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R Clift

Publications and source records attributed to R Clift.

At least 19 recordsLinked to original sources

Association of a bovine CXCR2 gene polymorphism with neutrophil survival and killing ability.

Recent research in our lab has demonstrated a significant association between the incidence of subclinical mastitis and specific polymorphisms of the CXCR2 gene in Holstein dairy cows. This gene encodes a receptor for interleukin-8 (IL-8), a key regulator of neutrophil migration, killing and survival. Because of the importance of this gene in neutrophil function, we hypothesized that differences in neutrophil killing and survival may exist among the CXCR2 genotypes and potentially contribute to the observed variation in intramammary infections. To test this hypothesis, neutrophils were isolated from cows representing each CXCR2 +777 genotype (GG, GC or CC) and tested for suppression of apoptosis, reactive oxygen species (ROS) generation, glutathione levels, and bactericidal activity. A significant increase in survival was observed in neutrophils from cows with a CC genotype when compared to those with a GG genotype in response to IL-8, but not dexamethasone. In contrast, a significant reduction in neutrophil ROS generation in response to phorbol-13-myristate-12 acetate (PMA) was observed in cows with a CC genotype when compared to those with a GG genotype. However, no differences in bactericidal activity or glutathione levels were observed among genotypes. The functional activity of neutrophils from cows heterozygous for this polymorphism was intermediate between those with homozygous genotypes for those assays where differences were observed among homozygous genotypes. In summary, our results suggest that neutrophils from Holstein cows with different CXCR2 genotypes vary in their ability to suppress apoptosis and produce ROS. These differences have the potential to influence overall neutrophil function and may partially explain the variation observed with respect to mastitis in vivo. These results provide a foundation for future research aimed at better understanding the basic differences between dairy cows genetically more or less susceptible to mastitis and has the potential to provide novel preventive and therapeutic measures against inflammatory diseases such as mastitis.

Animals↗

The significance of bcr-abl molecular detection in chronic myeloid leukemia patients "late," 18 months or more after transplantation.

The bcr-abl chimeric messenger RNA is frequently detected in chronic myeloid leukemia (CML) patients after bone marrow transplantation. It was previously reported that the relapse risk of bcr-abl detection 6 to 12 months after transplantation was greater than 40%. This risk decreased as the time between transplantation and detection increased. To further define the relapse risk associated with bcr-abl molecular detection in "late" CML survivors, 379 consecutive CML patients alive at 18 months after transplantation or later were studied. Ninety of 379 patients (24%) had at least one positive bcr-abl test 18 months after transplantation or later; 13 of 90 bcr-abl-positive patients (14%) and 3 of 289 bcr-abl-negative patients (1.0%) relapsed. The median time from bcr-abl detection to relapse was 916 days (range, 251-2654 days). The hazard ratio of relapse associated with bcr-abl detection was 19.2 (P <.0001). The stage of disease, chronic graft-versus-host disease, and the donor type did not alter the association between bcr-abl and relapse. Quantification of bcr-abl was performed on 344 samples from 85 bcr-abl-positive patients by means of a real-time quantitative reverse transcriptase-polymerase chain reaction assay. The median bcr-abl change of patients who relapsed was significantly greater than those that remained in remission (P =.002). The median bcr-abl level at relapse was 40 443 bcr-abl copies per microg RNA (range, 960-299 552). Of 73 bcr-abl-positive patients who failed to relapse, 69% had only one positive test at a median of 24 copies bcr-abl per microg RNA. The detection of bcr-abl is common following transplantation. The prognostic significance of a qualitative bcr-abl can be refined by quantitative assays and thus may target patients who would benefit from early intervention.

Adolescent↗

Transplantation of bone marrow as compared with peripheral-blood cells from HLA-identical relatives in patients with hematologic cancers.

BACKGROUND: In recipients of allogeneic hematopoietic-cell transplants, peripheral-blood cells mobilized with the use of filgrastim (recombinant granulocyte colony-stimulating factor) engraft more rapidly than bone marrow. However, the relative effects of these techniques on the rates of acute and chronic graft-versus-host disease, overall survival, and disease-free survival have not been determined in randomized studies. METHODS: Between March 1996 and July 1999, 172 patients (12 to 55 years of age) with hematologic cancer were randomly assigned to receive either bone marrow or filgrastim-mobilized peripheral-blood cells from HLA-identical relatives for hematopoietic rescue after the treatment of hematologic cancer with high doses of chemotherapy, with or without radiation. RESULTS: The recovery of both neutrophils and platelets was faster with peripheral-blood cells than with marrow (P<0.001 for both comparisons). The cumulative incidence of grade II, III, or IV acute graft-versus-host disease at 100 days was 64 percent with peripheral-blood cells and 57 percent with marrow (hazard ratio, 1.21; 95 percent confidence interval, 0.81 to 1.81; P=0.35). The cumulative incidence of chronic graft-versus-host disease was 46 percent with peripheral-blood cells and 35 percent with marrow (hazard ratio, 1.16; 95 percent confidence interval, 0.71 to 1.90; P=0.54). The estimated overall probability of survival at two years was 66 percent with peripheral-blood cells and 54 percent with marrow (hazard ratio for death, 0.62; 95 percent confidence interval, 0.38 to 1.02; P=0.06). The rate of disease-free survival at two years was 65 percent with peripheral-blood cells and 45 percent with marrow (hazard ratio for relapse or death, 0.60; 95 percent confidence interval, 0.38 to 0.95; P=0.03). CONCLUSIONS: In patients given high-dose chemotherapy, with or without radiation, for the treatment of hematologic cancer, allogeneic peripheral-blood cells used for hematopoietic rescue restore blood counts faster than allogeneic bone marrow, without increasing the risk of graft-versus-host disease.

Adolescent↗

Suppression of cell cycle progression by flavonoids: dependence on the aryl hydrocarbon receptor.

Some flavonoids are ligands of the aryl hydrocarbon receptor (AHR) and cause cell cycle arrest. The dependency of the cytostatic effects of five flavonoids (flavone, alpha-naphthoflavone, apigenin, 3'-methoxy-4'-nitroflavone and 2'-amino-3'-methoxyflavone) on a functional AHR was examined in AHR-containing rat hepatoma 5L cells and an AHR-deficient cell line (BP8) derived from the 5L line. The potent AHR ligand 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) was cytostatic to the 5L line due to the induction of a G(1) arrest and dramatically elevated steady-state levels of CYP1A1 mRNA. TCDD affected neither the proliferation nor CYP1A1 mRNA contents of BP8 cells. With the exception of apigenin, the flavonoids under study induced G(1) arrest in both 5L and BP8 cells when used at concentrations at which they functioned as AHR agonists, but not antagonists. Apigenin-treated 5L and BP8 cultures primarily arrested in G(2)/M. The AHR-containing murine hepatoma cell line 1c1c7 arrested following exposure to AHR agonist concentrations of flavone and alpha-naphthoflavone, but not TCDD. Unlike the G(1) arrest observed in 5L cultures, the latter two flavonoids caused principally G(2)/M arrest in 1c1c7 cells. These studies demonstrate that the cytostatic activities of flavonoids do not require the AHR and the site of checkpoint arrest with a specific flavonoid can vary with cell type.

Animals↗

Association between pretransplant interferon-alpha and outcome after unrelated donor marrow transplantation for chronic myelogenous leukemia in chronic phase.

Treatment options for patients diagnosed with chronic myelogenous leukemia (CML) in chronic phase (CP) who lack a suitable related donor for marrow transplantation include hydroxyurea, interferon-alpha (IFN-alpha), or transplantation from an unrelated donor (URD). Most studies support the view that treatment with IFN-alpha results in prolonged survival compared with hydroxyurea therapy. Some patients are offered URD transplantation as a second-line treatment; however, the impact of pretransplant IFN-alpha on the outcome of URD transplantation is uncertain. To address this question, we evaluated the effect of pretransplant IFN-alpha therapy in 184 patients undergoing URD transplantation for CML in CP at a single center. Of the 184 patients, 114 did not receive IFN-alpha, whereas 22, 23, and 25 patients received IFN-alpha for, respectively, 1 to 5, 6 to 12, and more than 12 months before transplant. Pretransplant IFN-alpha therapy administered for > or = 6 months was associated with an increased risk of severe (grades III-IV) acute graft-versus-host disease (GVHD; relative risk [RR], 3.0; 95% confidence interval [CI], 1.4 to 6.2; P = .004) and mortality (RR, 2. 1; 95% CI, 1.3 to 3.5; P = .003) relative to less than 6 months or no IFN-alpha therapy. Increased mortality occurred between 100 and 365 days after transplant (P = .005), was limited to patients with severe acute GVHD, and was due to chronic GVHD refractory to immunosuppressive therapy. Other variables associated with mortality included HLA-DRB1 or DQB1 (but not HLA-A or B) mismatched donors, age greater than 50 years, weight > or = 110% of ideal body weight, and the absence of cytomegalovirus (CMV) or fungal prophylaxis. For patients treated with IFN-alpha for less than 6 months before transplant, who were < or = 50 years of age, received a HLA-A, B, DRB1, and DQB1 matched URD transplant, and received CMV and fungal prophylaxis after transplant (n = 48), survival was 87% +/- 5% at 5 years. These data provide a rationale for immediate transplantation in preference to extended treatment with IFN-alpha when the patient is < or = 50 years of age and has an HLA-compatible unrelated volunteer donor.

Adolescent↗

Use of alpha-2a-interferon to treat cytogenetic relapse of chronic myeloid leukemia after marrow transplantation.

Fourteen patients with cytogenetic relapse of chronic myeloid leukemia (CML) after transplantation with unmanipulated bone marrow were treated with alpha-2a-interferon. There were eight men and six women, median age, 33 years. Twelve patients received marrow from a related allogeneic donor and two received marrow from a syngeneic donor. The median percentage of Ph-positive metaphases at the time of starting interferon was 55% (10% to 87%). Daily interferon was started at a dose of 1 to 3 x 10(6) U/M2/d, depending on initial blood counts and was adjusted as tolerated to maintain the white blood count in the range of 2,000 to 3,000/microL and the platelet count greater than 60,000/microL. After a stable cytogenetic remission was achieved, the interferon dose was decreased to a maintenance level. Twelve patients achieved a complete cytogenetic remission on at least one occasion. Median time to achieve a complete cytogenetic remission was 7.5 months (range, 1.5 to 12). Eight patients remain in cytogenetic remission for 10+ to 54+ months from the time of first documented remission. After complete cytogenetic remission was established, nine patients were tested for the presence of the mRNA transcript of the bcr/abl fusion gene by polymerase chain reaction (PCR) testing. Four patients were PCR-negative on at least one occasion: two patients were PCR-negative on a single occasion; one patient had serial tests, which were PCR-negative; and one patient had serial PCR-negative peripheral blood tests with a single PCR-positive bone marrow obtained concurrently with a negative peripheral blood test. Median follow-up time for all patients is 44 months (range, 20 to 64). Interferon was generally well tolerated; only one responding patient was unable to continue interferon because of toxicity. Interferon induces durable cytogenetic remissions in a significant proportion (57%) of patients with cytogenetic relapse following bone marrow transplantation (BMT) without causing life-threatening toxicities.

Adolescent↗

Effect of different chemotherapy regimens on peripheral-blood stem-cell collections in patients with breast cancer receiving granulocyte colony-stimulating factor.

PURPOSE: To evaluate the effects of chemotherapy regimens on peripheral-blood stem-cell (PBSC) yields in patients with breast cancer who receive granulocyte colony-stimulating factor (G-CSF). PATIENTS AND METHODS: One hundred patients with breast cancer received cyclophosphamide 4 g/m2 for dose (CY) (n = 10), CY and etoposide 600 mg/m2 (CE) (n = 13), CE and cisplatin 105 mg/m2 (CEP) (n = 19), or CY and paclitaxel 170 mg/m2 (n = 58), followed by G-CSF. PBSC collections were initiated when the WBC count recovered to greater than 1 x 10(9)/L. A multivariate analysis was undertaken to evaluate the effects of different chemotherapy regimens and patient variables on PBSC collections as measured by the yield of CD34+ cells. RESULTS: The medians of average daily CD34+ cell yields for patients who received paclitaxel plus CY, CE, and CEP with G-CSF were 12.9, 11.03, and 5.37 x 10(6)/kg, respectively, compared with 2.02 x 10(6)/kg in the reference group that received CY with G-CSF (P = < .0001, .002, and .09, respectively). On first-day collections, patients who received paclitaxel plus CY, CE, and CEP with G-CSF yielded medians of 11.07, 8.09, and 3.52 x 10(6) CD34+ cells/kg, respectively, compared with 0.90 x 10(6)/kg in the reference group that received CY with G-CSF (P = .0006, .02, and .09, respectively). The number of previous cycles of chemotherapy, previous radiotherapy, marrow involvement, and phase and stage of disease did not have statistically significant effects on CD34+ cell yield. CONCLUSION: Combination chemotherapy regimens were superior to single-agent CY for the mobilization of CD34+ cells.

Antigens, CD34↗

Methotrexate and cyclosporine for graft-vs.-host disease prevention: what length of therapy with cyclosporine?

One hundred three patients with leukemia, aplastic anemia, or myelodysplastic syndrome were treated by marrow transplantation from genotypically HLA-identical siblings (n = 92) or HLA haploidentical family members differing for one HLA antigen on the nonshared haplotype (n = 11). To prevent graft-vs.-host disease (GVHD), they were administered postgrafting immunosuppression with a short course of intermittent methotrexate with daily cyclosporine for no more than 11 days. Customarily, we have given cyclosporine for 180 days after transplant. In the current study, we asked whether cyclosporine could be stopped earlier without affecting the risk of chronic GVHD. By day 60, patients who never had acute GVHD, or whose acute GVHD had resolved, were randomized to have cyclosporine stopped (n = 52) or continued for the usual 180 days (n = 51). Results were analyzed with a median follow-up of 9.3 years after transplant, and showed that patients in whom cyclosporine was discontinued on day 60 had a significantly more rapid onset (p = 0.001), but not a significantly higher overall incidence of chronic GVHD than those in whom the drug was stopped on day 180 (43 vs. 54%; p = 0.26). Transplant-related mortality was comparable among patients without preceding acute GVHD, regardless of when cyclosporine was discontinued (11% for both study arms). However, transplant-related mortality appeared to increase among patients with preceding acute GVHD in whom cyclosporine was stopped by day 60 (38 vs. 17%). Results suggest that cyclosporine can safely be discontinued early in patients who never had evidence of acute GVHD, while those with preceding acute GVHD would benefit from a longer course of the drug. Because of the relatively small sample sizes, these results would best be treated as promising preliminary findings that should be confirmed in larger randomized studies.

Adult↗

High-dose busulfan, melphalan, and thiotepa followed by autologous peripheral blood stem cell transplantation in patients with aggressive lymphoma or relapsed Hodgkin's disease.

The purpose of this study was to evaluate the efficacy of high-dose chemotherapy with busulfan (Bu), melphalan (Mel), and thiotepa (TT), and of autologous peripheral blood stem cell (PBSC) infusion in patients with aggressive non-Hodgkin's lymphoma (NHL) or relapsed Hodgkin's disease (HD). Forty patients, 23 with intermediate (n= 18) or high-grade (n=5) NHL and 17 with HD received Bu (12 mg/kg), Mel (100 mg/kg), TT (450-500 mg/m2) [corrected], and autologous PBSC infusion. Of 27 patients with more advanced disease, 16 had primary refractory disease, 8 were in refractory relapse, and 3 were in third remission. Of 13 patients with less advanced disease, 7 were in untreated or responding first relapse and 3 were in second remission, whereas 3 with high-grade NHL were in first remission. Twenty-nine patients (73%) had received prior radiotherapy (RT) prohibiting a total-body irradiation (TBI)-based conditioning regimen. The projected 2-year probabilities of survival, event-free survival, and relapse for all patients were 0.60, 0.46, and 0.31 (0.85, 0.85, and 0.15 for patients with less advanced disease and 0.48, 0.30, and 0.37 for patients with more advanced disease). The probability of nonrelapse mortality in the first 100 days was 0.17. Severe idiopathic pneumonia syndrome was not observed in any patients with less advanced disease and in only one patient with more advanced disease. A regimen of BuMelTT is well tolerated in patients with aggressive NHL or relapsed HD, and results obtained to date are at least equivalent to other published regimens, including TBI-based regimens. This regimen appears to be a particularly attractive alternative for patients who have already received dose-limiting RT and should be evaluated further in prospective, randomized studies.

Adolescent↗

Transplantation of allogeneic CD34+ peripheral blood stem cells in patients with advanced hematologic malignancy.

Sixteen patients with advanced hematologic malignancies were transplanted with HLA-identical allogeneic peripheral blood stem cells (PBSCs) that were selected for CD34+ cells by an avidin-biotin immunoadsorption technique. The median age of patients was 48 years (range, 37 to 67). Patients received 12.0 or 13.2 Gy of total body irradiation followed by 120 mg/kg of cyclophosphamide. Normal donors received 16 mg/kg of granulocyte-colony stimulating factor on days 1 to 6 followed by PBSC harvests on days 4 to 7. PBSC harvests were processed each day on a single avidin-blotin column containing an antibody to the CD34 antigen and processed cells were infused without cryopreservation daily for 4 consecutive days. Prophylaxis against graft-versus-host disease (GVHD) consisted of cyclosporine alone for 5 patients and CSA plus methotrexate for 11 patients. A median of 18.64 (6.74 to 34.97) x 10(8) CD34+ cells/kg patient body weight were collected from each donor. A median of 8.96 (2.62 to 17.34) x 10(8) CD34+ cells/kg patient body weight were recovered after avidin-biotin adsorption which represented a median CD34+ cell yield of 53% (18% to 77%) with a median purity of 62% (34% to 82%). There was a reduction in CD3+ cells from a median of 557.26 (227.73 to 677.77) x 106/kg to 0.73 x 10(4)/kg (0.40 to 3.65), in CD4+ cells from 351.72 (194.47 to 520.11) x 10(6)/kg to 0.40 (0.15 to 1.03) x 10(4)/kg and in CD8+ cells from 169.74 (53.34 to 325.83) x 10(6)/ kg to 0.32 (0.12 to 2.71) x 10(4)/kg representing a median 2.8 (2.19 to 3.14) log reduction in T cells. One patient died of infection on day 3 posttransplant and was unevaluable for recovery of neutrophils. The median day to recovery of 500 neutrophils/mL was 15 (8 to 26) in the remaining 15 patients. Six of 16 patients falled to achieve a platelet count of 20,000/mL before death on days 3 to 97 of transplant-related complications. The median day to achieving platelets of 20,000 mL in the remaining 10 patients was 11 (7 to 31). Eight of 16 patients (50%) died between 3 and 97 days posttransplant, 7 of transplant-related causes, and 1 of progressive disease. Grade 2-4 acute GVHD occurred in 12 out of 14 (86%) and grades 3-4 in 6 out of 14 (43%) evaluable patients. Six of 8 evaluable patients developed clinical chronic GVHD and 1 developed subclinical chronic GVHD. Bone marrow and/or peripheral blood chimerism studies in 12 evaluable patients showed 97% to 100% donor type in 11 patients with 1 patient in relapse showing 40% donor cells 60 to 90 days posttransplant. Four of 16 patients (25%) are alive and disease-free 312 to 576 days after transplant. There were no episodes of graft failure or rejection. This study shows that allogeneic transplantation using CD34+ selected PBSC results in prompt and sustained engraftment. CD34+ selection, as employed in this preliminary study, however, resulted in an apparently higher rate of acute and chronic GVHD. However, The sample size is quite small and precludes a more definitive conclusion regarding GVHD.

Adult↗

Allogeneic marrow transplantation for multiple myeloma: an analysis of risk factors on outcome.

Between September 1987 and December 1994, 80 patients with multiple myeloma (MM) received high-dose busulfan and cyclophosphamide without (n = 57) or with modified total body irradiation (n = 23) followed by marrow from allogeneic donors. At transplant, 71% of the patients had disease that was refractory to chemotherapy. Thirty-five patients died of transplant-related causes within 100 days and 11 deaths occurred later. The actuarial probabilities of survival and progression-free survival were .24 +/- 0.17 and .20 +/- 0.10 at 4.5 years. Complete remissions were obtained in 36% of patients who had actuarial probabilities of survival and event-free survival of .50 +/- 0.21 and .43 +/- 0.17 at 4.5 years. In a multivariate analysis, adverse risk factors for outcome endpoints included: transplantation greater than 1 year from diagnosis; beta-2 microglobulin > 2.5 at transplant; female patients transplanted from male donors; patients who had received greater than eight cycles of chemotherapy before transplant and Durie stage 3 disease at the time of transplant. These results indicate that allografting for patients with MM can result in long-term disease-free survival for a minority of patients. Efforts to reduce transplant-related mortality should focus on earlier transplantation, less toxic treatment regimens, better supportive care, and improved prevention and treatment of graft-versus-host disease (GVHD).

Adult↗

Allogeneic peripheral blood stem cell transplantation in patients with advanced hematologic malignancies: a retrospective comparison with marrow transplantation.

Allogeneic peripheral blood stem cell (PBSC) transplants from HLA-identical siblings were performed in 37 patients with advanced hematologic malignancies. Outcomes were compared to a historical group of 37 similar patients with advanced hematologic malignancies receiving bone marrow (BM) transplants from HLA-identical donors. The PBSC group and historical BM group were well matched for diagnosis, disease stage, age, and graft-versus-host disease (GVHD) prophylaxis. Patients received PBSC transplants between 1993 to 1995 while BM patients were treated between 1989 to 1994. Engraftment, measured by the time to reach a peripheral neutrophil count > 500/L and platelet count > 20,000/microL without transfusions, occurred on days 14 and 11 in the patients transplanted with PBSC compared to days 16 and 15 in the patients receiving BM (P = .00063, .00014). The PBSC group required a median of 8 U of red blood cells and 24 U of platelets compared to 17 U of red blood cells and 118 U of platelets for BM transplant recipients (P = .0005, .0001). The estimated risks of developing grades 2 to 4 acute GVHD were 37% for the PBSC group and 56% for the BM group (P = .18), while the estimated risks of grades 3 to 4 acute GVHD were 14% for the PBSC group and 33% for the BM group, P = .05). Chronic GVHD occurred in 7 of 18 evaluable patients receiving PBSC and 6 of 23 evaluable patients receiving BM, P = .5. The estimated risks of transplant-related mortality at 200 days were 27% versus 45% (P = .33) relapse were 70% versus 53% (P = .27) and of overall survival were 50% and 41% (P = .39) for patients transplanted with PBSC or BM, respectively. This retrospective comparison suggests that compared to marrow transplantation from HLA-identical donors, allogeneic PBSC transplantation from HLA-identical donors is associated with faster engraftment, fewer transfusions, and no greater incidence of acute or chronic GVHD.

Adult↗

Busulfan, cyclophosphamide and fractionated total body irradiation for allogeneic marrow transplantation in advanced acute and chronic myelogenous leukemia: phase I dose escalation of busulfan based on targeted plasma levels.

A previous phase I study determined that the maximum tolerated dose (MTD) of busulfan (BU) that could be given with a fixed dose of cyclophosphamide (CY) of 50 mg/kg and total body irradiation (TBI) dose of 12.0 Gy was 7 mg/kg. A phase II study was carried out in patients with advanced myeloid malignancies receiving allogeneic transplants without improvement in outcome as compared to historical controls. In that study, steady-state concentration (Css) of BU in 13 patients receiving a fixed dose of BU varied from 209 to 735 ng/ml. In an attempt to decrease the variability of the Css of BU, a study of targeting specific plasma concentrations was performed. In this study, BU dose was adjusted up or down based on first dose pharmacokinetics. The first dose level evaluated was 7.5 mg/kg with a target BU plasma level of 460 ng/ml. Six patients were entered at this level and the median BU plasma concentration achieved was 410 (range 390-533). One of six patients developed grade 3-4 regimen-related toxicities (RRT). Dose level II was a target of 559 ng/ml with a starting oral dose of BU of 9.6 mg/kg. Twelve patients were entered at this level and median plasma BU level was 548 (range 427-689). Three of 12 (25%) patients developed grade 3-4 RRTs and this was considered to be the MTD. The actuarial probability of grade II-IV acute GVHD was 0.70. Eight of 21 evaluable patients (38%) developed chronic GVHD. Of 18 patients who died, seven died of relapse at a median of 160 days (range 65-353) and 11 (61%) died of causes other than relapse at a median of 152 days (range 18-570). The actuarial probabilities of DFS, relapse and relapse-free mortality at 2 years in all patients were 0.13, 0.50 and 0.75, respectively. This study showed that targeted BU plasma levels within 10% of target can reliably be achieved with a bias of -2.07% and mean absolute error of 7.47%. Overall, targeting made a -31.8% to 100% in plasma BU Css as compared to expected BU Css based on first dose pharmacokinetics if targeting were not performed in this study. Thus targeting avoided much of the variability in BU concentrations seen in other studies. When compared with our previous phase II experience in same group of patients receiving same regimen, dose escalation of BU based on targeted plasma levels did not improve the outcome.

Adolescent↗

Busulfan, cyclophosphamide and fractionated total body irradiation for autologous or syngeneic marrow transplantation for acute and chronic myelogenous leukemia: phase I dose escalation of busulfan based on targeted plasma levels.

In a previous phase I study, it was concluded that tolerable doses of busulfan (BU), cyclophosphamide (CY) and total body irradiation (TBI) were 8 mg/kg, 60 mg/kg and 12.0 Gy, respectively, for autologous marrow transplant recipients. In an attempt to decrease the variability of BU steady-state concentration (Css) following oral dosing, a BU dose escalation study based on targeted plasma levels was performed in patients receiving autologous transplants for AML or syngeneic transplants for CML. In this study, the BU dose was adjusted up or down based on observed plasma concentration. All patients received a fixed dose of CY 60 mg/kg and TBI of 12 Gy. The first dose level evaluated was 8.6 mg/kg with a target BU Css of 511 ng/ml. Eight patients were entered at this level and the median BU Css achieved was 441 (range 253-566). One of eight patients developed grade 3-4 regimen-related toxicities (RRT). The oral dose of BU for dose level II was 10.6 mg/kg with a target Css of 632 ng/ml. Six patients were entered at this level and median BU Css achieved was 642 (range 566-674). One of six patients developed grade 3-4 RRT. The oral dose for dose level III was 12.6 mg/kg with a target BU Css of 754 ng/ml. Five patients with AML were entered at this dose level and the median plasma BU Css was 733 ng/ml (682-900). Two of five (40%) patients at dose level III developed grade 3-4 RRT which was considered excessive making dose level II the MTD. This study showed that targeted BU Css can reliably be achieved with a bias of -5.23% and mean absolute error of 11.3%. Overall, targeting made a -32.5% to 158.3% change in plasma BU Css as compared to expected BU Css based on first dose pharmacokinetics if targeting were not performed in this study. Thus, targeting avoided much of the variability in BU Css seen in other studies and appears to have allowed for an increase in oral dosing from 8 mg/kg to 10.6 mg/kg. Despite achieving higher and more uniform BU Css, there was no apparent effect on relapse or survival, although the number of patients evaluated was small.

Acute Disease↗

High-dose busulfan and cyclophosphamide followed by autologous transplantation in patients with advanced breast cancer.

This study was conducted to evaluate the efficacy of high-dose busulfan (BU) and cyclophosphamide (CY) in patients undergoing autologous hematopoietic stem cell transplantation for metastatic breast cancer. Twenty-two patients with stage IV breast cancer underwent autologous marrow (n = 13), peripheral blood stem cell (PBSC) (n = 6) or marrow plus PBSC (n = 3) transplantation following BU (14-16 mg/kg) and CY (120-180 mg/kg). Of 22 patients, 18 had refractory relapse, one had primary refractory disease, two had responding relapse and one had no evidence of disease (NED) at the time of transplant. Eight patients had bone only disease, six had bone plus visceral disease, and eight had loco-regional recurrent disease. The median time for diagnosis to transplant was 1124 days (range 210-2582). Staging for evaluation of response was performed 4-6 months after transplantation. Six patients were not evaluable (NE) for response because of NED at transplant (n = 1) or early death due to transplant-related complications (n = 5) (one of RSV interstitial pneumonia, two of fungal infection and two of regimen-related toxicities) occurring at a median of 17 days (range 14-59) post-transplant. The patient who was NED at time of transplant is still NED on day 336 post-transplant. Seven of the 16 evaluable patients achieved a complete response (CR) (44%), five achieved a partial response (PR) (31%) and five had no response (NR), with an overall response rate of 75%. Five of 18 (28%) patients treated in refractory relapse, and both patients treated in responding relapse achieved a CR. Of the seven patients who achieved CR, three are alive and disease-free on days 204, 276 and 752 and three relapsed on days 209, 715 and 1127 post-transplant. One patient in CR died of aspergillus pneumonia on day 306 post-transplant. The median day to progression in five patients who achieved a PR after transplantation was 335 (range 144-507). The probabilities of survival and event-free survival (EFS) at 2 years was 0.22 and 0.15, respectively for all 22 patients. The probability of EFS at 2 years for the eight patients achieving CR (including one patient who was NED at transplant) was 0.33. The probabilities of overall survival at 2 years in patients who did and did not achieve a CR after transplantation was 0.63 and 0.14, respectively (P = 0.004). These data suggest that high-dose BU-CY followed by autologous stem cell transplantation is an effective regimen in patients with advanced breast cancer demonstrating that BU is an active agent in this disease and could be incorporated into treatment regimens requiring hematopoietic stem cell support.

Adult↗

Effect of mixed chimerism on graft-versus-host disease, disease recurrence and survival after HLA-identical marrow transplantation for aplastic anemia or chronic myelogenous leukemia.

The association of mixed (donor/host) chimerism with graft-versus-host disease (GVHD), graft rejection, disease recurrence and survival was investigated in 116 patients with aplastic anemia and 197 patients with chronic myelogenous leukemia (CML) transplanted with unmodified marrow from an HLA-identical sibling donor of opposite sex. Patients with aplastic anemia were conditioned with cyclophosphamide (CY), patients with CML were conditioned with a combination of CY and total body irradiation (TBI) or busulfan. Sixty-three of the patients with aplastic anemia (54%) and 100 patients with CML (51%) were categorized as mixed chimeras based on the concurrent presence of donor and host lymphohematopoietic cells 14 days or later after transplantation. The TBI dose used for conditioning was inversely correlated with the development of mixed chimerism (P < 0.0001) among CML patients. No other patient- or transplant-related parameter was identified which contributed significantly to the development of mixed chimerism. The incidence of rejection was higher but not significantly so in patients with aplastic anemia who were mixed chimeras. The incidence of leukemic relapse in patients with CML who were mixed chimeras was increased only if mixed chimerism occurred after day 100 (P = 0.015). The incidence of acute GVHD (grades II-IV) was lower in mixed chimeras than in complete chimeras, but this difference was statistically significant only for patients with aplastic anemia given single-agent GVHD prophylaxis (P = 0.0008). Mixed chimeras in that group also had a better survival than complete chimeras, while no significant difference was observed in patients with aplastic anemia given drug combinations for GVHD prophylaxis. Among patients with CML, both overall survival (P = 0.03) and relapse-free survival (P = 0.04) were significantly superior in mixed than in complete chimeras. Thus, mixed chimerism was frequent among patients with aplastic anemia and with CML and was not uniformly associated with graft failure or leukemic relapse. The interaction between conditioning regimen, GVHD prophylaxis and chimerism are complex. The survival advantage of mixed chimeras is only in part related to a lower incidence of GVHD and other factors are likely to contribute.

Adolescent↗

Bone marrow transplantation for chronic myelogenous leukemia.

Based on our understanding of CML, we recommend that patients age 65 or less with newly diagnosed CML should be evaluated to determine the stage of their disease and should be human lymphocyte antigen-typed along with their siblings. Patients age 55 years and younger who have matched or single antigen mismatched siblings should be advised to undergo BMT as soon as possible and patients up to age 65 should be considered for BMT early in their disease course if in good health. Patients age 55 years or younger without appropriately matched family member donors should have a search for an unrelated donor initiated and should be offered BMT if an appropriate donor is found. Patients for whom no donor is found and older patients without family matches can be considered for entry onto clinical trials evaluating autologous BMT or other experimental approaches.

Aged↗