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Biomedical subjects

S Mackinnon

Publications and source records attributed to S Mackinnon.

At least 55 records · Page 3Linked to original sources

T-cell-depleted allogeneic bone marrow transplantation as postremission therapy for acute myelogenous leukemia: freedom from relapse in the absence of graft-versus-host disease.

Thirty-one consecutive patients with acute myelogenous leukemia (AML) in first complete remission and 8 with AML in second complete remission received T cell-depleted allogeneic bone marrow transplants from HLA-identical sibling donors. Patients received myeloablative cytoreduction consisting of hyperfractionated total body irradiation, thiotepa, and cyclophosphamide. Those patients at risk for immune-mediated graft rejection received additional immune suppression with antithymocyte globulin and methylprednisolone in the early peritransplant period. Patients with AML who underwent allogeneic T-cell-depleted bone marrow transplantations (BMT) in first or second remission have achieved respective disease-free survival (DFS) probabilities of 77% (median follow-up at approximately 56 months) and 50% (median follow-up at approximately 48 months). Ten of 31 patients transplanted in first remission were > or = 40 years old and have attained a DFS at 4 years of 70%. For patients with AML transplanted in first or second remission, the respective cause-specific probabilities of relapse were 3.2% or 12.5%, and those of nonleukemic mortality were 19.4% or 37.5%. There were no cases of immune-mediated graft rejection and no cases of grade II to IV acute graft-versus-host disease (GVHD). All survivors enjoy Karnofsky performance scores (KPS) of 100%, except 2 patients with KPS of 80% to 90%. T-cell-depleted allogeneic BMT can provide durable DFS together with an excellent performance status in the majority of patients with de novo AML. In addition, GVHD is not an obligatory correlate of the graft-versus-leukemia benefit or freedom from relapse afforded by allogeneic BMT administered as postremission therapy for AML. This study provides a basis for prospective comparison with other postremission therapies considered standard in the management of patients with this disease.

Adolescent↗

Donor leukocyte infusions.

Donor leukocyte therapy has resulted in a remission rate in excess of 70% in patients with relapse of chronic myeloid leukaemia (CML) following allogeneic bone marrow transplantation (BMT). Induction of remission with donor leukocyte infusions has been primarily successful for CML patients who have cytogenetic relapse or those with chronic-phase haematological relapse. Response rates appear to be lower in patients who have advanced-phase CML. The majority of patients with CML who enter remission have no detectable minimal residual disease when analysed for BCR-ABL mRNA transcripts by reverse-transcription polymerase chain reaction. The efficacy of donor leukocyte infusions and the ease of therapy are balanced by the potential for significant toxicity. The reported treatment-related mortality rate is almost 20%. The major toxicities of this treatment are secondary to marrow aplasia and graft-versus-host disease (GVHD) which may occur in up to 50% and 90% of responders respectively. Donor leukocytes with a T-cell content of only 1 x 10(7)/kg, approximately a factor of 10 fewer T cells than used in most early studies, are capable of inducing remissions in some patients. The use of lower doses of T cells or CD8+ depleted T cells may be associated with less GVHD. The optimal treatment schedule using donor leukocytes has yet to be determined. Factors which might influence outcome include phase of disease, use of interferon alpha, use of unrelated donors and human leukocyte antigen disparity, T-cell dose, CD8+ depletion of leukocytes and time from BMT to leukocyte infusion.

Humans↗

Specific human cellular immunity to bcr-abl oncogene-derived peptides.

Chronic myelogenous leukemia (CML) cells are characterized by a t(9;22) translocation, which can encode one of two chimeric P210 bcr-abl fusion proteins, comprising products of either the b2a2 or the b3a2 exon junction. The junctional sequences represent potentially immunogenic tumor-specific antigens. Despite their intracellular location, the fusion proteins might be recognized immunologically by T lymphocytes if peptides, derived from these unique sequences, are capable of presentation by the major histocompatibility complex molecules. We previously found that four peptides, 9 to 11 amino acids long, spanning the b3a2 CML breakpoint bind with high or intermediate affinity to purified HLA class I molecules A3, A11, B8, or both A3 and A11. We tested the ability of these peptides to elicit specific class I restricted cytotoxic T lymphocytes (CTLs) in vitro in HLA-matched healthy donors. In addition, a longer b3a2 CML-breakpoint-derived peptide, 25 aminoacids in length (b3a2-25), was studied for its ability to induce peptide-specific, class II-mediated, T-cell proliferation. In four of four HLA-A3 donors tested, CML-A3/A11-peptide specific CTLs were induced that killed an allogeneic HLA-A3-matched peptide pulsed leukemia cell line. In two of three HLA-A3 donors, the CML-A3/A11 peptide was able to induce killing of autologous and allogeneic HLA-matched peptide-pulsed peripheral blood mononuclear cells (PBMC). CML-A3 peptide induced peptide specific CTLs in one of the four HLA A3 donors tested. No killing was observed in two HLA-B8 and two HLA-A11 donors. PBMC from seven donors were also tested for anti b3a2-25 peptide proliferation in a thymidine incorporation assay. Specific proliferation was detected in three donors, all of the HLA-DR11 haplotype. These data represent the first evidence of a cytolytic human immune response against CML bcr-abl oncogene-derived peptides and provide a rationale for developing peptide-based vaccines for this disease.

Amino Acid Sequence↗

Polymerase chain reaction is highly predictive of relapse in patients following T cell-depleted allogeneic bone marrow transplantation for chronic myeloid leukemia.

In chronic myeloid leukemia (CML) the polymerase chain reaction (PCR) can be used to detect minimal residual disease after bone marrow transplantation (BMT). Previous studies have shown that PCR positivity is common following BMT. However, the clinical significance of this finding for any given individual who is PCR positive remains unclear, as many of these patients remain long-term disease-free survivors after allogeneic BMT. In the present study, we used PCR to detect BCR-ABL mRNA in 144 blood or marrow samples from 36 patients who received a T cell-depleted BMT for CML in first chronic phase. Six patients had no evidence of PCR-detectable residual disease at any time following transplant. The other 30 patients had at least one positive PCR result post-BMT. Once PCR positivity was found, it was usually sustained, with only four patients having a subsequent PCR negative assay. No patient who had two consecutive PCR-positive assays had a return to PCR negativity. None of the six patients with exclusively PCR-negative assays have developed either cytogenetic or hematologic relapse at a median follow-up of 42 months. Of the 30 patients with at least one PCR-positive assay post-BMT, 28 were PCR positive at last follow-up, and 22 have progressed to cytogenetic or hematologic relapse. If the PCR-positive assay occurred within 24 months of the transplant then the estimated probability of progression to cytogenetic or hematologic relapse was 65% at 24 months. Twenty of the 26 patients who were studied early (< or = 6 months) after BMT had at least one positive PCR assay. Fifteen of the 20 patients who were PCR positive < or = 6 months following transplant have progressed to either cytogenetic or hematologic relapse resulting in an estimated probability of relapse of 84% at 24 months. These results indicate that following T cell-depleted BMT for CML in first chronic phase, PCR is highly predictive of relapse and may identify a cohort of patients in need of therapeutic intervention before the onset of overt clinical relapse.

Biomarkers, Tumor↗

Adoptive immunotherapy evaluating escalating doses of donor leukocytes for relapse of chronic myeloid leukemia after bone marrow transplantation: separation of graft-versus-leukemia responses from graft-versus-host disease.

Infusions of large numbers (> 10(8)/kg) of donor leukocytes can induce remissions in patients with chronic myeloid leukemia (CML) who relapse after marrow transplantation. We wanted to determine if substantially lower numbers of donor leukocytes could induce remissions and, if so, whether this would reduce the 90% incidence of graft-versus-host disease (GVHD) associated with this therapy. Twenty-two patients with relapsed CML were studied: 2 in molecular relapse, 6 in cytogenetic relapse, 10 in chronic phase, and 4 in accelerated phase. Each patient received escalating doses of donor leukocytes at 4- to 33-week intervals. Leukocyte doses were calculated as T cells per kilogram of recipient weight. There were 8 dose levels between 1 x 10(5) and 5 x 10(8). Lineage-specific chimerism and residual leukemia detection were assessed using sensitive polymerase chain reaction (PCR) methodologies. Nineteen of the 22 patients achieved remission. Remissions were achieved at the following T-cell doses: 1 x 10(7) (n = 8), 5 x 10(7) (n = 4), 1 x 10(8) (n = 3), and 5 x 10(8) (n = 4). To date, 15 of the 17 evaluable patients have become BCR-ABL negative by PCR. The incidence of GVHD was correlated with the dose of T cells administered. Only 1 of the 8 patients who achieved remission at a T-cell dose of 1 x 10(7)/kg developed GVHD, whereas this complication developed in 8 of the 11 responders who received a T-cell dose of > or = 5 x 10(7)/kg. Three patients died in remission, 1 secondary to marrow aplasia, 1 of respiratory failure and 1 of complications of chronic GVHD. Sixteen patients who were mixed T-cell chimeras before treatment became full donor T-cell chimeras at the time of remission. Donor leukocytes with a T-cell content as low as 1 x 10(7)/kg can result in complete donor chimerism together with a potent graft-versus-leukemia (GVL) effect. The dose of donor leukocytes or T cells used may be important in determining both the GVL response and the incidence of GVHD. In many patients, this potent GVL effect can occur in the absence of clinical GVHD.

Adolescent↗

Adoptive immunotherapy using donor leukocytes following bone marrow transplantation for chronic myeloid leukemia: is T cell dose important in determining biological response?

We investigated the use of donor leukocytes for the treatment of Epstein-Barr virus (EBV) lymphoproliferative disease following T cell-depleted bone marrow transplantation (BMT) for chronic myeloid leukemia (CML). We wanted to determine whether donor leukocyte treatment would result in altered biological responses with respect to anti-EBV lymphoma activity, donor-host chimerism and graft-versus-leukemia (GVL) responses. Three patients with CML in cytogenetic remission received < 10(6)/kg donor leukocytes for treatment of EBV lymphoproliferative disease. Lineage specific chimerism and residual leukemia detection were assessed using sensitive PCR methodologies. Following donor leukocyte treatment 1 patient had no recurrence and the other 2 had responsive EBV lymphoma. The 2 patients who were mixed T cell chimeras before treatment, remained so after treatment. Two were BCR-ABL positive by PCR before and after treatment and both developed hematologic relapse. None of the 3 patients developed acute graft-versus-host disease (GVHD) with 1 patient developing limited chronic GVHD. These data suggest that small numbers of donor T cells can eradicate EBV lymphoproliferative disease but may not alter donor-host chimerism or mediate GVL responses.

Adult↗

Minimal residual disease is more common in patients who have mixed T-cell chimerism after bone marrow transplantation for chronic myelogenous leukemia.

Determining both lymphoid chimerism and the presence of minimal residual disease after allogeneic bone marrow transplantation (BMT) for chronic myelogenous leukemia (CML) could be helpful to the understanding of the biology of leukemic relapse in this disease. We prospectively investigated 32 patients with CML post-BMT by assessing T-cell chimerism and minimal residual disease using sensitive polymerase chain reaction (PCR) methodologies. Patients were studied between 1 and 24 months post-BMT. Thirty patients received a T-cell-depleted marrow grafts and 2 received unmanipulated marrow. All but 1 patient were conditioned with total body irradiation (TBI)+thiotepa+cyclophosphamide (Cy). The other patient received TBI+Cy as conditioning. The T cells were exclusively of donor origin in 12 of 16 patients who were tested at 1 month post-BMT, but were mixed chimeric in 11 of these patients by > or = 3 months. Once mixed T-cell chimerism was documented, no patient returned to having all donor T-cells. At a median follow-up of 12 months, minimal residual disease was present in 18 of 22 patients with mixed T-cell chimerism and in 3 of 10 patients with full donor chimerism. The actuarial molecular relapse rate at 24 months for the two groups is 91% and 33%, respectively (P < .02). The finding of BCR-ABL mRNA within the first 6 months of transplant or on two consecutive assays was highly predictive of subsequent cytogenetic or hematologic relapse (P = .032 and P < .02, respectively). Ten patients, 9 with mixed T-cell chimerism, have relapsed (4 clinical, 6 cytogenetic) at a median of 12 months post-BMT. These data suggest that mixed T-cell chimerism may be a marker for abrogation of graft-versus-leukemia activity that is thought to be pivotal in eradicating minimal residual disease after BMT for CML.

Bone Marrow Transplantation↗

Infusions of donor leukocytes to treat Epstein-Barr virus-associated lymphoproliferative disorders after allogeneic bone marrow transplantation.

BACKGROUND: Lymphoma associated with Epstein-Barr virus (EBV) is a complication of bone marrow transplantation that responds poorly to standard forms of therapy. The lymphoma is usually of donor origin. We hypothesized that treatment with infusions of donor leukocytes, which contain cytotoxic T cells presensitized to EBV, might be an effective treatment. METHODS: We studied five patients in whom EBV-associated lymphoproliferative disorders developed after they received a T-cell-depleted allogeneic bone marrow transplant. Biopsy specimens were immunophenotyped, subjected to the polymerase chain reaction to determine the origin of the lymphoma (donor or host) and to detect the presence of EBV, and analyzed by Southern blotting for the presence of the clonal EBV genome and immunoglobulin-gene rearrangement. Patients were treated with infusions of unirradiated donor leukocytes at doses calculated to provide approximately 1.0 x 10(6) CD3+ T cells per kilogram of body weight. RESULTS: Histopathological examination of biopsy specimens from all five patients demonstrated monomorphic, malignant lymphomas of B-cell origin. Each of the four specimens that could be evaluated was of donor-cell origin. Evidence of clonality was found in two of the three samples adequate for study. EBV DNA was detected by the polymerase chain reaction in all five samples. In all five patients there were complete pathological or clinical responses. The responses were first documented histologically within 8 to 21 days after infusion. Clinical remissions were achieved within 14 to 30 days after the infusions and were sustained without further therapy in the three surviving patients for 10, 16, and 16 months. CONCLUSIONS: In a small number of patients, infusions of unirradiated donor leukocytes were an effective treatment for EBV-associated lymphoproliferative disease that arose after allogeneic bone marrow transplantation.

Adult↗

Differential effect of pre-transplant cytoreduction on recovery of day zero host circulating cells.

Host lymphocytes, reactive against donor specific HLA antigens, emerge at the time of graft rejection following T cell-depleted BMT. Thirty patients receiving different cytoreduction regimens were evaluated for the presence of circulating residual, in vitro expandable, host cells on day 0. Twenty-five patients received TBI-containing regimens and 5 patients received non-TBI containing regimens. Patients prepared with thiotepa or TBI-containing regimens had 10-fold lower numbers of circulating host PBMC pre-transplant on day 0 compared with patients cytoreduced with BU/CY. Cell proliferation was observed only in patients who received BU/CY. The phenotype of the in vitro expanded cells was predominantly CD3+ (88-97%), CD8+ (45-70%), HLA-DR+ (43-88%), although natural killer cell function and phenotype (CD56+: 6-21%) was also documented. Host cells expanded from a patient who received BU/CY exhibited specific cytotoxicity against feeder cell targets, indicating that BU/CY cytoreduction might not be an optimal BMT preparative regimen for patients at high risk of graft failure. The published experience of similar studies to date is also summarized.

Bone Marrow Transplantation↗

Matched unrelated donor bone marrow transplantation for chronic myeloid leukaemia in chronic phase: comparison of ex vivo and in vivo T-cell depletion.

Between January 1985 and March 1992, 48 patients with chronic phase CML underwent BMT from volunteer unrelated donors (MUD) serologically identical at HLA-A, B and DR loci. 19 patients received donor marrow ex vivo T-cell depleted (EX-TCD) with Campath monoclonal antibodies. 29 patients received unmanipulated donor marrow with CsA/MTX GVHD prophylaxis; 28 received additional intravenous antilymphocyte therapy from day +1 to +5 (IN-TCD). Overall 26 patients survive at median follow up of 362 days; actuarial survival at 3 years is 50%. 3 patients have sustained haematological relapse; actuarial leukaemia-free survival is 38%. There is no difference in overall survival between the EX-TCD and IN-TCD groups, but primary graft failure (n = 4) occurred only in the EX-TCD group, while GVHD (grade II or greater) occurred more frequently in the IN-TCD group (61% vs. 29%, p = 0.084). The optimum method for GVHD prophylaxis in MUD BMT remains uncertain.

Adolescent↗

Myeloid and lymphoid chimerism after T-cell-depleted bone marrow transplantation: evaluation of conditioning regimens using the polymerase chain reaction to amplify human minisatellite regions of genomic DNA.

Determining both myeloid and lymphoid chimerism after T-cell-depleted allogeneic bone marrow transplantation (BMT) could be helpful in the understanding of the biology of engraftment and could provide a rational method of assessing the ability of different conditioning regimens to promote engraftment. We prospectively investigated the role of different pretransplant conditioning regimens in 29 leukemic patients post-BMT by assessing myeloid and T-cell chimerism using a rapid and sensitive polymerase chain reaction (PCR) method. Minisatellites are hypervariable regions of DNA consisting of tandem repeats of a core nucleotide sequence, and allelic polymorphism results from differences in the number of the repeats. We used this variation to distinguish between donor and recipient cells post-BMT. Seventeen patients (9 sibling and 8 unrelated donors) received conditioning with hyperfractionated total body irradiation (TBI), thiotepa, and cyclophosphamide (Cy). Of the other 12 patients (all sibling donors), 11 received TBI plus Cy plus another agent: VP16, carboplatinum, or AZQ. One patient received TBI plus thiotepa plus VP16. All but one of the patients studied received marrow from HLA-identical donors. PCR analysis confirmed donor lymphoid engraftment within 8 days of transplant in six of six patients studied. All granulocyte DNA was of donor origin within the first 4 weeks of transplant, regardless of the conditioning regimen. The day +28 T cells were exclusively of donor origin in 14 of 17 patients who received TBI plus thiotepa plus Cy, but were mixed chimeric in 10 of 12 patients who received other conditioning regimens (P < .001). Early graft rejection was seen in one unrelated transplant recipient conditioned with TBI plus thiotepa plus Cy. Late graft failure was observed in 3 of 12 patients with mixed T-cell chimerism and in none of 16 patients with full donor chimerism at day +28. However, 5 of 16 patients who had complete T-cell chimerism at day +28 developed acute graft-versus-host disease (GVHD), whereas no patient with mixed chimerism had acute GVHD. Our results indicate that minisatellite PCR is a rapid and sensitive method for assessing chimerism post-BMT, that the donor T cells are important for consistent durable engraftment, and that TBI plus thiotepa plus Cy may be superior to the other regimens studied in inducing full donor chimerism. Larger numbers and longer follow-up are necessary to confirm these data and also to assess the relationship between complete donor T-cell chimerism and leukemia-free survival.

Adolescent↗

HLA-identical sibling donor bone marrow transplantation for chronic myeloid leukaemia in first chronic phase: influence of GVHD prophylaxis on outcome.

We have analysed the results of treating 140 consecutive patients with chronic myeloid leukaemia (CML) in chronic phase by bone marrow transplantation (BMT) using marrow from HLA-identical siblings performed between February 1981 and July 1991. Three different regimens were used sequentially to prevent graft-versus-host disease (GVHD): cyclosporin A (CsA) alone (n = 39), T-cell depletion of donor marrow (n = 51) and CsA with methotrexate (MTX) (n = 50). Eighty-four patients (61%) survive at a median of 49 months from BMT (range 3-120). The actuarial overall and leukaemia-free survivals at 5 years were 52% and 41% respectively. The actuarial probabilities of leukaemia-free survival and haematological relapse at 2 years for the CsA only group were 65% and 4%, for the T-cell depletion group 40% and 41% and for the CsA/MTX group 68% and 6% respectively. For the T-cell depletion group the probability of leukaemia-free survival was significantly lower (P less than 0.001) and the probability of relapse significantly higher (P less than 0.001) than for other methods of GVHD prophylaxis; differences between the other two groups were not significant. Previous reports that T-cell depletion with Campath-1M results in a high rate of relapse are confirmed. Patients in the CsA/MTX group have been monitored with cytogenetic and polymerase chain reaction studies for residual BCR/ABL transcripts. We conclude that the combination of CsA/MTX is currently the best available approach to prevention of GVHD after BMT for CML and in our hands it is not associated with a major risk of relapse.

Adolescent↗

Origin and function of adherent lymphokine activated killer cells in patients with chronic myeloid leukaemia who relapse following bone marrow transplantation.

Adherent lymphokine activated killer (ALAK) cells are a subpopulation of activated natural killer (NK) cells with MHC unrestricted antitumour activity distinguished by their propensity to adhere to plastic in the presence of interleukin-2 (IL-2). We generated ALAK cells from seven patients with chronic myeloid leukaemia (CML) following Campath-1-depleted bone marrow transplantation (BMT). Five had relapsed and were in chronic phase, one had cytogenetic evidence of relapse and one had prior evidence of cytogenetic relapse but was in complete remission at time of study. Phenotypically the ALAK cells included both CD56+/CD3- NK cells and CD56-/CD3+ T cells. The CD3- subpopulation were studied cytogenetically and their functional activity tested in a 4 h 51Cr release cytotoxicity assay using the pretransplant leukaemia cells as targets. Cytogenetic studies showed that the ALAK cells from six patients were Ph negative, and where donor and recipient were sex mismatched, ALAK cells were exclusively of donor origin. In one patient ALAK cells were Ph positive and of recipient origin in eight of nine metaphases. In the 51Cr release assay the ALAK cells showed significant lysis of the pretransplant leukaemia in five of the seven patients tested. These data indicate that in CML patients who relapse post-BMT the NK cells are usually of donor origin but may be recipient-derived. In most patients these ALAK cells have antileukaemic activity in vitro.

Antigens, Neoplasm↗

Induction of in vitro graft-versus-leukemia activity following bone marrow transplantation for chronic myeloid leukemia.

We studied the in vitro effects of lymphokine-activated killer (LAK) cells from the peripheral blood of chronic myeloid leukemia (CML) patients after allogeneic and syngeneic bone marrow transplantation (BMT). LAK cells were generated by incubating peripheral blood mononuclear cells from patients post-BMT with recombinant interleukin-2 (IL-2) (500 U/mL) in 10% AB serum for 7 days. They were phenotyped and tested for activity in a standard 4-hour 51Cr release assay (n = 37) and in a CFU-GM assay (n = 24). We found that the LAK cells were mainly activated natural killer cells, but some were CD3+ T cells. In the 51Cr release assay LAK cells from 20 of 33 (61%) allogeneic and 2 of 4 syngeneic recipients killed recipient CML cells and in 22 of 37 (60%) cases also killed the HLA disparate CML cells. In the CFU-GM assay the LAK cells incubated together with the CML cells in liquid culture before plating inhibited (P less than .05) colony growth in 16 of 22 allogeneic and 2 of 2 syngeneic recipients. Cell-cell contact was necessary for optimal effect. There was little or no inhibition of proliferation of donor marrow CFU-GM. This in vitro graft-versus-leukemia (GVL) effect could also be demonstrated after LAK effectors were depleted of CD3+ T cells. It was inducible in recipients of both T cell-depleted and T cell-replete donor marrow and in recipients with or without graft-versus-host disease. These results suggest that a major histocompatibility complex-unrestricted GVL effect is inducible following allogeneic and syngeneic BMT. The use of IL-2/LAK cells after BMT could reduce the risk of relapse.

Antigens, Surface↗

Bone marrow transplantation for chronic myeloid leukemia: the use of histocompatible unrelated volunteer donors.

We treated 17 patients with chronic myeloid leukemia (CML) by bone marrow transplantation using marrow from human leukocyte antigen (HLA)-matched unrelated donors. Patients were conditioned with a combination of in vivo monoclonal antibodies, chemotherapy with daunorubicin (n = 7) or busulfan (n = 10) and cyclophosphamide, and both total body and total lymphoid irradiation. Donor marrow was depleted of T cells by incubation with monoclonal antibodies of the Campath series. Fourteen (88%) of 16 evaluable patients had sustained engraftment. Four (27%) of the 15 evaluable patients developed acute graft-versus-host disease (GVHD) of grade II or greater, and 4 of 12 evaluable patients developed chronic GVHD. Three patients developed hematological and two developed cytogenetic evidence of relapse. Eight patients (47%) survive at a median follow-up of 32 months (range 10-51 months), giving an actuarial survival of 44%. Five patients remain alive without evidence of hematological or cytogenetic relapse, giving an actuarial disease-free survival of 27%. Pneumonitis caused or contributed to death in six of the nine patients who died. We conclude that T-cell depletion can prevent the severest forms of GVHD but also increases the risk of relapse after transplant with unrelated donors, as it does with HLA-identical siblings. Nevertheless the use of matched unrelated donors should be considered for CML patients who lack HLA-identical siblings.

Adolescent↗