulocyte colony-stimulating factor (G-CSF) in renal and liver transplant recipients with leukopenia. METHODS: Between 1 June 1991 and 1 June 1998, patients received G-CSF for 2 indications: 1) white blood cell count (WBC) < 3000/mm3, with a decline from baseline; 2) to shorten the duration of leukopenia associated with chemotherapy. A retrospective review of the outcome of such therapy was undertaken. RESULTS: 50 patients were given 100 courses of treatment with G-CSF; 35 of 168 liver transplant recipients (20.8%), 14 of 391 kidney transplant recipients (3.6%), and 1 of 4 recipients of combined liver-kidney transplants (25.0%) received from 1 to 9 courses of G-CSF. Presumed causes of leukopenia were identified as ganciclovir in 28 cases (28.0%), CMV in 21 (21.0%), chemotherapy in 12 (12.0%), sepsis in 11 (11.0%), azathioprine in 5 (5.0%), interferon in 3 (3.0%) and other causes in 20 cases (20.0%). The median length of therapy was 10.0 days (range 1-154 days) and the average dose of daily G-CSF received was 3.9+/-1.5 microg/kg/day. The average WBC was (2.4+/-1.3 )x 10(3)/microl at the beginning of therapy, and (13.8+/-9.1) x 10(3)/microl at the end of therapy. In 7 of 100 treatments (7.0%) a WBC of 5.0 x 10(3)/microl was not reached during G-CSF therapy; in 6 of these 7 cases, G-CSF therapy lasted fewer than 4 days. The mean time needed to reach a WBC count of 5 x 10(3)/microl was 3.7+/-3.3 days among 71 patients who had daily WBC counts sent. Eight G-CSF treatments (8.0%) were followed by episodes of rejection appearing during or within 2 months of treatment; 5 of them were biopsy-documented. No relation was found between the highest WBC obtained during G-CSF therapy and the risk of rejection. Eight patients (16.0%) died while receiving G-CSF, all from infection. Six of these 8 patients were receiving G-CSF for leukopenia secondary to sepsis. Overall, 25 patients (50.0%) received 49 courses of G-CSF secondary to CMV and/or ganciclovir therapy. In 40 of 49 courses (81.6%), ganciclovir could be continued at recommended doses. Twenty-one of 22 patients (95.5%) with symptomatic CMV infection had a clinical response to ganciclovir. Sixteen of 18 patients (88.9%) treated for a CMV infection and followed with serial antigenemia assays attained microbiological cure; both patients who did not were infected with ganciclovir resistant CMV. CONCLUSION: G-CSF was well tolerated in solid organ transplant recipients. It was particularly useful in patients with CMV disease, allowing optimal ganciclovir therapy.
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BACKGROUND: We have previously demonstrated that induction of mixed lymphohematopoietic chimerism resulted in donor specific renal allograft tolerance without the need for chronic immunosuppression in nonhuman primates. Here we have tested whether tolerance can be similarly induced for baboon to cynomolgus renal xenografts. METHODS: After preconditioning with anti-thymocyte globulin (ATG), nonlethal total body irradiation, and thymic irradiation, cynomolgus monkeys underwent splenectomy, native nephrectomies, and baboon marrow and renal transplants. Postoperative cyclosporine was given for 28 days. RESULTS: In Group 1 (n=2, survival= 13, 14 days), both animals developed anti-donor immunoglobulin G, had biopsy findings consistent with humoral rejection, and showed rapidly progressive xenograft failure. In Group 2 (n=5, survival=1, 16, 33, 112, 190 days), 15-deoxyspergualine was added to the regimen (Day 0-13). In one long-term survivor, donor specific hyporesponsiveness was first observed (mixed lymphocyte culture [(MLR]) on Day 48. MLR reactivity returned on Day 64 together with the development of anti-donor antibody and subsequent xenograft failure on Day 112. Donor specific T-cell hyporesponsiveness was detected in the other long-term survivor for the first 133 days, after which a donor-specific skin xenograft was placed, (survival 24 days). Following the skin graft rejection, a rise in the MLR, development of anti-donor antibody and progressive rejection of the renal xenograft were observed. CONCLUSIONS: Antibody-mediated rejection seems to constitute the major difference between concordant xenografts and allografts. Addition of 15-deoxyspergualine for 2 weeks posttransplant extended concordant primate xenograft survival to 6 months without chronic immunosuppression. In contrast to the allogeneic model, renal transplant acceptance in this xenogeneic system was interrupted by placement of a donor-specific skin graft.
BACKGROUND: Multilineage chimerism and long-term acceptance of renal allografts has been produced in non-human primates conditioned with a nonmyeloablative regimen. Our study was undertaken to evaluate the immunological and pathological status of long-term survivors and to define the role of splenectomy and of the primarily vascularized kidney in the regimen. METHOD: Monkeys were treated with the basic regimen, including: total body irradiation, thymic irradiation, antithymocyte globulin, donor bone marrow transplantation, and a 4-week course of cyclosporine after which no further immunosuppression was given. They were divided into four groups according to the timing of kidney transplantation (KTx) and splenectomy as follows; group A (n=13): KTx and splenectomy on the day of donor bone marrow transplantation (day 0); group B (n=3): KTx on day 0 without splenectomy; group C (n=7): splenectomy on day 0 but delayed KTx until 3 to 16 weeks post-donor bone marrow transplantation; group D (n=3): both splenectomy and KTx delayed until day 120 post-donor bone marrow transplantation. RESULTS: In group A, 11 of 13 monkeys developed chimerism and 9 monkeys achieved long-term survival of 4 to 70 months without evidence of chronic vascular rejection. Alloantibodies were detected in only one long-term survivor. In contrast, all three monkeys in group B developed alloantibodies and rejected their allografts. In group C, long-term survival without alloantibody production was observed in two of three monkeys that had developed chimerism. In group D, all three recipients were sensitized and rejected the kidney allografts rapidly after transplantation. CONCLUSIONS: 1) Production of anti-donor antibody was prevented in most recipients that developed mixed chimerism in the regimens with splenectomy at the time of donor bone marrow transplantation. 2) If splenectomy is not included in the initial conditioning regimen, induction of B cell tolerance is less likely and the result is late onset of alloantibody production and allograft rejection. 3) Immediate transplantation of the kidney at the time of recipient conditioning is not essential for induction of donor specific hyporesponsiveness by bone marrow transplantation.
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BACKGROUND: Experimental and clinical evidence has demonstrated that the establishment of allogeneic chimerism after bone marrow transplantation may provide donor-specific tolerance for solid organ allografts. METHODS: Based on the preliminary results of a clinical trial using nonmyeloablative preparative therapy for the induction of mixed lymphohematopoietic chimerism, we treated a 55-year-old woman with end stage renal disease secondary to multiple myeloma with a combined histocompatibility leukocyte antigen-matched bone marrow and renal transplant after conditioning with cyclophosphamide, antithymocyte globulin, and thymic irradiation. RESULTS: The posttransplant course was notable for early normalization of renal function, the absence of acute graft-versus-host disease, and the establishment of mixed lymphohematopoietic chimerism. Cyclosporine, which was the only posttransplant immunosuppressive therapy, was tapered and discontinued on day +73 posttransplant. No rejection episodes occurred, and renal function remains normal on day + 170 posttransplant (14 weeks after discontinuing cyclosporine). Although there is presently no evidence of donor hematopoiesis, there is evidence of an ongoing antitumor response with a recent staging evaluation showing no measurable urine kappa light chains. The patient remains clinically well and is off all immunosuppressive therapy. CONCLUSION: This is the first report of the deliberate induction of mixed lymphohematopoietic chimerism after a nonmyeloablative preparative regimen to treat a hematological malignancy and to provide allotolerance for a solid organ transplant.
BACKGROUND: Sentinel lymph node biopsy following radioisotope labeling is a recently developed, minimally invasive surgical staging procedure used in the management of primary cutaneous malignant melanoma. If histologic analysis reveals melanoma metastasis in the sentinel lymph node, completion lymphadenectomy is performed and adjuvant therapy considered. The routine pathologic assessment of the sentinel lymph node consists of bisecting the lymph node along its long axis and histologic examination of one hematoxylin and eosin-stained section of each cut surface. METHODS: In this study, the authors reexamined 235 sentinel lymph nodes reported as negative for melanoma metastasis following routine histologic examination, from 94 patients with American Joint Committee on Cancer (AJCC) Stage I and II cutaneous melanoma. RESULTS: Deeper sections into the lymph node and immunohistochemical stains with antibodies to S-100, HMB-45, NK1C3, and MART-1 led to the identification of microscopic metastases in 11 sentinel lymph nodes from 11 patients and capsular nevi in 9 sentinel lymph nodes from 8 patients. CONCLUSIONS: Deeper serial sections and immunohistochemical stains detected microscopic metastases in approximately 12% of cases that would be reported as negative for metastasis by routine pathologic analysis. These techniques also allowed for the identification of capsular melanocytic nevi in the sentinel lymph nodes of 9% of patients. [See editorial on pages 551-2, this issue.]
BACKGROUND: The present study examined the potential role of gene therapy in the induction of tolerance to anti-porcine major histocompatibility complex (SLA) class II-mediated responses after porcine renal or skin xenografts. METHODS: Baboons were treated with a non-myeloablative or a myeloablative preparative regimen before bone marrow transplantation with autologous bone marrow cells retrovirally transduced to express both SLA class II DR and neomycin phosphotransferase (NeoR) genes, or the NeoR gene alone. Four months or more after bone marrow transplantation, the immunological response to a porcine kidney or skin xenograft was examined. Both the renal and skin xenografts were SLA DR-matched to the transgene, and recipients were conditioned by combinations of complement inhibitors, adsorption of natural antibodies, immunosuppressive therapy, and splenectomy. RESULTS: Although the long-term presence of the SLA transgene was detected in the peripheral blood and/or bone marrow cells of all baboons, the transcription of the transgene was transient. Autopsy tissues were available from one animal and demonstrated expression of the SLA DR transgene in lymphohematopoietic tissues. After kidney and skin transplantation, xenografts were rejected after 8-22 days. Long-term follow-up of control animals demonstrated that high levels of induced IgG antibodies to new non-alphaGal epitopes developed after organ rejection. In contrast, induced non-alphaGal IgG antibody responses were minimal in the SLA DR-transduced baboons. CONCLUSIONS: Transfer and expression of xenogeneic class II DR transgenes can be achieved in baboons. This therapy may prevent late T cell-dependent responses to porcine xenografts, which include induced non-alphaGal IgG antibody responses.
BACKGROUND: Mixed allogeneic hematopoietic chimerism has previously been reliably achieved and shown to induce tolerance to fully MHC-mismatched allografts in mice and monkeys. However, the establishment of hematopoietic chimerism has been difficult to achieve in the discordant pig-to-primate xenogeneic model. METHODS: To address this issue, two cynomolgus monkeys were conditioned by whole body irradiation (total dose 300 cGy) 6 and 5 days before the infusion of pig bone marrow (BM). Monkey anti-pig natural antibodies were immunoadsorbed by extracorporeal perfusion of monkey blood through a pig liver, immediately before the intravenous infusion of porcine BM (day 0). Cyclosporine was administered for 4 weeks and 15-deoxyspergualin for 2 weeks. One monkey received recombinant pig cytokines (stem cell factor and interleukin 3) for 2 weeks, whereas the other received only saline as a control. RESULTS: Both monkeys recovered from pancytopenia within 4 weeks of whole body irradiation. Anti-pig IgM and IgG antibodies were successfully depleted by the liver perfusion but returned to pretreatment levels within 12-14 days. Methylcellulose colony assays at days 180 and 300 revealed that about 2% of the myeloid progenitors in the BM of the cytokine-treated recipient were of pig origin, whereas no chimerism was detected in the BM of the untreated control monkey at similar times. The chimeric animal was less responsive by mixed lymphocyte reaction to pig-specific stimulators than the control monkey and significantly hyporesponsive when compared with a monkey that had rejected a porcine kidney transplant. CONCLUSION: To our knowledge, this is the first report of long-term survival of discordant xenogeneic BM in a primate recipient.
BACKGROUND: The renal allograft biopsy is generally accepted as the gold standard for clarifying the cause of renal dysfunction. However, the clinical usefulness of this procedure has rarely been studied prospectively, nor have most studies included follow-up of patients to delineate the influence of the biopsy on clinical outcome. In this study, we evaluated prospectively the clinical usefulness of the allograft biopsy in renal transplant recipients receiving cyclosporine (CyA). METHODS: During a 21-month period, 82 biopsies were performed. In 54 instances (47 patients), we outlined a presumed diagnosis and tentative treatment plan before the procedure. After the biopsy, a definitive diagnosis was made and an appropriate patient management approach was instituted. We analyzed the incidence of change in patient management that resulted from histological findings. All patients were followed to monitor their response to treatment and allograft survival. In cases of biopsy-proven acute cellular rejection (ACR) or cyclosporine (CyA) toxicity, clinical and laboratory data from the day of the biopsy were reviewed to determine their diagnostic value. RESULTS: One biopsy specimen was inadequate for definitive interpretation. The biopsy findings resulted in a change in patient management in 22 (41.5%) of the remaining 53 cases (change group). The incidence of altered patient management was 38.7% in biopsy specimens taken in the first month, 55.6% between 1 and 12 months, and 38.5% after 1 year posttransplantation. A change in management was required in 2 of 2 patients with chronic allograft dysfunction, in 44.4% of the 45 patients with acute allograft dysfunction, and in none of the patients with delayed graft function (n=6). Within the first week of treatment 19 of 22 (86.4%) in the change group and 25 of 31 (80.6%) in the no change group had a positive response to therapy. The 1-year allograft survival rate was also similar between the two groups. None of the clinical and laboratory data was useful in distinguishing ACR from CyA toxicity. CONCLUSIONS: Renal allograft biopsy findings alter patient management recommendations in approximately 40% of patients in whom a presumptive diagnosis had been made on the basis of clinical and laboratory findings. Patients who had a change in patient management because of biopsy findings demonstrated a response to therapy and allograft survival similar to those of patients who had no alteration in management plan after the biopsy.
BACKGROUND: Due to the limited supply and increased demand for donor livers, waiting times are progressively lengthening, which may lead to transplantation at more advanced and less cost-effective stages of disease. The purpose of this study was to evaluate the outcomes and hospital charges of liver transplantation during two recent eras to identify areas for providing more cost-effective care. METHODS: A total of 144 primary liver allografts were performed from 1991 to 1996. Patient characteristics, outcome measures, and hospital charges were compared for patients receiving allografts between 1991 and 1993 (group A) versus those receiving grafts between 1994 and 1996 (group B) using unpaired Student t tests for continuous data and chi-squared tests for categorical data. RESULTS: In comparing groups A and B, no significant differences in patient demographics, relative contraindications, or indication for transplantation existed; median waiting time from date of listing until transplant increased from 88 days to 159 days; and a shift in UNOS priority status at time of transplantation occurred, as the percentage of patients requiring inpatient care increased from 58% to 75% (P=0.034). Despite this, patient hospital and 1-year survival significantly improved from 75.0% to 90.3% (P=0.016), and from 68.1% to 88.9% (P=0.002), respectively. Total hospital charges, without correction for inflation, were $174,908+/-16,388 in A and $193,525+/-14,444 in B (P=0.288). The increased charges were associated with longer inpatient length of stay (LOS) before transplant, resulting in increased pretransplant charges from $24,088+/-4134 (A) to $39,490+/-6,196 (B) (P=0.011). Room and service (54%) was the largest pretransplant contributor to charges, while blood products (23%), room and service (21%), organ acquisition (13%), and operating room charges (11%) contributed the most after transplant. CONCLUSIONS: Longer waiting times resulting in transplantation at later stages of disease have occurred, leading to longer pretransplant LOS and its associated charges. Despite more advanced disease, patient survival rates have significantly improved with fewer infection-related deaths. LOS pretransplant, blood products, and operating room services represent potential areas for providing more cost-effective care.
BACKGROUND: OKT3 monoclonal antibody therapy results in an acute clinical syndrome (ACS) associated with the release of tumor necrosis factor and sequestration of neutrophils in the lungs. We have previously shown that inhibition of tumor necrosis factor does not completely eliminate OKT3-ACS, suggesting that other factors also contribute to the ACS. The current studies analyzed complement activation in vivo during the first hour after OKT3 administration. METHODS: Renal (n=4) and lung (n=4) transplant recipients received OKT3 as treatment for rejection and induction therapy, respectively. Complement activation products C4d, Bb, iC3b, and SC5b-9 were measured by ELISA. Hemodynamic parameters were also monitored in the lung transplant recipients. Neutrophil expression of CD11a, CD11b, and CD18 was monitored by flow cytometry. Controls included patients receiving methylprednisolone for rejection (n=4), two adults with adult respiratory distress syndrome who received extracorporeal membrane oxygenation, and normal volunteers (n=5). P values less than 0.05 (*) were considered significant. RESULTS: Increases in the plasma levels of C4d, Bb, iC3b, and SC5b-9 were observed in seven of eight patients after OKT3 administration. Mean values (n=8) at 0, 15, and 60 min (in microg/ml) were as follows-C4d: 1.865, 2.644*, and 2.607*; Bb: 0.245, 0.411, and 0.385; iC3b: 10.881, 17.242*, and 15.145*; and SC5b-9: 0.232, 0.269, and 0.302*. An increase in CD11b and CD18 and a decrease of CD11a on neutrophils in parallel with complement activation was observed. In lung transplant recipients, C3 activation correlated with increases in mean pulmonary and central venous pressures (P<0.05). As compared with extracorporeal membrane oxygenation, which activated classical and alternative pathways, OKT3 predominantly activated complement by the classical pathway. Methylprednisolone pulses did not activate complement. CONCLUSIONS: Complement activation is an early event after OKT3 administration and is associated with the increased expression of adhesion molecules on neutrophils and with pulmonary hemodynamic changes. Effective therapeutic approaches to the control of early monoclonal antibody side effects may require measures that limit complement activation in addition to reducing cytokine activity.