Search PubMed⌕ Search

Biomedical subjects

J Aschan

Publications and source records attributed to J Aschan.

At least 37 records · Page 2Linked to original sources

A graft-versus-colonic cancer effect of allogeneic stem cell transplantation.

Allogeneic stem cell transplantation (ASCT) has proved to have an important immune-mediated anti-tumour effect in patients with haematologic malignancies. There is also evidence of such an effect in patients with malignant tumours. We studied this effect of ASCT in a patient with colorectal cancer. A 77-year-old man having a primarily resected colonic cancer with disseminated lymph node involvement received ASCT from his HLA-identical sibling as the only treatment. Mixed haematopoietic chimerism was monitored using PCR-amplification of variable number tandem repeats and tumour size, assessed by repeated CT scans. Recipient leucocytes were gradually replaced by donor cells for 1 month. Continuous resolution of lymph node metastases was seen together with clinical graft-versus-host disease (GVHD). The patient died of pneumonia and cardiac insufficiency 4 months after transplantation. At autopsy, most of the metastases were necrotic, with few remaining tumour cells. Clinical and histopathological postmortem results showed a graft-versus-colorectal cancer effect.

Aged↗

Leukemia lineage-specific chimerism analysis is a sensitive predictor of relapse in patients with acute myeloid leukemia and myelodysplastic syndrome after allogeneic stem cell transplantation.

One of the major complications after allogeneic stem cell transplantation (SCT) in patients with malignant disease is a high frequency of relapse. We have prospectively analyzed the clinical impact of recipient-derived chimeric cells in 30 patients with acute myeloid leukemia and myelodysplastic syndrome after SCT. In order to improve sensitivity and specificity, all samples were cell-separated by using immunomagnetic beads according to the patient's leukemia phenotype, expressed at diagnosis or relapse before SCT. Twelve out of 30 patients experienced a clinical relapse after SCT. Median follow-up time for patients alive and without relapse (n = 15) was 30 (16-47) months. Mixed chimerism in peripheral blood (PB) and bone marrow (BM) > or =1 month post SCT, in the leukemia-affected cell lineage, was detected in 14/30 patients. Ten of these 14 patients relapsed as compared to 2/16 with donor chimerism (DC) (P <0.01). All eight patients with MC in peripheral blood > or =1 month after SCT relapsed vs 4/22 DC patients (P < 0.001). MC was detected a median of 66 (23-332) days before hematological relapse. No correlation was found between T cell MC and relapse. In this study, chimerism analysis showed a higher sensitivity and specificity vs morphological examination. In conclusion, this study may provide a rational basis for treatment with adoptive immunotherapy at an earlier time after SCT than at present, in patients with AML and MDS, in order to treat recurrences of malignant disease.

Acute Disease↗

Mixed chimaerism is common at the time of acute graft-versus-host disease and disease response in patients receiving non-myeloablative conditioning and allogeneic stem cell transplantation.

We report the clinical outcome and results of chimaerism analysis in various cell lineages of 30 patients given non-myeloablative conditioning, followed by allogeneic stem cell transplantation (SCT). The commonest diagnoses were chronic myelogenous leukaemia (n = 11) and solid tumours (n = 11). Twenty-one patients received SCT from human leucocyte antigen (HLA)-identical siblings and nine from matched unrelated donors. Median patient age was 53 (28-77) years. Four non-myeloablative protocols were used, including fludarabine (30 mg/m2 x 3-6), busulphan (4 mg/kg x 2), cyclophosphamide (Cy) (30 mg/kg/day x 2) or total body irradiation (2 Gy), and anti-thymocyte globulin. The patients were analysed by polymerase chain reaction (PCR) analysis of minisatellites on days 14, 21 and 28, then every other week up to 3 months and monthly thereafter. All samples were cell separated for T, B and myeloid cells using immunomagnetic beads. Eighteen patients were alive at a median follow-up of 11 (6-20) months. Acute graft-versus-host disease (GVHD) occurred in 22 patients. Eighteen of the 22 patients with acute GVHD showed mixed chimaerism (MC) in the T-cell fraction at the time of acute GVHD. However, all patients with acute GVHD showed donor chimaerism (DC) in the T-cell fraction median 76 (7-414) days after onset versus three out of eight patients without acute GVHD, P < 0.001]. Disease response was diagnosed in 15 patients, median 100 (37-531) days after SCT. At the time of disease response, six out of 15 patients showed MC in the T-cell fraction. In conclusion, mixed chimaerism in the T-cell fraction is common at the time of acute GVHD and disease response in patients conditioned with non-myeloablative therapy.

Adult↗

The role of disease stage in the response to donor lymphocyte infusions as treatment for leukemic relapse.

Between 1991 and 1999, 44 leukemic patients received donor lymphocyte infusions (DLIs) at our center (22 patients with chronic myelogenous leukemia [CML]; 10 with acute myelogenous leukemia; 11 with acute lymphatic leukemia; and 1 with myelodysplastic syndrome). Seventeen patients received graft-versus-host disease (GVHD) prophylaxis with methotrexate (MTX) at the time of DLI. In CML patients, 15 of 22 (68%) re-entered complete remission after DLI. At 3 years post-DLI, patients with cytogenetic (n = 10) or molecular (n = 3) relapse had a current leukemia-free survival (cLFS) rate of 85% compared with 0% for patients with hematologic relapse (P < .001). Among 15 CML patients who initially responded to DLI, 4 patients relapsed within the first 2 years. Four of 16 patients (25%) with acute leukemia had an initial response with complete remission after DLI. Two of them subsequently relapsed within 1 year. Patients with acute leukemia who relapsed within 1 year of hematopoietic stem cell transplantation (n = 9) had 0% cLFS at 18 months; patients with later relapse had 29% cLFS (P = .015). The overall probability of cLFS at 3 years for CML patients was 46%. For other diseases, cLFS was 13% at 18 months after DLI. Patients who developed chronic GVHD secondary to DLI showed a 3-year cLFS of 51% compared with 18% for patients without chronic GVHD (P = .022). This study emphasizes the importance of early disease stage and presence of chronic GVHD for effective DLI.

Adolescent↗

Ex vivo T lymphocyte expansion for retroviral transduction: influence of serum-free media on variations in cell expansion rates and lymphocyte subset distribution.

OBJECTIVE: In the setting of allogeneic stem cell transplantation, suicide gene-manipulated donor T cells that can be selectively inactivated in vivo would potentially allow optimal control of the GVL (graft-vs-leukemia)/GVHD (graft-vs-host disease) balance. Retroviral T-cell transduction requires ex vivo cell expansion, which is often achieved by IL-2 and anti-CD3 stimulation. Traditionally, culture media for cell expansion are supplemented with fetal bovine serum (FBS) or human serum. While these sera promote cell growth and viability, they contain uncharacterized elements that may yield inconsistent results from batch to batch. Cell expansion in serum-free media would therefore be preferable. MATERIALS AND METHODS: We compared T-cell expansion rates in three commercially available serum-free culture media (X-VIVO 15, AIM-V, and Cellgro SCGM), with or without the addition of human serum (HS, 5%). We also aimed to evaluate how the in vitro expansion affected the composition of the various T-cell subsets. Buffy-coats from four healthy donors were expanded for 21 days. The media were compared to standard RPMI 1640 medium, supplemented with HS (5%) or FBS (10%). For retroviral transductions, the LN vector carrying the neomycin- resistance gene was used in four additional donors. RESULTS: In our hands, X-VIVO 15 gave the highest rate of serum-free expansion (a median of 79-fold expansion, range 20-117). For serum-free expansion, activation with OKT3 for 21 days gave slightly higher expansion rates than a 5-day course (however, without statistical significance). When serum was added, this discrepancy was not seen. Cytokine analysis (IFN-gamma, IL-10, and IL-4) showed a distinct type1 cytokine pattern with elevated IFN-gamma levels during the whole period of culture. Flow cytometric analyses showed substantial inter-media, but also some inter-donor, variability in T-cell subset compositions. Transduction of cells with the LN vector and G418 selection resulted in a 14-fold increase (range 3-18) for serum-free X-VIVO 15 based cultures. Cell phenotypes remained unchanged by the transduction procedure as compared to nontransduced cells. CONCLUSION: Among the tested serum-free media, X-VIVO 15 has shown to best support the in vitro expansion of T cells, resulting in equal percentages of CD4(+) and CD8(+) cells. These cells can easily be transduced and selected. There seem to be no significant benefits, regarding absolute cell numbers or T-cell subset compositions, with OKT3-stimulation for more than five days. The addition of low levels of HS increases the consistencies in the cell expansion rates for all media.

Animals↗

N-acetylcysteine for hepatic veno-occlusive disease after allogeneic stem cell transplantation.

Three patients developed veno-occlusive disease of the liver (VOD) after allogeneic stem cell transplantation. On the day after diagnosis, N-acetylcysteine (NAC) was given, initially in loading doses and thereafter 50-150 mg/kg/day for 12 to 31 days. The maximum bilirubin levels were 137, 58 and 138 mmol/l in the three patients, respectively. After the introduction of NAC, bilirubin, aspartate aminotransferase, sIL-2 receptor and IL-8 decreased. All three patients achieved normal bilirubin levels and prothrombin times. To conclude, NAC may be useful for treatment of VOD.

Acetylcysteine↗

Is it safe to treat allogeneic stem cell transplant recipients at home during the pancytopenic phase? A pilot trial.

After myeloablative treatment and allogeneic stem cell transplantation (ASCT), patients are kept isolated in the hospital to prevent infections during neutropenia. To date, 22 patients have been given the choice of being treated at home. Eleven could not be treated at home, and they served as controls. Most had haematological malignancies. The donors were 12 HLA-compatible unrelated, nine HLA-identical siblings and one twin. In the home care group, three developed bacteraemia, compared to nine in the controls (P < 0.01). Patients in the home care group had fewer days of total parenteral nutrition (median 3 vs 24, P < 0.001), required fewer erythrocyte transfusions (median 4 vs 8, P = 0.01), fewer days on i.v. antibiotics (median 6 vs 13 days), and on analgesics (median 0 vs 15) than the controls (P < 0.05). Days with fever, time to engraftment, days with G-CSF and acute GVHD were the same in the two groups. Seven of 11 patients treated at home were readmitted to the ward for a median of 3 (0-7) days, due to fever or lack of a caregiver at home. Days to discharge to the out-patient clinic were faster in the group treated at home (median 20 vs 35 days, P < 0.01). Patients who were treated at home enjoyed being active and taking a walk when they felt like it. This preliminary report suggests that home care after ASCT is not only safe, but superior to isolation in the hospital.

Adolescent↗

Ketobemidone may alter busulfan pharmacokinetics during high-dose therapy.

The authors report a possible interaction between ketobemidone and busulfan during myeloablative treatment of a patient with acute myeloid leukemia. At the time of admission, the patient was receiving ketobemidone 1,000 mg/d as analgesic for a rectal fissure. The patient started conditioning prior to bone marrow transplantation with busulfan (1 mg/kg x 4 for 4 days). High busulfan plasma concentrations were observed after the first dose and the next doses were reduced to 0.7 mg/kg. The kinetics of both drugs revealed that an increase in ketobemidone concentration was followed by an increase in busulfan levels. Substituting ketobemidone with morphine resulted in a decrease in busulfan concentration despite increasing the dose once more to 1 mg/kg.

Adult↗

Improved survival after bone marrow transplantation for early leukemia using busulfan-cyclophosphamide and individualized prophylaxis against graft-versus-host disease: a long-term follow-up.

To minimize immunosuppression, allow a graft-versus-leukemia (GVL) effect, and reduce relapse incidence, 73 leukemic recipients of human leukocyte antigens-identical sibling marrow were given graft-versus-host disease (GVHD) prophylaxis based on the estimated risk of GVHD development. Methotrexate (MTX) monotherapy was given to patients with an estimated low risk of developing GVHD, whereas MTX + cyclosporine (CsA) was given to 'high-risk' patients. After engraftment, CsA was discontinued, and weekly MTX was reinstituted and given until 3 months post-bone marrow transplant. Conditioning consisted of busulfan (BU) + cyclophosphamide (CY) (n = 35) or CY + total body irradiation (TBI) (n = 38). Retrospective controls were given CY + TBI and MTX + CsA (n = 39). The median observation time was 5 yr 11 months. Chronic GVHD increased to 53% in the individual BU + CY group and 46% in the individual CY + TBI group, compared to 25% in the control group (p = 0.05). This increase was restricted to the limited form. The actuarial relapse incidence decreased to 20% in the individual BU + CY group, compared to 52% in the control group, p = 0.03. In the individual CY + TBI group, the relapse incidence was 44% (n.s. versus controls, p = 0.04 versus individual BU + CY). The 5-yr relapse-free survival (RFS) in the individual BU + CY group was 66%, in the control group, 41% (p = 0.07), and in the individual CY + TBI group, 45% (p = 0.1 versus individual BU + CY). Patients with early leukemia in the individual BU + CY group had a RFS of 83%, compared to 44% in the control group (p = 0.02) and 42% in the individual CY + TBI group (p = 0.01). In the multivariate analysis, advanced leukemia beyond first complete remission and first chronic phase and conditioning with CY + TBI were correlated to poor RFS. In summary, the individualized prophylaxis itself did not reduce the relapse incidence. However, in patients with early leukemia conditioning with BU + CY, our method of individualizing the GVHD prophylaxis might be of value, since this group had the best RFS in this study.

Aged↗

Unrelated donor stem cell transplantation after autologous transplantation: experience of a single center.

Patients who do not respond to autologous stem cell transplantation (ASCT) have a poor prognosis. Concerns about toxicity limit the use of unrelated donor stem cell transplantation (UDSCT), but the knowledge about outcome after UDSCT post-ASCT is limited. We carried out a retrospective analysis of the outcome in seven consecutive patients with leukemia (n = 5), myeloma (n = 1) and graft failure (n = 1) who underwent UDSCT after ASCT. Donors were matched for HLA-A, -B and -DR (n = 6) or had one class I antigen mismatch (n = 1). Tissue typing was performed by a high-resolution genomic technique for class II. Median patient age was 34 (11-54) years and time from ASCT to UDSCT was 16 (3-22) months. Patients with malignant diseases were given TBI and a CY preparatory regimen. In addition, all patients received T cell antibodies prior to UDSCT. Grade I acute GVHD developed in all seven patients, but there was no sign of more severe acute GVHD. Two of four evaluable patients developed limited chronic GVHD. Three died of transplant-related toxicity, all due to pulmonary complications. Four patients are alive at 1.1, 1.5, 3.1 and 4.9 years post-UDSCT. A closely matched UDSCT could be considered for selected patients who are not cured by an ASCT.

Adult↗

Low-dose cyclosporine of short duration increases the risk of mild and moderate GVHD and reduces the risk of relapse in HLA-identical sibling marrow transplant recipients with leukaemia.

Low-dose cyclosporine (CsA), starting at 1 mg/kg/day i.v. with early discontinuation, and four doses of methotrexate (MTX), was given to 82 consecutive leukaemic patients receiving HLA-identical sibling marrow transplants. Retrospective controls (n = 40) received CsA, starting at 5-7.5 mg/kg/day i.v., given for 1 year, and MTX. In the low-dose group, the risk of acute GVHD grades I-II was 78% as compared to 57% among the controls (P < 0.01). The risk of acute GVHD grades III-IV was 2% and 5%, respectively (NS). Chronic GVHD occurred in 60% in the low-dose group and 24% in the controls (P < 0. 001). Extensive chronic GVHD did not differ between the groups (3% vs6%). In multivariate analyses, low-dose CsA was the only factor associated with acute GVHD grades I-IV (P = 0.02). Significant risk factors for chronic GVHD included low-dose CsA (P = 0.002) and CML (P = 0.03). Transplant-related mortality at 3 years post-BMT was 22% and 19%, in the low-dose group and controls, respectively (NS). The probability of relapse was 26% in the low-dose group and 53% in the controls (P = 0.06). In multivariate analysis, high-dose CsA was the strongest risk factor for relapse (P = 0.03). The 3-year relapse-free survival was 58% in the low-dose group and 43% in the controls (P = 0.1).

Bone Marrow Transplantation↗

Bilateral subdural haematomas following lumbar puncture in three haematopoietic stem cell transplant recipients.

Between 1990 and 1996, three patients (1.1%), all with CML, among 272 patients with haematological malignancies, developed bilateral subdural haematomas (SDH) after treatment with i.t. MTX before HSCT in our unit. Since October 1996, we have given i.t. MTX only to patients at increased risk of CNS leukaemia such as ALL and AML M4 or M5. We suggest that intrathecal treatment before HSCT should only be given to patients at increased risk of CNS leukaemia.

Adult↗

Results of different strategies for reducing cytomegalovirus-associated mortality in allogeneic stem cell transplant recipients.

BACKGROUND: Several preventive strategies against cytomegalovirus (CMV) disease have been developed during the last decade. These have frequently been used in combination, and it has been difficult to identify each strategy's contribution. METHODS: Risk factors for CMV disease, death in CMV disease and transplant-related mortality were analyzed in 584 patients, who underwent a total of 594 allogeneic bone marrow transplants. RESULTS: The overall probability of CMV disease was 8.9%. No seronegative patient who had a seronegative marrow donor developed CMV disease. The corresponding probabilities for seronegative patients with seropositive donors, seropositive patients with seronegative donors, and seropositive patients with seropositive donors were 5.4%, 13.7%, and 11.7%, respectively. In multivariate Cox models, the use of preemptive antiviral therapy and being CMV-seronegative reduced the risk for CMV disease, CMV-associated death, and transplant-related mortality (TRM). Patients who received unrelated or mismatched family donor transplants had increased risks for CMV disease, CMV-associated death, and TRM. Older age was a significant risk factor for CMV disease and TRM. A total of 258 patients who were monitored by polymerase chain reaction for CMV DNA were analyzed separately to assess whether addition of another CMV preventive strategy could give benefit. Patients who received mismatched or unrelated donor transplants had increased risk for CMV disease, death in CMV disease, and TRM. High-dose acyclovir prophylaxis or addition of intravenous immune globulin had no influence. CONCLUSIONS: Preemptive therapy based on polymerase chain reaction for CMV DNA was associated with reduced risks for CMV disease, CMV-associated death, and TRM, whereas other prophylactic modalities did not give additional benefit.

Acyclovir↗

Low incidence of acute graft-versus-host disease, using unrelated HLA-A-, HLA-B-, and HLA-DR-compatible donors and conditioning, including anti-T-cell antibodies.

BACKGROUND: Using unrelated bone marrow, there is an increased risk of graft-versus-host disease (GVHD). METHODS: HLA-A-, HLA-B-, and HLA-DR-compatible unrelated bone marrow was given to 132 patients. The diagnoses included chronic myeloid leukemia (n=43), acute lymphoblastic leukemia (n=29), acute myeloid leukemia (n=27), myelodysplastic syndrome (n=4), lymphoma (n=3), myeloma (n=1), myelofibrosis (n=1), severe aplastic anemia (n=12), and metabolic disorders (n=12). The median age was 25 years (range 1-55 years). HLA class I was typed serologically, and class II was typed by polymerase chain reaction using sequence-specific primer pairs. Immunosuppression consisted of antithymocyte globulin or OKT3 for 5 days before transplantation and methotrexate combined with cyclosporine. RESULTS: Engraftment was seen in 127 of 132 patients (96%). Bacteremia occurred in 47%, cytomegalovirus (CMV) infection in 49%, and CMV disease in 8%. The cumulative incidences of acute GVHD > or = grade II and of chronic GVHD were 23% and 50%, respectively. The 5-year transplant-related mortality rate was 39%. The overall 5-year patient survival rate was 49%; in patients with metabolic disorders and severe aplastic anemia, it was 61% and 48%, respectively. The disease-free survival rate was 47% in patients with hematological malignancies in first remission or first chronic phase and 38% in patients with more advanced disease (P=0.04). Acute GVHD was associated with early engraftment of white blood count (P=0.02). Poor outcome in multivariate analysis was associated with acute myeloid leukemia (P=0.01) and CMV disease (P=0.04). CONCLUSION: Using HLA-A-, HLA-B-, and HLA-DR-compatible unrelated bone marrow and immunosuppression with antithymocyte globulin, methotrexate, and cyclosporine, the probability of GVHD was low and survival was favorable.

Adolescent↗

Transplantation with unrelated bone marrow in leukaemic patients above 40 years of age.

Twenty-seven patients above 40 years of age (range 40-55) with leukaemia underwent transplantation with haematopoietic stem cells from HLA-A, -B and -DR identical unrelated donors. They were compared to 69 younger patients, median age 23. In the older group, the diagnoses were acute myeloid leukaemia (AML) five, acute lymphoblastic leukaemia (ALL) three and chronic myeloid leukaemia (CML) 19. The corresponding figures in the younger patients were 21, 27 and 21, respectively. Conditioning consisted of cyclophosphamide (120 mg/kg) combined with 10 Gy total body irradiation. Immunosuppression was ATG or OKT3 for 5 days before transplantation and methotrexate combined with cyclosporin A. The probabilities of grades II-IV acute graft-versus-host disease (GVHD) were 23 and 21%, and the cumulative incidences of chronic GVHD were 64 and 50% in the older and younger patient cohorts, respectively. Overall, 3-year transplant-related mortality rates were 46% in patients > or =40 years of age and 32% in patients <40 years of age (P = 0.16). Three-year patient survival rates were 54 and 46% in the two groups, respectively. In patients with chronic phase CML, the corresponding figures were 67 and 68%, respectively. We conclude that patients above 40 years of age should be considered for transplantation with marrow from unrelated donors.

Adult↗

Booster marrow or blood cells for graft failure after allogeneic bone marrow transplantation.

Twenty allogeneic bone marrow transplant patients were treated with an additional dose of donor cells (boost dose) for graft failure (n = 7), partial graft failure (n = 11) or extensive hemolysis caused by remaining recipient cells producing anti-erythrocyte antibodies (n = 2). Donors were in 12 cases HLA-identical siblings, three mismatched related donors and five unrelated donors. Cell source was in 13 cases bone marrow and in seven peripheral blood progenitor cells. Median time from BMT to booster dose was 3.4 months (range 0.7-59.3). Median infused cell dose was 2.4 x 10(8)/kg patient (range 0.5-19.0). As GVHD prophylaxis most patients were already receiving different combinations of cyclosporine, prednisolone and methotrexate. No preparative treatment was given prior to boost in 16 patients; four received ATG. After boost, 11 patients developed acute GVHD, six grade I, four grade II and one grade III. Except for one patient, acute GVHD after boost was less, or the same grade as after BMT. Six patients developed chronic GVHD, three limited and three extensive. Five patients died within 30 days of the boost. Nine of 15 (60%) evaluable patients became transfusion independent within 30 days and three more within 60 days. Causes of death were: infections six (IP four, pneumonia two), relapse three; and GVHD three. Three out of five patients transplanted with unrelated marrow suffered from severe immunological reactions and died 2-3 months after the boost dose. Patient survival 1 and 3 years after boost was 55% and 43%, respectively. Among patients with hematological malignancies, leukemia-free survival at 3 years was 41%.

Adolescent↗

Risk factors for chronic graft-versus-host disease after bone marrow transplantation: a retrospective single centre analysis.

Among 551 consecutive recipients of allogeneic bone marrow transplants, 451 survived more than 3 months and were evaluated for chronic graft-versus-host disease (GVHD). Most of the donors were HLA-identical siblings or parents (n = 334). Patients with HLA-mismatched donors (n = 30) and matched unrelated donors (MUD) (n = 87) were also included in the study. In the analysis of all patients, the 5-year cumulative incidence of chronic GVHD was 45%. We analysed 34 risk factors. High recipient age was the single most important risk factor (P < 0.001). Other significant risk factors in multivariate analysis were: acute GVHD grades I-IV (P < 0.001), immune female donor to male recipient (P = 0.006) and chronic myelogenous leukaemia (CML), compared with all other diagnoses (P = 0.014). The cumulative 5-year incidence of chronic GVHD, with no significant risk factors present, was 9%, 29% with one risk factor, 53% with two, 68% with three and 75% with all four risk factors present. In patients with HLA-identical sibling donors and GVHD prophylaxis consisting of a combination of methotrexate (MTX) and cyclosporin A (CsA) (n = 208), increasing recipient age (P < 0.001) and CML (P = 0.007), were found to be significant risk factors for chronic GVHD. Finally, a multivariate analysis in recipients of bone marrow from unrelated donors (n = 89) showed recipient age alone (P = 0.006) to be significantly associated with chronic GVHD.

Adolescent↗

Risk factors in bone marrow transplant recipients with leukaemia. Increased relapse risk in patients treated with ciprofloxacin for gut decontamination.

Three hundred and six patients with low- and intermediate-risk leukaemias undergoing allogeneic BMT between 1980 and March 1996 were studied regarding transplantation-related mortality (TRM), relapse, and leukaemia-free survival (LFS). Among the patients were 262 recipients of marrow from HLA-identical siblings and 44 patients receiving marrow from HLA-A, -B, and -DR identical unrelated donors. Between 1986 and 1993, 153 adult patients received ciprofloxacin continuously during Cy conditioning, but since November 1993 ciprofloxacin has not been given until after Cy treatment. TRM at 5 yr showed an incidence of 30%. Significant risk factors in Cox regression multivariate analysis comprised acute GVHD grades II-IV (p < 0.0001), seropositivity for 3-4 herpes viruses prior to BMT (p = 0.002), intermediate risk disease (p = 0.008), female donor to male recipient (p = 0.015), and a donor age over 17 yr (p = 0.025). The risk of relapse was studied from 90 d after BMT, and the overall 5-yr incidence was 32%. Significant risk factors comprised acute leukaemia, as compared to CML (p = 0.003), total body irradiation (TBI) compared to busulphan treatment (p = 0.011), gram-negative prophylaxis with ciprofloxacin during cyclophosphamide (Cy) conditioning (p = 0.024), GVHD prophylaxis using a combination of methotrexate (MTX) and cyclosporine (CSA), compared to monotherapy (p = 0.037) and absence of chronic GVHD (p = 0.050). The 5-yr probability of relapse in patients receiving ciprofloxacin prophylaxis during Cy conditioning was 40%, compared to 24% in patients not receiving this treatment (p = 0.01). Overall, LFS at 5 yr was 49%. LFS was evaluated from day 30 after BMT until relapse or death of the patient. We found no difference in TRM, relapse or LFS between recipients of HLA-identical sibling or unrelated bone marrow, risk factors significantly associated with an inferior LFS included acute GVHD grades II-IV (p = 0.0002), intermediate risk disease (p = 0.003), donor seropositivity for 3-4 herpes viruses (p = 0.046), and TBI conditioning (p = 0.048).

Adult↗