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Biomedical subjects

C A Juttner

Publications and source records attributed to C A Juttner.

At least 37 records · Page 2Linked to original sources

Blood cell transplantation: report from an International Consensus Meeting.

An International Consensus Meeting on blood cell transplantation took place in Heemskerk, The Netherlands on 27-29 June 1994. The term 'blood cell transplantation' was preferred to peripheral blood stem cell transplantation. The following issues were addressed: stem cell assessment and ex vivo expansion, techniques for stem cell mobilization, applications of blood cell transplantation, malignant cell contamination and allogeneic blood cell transplantation.

Blood Component Removal↗

What's new in blood progenitor cell autotransplants?

Autotransplants of blood progenitor cells are increasingly used in persons with cancer, sometimes added to bone marrow cells but increasingly in their stead. Clearly, transplants of blood progenitor cells accelerate hematopoietic recovery after high-dose therapy. However, because some residual recipient-derived hematopoiesis typically persist even after the most intensive therapy, it is not certain that long-term hematopoiesis is from the blood progenitor cell autograft. However, this issue may be unimportant since the immediate goal is short-term recovery of bone marrow function regardless of which cells are responsible for long-term recovery. This issue is, however, of considerable import were more intensive treatment to be used or where blood progenitor cells were to be used for allografts. There are some reasons to think that transplants of blood-derived cells might have a lower likelihood of returning cancer cells to the recipient, at least in some lymphomas and solid tumors, than an autotransplant of bone marrow cells. This notion is as yet unproven and may be important only when and if more effective anti-cancer pretransplant regimens are developed. The potential role of transplants of blood progenitor cells depends on how useful autotransplants prove. Whether use of blood progenitor cells rather than bone marrow cells offers any advantage requires considerable additional data and controlled trials.

Animals↗

Long-term effects of cancer treatment and consequences of cure: cancer survivors enjoy quality of life similar to their neighbours.

To assess the long-term effects of cancer treatment and consequences of cure, 102 index cancer cases were compared with 95 neighbourhood controls of similar age and sex and with 78 cardiac controls. The quality of life experienced by these three groups was examined using multiple instruments with proven psychometric properties. All the major quality of life domains (physical, psychological and social) were covered. The findings revealed that the index cases were similar to their neighbours in areas of subjective well-being. However, the index cases exhibited more sexual dysfunction, were more conscientious, determined and emotionally disciplined, and applied the defence mechanisms of displacement and reaction formation more often than the neighbourhood controls. The cardiac controls were older, more anxious, more conventional/less imaginative and used suppression as a defence mechanism to a greater degree than the index cases. In conclusion, young adult cancer survivors enjoy a quality of life similar to their neighbours, whereas coronary bypass survivors adjust less well psychosocially.

Adolescent↗

Immune reconstitution following peripheral blood stem cell transplantation, autologous bone marrow transplantation and allogeneic bone marrow transplantation.

The rate and pattern of recovery of total lymphocytes, T cell subsets, B cells and NK cells were compared for 12 months following recovery phase peripheral blood stem cell (PBSC) autotransplantation (n = 49), autologous (n = 7) and allogeneic BMT (n = 11). The PBSC group had a significantly faster recovery of total lymphocyte count, total T cells (CD3+ cells), CD8 cells and CD4 cells than the allogeneic BMT group. The pattern of earlier recovery of CD8 cells than CD4 cells was the same for each type of transplant. Reconstitution following autologous BMT was intermediate between PBSC and allogeneic BMT. Multivariate analysis identified type of transplant, number of mononuclear cells transplanted and conditioning regimen as significantly influencing immune recovery.

B-Lymphocyte Subsets↗

Effect of peripheral blood progenitor cells mobilised by filgrastim (G-CSF) on platelet recovery after high-dose chemotherapy.

The haematopoietic growth factor (HGF), granulocyte colony stimulating factor (G-CSF; filgrastim) substantially shortens the period of severe neutropenia that follows high-dose chemotherapy and autologous bone marrow infusion by stimulating granulopoiesis. Filgrastim also increases numbers of circulating progenitor cells. We have studied the ability of filgrastim to mobilise peripheral blood progenitor cells (PBPC) and assessed their efficacy when infused after chemotherapy on recovery of neutrophil and platelet counts. Seventeen patients with non-myeloid malignant disorders received filgrastim (12 micrograms/kg daily for six days) by continuous subcutaneous infusion. Numbers of granulocyte-macrophage progenitors in peripheral blood increased a median of 58-fold over pretreatment values, and numbers of erythroid progenitors increased a median of 24-fold. Three leukapheresis procedures collected a mean total of 33 (SEM 5.7) x 10(4) granulocyte-macrophage progenitors per kg body weight. After high-dose chemotherapy in 14 of the patients (busulphan and cyclophosphamide), these cells were used to augment autologous bone marrow rescue and post-transplant filgrastim treatment. Platelet recovery was significantly faster in these patients than in controls who received the same treatment apart from the infusion of peripheral blood progenitors; the platelet count reached 50 x 10(9)/L a median of 15 days after infusion of haematopoietic cells in the study patients compared with 39 days in controls (p = 0.0006). The accelerated neutrophil recovery associated with filgrastim treatment after chemotherapy was maintained. Subsequently, 10 patients received filgrastim-mobilised PBPC without marrow after high-dose chemotherapy. The rate of platelet and neutrophil recovery in these patients was at least equal to that observed in the patients receiving PBPC and bone marrow.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Ex vivo expansion and maturation of peripheral blood CD34+ cells into the myeloid lineage.

Hematopoietic reconstitution (HR) after peripheral blood stem cell transplantation is characterized by a delay of 8 and 12 days for recovery to safe levels of neutrophils and platelets even in patients with the most rapid engraftment. We postulate that a further enhancement in the rate of HR may be achieved by transplanting with an expanded postprogenitor cell population that can provide mature functional cells within days of infusion. In this study we investigated the ability of combinations of hematopoietic growth factors (HGF) to generate nascent granulocyte-macrophage colony-forming units (CFU-GM) in a 7-day suspension culture of peripheral blood CD34+ cells. A combination of 6 HGF, ie, interleukin-1 beta (IL-1), IL-3, IL-6, granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage-CSF (GM-CSF), and stem cell factor (SCF), was identified as the most potent combination of those tested. Subsequently, large volume suspension cultures of CD34+ cells from the same patients using the same 6-factor combination were established and monitored for 21 days. An exponential rate of nucleated cell production (mean 1,324-fold increase) occurred during culture. CFU-GM production paralleled nucleated cell production until day 10, peaked at day 14 (mean 66-fold increase), and was then maintained until day 21. Cells produced in culture were predominantly neutrophil precursors and developed normally as assessed by morphology, immunophenotype, and superoxide generation. This stroma-free, cytokine-driven culture system can achieve a degree of amplification, which suggests the feasibility of ex vivo culture of hematopoietic progenitor cells as an adjunct to hematopoietic stem cell transplantation.

ADP-ribosyl Cyclase↗

Effect of peripheral-blood progenitor cells mobilised by filgrastim (G-CSF) on platelet recovery after high-dose chemotherapy.

The haemopoietic growth factor granulocyte colony-stimulating factor (G-CSF; filgrastim) substantially shortens the period of severe neutropenia that follows high-dose chemotherapy and autologous bone-marrow infusion by stimulating granulopoiesis. Filgrastim also increases numbers of circulating progenitor cells. We have studied the ability of filgrastim to mobilise peripheral-blood progenitor cells and assessed their efficacy when infused after chemotherapy on recovery of neutrophil and platelet counts. 17 patients with non-myeloid malignant disorders received filgrastim (12 micrograms/kg daily for 6 days) by continuous subcutaneous infusion. Numbers of granulocyte-macrophage progenitors in peripheral blood increased a median of 58-fold over pretreatment values, and numbers of erythroid progenitors increased a median of 24-fold. Three leucapheresis procedures collected a mean total of 33 (SEM 5.7) x 10(4) granulocyte-macrophage progenitors per kg body weight. After high-dose chemotherapy in 14 of the patients (busulphan and cyclophosphamide), these cells were used to augment autologous bone-marrow rescue and post-transplant filgrastim treatment. Platelet recovery was significantly faster in these patients than in controls who received the same treatment apart from the infusion of peripheral-blood progenitors; the platelet count reached 50 x 10(9)/l a median of 15 days after infusion of haemopoietic cells in the study patients compared with 39 days in controls (p = 0.0006). The accelerated neutrophil recovery associated with filgrastim treatment after chemotherapy was maintained. This method may be widely applicable to aid both neutrophil and platelet recovery after high-dose chemotherapy; it will allow investigation of peripheral-blood progenitor-cell allotransplantation.

Adolescent↗

A discrepancy between the instantaneous and the overall collection efficiency of the Fenwal CS3000 for peripheral blood stem cell apheresis.

The collection efficiency (CE) of the Fenwall CS3000 continuous flow blood cell separator in the apheresis of peripheral blood stem cells during haemopoietic recovery following myelosuppressive chemotherapy was analysed. Ninety-three apheresis were performed in 19 patients using procedure 3 on the Fenwal CS3000. The overall CE was calculated from the pre-apheresis cell counts and the stated blood volume processed. Instantaneous CE was calculated from cell counts in the inlet and return lines. The overall mononuclear cell and granulocyte-macrophage colony forming unit CE were 64.0% and 55.8%, respectively, significantly lower than the instantaneous CEs of 94.5% and 95.4%, respectively (P = 0.0001, t test, for both comparisons). Three factors unrelated to machine performance contributed to the lower overall CE despite a high instantaneous CE: (1) A fall in the patient's mononuclear cell counts during apheresis leading to an overestimation of the cells available for collection, (2) dilution of blood by anti-coagulant, and (3) the operational dead space of the Fenwal CS3000. The overall CE corrected for these 3 factors approximated the instantaneous CE closely. Thus there is little room for further enhancement of machine performance because the Fenwal CS3000 is already operating with a very high instantaneous CE. To achieve major improvement in the yield of peripheral blood stem cell harvests, more effective mobilization protocols and better timing of apheresis are required.

Antineoplastic Combined Chemotherapy Protocols↗

A differential sensitivity to recombinant human interferon-alpha 2a between normal and chronic myeloid leukaemic peripheral blood granulocyte-macrophage colony-forming units.

The sensitivity to recombinant human interferon-alpha 2a (IFN) of peripheral blood granulocyte-macrophage colony-forming units (PB CFU-GM) from patients with chronic myeloid leukaemia (CML) was studied in a semi-solid clonogenic assay, and compared with normal PB CFU-GM. Like normal PB CFU-GM, the growth of CML PB CFU-GM in vitro was found to be dependent on the plating concentration used. The optimal CFU-GM growth occurred when CML PB mononuclear cells (MNC) were plated at low concentrations in the range of 0.01-0.1 x 10(5)/ml, compared to the range of 0.3-3.0 x 10(5)/ml optimal for CFU-GM growth in normal subjects. The optimal plating concentration for CML PB CFU-GM was similar to that observed in PB collected from patients with ovarian carcinoma during haematological recovery following chemotherapy-induced myelosuppression (recovery phase). The recovery phase PB was used as a source of non-leukaemic cells with a higher incidence of CFU-GM similar to that of CML. IFN produced a dose-related inhibition of CFU-GM growth in normal, recovery phase ovarian carcinoma and CML, PB MNC. The IFN concentration required to inhibit 50% of the CFU-GM in culture (LD50) was found to be significantly influenced by the plating concentration. When cells were cultured at 1.0 x 10(5) MNC/ml the mean LD50 for 7 CML patients was similar to that in normal (n = 5) or recovery phase (n = 5) peripheral blood, 273 i.u./ml, 1047 i.u./ml and 795 i.u./ml, respectively. In contrast when CML cells were cultured at 0.03 x 10(5) MNC/ml the concentration for optimal CML CFU-GM growth, the mean LD50 was significantly lower than that in normal PB and recovery phase PB, 4 i.u./ml, 251 i.u./ml and 78 i.u./ml, respectively (p less than 0.05). This is the first report of a differential sensitivity to IFN between CML and non-CML progenitors using an optimized PB CFU-GM assay system and proposes that further study of the in vitro culture of CML progenitors may increase our understanding of the clinical effects of IFN.

Cells, Cultured↗

A comparison of peripheral blood stem cell mobilisation after chemotherapy with cyclophosphamide as a single agent in doses of 4 g/m2 or 7 g/m2 in patients with advanced cancer.

We used cyclophosphamide at a dose of 7 g/m2 in patients with advanced cancer and compared the efficacy of this treatment to generate peripheral blood stem cells (PBSC) with the previously reported regimen of cyclophosphamide 4 g/m2 in a similar group of patients. None of these patients received haemopoietic growth factors. Twenty-two patients received 7 g/m2 and 37 received 4 g/m2. PBSC were collected by apheresis after the leukocyte count recovered to 1.0 x 10(9)/L. The yield of colony forming unit-granulocyte macrophage (CFU-GM) was higher for the 7 g/m2 group with a median of 35 x 10(4)/kg versus 15 x 10(4)/kg body weight (BW) (p < 0.05) and higher mononuclear cell yield with medians of 4.2 x 10(8)/kg compared with 3.1 x 10(8)/kg BW (p < 0.001). The percentage of patients achieving the minimum safe level of > 15 x 10(4) CFU-GM/kg BW was higher in the 7 g/m2 cyclophosphamide group (82%) than the 4 g/m2 cyclophosphamide group (51%). The duration of significant neutropaenia was a median of 11 compared with nine days (p < 0.004) and all patients receiving 7 g/m2 required admission to hospital and intravenous antibiotic therapy compared with 44% in the 4 g/m2 group. There was one death during the period of neutropaenia after cyclophosphamide in each group. Nineteen per cent of patients required platelet transfusions after cyclophosphamide 7 g/m2 compared with 18% after 4 g/m2. We conclude that the 7 g/m2 cyclophosphamide gives a higher yield of haemopoietic progenitor cells than the 4 g/m2 but at increased clinical toxicity.

Academies and Institutes↗

The detection of Philadelphia chromosome negative metaphases in long-term bone marrow cultures of the peripheral blood from patients with chronic myeloid leukemia predicts response to interferon-alpha 2a.

The cytogenetic response of 10 patients with chronic myeloid leukaemia (CML) to human recombinant interferon-alpha 2a (rhIFN alpha 2a) was compared to the Philadelphia chromosome (Ph) status of the pre-treatment peripheral blood cells after in vitro culture under long-term bone marrow culture (LTBMC) conditions. Pre-treatment light density peripheral blood cells were cultured in LTBMC on sex-mismatched irradiated allogeneic stromal layers with weekly cytogenic examination of metaphases in the non-adherent cell fraction. This was correlated with the patients' response to rhIFN alpha. Two groups of patients, five showing a cytogenetic response (responsive) and five who failed to achieve a cytogenetic response (nonresponsive) were studied. At the initiation of the LTBMCs the Ph' was found to be present in 100% of the cells analysed for nine patients and 97% for one patient. Pretreatment peripheral blood from four responsive patients demonstrated a decline in the proportion of Ph'-positive cells (Ph+) after 1 to 2 weeks in LTBMC. In contrast, peripheral blood from all the non-responsive subjects showed persistence of the Ph+ clone in 100% of the cells analysed out to a maximum of 3 to 5 weeks in LTBMC. A significant difference was observed (Fisher exact test, p = 0.023) between the two patient groups in respect to the appearance of normal clones in the nonadherent population. The presence of Ph- metaphases in LTBMC of peripheral blood cells of CML patients may predict their cytogenetic response to rhIFN alpha 2a.

Bone Marrow↗

Expression of the YB5.B8 antigen (c-kit proto-oncogene product) in normal human bone marrow.

The c-kit proto-oncogene product is a member of the family of growth factor receptors with intrinsic tyrosine kinase activity. In the mouse c-kit maps to the W locus, which is known to be of central importance in hematopoiesis. Monoclonal antibody (MoAb) YB5.B8, which was raised against peripheral blood blast cells from a patient with acute myeloid leukemia (AML), was recently shown to bind to the extracellular domain of the c-kit product. This antibody does not bind detectably to normal peripheral blood cells and identifies a sub-group of AML patients with poor prognosis. We have used MoAb YB5.B8 to study the expression of c-kit by normal human bone marrow cells by immunofluorescence and flow cytometry, and to isolate multipotential and erythroid colony-forming cells. In a series of 11 normal adult bone marrow specimens, MoAb YB5.B8 bound to 4.0% +/- 1.8% of the cells in the low-density fraction. Dual-labeling experiments were performed with YB5.B8, and CD33, CD34, and CD10 MoAbs. Three populations of cells binding YB5.B8 could be identified based on their pattern of coexpression of the other markers; ie, YB5.B8+/CD34+/CD33-, YB5.B8+/CD34+/CD33+ and YB5.B8+/CD34+/CD33+. These populations had distinctive two-dimensional light scatter characteristics and are likely to correspond to precursor colony-forming cells, colony-forming cells, and maturing mast cells, respectively. No cells binding both YB5.B8 and an MoAb to the early lymphoid marker CD10 were found, implying that most early lymphoid cells do not express c-kit. MoAbs to the c-kit protein should prove valuable in multimarker studies of human hematopoietic stem and progenitor cells. Definition of a reference range of c-kit expression in normal human bone marrow will provide a sound basis for further studies of this marker in diagnosis and prognosis in AML.

Antibodies, Monoclonal↗

An unusual pattern of hemopoietic reconstitution in patients with acute myeloid leukemia transplanted with autologous recovery phase peripheral blood.

Fourteen patients with acute myeloid leukemia (AML) were autotransplanted with peripheral blood cells collected during early remission. Seven were autotransplanted in first relapse and seven in first remission. They received a median of 3.3 X 10(8) nucleated cells/kg body weight (BW) and 92 X 10(4) myeloid progenitor cell (CFU-GM) per kg BW. Rapid hemopoietic reconstitution (HR) occurred in all patients with median time to reach normal neutrophil and platelet counts 13 and 18 days post re-infusion respectively. However, in three patients neutrophil counts fell to less than 1.0 x 10(9)/l and in seven patients platelet counts fell to less than 25 x 10(9)/l between 26 and 40 days post-transplant (trough count). In all but two patients who received the lowest CFU-GM dose the counts returned to normal or near normal levels (steady count). There were significant correlations between the CFU-GM dose and the trough and the steady platelet counts (p = 0.04 and 0.01 respectively). Patients receiving more than 50 x 10(4) CFU-GM/kg BW had higher steady neutrophil and platelet counts (p = 0.011 and 0.033 respectively) although some patients receiving greater than 50 x 10(4) CFU-GM/kg still experienced thrombocytopenia during the second month post graft. There was no significant correlation between the nucleated cell dose and HR. The cause of the fall in platelet and neutrophil counts in the second month post graft is not clear but is probably a reflection of a proliferative defect in the recovery phase stem cells in AML.

Adolescent↗

Human interleukin 4 regulates the phenotype of lymphocytes generated during mixed lymphocyte culture and inhibits the IL-2-induced development of LAK function in normal and leukaemic cells.

This study examined the immunoregulatory role of recombinant interleukin 4 (IL-4), also known as B-cell stimulating factor 1, on the generation of cytotoxic effector cells from normal and leukaemic human blood mononuclear cells. When tested on cells from normal individuals, the addition of IL-4 to mixed lymphocyte cultures led to a dose-dependent proliferation of T-helper cells (CD3, 4 positive) with a concomitant decrease in phenotypic and functional cytotoxic T cells and natural killer (NK) cells. IL-4 also inhibited the interleukin-2 (IL-2)-induced generation of lymphokine-activated killer (LAK) activity when added at the beginning of mixed lymphocyte culture. When tested on mature leukaemic NK cells, IL-4 also inhibited the ability of IL-2 to induce LAK function using a short-term culture system. These results show that IL-4 acts on both normal and leukaemic cells and suggests that it acts at more than one level during the development of LAK function.

Antigens, Differentiation↗