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Biomedical subjects

L B To

Publications and source records attributed to L B To.

At least 91 records · Page 5Linked to original sources

Structure-function studies of human granulocyte-macrophage colony-stimulating factor. Identification of residues required for activity.

Human granulocyte-macrophage colony stimulating factor (hGM CSF), a protein containing 127 amino acids, was chemically synthesized by using automated stepwise solid-phase methods. The unpurified synthetic hGM-CSF had the same range of actions on hemopoietic cells as the purified recombinant protein. The structural requirements for the activities of synthetic hGM-CSF were examined by the design and synthesis of fragments and analogs. The synthetic fragment, hGM-CSF (54-127), containing all four of the cysteine residues found in the intact protein, lacked detectable activity. Assays of fragments shortened at the N terminus showed that the residues 1-13 were not required for activity, but that the integrity of residues 14-25, particularly residues 16, 17, and 18, was critical for biologic activity. The 14-25 region is predicted to form the first alpha-helix in hGM-CSF. Synthetic peptides within the N-terminal 53 residue region lacked detectable activity. The synthetic analog hGM-CSF (1-121), which lacks the C-terminal 6 residues, had similar activity to hGM-CSF (1-127) indicating that residues 122-127 are not required for activity. An analog, [Ala88] hGM-CSF (14-96), which lacks the hydrophobic C-terminal region and 2 cysteine residues, had low but readily detectable activity suggesting that residues 14-96 are sufficient for detectable synthetic hGM-CSF activity, although the presence of residues 97-121 are required for full activity. No dissociation of the multiple biological activities of hGM-CSF was detected.

Amino Acid Sequence↗

Consolidation therapy without maintenance for acute non-lymphoblastic leukaemia.

The most effective therapy to prolong remission and to increase cure rates in patients with acute non-lymphoblastic leukaemia is uncertain, and approaches vary from one course of consolidation to two years of maintenance and intensification therapy. We report the results of brief intensive therapy with daunorubicin, cytosine arabinoside and thioguanine, and no maintenance therapy, in 72 patients with a minimum follow-up period of two years. The complete remission rate was 67%, the median duration of remission was 11 months, and 23% of patients whose leukaemias went into remission, have remained in remission for three years and longer. These results are equivalent to those that have been reported with long-term chemotherapy.

Actuarial Analysis↗

Bone marrow biopsy during induction chemotherapy for acute myeloid leukaemia identifies only 50% of patients with resistant disease.

A study was carried out to determine whether bone marrow biopsy performed on day 6 of induction therapy for acute myeloid leukaemia (AML) can identify those patients with resistant disease who would need an intensification of the first course of induction. Bone marrow biopsies were performed on day 6 of induction chemotherapy in 44 patients with AML treated with daunorubicin, cytosine arabinoside and thioguanine. Biopsies were assessed for blast count, trephine cellularity and leukaemic index. Discrimination between patients who went on to achieve remission and those with resistant disease was best achieved using the reduction in bone marrow cellularity from pretreatment marrow to day-6 marrow. However, this discriminator identified only 50% of the patients with resistant disease and included 13% of patients who achieved remission with the first course of chemotherapy. The other parameters of response were even less effective at discriminating between chemotherapy-resistant and chemotherapy-responsive disease.

Antineoplastic Combined Chemotherapy Protocols↗

Recombinant human interleukin-3 stimulation of hematopoiesis in humans: loss of responsiveness with differentiation in the neutrophilic myeloid series.

Recombinant human (rh) interleukin-3 (IL-3) stimulated the proliferation and differentiation of erythroid, granulocyte, macrophage, eosinophil (Eo), and mixed colonies as well as megakaryocytes from human bone marrow cells. rh IL-3 was a weaker stimulus than rh granulocyte-macrophage colony-stimulating factor (GM-CSF) for day 14 myeloid cell colonies. At day 7 of incubation, rh IL-3 stimulated a few G, M, and Eo clusters but no colonies. This loss of responsiveness of myeloid cells to rh IL-3 was accentuated with further differentiation of the cells. rh IL-3 stimulated very few or no clones after five-day incubation with enriched promyelocytes and myelocytes, whereas rh GM-CSF was an efficient stimulus. Responsiveness to rh IL-3 was completely lost in postmitotic mature neutrophils. Incubation of these cells with rh IL-3 did not result in enhanced antibody-dependent cell-mediated cytotoxicity (ADCC) of tumor cells or superoxide anion production after stimulation with formyl-methyl-leucyl-phenylalanine (FMLP), although they could be stimulated by rh GM-CSF. In addition, preincubation of neutrophils with different concentrations of rh IL-3 failed to increase or decrease their response to rh GM-CSF. In contrast to neutrophils, mature Eos could be stimulated by rh IL-3 to kill antibody-coated tumor cells. These results show that cells of the neutrophilic myeloid series lose their responsiveness to h IL-3 as they differentiate and suggest that although h IL-3 may be an important therapeutic agent to use for hematopoietic regeneration in vivo, the lack of stimulation of mature neutrophil function makes it an unlikely sole candidate as adjunct therapy for treatment of infectious diseases.

Antibody-Dependent Cell Cytotoxicity↗

Successful peripheral blood stem-cell autograft with a near-critical dose of myeloid progenitor cells in acute non-lymphoblastic leukaemia in relapse.

Rapid, complete and sustained haemopoietic reconstitution was achieved in a 69-year-old man with acute non-lymphoblastic leukaemia in relapse who received an autograft of peripheral blood cells that were collected during very early remission. The patient received 1.7 X 10(8) nucleated cells/kg bodyweight containing 63 X 10(4) myeloid progenitor cells (CFU-GM)/kg bodyweight. Trilineage engraftment was evident in the bone marrow seven days after the graft. Normal neutrophil and platelet counts were attained by day 17, on which day the patient was discharged from hospital. He remained in complete remission three months after the graft with normal blood counts and bone-marrow cellularity. The rapid and sustained haemopoietic activity in this patient, in conjunction with our previous experience of four other patients who received autografts with peripheral blood stem cells, supports the concept we have proposed that a minimum CFU-GM dose of 50 X 10(4)/kg bodyweight produces complete and sustained engraftment. The rapid recovery minimizes aplasia-related risks and suggests that such autografting can be carried out safely in first remission even in older patients. This technique should be considered as a new therapeutic option for patients with acute non-lymphoblastic leukaemia.

Acute Disease↗

Residual leukemia cannot be detected in very early remission peripheral blood stem cell collections in acute non-lymphoblastic leukemia.

We have used a combined cell culture and cytogenetic approach to study the level of residual leukemia during the very early remission (VER) phase of acute non-lymphoblastic leukemia. Clonogenic leukemic cells were induced to proliferate by phytohemagglutinin-stimulated leucocyte conditioned medium and identified by a leukemia-associated karyotype t(8;21) and a morphological marker (Auer rod). When leukemic blasts were cultured, the leukemic karyotype and Auer rods were most readily detected after 3-9 days. When VER blood cells were cultured, no leukemia-associated karyotype or Auer rods could be detected. Based on the number of VER blood cell derived metaphases analysed, the incidence of leukemic blasts among dividing cells is less than 2%.

Cells, Cultured↗

Stimulation of proliferation, differentiation, and function of human cells by primate interleukin 3.

Cloned gibbon interleukin 3 (gIL-3) was found to stimulate the proliferation and differentiation of human bone marrow cells to produce day-14 granulocyte, macrophage, granulocyte-macrophage, and eosinophil colonies in semisolid agar. In the presence of normal human plasma, gIL-3 stimulated megakaryocytes. In methylcellulose cultures, it stimulated erythroid colonies in the presence, but not in the absence, of erythropoietin. When mature human leukocytes were used, gIL-3 stimulated the function of purified mature eosinophils as measured by the capacity to kill antibody-coated target cells, to produce superoxide anions, and to phagocytize opsonized yeast particles in a manner similar to recombinant human granulocyte-macrophage colony-stimulating factor. In contrast, gIL-3 did not significantly stimulate any of the neutrophil functions tested, whereas human recombinant granulocyte-macrophage colony-stimulating factor was active in these assays. Among cytokines that are active on human hematopoietic cells, gIL-3 thus has a distinct set of functions and may predict the range of actions of the human molecule.

Animals↗

CFU-mix are no better than CFU-GM in predicting hemopoietic reconstitutive capacity of peripheral blood stem cells collected in the very early remission phase of acute nonlymphoblastic leukemia.

High levels of circulating myeloid progenitor cells (CFU-GM) occur during the very early remission phase of acute nonlymphoblastic leukemia (ANLL). Autologous stem cell rescue using blood cells collected during this phase has shown that successful hemopoietic reconstitution can be achieved, but a higher CFU-GM dose appears to be required than when bone marrow cells are used. This suggests that during very early remission, the level of marrow repopulating pluripotent stem cells (PSC) in blood does not undergo the same amount of increase as does the CFU-GM. This study set out to determine whether the levels of the multilineage progenitor cell (CFU-Mix) would be better indicators of the PSC in these cells than the CFU-GM. Serial peripheral blood CFU-Mix and CFU-GM measurements were carried out in six ANLL patients during very early remission. The levels of peripheral blood CFU-Mix showed a mean 12-fold increase, as compared to a mean 20-fold increase in the CFU-GM. The timing of the increase in the CFU-Mix paralleled that of the CFU-GM. These findings suggest that the CFU-Mix is no better than the CFU-GM in predicting PSC levels during very early remission of ANLL, and is closer to the CFU-GM than to the PSC in ontogeny.

Acute Disease↗

Peripheral blood stem cells collected in very early remission produce rapid and sustained autologous haemopoietic reconstitution in acute non-lymphoblastic leukaemia.

Haemopoietic reconstitution was achieved in a patient with acute non-lymphoblastic leukaemia (ANLL) in relapse who was autografted with blood-derived stem cells collected during very early remission. The patient received a myeloid progenitor cell dose of 230 x 10(4) CFU-GM/kg body weight. Engraftment was evident in the bone marrow 7 days post-graft. Normal neutrophil and platelet counts were attained by day 14 and blood counts remained normal thereafter. An overshoot in peripheral blood haemopoietic progenitor levels occurred at the end of the second week, presumably the progeny of a family of early progenitor cells. The completeness of haemopoietic reconstitution is further illustrated by the satisfactory nucleated cell and myeloid progenitor cell yield when a bone marrow harvest was performed 4 1/2 months post-graft. Seven months post-graft, the patient remained in complete remission with normal blood counts and bone marrow cellularity, although haemopoietic progenitor levels were slightly reduced. The rapid recovery minimises aplasia-related risks and suggests that such autografting can be carried out safely in first remission. We propose that autografting using very early remission blood cells is a new therapeutic option for patients with acute ANLL.

Adolescent↗

Circulating autologous stem cells collected in very early remission from acute non-lymphoblastic leukaemia produce prompt but incomplete haemopoietic reconstitution after high dose melphalan or supralethal chemoradiotherapy.

Haemopoietic reconstitution (HR) using autologous peripheral blood stem cells (PBSC) was attempted after intensive chemotherapy or chemoradiotherapy in two patients with relapsed acute non-lymphoblastic leukaemia (ANLL). The PBSC were collected by leukapheresis very early in first remission and cryopreserved in liquid nitrogen. Both patients demonstrated early evidence of trilineage engraftment. The first patient received melphalan 200 mg/m2 followed by rescue with 1.3 X 10(8) mononuclear cells/kg body weight containing 29 X 10(4) granulocyte-macrophage progenitor cells (CFU-GM)/kg, and HR was evident by Day 14. The second patient was treated with supralethal chemoradiotherapy followed by rescue with 3.0 X 10(8) mononuclear cells/kg containing 23 X 10(4) CFU-GM/kg. He demonstrated early engraftment with near normal peripheral blood counts by Day 16. There was a subsequent fall in both bone marrow cellularity and peripheral blood counts to a level of low but persistent activity. There was a further phase of haematological recovery from 8 weeks following transplantation with an increase in peripheral blood counts and bone marrow cellularity until final relapse at 13 weeks. This study demonstrates that circulating stem cells have haemopoietic reconstitutive capacity, previously only shown with buffy coat cells from chronic granulocytic leukaemia. The minimum number of PBSC required for satisfactory engraftment remains unknown, although it seems probable that the ratio of pluripotent stem cells to committed progenitor cells is lower in very early remission peripheral blood than in either allogeneic normal bone marrow or autologous bone marrow collected later in stable remission. The question of leukaemic contamination of the PBSC remains to be answered.

Acute Disease↗

High levels of circulating haemopoietic stem cells in very early remission from acute non-lymphoblastic leukaemia and their collection and cryopreservation.

Circulating myeloid progenitor cells (PB CFU-GM) were measured in the peripheral blood of 13 patients with acute non-lymphoblastic leukaemia (ANLL) as they entered first remission. The mean of the recorded peak levels was 2796 X 10(3) CFU-GM/l, representing a 25-fold increase above the mean value in normal subjects. These elevated levels of PB CFU-GM occurred regularly during the very early remission phase when platelet counts rose rapidly. Five of the patients had PB mononuclear cells collected by continuous-flow leukapheresis during this early recovery phase. CFU-GM were assayed as a measure of the number of haemopoietic stem cells in each collection. The cells were concentrated and then cryopreserved in liquid nitrogen. Leukapheresis was also performed on five normal subjects for comparison. Low numbers of CFU-GM were harvested from normal subjects, mean 0.33 +/- 0.06 X 10(4) CFU-GM/kg body weight for each leukapheresis. In ANLL patients entering remission, however, very large numbers of CFU-GM were regularly harvested. A mean of 11 +/- 2 X 10(4) CFU-GM/kg body weight were cryopreserved after each leukapheresis, representing 5 times the number of CFU-GM considered necessary for successful autologous haemopoietic reconstitution. Haemopoietic stem cell viability was assessed after varying periods of cryopreservation. There was no significant stem cell loss after up to 24 months storage. Thus, it is possible to collect and cryopreserve large numbers of CFU-GM and by inference pluripotent haemopoietic stem cells from the peripheral blood of patients with ANLL during very early remission. The possible biological and therapeutic implications are discussed.

Acute Disease↗

Central nervous system relapse after bone marrow transplantation for acute myeloid leukemia.

Central nervous system (CNS) relapse with meningeal leukaemia occurred 6 months after allogeneic bone marrow transplantation (BMT) for acute myeloid leukaemia, without systemic relapse. Despite intrathecal chemotherapy a severe progressive proprioceptive impairment of the lower limbs developed. Autopsy revealed selective ascending tract degeneration of the gracile fasciculi of the posterior columns of the spinal cord and residual endoneurial deposits were found in lumbosacral dorsal nerve roots and ganglia. While CNS relapse may occur in acute leukaemia after chemotherapy, it has rarely been reported following BMT.

Antineoplastic Agents↗