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C A Keever-Taylor

Publications and source records attributed to C A Keever-Taylor.

16 recordsLinked to original sources

IL-2-based immunotherapy after autologous transplantation for lymphoma and breast cancer induces immune activation and cytokine release: a phase I/II trial.

We determined the safety, immune activating effects, and potential efficacy of i.v. infusion of ex vivo interleukin-2 (IL-2) activated natural killer (NK) cells (part I) or IL-2 boluses (part II) during daily s.c. IL-2 administration following hematopoietic recovery from autologous transplantation. In all, 57 patients with relapsed lymphoma (n=29) or metastatic breast cancer (n=28) were enrolled. In part I of the study, 34 patients were enrolled at three dose levels of ex vivo IL-2-activated NK cells. Lymphaphereses were performed on days 28 and 42 of s.c. IL-2 administration. Following overnight ex vivo IL-2 activation of the pheresis product, the cells were reinfused the following day. In part II, 23 patients were enrolled at three dose levels of supplemental i.v. IL-2 bolus infusions, given on days 28 and 35 during s.c. IL-2 administration. Toxicities were generally mild, and no patient required hospitalization. Lytic function was markedly enhanced for fresh peripheral blood mononuclear cells (PBMNCs) obtained 1 day postinfusion of either IL-2-activated cells or IL-2 boluses. IL-2 boluses transiently increased the levels of IL-6, IFN-gamma, TNF-alpha and IL1-beta, with increases in IL-6 and IFN-gamma being dose dependent. A total of 37 patients (19 patients with lymphoma, 18 with breast cancer) treated with an optimum dose of post-transplant immunotherapy (defined as having received 1.75 x 10(6) IU/m(2)/day of s.c. IL-2 plus at least one of the planned ex vivo IL-2-activated cell infusions/IL-2 boluses) could be matched with controls from the Autologous Blood and Marrow Transplant Registry database. The matched-pairs analysis demonstrated no improvement in disease outcomes of survival and relapse. We conclude that IL-2-activated cells/IL-2 boluses can be safely administered, generate PBMNCs with enhanced cytotoxicity against NK-resistant targets, and increase cytokine levels. With this dose and schedule of administration of IL-2, no improvement in patient disease outcomes was noted. Alternative strategies will be needed to exploit the immunotherapeutic potential of IL-2-activated NK cells.

Adult↗

Tumor load in patients with follicular lymphoma post stem cell transplantation may correlate with clinical course.

The purpose of this study was to evaluate if the tumor load, as determined by a real-time quantitative PCR (RQ-PCR) assay, correlated with the clinical course of follicular lymphoma patients after stem cell transplantation (SCT). Cryopreserved bone marrow and/or peripheral blood samples obtained at different time intervals after SCT from 11 patients (seven allogeneic, T-cell depleted/four autologous) were tested for tumor load, as defined by t(14;18) positive cells/total cells, using RQ-PCR. None of the six patients who remained in remission had samples with a tumor load >0.01% after SCT, although fluctuating tumor loads of </=0.01% were observed in three of these patients. In contrast, four of the five patients (three allogeneic/two autologous) with relapsed/progressive disease had increasing tumor loads of >0.01% after SCT (0/6 vs 4/5, P<0.02, Fisher's exact). Our results suggest that RQ-PCR measurable tumor load >0.01% after SCT may correlate with relapsed/progressive disease. Prospective studies with greater numbers of cases are indicated to better determine the critical tumor load that predicts poor outcome after SCT with RQ-PCR.

Adult↗

Suppression of EBV release from irradiated B lymphoblastoid cell-lines: superior activity of ganciclovir compared with acyclovir.

BACKGROUND: B lymphoblastoid cell-lines (BLCL), generated by exposure of PBMC to a laboratory strain of EBV, are commonly utilized in the preparation of T cells used for immunotherapy. Although most B cells are latently infected, BLCL contain a subset of cells that harbor infectious virus, which could be released into the infusion product during preparation. To reduce this known risk, laboratories have pretreated BLCL for > or = 14 days with 100 microM acyclovir (ACV), an inhibitor of viral DNA polymerase, prior to use. We tested the effectiveness of ACV in preventing the release of infectious virus from irradiated fresh and previously frozen BLCL, and compared its effects with those of ganciclovir (GCV). METHODS: BLCL were grown for 14 days in medium containing various doses of ACV or GCV, washed, irradiated, and tested for the presence of infectious virus in co-culture assays with cord blood mononuclear cells(CBMC) (21 CBMC to BLCL). B-cell transformation was assessed at 3-4 weeks of culture. RESULTS: Both fresh and previously frozen BLCL released infectious virus, which transformed nearly all (92%) of CBMC co-cultures (n = 52). Transformation was not prevented by treatment with 100 microM ACV (88%, n = 52). Increasing the ACV dose to 200 microM (or 50 microg/mL) still allowed transformation in 4/9 (44%) cultures, while this and higher doses severely reduced the proliferation rate of the BLCL during ACV exposure. Infectious virus release was detectable within 1 day of ACV removal and BLCL irradiation. In contrast, GCV was able to prevent infectious virus release in 12/12 co-cultures at a concentration (15 microM) that only modestly reduced BLCL growth. DISCUSSION: These results indicate that GCV is more effective at preventing release of infectious EBV from irradiated BLCL than ACV at concentrations that do not severely inhibit B-cell growth.

Acyclovir↗

Loss of renal function following bone marrow transplantation: an analysis of angiotensin converting enzyme D/I polymorphism and other clinical risk factors.

Chronic renal failure is an acknowledged late complication of BMT. It is related to the intensive chemotherapy, radiation and supporting medications. Polymorphism in the angiotensin converting enzyme (ACE) gene is associated with progression of nephropathy caused by diabetes and IgA nephropathy. We sought to determine whether ACE genotype and other clinical factors were associated with loss of renal function after BMT. We determined the genotype of 106 adult allogeneic BMT recipients, who received a similar preparative regimen, survived 1 year, and had assessment of renal function up to 3 years after BMT. We found that the distribution of genotypes was similar to the general population; 29%, 51%, and 20% for the DD, DI, and II genotypes, respectively. There was no statistical difference in patient survival between the three groups. Among all patients, the average creatinine clearance declined from 124 (95% CI 117, 131) to 89 (95% CI 78, 100) ml/min over the 36 months after BMT. Decline in renal function over time was less for patients with the DD compared to the II genotype (P = 0.040). Renal function in patients with the DD genotype was also better than those with the DI genotype, but this was of borderline statistical significance (P = 0.055). Renal shielding reduced decline in renal function compared to no shielding (P = 0.026). We conclude that the ACE genotype does not seem to influence survival, but the DD genotype may be protective against renal injury after BMT. Furthermore, we confirm that renal shielding during TBI reduces the renal injury after BMT.

Adolescent↗

Factors affecting neutrophil and platelet reconstitution following T cell-depleted bone marrow transplantation: differential effects of growth factor type and role of CD34(+) cell dose.

We have performed univariate and multivariate analysis to determine the factors that affect the kinetics of neutrophil and platelet recovery in 546 recipients of T cell-depleted (TCD) marrow allografts. All patients received marrow depleted of mature CD3(+) T cells by complement-mediated lysis using T(10)B(9)-1A3 (n = 489) or Muromonab-Orthoclone OKT3 (n = 57) monoclonal antibodies. Neutrophil engraftment to 0.5 x 10(9)/1 and platelet engraftment to 20 x 10(9)/l were assessed as endpoints. Factors significantly affecting neutrophil or platelet engraftment in the univariate analysis included patient age, T cell dose, anti-thymocyte globulin use, gender, diagnosis at transplant, CMV serostatus, HLA mismatch, CD34 cell dose (n = 249), and growth factor use and type. These variables were included in the multivariate Cox proportional hazards regression model. The results showed that a faster rate of neutrophil engraftment was independently associated with CD34(+) cell dose > or = 5 x 10(6)/kg and most strongly with growth factor administration. Faster platelet engraftment was associated with transplantation for chronic leukemia, CD34(+) cell dose > or = 2 x 10(6)/kg, an HLA matched related donor, and the absence of growth factor use. G-CSF had a higher relative risk (RR) of enhancing neutrophil engraftment than GM-CSF and significantly delayed platelet engraftment. The combined use of G-CSF + GM-CSF was similar to G-CSF alone. The enhancing effect of G-CSF for neutrophil recovery was most striking for patients who engrafted to 0.5 x 10(9)/1 at or before day 12 (RR = 9.5, P < 0.0001) compared to patients who received no growth factor. Conversely, the delaying effect of G-CSF on platelet engraftment was strongest for patients engrafting on or before day 25 (RR = 0.4, P = 0.0004). Of the independent variables affecting engraftment kinetics in recipients of TCD marrow allografts only growth factor, and to a limited extent, CD34(+) cell dose can be controlled by the clinician. A higher CD34(+) cell dose enhances the rate of both neutrophil and platelet engraftment whereas for G-CSF the benefits of myeloid growth factor use in enhancing neutrophil recovery may be partly offset by a delay in platelet engraftment.

Adolescent↗

Cytomegalovirus-specific cytolytic T-cell lines and clones generated against adenovirus-pp65-infected dendritic cells.

Cytomegalovirus (CMV) infection is a serious complication of allogeneic bone marrow transplantation (BMT). CMV disease can usually be prevented by passive immunization with donor-derived CMV-pp65-specific T-cell clones if provided early post-BMT. The classic method of generating CMV-specific T-cell clones requires donor-derived fibroblast lines infected with CMV as stimulators, thus limiting the availability of CMV immunotherapy to those patients for whom a donor skin biopsy can be obtained 6 to 8 weeks pretransplantation. To overcome this limitation we have used monocyte-derived dendritic cells (DCs) to induce donor anti-CMV cytotoxic T lymphocytes (CTLs). Matured, adeno-pp65-infected DCs were added at day 0 and at day 7 of a 2-week culture of donor peripheral blood mononuclear cells. DC-primed cultures were compared with cultures stimulated in an identical fashion with CMV-infected fibroblasts or with adeno-pp65-infected freshly isolated blood monocytes. Specific killing of CMV-infected fibroblasts was detected in all except the culture stimulated with pp65-infected monocytes. DCs infected after maturation elicited greater CTL activity than did DCs matured after infection. A series of 5 CD8+ clones from a fibroblast-stimulated culture and 7 CD8+ clones from a mature-DC-stimulated culture derived from a single HLA-A*0201+ individual were characterized. All 12 clones lysed autologous CMV-infected fibroblasts. All except 1 clone from the CMV-infected fibroblast arm (fibroblast arm) lysed vaccinia-pp65-infected B-lymphoblastoid cell lines (BLCLs); none lysed vaccinia-pp150-infected or noninfected BLCLs. Ten of 10 CD8+ clones tested were restricted by HLA-A*0201. Seven of the 12 clones were Vbeta6+ (2 from the fibroblast arm and 5 from the DC arm) with an identical Vbeta6.1-J1.4 sequence. Three clones from the fibroblast arm and 5 clones from the DC arm recognized the pp65 peptide NLVPMVATV (amino acids [aa], 495-503). These data show that CMV-specific T-cell clones with similar restriction patterns, T cell-receptor usage, and specificity can be generated using monocyte-derived pp65-infected-DC or CMV-infected-fibroblast stimulators. This approach should broaden the applicability of CMV-specific T-cell immunotherapy to a wider spectrum of patients by reducing the time required to generate CMV-specific T-cell clones.

Adenoviridae↗

Analysis of risk factors for the development of GVHD after T cell-depleted allogeneic BMT: effect of HLA disparity, ABO incompatibility, and method of T-cell depletion.

Multivariate analysis was performed to determine the independent factors affecting the risk of acute GVHD (aGVHD) grades II to IV and extensive chronic GVHD (cGVHD) and the rate of survival in 481 recipients of T cell-depleted (TCD) marrow allografts who received transplants at a single center between 1991 and 2000. All patients received grafts partially depleted of CD3+ T cells by complement-mediated lysis using 2 narrow-specificity monoclonal antibodies (MoAbs), T10B9.1A-31 (n = 400) or Muromonab-Orthoclone OKT3 (n = 81). Factors considered in the analysis included patient/donor sex, age, cytomegalovirus (CMV) status, and ABO blood group along with T-cell dose, disease, and disease status, donor relationship, HLA antigen (Ag)mismatch (MM), growth-factor use, anti-thymocyte globulin use, year of transplantation, and the MoAb used for TCD. The results showed an association of HLA with an increased relative risk (RR) of aGVHD for recipients of grafts from relateddonors that were > or =2 Ag MM (n = 73, RR = 2.09, P = .005), matched unrelated (UR) donors (n = 130, RR = 1.98, P = .004), and > or =2 Ag MM UR donors (n = 34, RR = 2.68, P = .003) compared with the baseline matched-sibling group (n = 121). No increased risk of aGVHD was seen for 0 to 1 Ag MM family donors (n = 24) or 1 Ag MM UR donors (n = 99). aGVHD risk was increased with minor, but not major or major-minor, ABO disparity (RR = 2.0, P = .003) compared with that of ABO-identical pairs. We found less effective TCD and resultant higher T-cell dose for recipients of grafts that were T cell depleted using OKT3. However, the use of OKT3 and not the T-cell dose was associated with increased aGVH-D risk (RR of 1.84, P = .001). Increased risk of extensive cGVHD was associated with patient age of >20 years (RR = 2.2, P < .0001) and with CMV status (positive patient/negative donor, RR = 1.9, P = .002). Decreased survival was associated with older age (>20 years), a > or =2 Ag MM related donor, a 1 or > or =2 Ag MM UR donor, risk group, and a CMV-positive patient/-negative donor pair. There was no difference in survival for 0 to 1 Ag MM related or matched UR donors compared with the baseline group. These data indicate that there are quantitative as well as potential qualitative differences in outcome depending on the TCD method. Expected and unexpected risk factors for GVHD and survival were associated with partial TCD. Our data support the consideration of ABO match in donor selection, the preferential selection of CMV-positive donors for CMV-positive recipients, and the acceptance of 1 but not > or =2 Ag HLA MM donors.

ABO Blood-Group System↗

Complement-mediated T-cell depletion of bone marrow: comparison of T10B9.1A-31 and Muromonab-Orthoclone OKT3.

BACKGROUND: T10B9.1A-31 (T(10)B(9)) and Muromonab-Orthoclone OKT3 (OKT3) are both murine MAb with a narrow specificity for T lymphocytes. Over the past 10 years, we have used each for T-cell depletion (TCD) of BM. In this report we describe similarities and differences using these antibodies, as well as their effects on patient outcome. METHODS: We compared BM mononuclear cells (BMMC) prepared using a Cobe Spectra apheresis machine with density gradient (DG) separation to remove RBC and enrich for CD34(+) cells prior to TCD. FACS and limiting dilution assays (LDA) were used to measure the efficiency of TCD, the subsets of cells removed and CD34 content. Univariate statistics were used to assess graft outcome, including GvHD, graft failure, post-transplant lymphoproliferative disease (PTLD), relapse, DFS, and TRM. RESULTS: BMMC preparation on the Cobe Spectra resulted in superior recovery of CD34(+) cells. However, this method could not be used with OKT3 due to inhibition of T-cell lysis. Optimal TCD required two rounds of complement at room temperature for OKT3, compared with one or two rounds for T(10)B(9). TCR(gamma delta)(+) T-cells, but not natural killer cells, were spared to a greater degree with T(10)B(9). Further T-cell loss occurred during culture with T(10)B(9) but not with OKT3. Overall efficiency of TCD was superior using T(10)B(9). The risk of acute GvHD was higher with OKT3-mediated TCD, independent of T-cell content, and may have led to a higher incidence of PTLD. A decreased risk of relapse for patients with high-risk disease was seen with OKT3-treated grafts, but engraftment, TRM and DFS did not significantly differ. DISCUSSION: TCD using OKT3 results in higher T-cell content and higher rates of acute GvHD and PTLD compared with T(10)B(9). Cobe Spectra cannot be used for BMMC processing with OKT3, fewer CD34(+) are therefore infused. Technical, as well as biological, differences between narrow specificity MAbs can affect graft outcome.

Animals↗

T-cell depletion plus salvage immunotherapy with donor leukocyte infusions as a strategy to treat chronic-phase chronic myelogenous leukemia patients undergoing HLA-identical sibling marrow transplantation.

T-cell depletion (TCD) of the donor marrow graft has been shown to reduce the severity of graft-versus-host disease (GVHD) in patients with chronic-phase (CP) chronic myelogenous leukemia (CML) undergoing HLA-identical sibling allogeneic marrow transplantation. However, there has been a corresponding reduction in the graft-versus-leukemia effect so that any decrease in GVHD-related mortality has been offset by an increased rate of disease relapse. Therapy of recurrent disease with donor leukocyte infusions (DLI) has been proven to be effective salvage therapy for the majority of patients who relapse after allogeneic BMT with CP CML. However, the overall impact of salvage DLI therapy on the survival of CP CML patients initially transplanted with TCD marrow grafts is not defined. To address this question, we have evaluated a clinical strategy of TCD followed by targeted adoptive immunotherapy with DLI in 25 CP CML patients undergoing allogeneic BMT from HLA-identical siblings. All patients received a standardized preparative regimen along with ex vivo TCD and posttransplant cyclosporine as GVHD prophylaxis. Durable engraftment was observed in all 25 patients. The incidence of grade II to IV acute GVHD was 8%. The cumulative incidence of transplant-related mortality (TRM) was 4%, and the 1-year probability of overall survival was 96%. The 3-year cumulative relapse incidence was 49%. All relapsed patients received DLI to reinduce remission. The total T-cell dose administered to these patients varied from 0.1 to 5.0 x 10(8) T cells/kg. Complete responses were observed in 12 of 14 patients, with 1 additional patient still too early to evaluate. Three patients died of GVHD after DLI, and 1 relapsed into blast crisis after a transient cytogenetic remission. Of the remaining 10 patients, 8 are in molecular remission, 1 is alive in relapse, and 1 is receiving DLI treatment. The median follow-up after infusion of surviving DLI patients in remission is 5.3 years. The probability of overall 5-year survival for the entire population is 80%, with a median follow-up of 6.4 years. We conclude that the clinical strategy of TCD followed by targeted adoptive immunotherapy with DLI for those patients with evidence of recurrent disease is a viable transplant strategy for CP CML, resulting in 80% survival and a low risk of acute GVHD and transplant-related mortality.

Adolescent↗

Successful unrelated marrow transplantation for patients over the age of 40 with chronic myelogenous leukemia.

Some older patients (> or =40 years) with chronic myelogenous leukemia (CML) who lack human leukocyte antigen (HLA)-identical sibling donors are not offered unrelated marrow transplantation because of concerns over excessive regimen-related toxicity, in particular due to graft-vs.-host disease (GVHD). The purpose of this study was to determine the efficacy and toxicity of unrelated marrow transplantation in older CML patients using a regimen designed to minimize the severity of GVHD. Thirty-one consecutive patients over the age of 40 with CML received unrelated marrow transplants between January 1988 and June 1997. Twenty-one patients were transplanted in chronic phase while ten were transplanted in the accelerated phase of their disease. Fifteen patients received transplants from phenotypically matched donors while 16 received marrow grafts from donors who were mismatched at one HLA locus. GVHD prophylaxis consisted of ex vivo T cell depletion of the donor marrow graft plus posttransplant cyclosporine administration. Durable engraftment was achieved in 29 of 31 patients (94%). The probability of developing grades II-IV or severe grades III-IV acute GVHD was 39.2 and 7.1%, respectively. There was no difference in the incidence of grades II-IV acute GVHD between patients transplanted with marrow grafts from phenotypically matched (38.1%) vs. those transplanted from mismatched unrelated donors (40%, p = 0.99). The 2-year probability of relapse for the entire population was 29.4%. Relapse was significantly higher for patients transplanted in accelerated phase (60%) than for those in chronic phase (13.8%, p = 0.027). The 2-year probability of overall survival and disease-free survival for the entire cohort was 56 and 45%, respectively. There was no significant difference in survival or disease-free survival for patients receiving phenotypically matched vs. mismatched marrow grafts. Immunological reconstitution for this cohort was compared with a younger (<40 years) patient population that had been similarly transplanted over the same time period. Immune function as assessed by total T cell, B cell, NK cell, and T cell subset reconstitution posttransplant was quantitatively equivalent in the two groups with most parameters normalizing within 18 months of transplant. We conclude that CML patients over the age of 40 who have either phenotypically matched or one antigen-mismatched unrelated donors can successfully undergo allogeneic marrow transplantation. T cell depletion of the marrow graft may be advantageous in these older patients by reducing GVHD severity, particularly in those patients transplanted with HLA-disparate marrow grafts.

Adult↗

Association of donor-derived host-reactive cytolytic and helper T cells with outcome following alternative donor T cell-depleted bone marrow transplantation.

Recipients of marrow from alternative donors (unrelated or HLA-mismatched related donors) have a higher incidence of post-transplant complications compared to recipients of marrow from HLA-identical siblings. HLA disparity undetected by routine typing techniques has been suggested as one cause for the increased complications observed. Limiting dilution analysis (LDA) of donor-derived, host-reactive T cell precursor frequency prior to transplant has been proposed as a surrogate indicator of underlying HLA disparity which might be used to predict transplant outcome and aid in donor selection. We compared results of LDA of host-reactive IL-2 producing helper T lymphocytes (HTLp) and/or cytolytic T lymphocytes (CTLp) in 77 alternative marrow donor/recipient pairs with transplant outcome using univariate and multivariate analysis. All donor grafts were depleted ex vivo of mature T cells. Median patient age was 15 years (1-53). Donor selection was based on serologic typing for HLA class I and high resolution oligotyping for HLA-DRB1-DRB5, and HLA-DQB1. HLA-A and HLA-B locus antigens were retrospectively defined by one dimensional isoelectric focusing (IEF). Cox proportional hazards regression models were used to assess the impact of frequency and estimated cell dose of CTLp and HTLp on outcome. The CTLp assay was most sensitive to HLA-A and HLA-B locus disparity detected by serology or IEF. The HTLp assay detected class I disparity but was most strongly reactive in the presence of HLA-DRB1 disparity. Univariate analysis indicated a significant association of CTLp frequency and dose with severe (grades 3-4) acute graft-versus-host disease (GVHD), and of CTLp dose with chronic GVHD. Both assays were associated with survival and neither assay was associated with relapse. After adjustment for other significant covariables including known HLA disparity, the association of CTLp with acute GVHD was lost, however, CTLp frequency and CTLp dose remained associated with survival and HTLp frequency was associated with chronic GVHD. These data support the hypothesis that post-BMT complications may be influenced not only by T cell dose but by the alloreactive potential of the cells infused. LDA of alloreactive potential was useful in detecting disparity and in predicting survival or chronic GVHD in recipients of alternative donor TCD marrow grafts.

Adolescent↗

Effect of T cell subset dose on outcome of T cell-depleted bone marrow transplantation.

T cell depletion using the murine monoclonal antibody (moAb) T10B9 is unique in that the T cell receptor (TCR)gamma delta bearing subset is relatively spared compared to the TCR alpha beta + subset. We evaluated the probabilities of engraftment, acute and chronic graft-versus-host disease (GVHD), relapse, and survival in 273 recipients of marrow T cell depleted using T10B9. Sixty-two patients received marrow from an HLA-identical sibling, 54 patients received partially matched related donor marrow and 157 patients received unrelated donor marrow. Limiting dilution analysis (LDA) was used to estimate total clonable T cell dose in all patients and a modified LDA using moAb-coated immunomagnetic beads was used to estimate TCR alpha beta +, CD4+, and CD8+ T cells in a subset of patients. TCR gamma delta + cell dose was estimated by flow cytometry. Cox proportional hazards regression models were used to assess the impact of T cell subset dose/kg of body weight on outcome. We found a significant association of TCR gamma delta + T cell dose (P = 0.004), but not TCR alpha beta + T cell dose or total clonable T cell dose, with the probability of engraftment. TCR alpha beta +, CD4+, CD8+ and total clonable T cell dose were significantly associated (P < 0.001) with the risks of grade 2-4 acute GVHD in recipients of marrow from related donors but not in recipients of marrow from unrelated donors. Neither total clonable T cell dose nor any T cell subset dose was found to be significantly associated with chronic GVHD, relapse or survival. The results confirm preclinical studies showing TCR gamma delta + T cells promote engraftment. TCR gamma delta + T cells are not associated with an increased risk of acute GVHD while TCR alpha beta T cells are associated with acute GVHD but not engraftment in recipients of marrow grafts T cell depleted using T10B9. These findings support the hypothesis that T cell subsets differentially contribute to alloengraftment and GVHD.

Adolescent↗

A new limiting dilution culture system for the detection of T cell subsets in T cell-depleted marrow grafts.

T cell depletion (TCD) has been achieved using techniques that cause the inactivation, lysis, or physical removal of T cells from the donor marrow. The clinical results of TCD reflect, in part, the degree of TCD achieved and the subsets that are removed. To better evaluate TCD using the monoclonal antibody (mAb) T10B9, we have performed a series of flow cytometry and mAb blocking studies and have developed a new limiting dilution assay (LDA) that allows the detection of T cell subsets that survive treatment. T cell growth was stimulated with PHA, rIL-2, and irradiated feeder PBMC in a total well volume of 20 microliters. Growth was scored by microscopic examination on days 14-16 of incubation. Immunomagnetic beads coated with mAb were added to the growing wells and incubated, then the plates were fixed to a template of samarium cobalt magnets before washing away nonadherent cells. Wells in which > 50 cells bound > or = 2 beads were scored as positive. Flow cytometry indicated that T10B9 recognized all T cells, but complement-mediated lysis spared a significant proportion of the TCR gamma delta + subset. The epitope recognized by T10B9 on TCR gamma delta + cells appears to be differentially expressed compared with TCR alpha beta + T cells based on antibody blocking studies. In contrast to antibodies to CD3 epsilon, T10B9 binds less well to TCR gamma delta + cells, possibly resulting in incomplete complement-mediated lysis of this subset. The relative sparing of TCR gamma delta + cells was found in marrow and peripheral blood. Subset LDA confirmed that the TCR gamma delta + cells detected by flow cytometry were capable of growth and further showed that OKT3 did not spare TCR gamma delta + cells. The subset LDA should prove useful in helping to assess the role of T cell subsets in clinical events post-TCD bone marrow transplantation.

Bone Marrow Transplantation↗

Hematologic and immunologic evaluation of recombinant human interleukin-6 in patients with advanced malignant disease: evidence for monocyte activation.

Eighteen advanced cancer patients received weekday subcutaneous injections of recombinant interleukin-6 (rIL-6) for 4 weeks at escalating doses. Patients were evaluated for hematologic and immune system effects. Hematologic monitoring included WBC, differential, Hgb and Hct, platelet counts, and assessment of marrow and peripheral blood progenitors. Immunologic monitoring included evaluation of acute-phase reactants (APRs), immunophenotyping, serum cytokine levels, cytokine-induced proteins, and cytokine messenger RNA (mRNA). The maximal tolerated dose (MTD) was 8.0 micrograms/kg/day, with neurocortical toxicity as the major limiting factor. All patients became anemic, and most had fever and chills. APRs were increased throughout treatment. WBCs increased transiently on day 2; granulocytes and monocytes increased again through day 26, whereas lymphocytes decreased to baseline or lower levels. Platelets responded by day 12 and increased through day 26 at the MTD with no effect on colony-forming unit-megakaryocyte (CFU-Mk). Peripheral WBC and RBC progenitors were not affected but decreased in the marrow. T-cell percentages declined with little effect on absolute numbers; T-cell activation was seen. CD45RO+ T cells decreased, but there was no significant effect on CD8+ CD28+ T cells. Neither B cells nor natural killer (NK) cells were affected. However, evidence of monocyte effects included upregulation of CD71, induction of the cytokine-induced proteins 2-5A synthetase and neopterin, and increases in tumor necrosis factor-alpha (TNF-alpha) mRNA. Serum cytokines were undetected, and mRNA for IL-1 beta, IL-2, and interferon-gamma (IFN-gamma) was not induced; however, mRNA for IL-4 and IL-10 did increase suggesting activation of Th2-like T cells. One mixed tumor response was seen. We conclude that IL-6 alone has systemic activity on the immune system, as well as the hematopoietic system, which at the MTD, primarily involves induction of APR, activation and expansion of monocytes, and activation of Th2-like T cells.

Acute-Phase Proteins↗

Use of unrelated marrow grafts compensates for reduced graft-versus-leukemia reactivity after T-cell-depleted allogeneic marrow transplantation for chronic myelogenous leukemia.

The effect of donor/recipient histocompatibility on relapse in patients receiving T-cell-depleted (TCD) grafts for chronic myelogenous leukemia (CML) was evaluated. Specifically, we sought to determine whether TCD results in an attenuation of the graft-versus-leukemia (GVL) effect on recipients of unrelated marrow grafts similar to that observed in HLA-identical sibling marrow transplantations. This question was addressed by comparative analysis of the relapse rates in marrow grafts who otherwise received identical preparative regimens and graft-versus-host disease (GVHD) prophylaxis schedules (T-cell depletion with T10B9 monoclonal antibody and complement plus posttransplant cyclosporine) and by serial molecular analyses using the polymerase chain reaction (PCR) to detect the bcr/abl RNA transcript in patients transplanted with unrelated donor grafts. Patients transplanted with advanced disease (accelerated phase or blast crisis) had equally high relapse rates, regardless of whether they received HLA-identical sibling (56%;95% confidence interval [CI], 29% to 82%) or unrelated marrow grafts (8%; 95% CI, 0% to 28%) had a significantly lower incidence of relapse than did patients transplanted with HLA-identical marrow grafts (47%; 95% CI, 23% to 71%; P = .002). Because all patients were similarly treated, these data indicate that the lower relapse rate in these unrelated patients was caused by an augmented GVL effect that was most likely attributable to increased HLA disparity between donor and recipient. The probability of developing both acute and chronic GVHD was significantly increased in chronic-phase recipients of unrelated marrow grafts, suggesting that the enhanced GVL effect was at least partly GVHD-associated. The lack of such a finding in advanced disease patient receiving unrelated marrow grafts raises the possibility that clinically significant GVL effect after TCD marrow transplantation was limited and confined to patients with more indolent disease. Serial PCR analyses for the presence of the bcr/abl RNA transcript showed that the vast majority of patients transplanted in chronic phase with unrelated marrow grafts were persistently PCR-negative, indicating that the GVL effect was durable in these patients. Most of these patients were observed to become PCR negative within 1 to 2 months after transplantation, showing that early eradication of leukemia was possible with TCD marrow grafts. This study shows that the use of unrelated marrow grafts compensates for reduced GVL reactivity associated with TCD in patients transplanted for CML. Furthermore, these data indicate that, in selected patient populations with CML, TCD can be used to reduce GVHD without a commensurate compromise in the GVL effect.

Adolescent↗