Long-term follow-up of three controlled trials comparing cyclosporine versus methotrexate for graft-versus-host disease prevention in patients given marrow grafts for leukemia.
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Biomedical subjects
Publications and source records attributed to K M Sullivan.
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OBJECTIVE: To determine the safety and efficacy of ursodeoxycholic acid treatment in patients with chronic graft-versus-host disease (GVHD) of the liver. DESIGN: Open-label study in which each patient served as his or her own control. SETTING: Private practice and a university bone marrow transplant center. PATIENTS: Twelve patients with refractory chronic GVHD of the liver were studied after allogeneic bone marrow transplantation. INTERVENTIONS: After baseline data collection, patients were given ursodeoxycholic acid (UDCA, 10 to 15 mg/kg body weight per day) for 6 weeks. After discontinuation of the drug, patients were followed for an additional 6 weeks. Doses of immunosuppressive drugs were unchanged for these 12 weeks. MEASUREMENTS: Signs, symptoms, Karnofsky performance scores, hematocrit, total leukocyte count, absolute neutrophil count, platelet count, alanine aminotransferase (ALT), aspartate aminotransferase (AST), alkaline phosphatase, gamma-glutamyltransferase (GGT), total serum bilirubin, prothrombin time, serum creatinine, and blood urea nitrogen were assessed. RESULTS: Serum tests of cholestatic liver injury measured at 2, 4, and 6 weeks showed improvement compared with baseline. At 6 weeks, the percent decrease from baseline in total serum bilirubin was 33% (P less than 0.005); in alkaline phosphatase the decrease was 32% (P less than 0.038); and in AST the decrease was 37% (P less than 0.007). After discontinuation of UDCA therapy, 11 patients were followed for 6 additional weeks. All showed significant worsening in liver function test results. Symptom scores were unchanged throughout the study. One patient with pruritus improved while receiving therapy with UDCA. No adverse effects were observed. CONCLUSION: Therapy with UDCA was safe, well-tolerated, and efficacious in the short-term treatment of refractory chronic GVHD of the liver. Further investigation is needed to evaluate the long-term effects of UDCA therapy.
Optimal induction of clonal expansion by normal CD4 T cells requires a ligand that can engage the T cell receptor as well as functionally defined costimulatory activity on the same antigen-presenting cell surface. While the presence of effective costimulation induces proliferation, T cell receptor ligation in its absence renders T cells inactive or anergic. The molecular basis of this costimulatory activity remains to be defined. Here we describe a monoclonal antibody that can block the costimulatory activity of splenic accessory cells. Treatment with this antibody not only blocks the proliferation of CD4 T cells to a T cell receptor ligand, but also induces T cell nonresponsiveness to subsequent stimulation. Sequence analysis of the antigen recognized by this antibody indicates that it recognizes a protein that is identical to heat-stable antigen. Gene transfer experiments directly demonstrate that this protein has costimulatory activity. Thus, heat-stable antigen meets the criteria for a costimulator of T cell clonal expansion.
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Allele and genotype frequencies for British Caucasian, Afro-Caribbean and Asian populations were determined for a total of over 600 unrelated individuals at the HLA-DQ alpha locus. These were analysed by polymerase chain reaction amplification of the DNA followed by hybridisation to allele specific oligonucleotide probes in a reversed dot-blot test. Six different alleles were detected and the allele distributions for the 3 populations analysed displayed significant differences. However, the British Caucasian genotypes were statistically very similar to previously published data from US Caucasians as were British Afro-Caribbean genotype frequencies with US Black data. In Caucasians the allele frequencies ranged from 5.2% to 26.9% with a power of discrimination of 0.93. DQ alpha genotype frequencies of Caucasian and Afro-Caribbean populations do not deviate from Hardy-Weinberg equilibrium. However, the Asian data displayed significant deviation due to excess homozygotes.
The highly decomposed remains of a corpse were identified by the amplification and direct sequencing of mitochondrial (mt) DNA. Degraded DNA was extracted from bone fragments and a necrotic skin sample and amplified at 2 hypervariable segments within the mitochondrial non-coding region using 2 rounds of nested PCR. Both strands of the amplified regions were sequenced and compared with each other to ensure fidelity of the data. Sequences from the bone and skin were found to be identical and matched data generated from a blood sample provided by a presumptive sister of the deceased. Thus, this evidence was consistent with the sister and the deceased being related.
Thirty-six patients with advanced hematologic malignancy were entered into a Phase I study designed to define the maximum tolerated dose of unshielded total body irradiation delivered from dual 60 Cobalt sources at an exposure rate of 8 cGy/min and given in fractions twice daily for total doses ranging from 12 Gy to 17 Gy. All patients received cyclophosphamide, 120 mg/kg administered over 2 days before total body irradiation. Allogeneic marrow was infused from HLA-identical siblings (n = 29) or one locus HLA incompatible family members (n = 3); three patients received cryopreserved autologous marrow and one patient received syngeneic marrow. The maximum tolerated dose of total body irradiation given as 2 Gy fractions twice a day was 16 Gy. One of eight patients receiving 12 Gy, none of four receiving 14 Gy, three of 20 receiving 16 Gy, and two of four receiving 17 Gy developed severe (Grade 3-4) regimen-related toxicity. The primary dose limiting toxicity was pneumonitis, followed by veno-occlusive disease of the liver, renal impairment, and mucositis. Five patients (14%) are alive, four disease-free 798-1522 days posttransplant. Twenty (56%) relapsed posttransplant. Further investigation of regimens containing 16 Gy of hyperfractionated total body irradiation is warranted to assess anti-tumor efficacy.
Treatment with the monoclonal antibody OKT3 specific for the CD3 complex associated with the T cell antigen receptor can reverse acute rejection of human renal allografts. However, efficacy of anti-CD3 antibodies for treatment of patients with acute graft-versus-host disease after marrow transplantation has not been established. The dose-limiting side effects resulting from T cell activation induced by some anti-CD3 antibodies in vivo have discouraged their use for this application. We now report a phase I-II study of GVHD treatment with the anti-CD3 antibody BC3, a monoclonal murine IgG2b that, unlike OKT3, does not activate T cells. Fourteen patients were treated with BC3 after progression of acute GVHD despite treatment with cyclosporine and corticosteroids, and three patients received BC3 as primary treatment for GVHD. BC3 was administered at a dose of 0.1 or 0.2 mg/kg/day for seven or eight days. Five patients achieved complete resolution of GVHD, eight patients had partial improvement, two patients had no change, and two patients had progression of GVHD on therapy. Responses were sustained in 8 of 13 patients. Mild chills, fever, hypertension, and chest discomfort occurred in various combinations following 6 of 17 (35%) initial infusions of BC3 and following 4 of 99 (4%) subsequent infusions. In each instance it was possible to continue BC3 therapy without adjusting the dose or treatment schedule. In each patient treated, the absolute count of peripheral blood lymphocytes decreased transiently but returned to baseline within 22 hr after the first infusion. Circulating T cells had surface CD3 molecules saturated by the infused antibody in all but one patient. Four patients survived longer than one year after treatment with antibody BC3, and 13 patients died of infection or organ failure. Administration of the nonmitogenic anti-CD3 antibody BC3 was associated with improvement in the clinical manifestations of GVHD with minimal acute toxicity. Efficacy of antibody treatment did not depend on depletion of circulating T cells. Therefore, antibody BC3 may be achieving therapeutic immunosuppression by modulating T cell function. Controlled studies in patients treated earlier in the course of GVHD should determine whether antibody BC3 can improve survival.
DNA profiling has been automated by the fluorescent tagging of amplified variable number tandem repeat (VNTR) loci. This was achieved by the use of fluorescently labeled primers in the amplification of 10 ng of genomic DNA, coupled with laser detection of the products during electrophoresis. The PCR products are sized by co-electrophoresing a standard size ladder mixed with every sample, thereby eliminating errors in size estimation caused by lane-to-lane differences in migration rate. This increases the precision of VNTR characterization and enables alleles that differ by a single 15-bp repeat to be resolved. The system is capable of high throughput: Twenty-four samples are electrophoresed and analyzed within 6 hr. Also, because four different dyes are available, three different loci can be simultaneously characterized with the fourth dye used for the internal standard. Approximately 100 unrelated British caucasians were analyzed at the loci D1S80, D17S5, and ApoB. The probabilities of two unrelated individuals matching by chance (pM) at these three loci were determined to be 0.065, 0.040, and 0.069, respectively, with a combined pM of 1.8 x 10(-4).
PURPOSE: The purpose of this report was to review the Seattle experience in bone marrow transplantation (BMT) for acute myeloid leukemia (AML) during untreated first relapse. PATIENTS AND METHODS: Through 1990, 126 patients were transplanted during untreated first relapse of AML. Several preparative regimens were used, two of which involved more than 20 patients. Regimen 1 (29 patients) consisted of cyclophosphamide (CY) 120 mg/kg and 15.75 Gy of fractionated total-body irradiation (TBI) with methotrexate (MTX) given intermittently during a 102-day period to prevent graft-versus-host disease (GVHD). Regimen 2 (22 patients) consisted of the same CY and TBI treatment and a combination of MTX and cyclosporine (CSP) for GVHD prophylaxis. The remaining 75 patients were treated with 17 other transplant regimens. Outcome was compared for patients who were treated with regimen 1, regimen 2, and any other regimen. RESULTS: The 5-year probabilities of relapse-free survival (RFS), relapse, and nonrelapse mortality for 126 patients were .23, .57, and .44, respectively. With regimen 1, relapse (.26) was significantly less than for regimen 2 (.70; P = .004) or any other regimen (.76; P = .004). Regimen 1 patients developed more acute GVHD (.67) than regimen 2 patients (.26; P = .02) or patients on other regimens (.41; P = .02), and had increased nonrelapse mortality. Nevertheless, regimen 1 patients had a significantly higher 3-year RFS (.38) than those treated with regimen 2 (.18; P = .04) or any other regimen (.20; P = .05). CONCLUSIONS: For patients who received 120 mg/kg CY and 15.75 Gy TBI, relapse incidence was less and survival was better after GVHD prophylaxis with MTX alone than after a combination of MTX and CSP, despite a significantly higher incidence of acute GVHD. The results of treatment with regimen 1 justify future studies of the optimal timing of allogeneic BMT in the treatment of patients with AML.
A rapid, robust and sensitive method has been developed for the amplification and direct sequencing of human mitochondrial DNA. A 403-bp hypervariable segment was amplified by two successive rounds of nested PCR. This was then sequenced by the dideoxy chain termination method using dye-labeled universal sequencing primers in conjunction with an automated DNA sequencer. This paper describes the assessment of four different strategies for this amplification and sequencing process. Optimal results were obtained by immobilizing the biotinylated PCR product on Dynabeads followed by solid-phase sequencing with Sequenase. Degraded samples and those containing trace amounts of DNA such as extracts from hair shafts can be analyzed by this method.
BACKGROUND: Some cases of blood transfusion-associated (TA) graft-vs-host disease (GVHD) in immunocompetent patients have been reported, but those dermatologic findings were not precisely mentioned. We describe patients with clinicopathologically TA-GVHD and compare TA-GVHD and acute GVHD after bone marrow transplantation. OBSERVATIONS: Two cases of TA-GVHD after open heart surgery are reported. In both immunocompetent patients, severe erythema multiformelike skin rash developed over the entire body, followed by fever, diarrhea, jaundice, transaminitis, pancytopenia, and marrow alpasia approximately 10 days after operation. The rash in one patient changed from erythema multiformelike to toxic epidermal necrolysis at death. Skin biopsy specimens revealed eosinophilic bodies, basal vacuolation, and exocytosis in the epidermis. Eosinophilic bodies tend to appear in the upper epidermis. Immunohistochemistry studies revealed that infiltrating cells were CD4 and CD8. While acute GVHD in immunosuppressed patients who have undergone bone marrow transplantations often shows lichenoid histologic features, TA-GVHD in our patients who were immunocompetent may resemble severe erythema multiforme or toxic epidermal necrolysis. The difference in TA-GVHD may be related to lack of host modification by immunosuppression. CONCLUSIONS: Irradiation of the blood products should be required in open heart surgery, for TA-GVHD in immunocompetent patients is almost always fatal.
Staff model HMO's expend great effort in handling member phone calls. Health Care Plan, Inc. has developed a computer program to aid phone room nurses in their documentation and decision making processes. The Nurse Advice system has been successfully implemented in six of eight medical centers. By providing real-time access to patient clinical data, the quality of care and service is improved.
Between March 1973 and August 1990, 17 patients with Fanconi anemia (FA) underwent bone marrow transplantation in Seattle. Marrow donors were HLA identical siblings (n = 14), phenotypically HLA identical parents (n = 2) and a one antigen mismatched parent (n = 1). Patients with no evidence of leukemic transformation (n = 12) were conditioned with 140-200 mg/kg cyclophosphamide (CY). Of five patients with leukemic transformation, four received CY (120 mg/kg) plus 12 Gy fractionated total body irradiation and one patient received busulfan (14 mg/kg) and CY (100 mg/kg). All patients engrafted; however, one patient whose sibling donor's cells showed variable results when assayed for chromosome instability required two additional marrow infusions. Toxicity associated with the conditioning regimen included severe oral mucositis (n = 14), hemorrhagic cystitis (n = 11) and diffuse erythroderma (n = 3). Seven of the 12 patients without leukemic transformation are surviving 1-17 years (median = 5 years) after transplant, with an estimated survival probability at 5 years of 65% (95% CI 0.31; 0.85). Two patients developed squamous cell carcinoma of the tongue greater than 10 years post-transplant. One of these patients died at 10.3 years as a result of the malignant process, and the other is disease free more than 12 years post-transplant. Of the five patients with leukemic transformation, one is alive at 8 years. These data demonstrate that marrow transplantation can offer long-term survival for patients with FA, engraftment can be achieved with reduced doses of CY in FA patients, and less toxic preparative regimens are needed for FA patients who have developed leukemic transformation.
Thirty-seven patients with advanced hematologic malignancy were entered into a phase I study designed to define a maximum tolerable dose (MTD) of etoposide (VP-16) and cyclophosphamide (CY) combined with 12 Gy fractionated total body irradiation (TBI) as preparation for marrow transplantation from an HLA-identical sibling (n = 13) or with cryopreserved autologous marrow (n = 24). Dose levels ranged from 36 mg/kg of VP-16 combined with 67 mg/kg of CY to 52 mg/kg of VP-16 combined with 103 mg/kg of CY followed by 12 Gy TBI. The MTD for allogeneic marrow recipients was 36 mg/kg of VP-16 + 52 mg/kg of CY followed by 12 Gy TBI and for autologous marrow recipients 44 mg/kg of VP-16 + 103 mg/kg CY followed by 12 Gy TBI. Pulmonary and liver toxicities were dose limiting. All of 31 evaluable patients transplanted in relapse achieved a complete remission. However, in all but three of these patients the disease relapsed 28-899 (median 110) days post-transplant. Currently, six of 24 autologous marrow recipients are surviving, three in remission 256, 340 and 764 days post-transplant. None of 12 allogeneic marrow recipients have survived. In conclusion, a preparative regimen combining 44 mg/kg of VP-16 + 103 mg/kg CY followed by 12 Gy TBI is well tolerated by autologous marrow recipients and 36 mg/kg VP-16 + 67 mg/kg CY followed by 12 Gy TBI is well tolerated by allogeneic marrow recipients.(ABSTRACT TRUNCATED AT 250 WORDS)
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The results of pretransplant mixed leukocyte culture (MLC) assays were compared to subsequent risk of graft-versus-host disease (GVHD) in 783 patients receiving marrow transplants from HLA genotypically identical sibling donors. The mean MLC response observed between 1303 normal HLA identical sibling pairs was 0.0 +/- 4.2% RR. The donor anti-recipient MLC reaction, an in vitro response that presumably might be relevant to GVHD, was significantly increased (greater than mean + 2 sd) in 83 (10.6%) of the cases, most often in patients in relapse at the time of testing. No association was found, however, between this increased donor anti-recipient MLC reactivity pretransplant and the incidence or severity of subsequent acute or chronic GVHD. These data suggest that the increased MLC responses sometimes observed between leukemia patients and their HLA identical sibling donors prior to marrow transplantation do not represent genetic differences capable of causing GVHD.
Ultraviolet (UV) irradiation affects eukaryotic cells in numerous ways. Exposure of blood transfusion products to UVC (200-280 nm) or UVB (280-320 nm) reduces or abrogates their immunogenicity and thereby prevents allosensitization and transfusion refractoriness in several models. Although the exact mechanism is not known, in vitro studies suggest that UV exposure results in a loss of class II histocompatibility antigens from the cell surface, alterations of calcium homeostasis, and a lack of interaction between antigen presenting and responding cells. In the UVB and UVA (320-400 nm) range, lymphocytes appear to be more sensitive than hemopoietic cells. In murine transplant models, UVB irradiation of spleen and marrow cells can be used to prevent the development of graft-versus-host disease while allowing for complete hemopoietic reconstitution. Furthermore, in clinical marrow transplantation, pilot studies of UVA in conjunction with psoralen administration have yielded encouraging results in patients with steroid refractory graft-versus-host disease of the skin. Thus, UV irradiation provides an interesting tool to study cell/cell and donor/host interactions and may have some applications in transfusion medicine and bone marrow transplantation.