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Biomedical subjects

A S Duncombe

Publications and source records attributed to A S Duncombe.

At least 19 recordsLinked to original sources

X-linked sideroblastic anaemia with ataxia: another mitochondrial disease?

OBJECTIVES: The syndrome of X-linked sideroblastic anaemia with ataxia is rare, described only twice in the literature. The aim was to obtain clinical neurological and haematological data about this rare syndrome throughout adult life. METHODS: A family is described with two affected brothers and two affected maternal uncles. The family was evaluated clinically. Haematological investigations included full blood count, blood film, iron studies, free erythrocyte protoporphyrin (FEP) concentrations and a bone marrow examination where possible. RESULTS: Core neurological features included motor delay, ataxia evident from early childhood, and dysarthria. Neurological features were non-progressive until the fifth decade when slow progression became evident. Some family members showed mild spasticity. Patients usually have a mild asymptomatic anaemia or a borderline decreased mean corpuscular volume. Blood film examination showed Pappenheimer bodies. Bone marrow examination showed ring sideroblasts, indicating raised erythrocyte iron. Free erythrocyte protoporphyrin (FEP) concentrations were raised. CONCLUSIONS: Haematological features are subtle and can be easily overlooked, and individual patients may not display all the abnormal features. X-linked ataxias are rare and incorrect genetic advice may be given if the diagnostic haematological features of X-linked sideroblastic anaemia are overlooked. Males with early onset ataxia should have a haematological evaluation including a blood film, with a bone marrow examination if abnormal blood count indices and measurement of FEP concentrations raise suspicion. The condition has parallels with Pearson's syndrome and Friedreich's ataxia. All three conditions are associated with mitochondrial iron handling defects and ataxia. The human ATP binding cassette gene (hABC7) is a candidate gene and requires further investigation.

Aged↗

Automated immature reticulocyte counts are early markers of engraftment following autologous PBSC transplantation in patients with lymphoma.

The traditional indicators of engraftment following PBSC transplantation (PBSCT) are the rising total WBC count and ANC. Reticulocytes may be an earlier indicator, since as reticulocytes mature, there is a gradual loss of cellular RNA, which can be measured using methylene blue and light scatter with an Abbott CD 3500 automated counter (Abbott Laboratories, Maidenhead, U.K.). Reticulocytes can be divided into three fluorescence ratios depending on the amount of light scatter generated, high, medium, and low. The most immature are the high fluorescence reticulocytes (HFR). Standard engraftment parameters together with HFR were measured in a homogeneous group of 25 patients with lymphoma after PBSCT using a standard conditioning protocol. An ANC of 0.5 x 10(9)/L was achieved after a median of 10 days (mean 11.2 days, range 9-22). The recovery of the HFR to 2% of the total reticulocytes was significantly shorter, with a median of 8 days (mean 7.5 days, range 6-10) (p < 0.0001). The values of HFR to 2% preceded the ANC of 0.5 x 10(9)/L in 24 of the 25 patients by a median of 3 days (mean 3.8 days, range 2-12 days). On this basis, it can be determined that in 96% of cases, engraftment was indicated earlier by HFR measurement. The HFR to 2% even preceded the ANC of 0.1 x 10(9)/L in 23 of the 25 patients, showing that engraftment was indicated earlier in 92% of patients. Immature reticulocytes appearing in peripheral blood can be reliably measured by automated cytometers, and HFR can, therefore, be used as an earlier indicator of engraftment following PBSCT. This information provides the opportunity for earlier cessation of antibiotics and growth factors and could lead to earlier discharge from hospital, with cost savings.

Adult↗

Once-daily versus multiple-daily gentamicin in empirical antibiotic therapy of febrile neutropenia following intensive chemotherapy.

The clinical efficacy and toxicity of once-daily compared with multiple-daily gentamicin dosing, in combination with azlocillin, were studied retrospectively in febrile neutropenic episodes following intensive chemotherapy. Fifty-two episodes were studied in 28 patients with acute myeloid leukaemia. Reasons for initiation of antibiotic therapy, dose, duration of treatment, organism isolation rates, response, cost comparison and toxicity were studied in the two treatment groups. The main indication for initiation of antibiotic therapy was neutropenic fever without a documented infection (80.8% of episodes). The response rate to once-daily gentamicin dosing and azlocillin was three times higher than to multiple-daily gentamicin dosing and azlocillin (P = 0.0112). The incidence of toxicity was low overall and was slightly but not significantly higher in the once-daily group. In this clinical context once-daily gentamicin at a dose of 7 mg/kg/day is more effective than a multiple-daily dosing regimen but may be more toxic.

Adult↗

Acute leukaemia in Jehovah's Witnesses.

The refusal of Jehovah's Witnesses with leukaemia to accept transfusion provides a major clinical challenge because of the myelosuppressive effects of chemotherapy. Experience in treating five such patients is described. Two patients with acute lymphoblastic leukaemia (ALL) achieved remission following chemotherapy, the first without transfusion support, the second, a minor, receiving transfusion under a court order: the first patient remains in remission 5 years later, whereas the second subsequently relapsed and died. Of three patients with acute myeloid leukaemia (AML), two received chemotherapy: one died of anaemia during induction chemotherapy whereas the second eventually consented to transfusion but died of refractory leukaemia. The third patient died of anaemia despite erythropoietin. We feel Jehovah's Witnesses should not be denied antileukaemic therapy if they fully understand the risks involved. Minimizing phlebotomy, use of antifibrinolytic agents and growth factors may make chemotherapy feasible, especially in ALL where remission may be induced with less myelosuppressive agents. The outlook for those with AML treated with conventional chemotherapy appears poor; alternative approaches to treatment should be considered in these patients.

Adolescent↗

Bone marrow transplant recipients have defective MHC-unrestricted cytotoxic responses against cytomegalovirus in comparison with Epstein-Barr virus: the importance of target cell expression of lymphocyte function-associated antigen 1 (LFA1).

Cytomegalovirus (CMV) remains the most common single infective cause of death following allogeneic bone marrow transplantation (BMT) from major histocompatibility complex (MHC)-identical siblings, whereas Epstein-Barr virus (EBV)-related disease is infrequent. We show here that MHC-unrestricted cytotoxic effector cells in the peripheral blood of BMT recipients are highly effective at killing EBV-infected target cells, but are inactive against CMV-infected target cells. Differential cytotoxicity is associated with disparate target structure expression. Although both EBV- and CMV-infected target cells express viral antigens, it is only those infected with EBV that express the adhesion molecule lymphocyte function-associated antigen 1 (LFA1; CD11a/18). Thus, EBV-infected target cells are able to interact with the principal LFA1 ligand, intercellular adhesion molecule 1 (ICAM1; CD54), which is expressed on posttransplant peripheral blood mononuclear (PBM) effector cells. CMV-infected target cells cannot utilize this ligand. Posttransplant cytotoxicity against EBV-infected target cells is abolished by target and effector cell blockade with monoclonal antibodies (MoAbs) to LFA1 and ICAM1, respectively, demonstrating the functional relevance of this additional ligand interaction. These results provide an illustration both of the importance and of the limitations of MHC-unrestricted cytotoxicity in vivo and may explain the frequency of CMV disease and the relative rarity of EBV-related disease following allogeneic transplantation from MHC-matched siblings. The increased immunosuppression used following MHC-mismatched/matched unrelated-donor BMT may cause this MHC-unrestricted defense mechanism to fail and may contribute to the greatly increased incidence of EBV lymphoproliferative syndrome in these patients.

Adolescent↗

Interleukin 2 infusion induces haemopoietic growth factors and modifies marrow regeneration after chemotherapy or autologous marrow transplantation.

Administration of interleukin 2 (IL2) to patients with minimal residual malignant disease following myeloablative chemo-radiotherapy may augment immune reconstitution and reduce the risk of relapse by increasing cytotoxic effector function and cytokine dependent killing directed at residual malignant cells. The ability of IL2 generated activated killer cells to inhibit haemopoietic progenitor cells and to release gamma-interferon (gamma IFN) and tumour necrosis factor (TNF) may, however, retard haemopoietic recovery, as both TNF and gamma IFN inhibit normal myelopoiesis in vitro. To determine the effect of IL2 infusion on myeloid regeneration in vivo, we have examined haemopoietic recovery in patients receiving this cytokine following autologous marrow transplantation or ablative chemotherapy. We find that IL2 infusion accelerates neutrophil recovery and that granulocyte-macrophage colony stimulating factor (GMCSF) and IL3 mRNA become detectable in circulating mononuclear cells. Induction of TNF by IL2 may also contribute to subsequent acceleration of myelopoiesis by initiation of GM-CSF mRNA synthesis in patient marrow fibroblasts. These results show that IL2 infusion may facilitate myeloid recovery when administered during the period of haemopoietic regeneration following ablative chemoradiotherapy.

Acute Disease↗

IL2 activated killer cells may contribute to cytomegalovirus induced marrow hypoplasia after bone marrow transplantation.

Cytomegalovirus (CMV) infection remains the commonest cause of infective death following allogeneic bone marrow transplantation (BMT). CMV disease post-BMT occurs in the context of compromised cellular defence mechanisms and is associated with marrow hypoplasia and pneumonitis. However, CMV infection induces release of interleukin 2 (IL2) which in turn generates MHC unrestricted lymphokine activated killer (LAK) cells. We have investigated whether recruitment of IL2 activated MHC unrestricted defence mechanisms post-transplant can be implicated in the marrow hypoplasia that frequently accompanies CMV infection. The results show that IL2 activated peripheral blood mononuclear cells (PBMC) have substantial cytotoxicity against MHC matched and MHC mismatched marrow fibroblasts but that this activity is not specific for CMV infected fibroblasts; uninfected target cells are also equally killed. Furthermore, post-BMT PBMC show greater responsiveness to IL2 than normal PBMC in killing of marrow fibroblasts. We provide a hypothesis from these observations which may explain some of the consequences of CMV infection post-BMT. Local production of IL2 activated cytotoxic cells which would be generated during CMV infection would damage uninfected as well as infected marrow fibroblasts and thereby could compromise haemopoietic growth factor production by marrow fibroblasts. Similarly generated cytotoxicity in the lung may accompany CMV pneumonitis. Our results suggest that administration of anti-IL2 receptor antibody may have a therapeutic role in CMV disease post-BMT as has recently been shown in graft-versus-host disease.

Adolescent↗

IL-4 acts as a homeostatic regulator of IL-2-induced TNF and IFN-gamma.

Interleukin-4 (IL-4) is a cytokine secreted by interleukin-2 (IL-2)-activated lymphocytes. IL-2-stimulated lymphocytes also secrete two cytokines, tumour necrosis factor (TNF) and gamma-interferon (IFN-gamma), which contribute to effector function and which may themselves recruit fresh, cytokine-secreting effector cells. We have now investigated whether the IL-4 induced is able to homeostatically regulate secretion of the TNF and IFN-gamma. Peripheral blood mononuclear cells or lymphocytes from normal donors and from patients with neoplastic disease were cultured in the presence of IL-2 alone, IL-4 alone or with both cytokines. IL-2 induced high levels of TNF and IFN-gamma secretion in both groups. The addition of recombinant IL-4 to these IL-2-stimulated cultures lead to significant inhibition of IFN-gamma and TNF production. IFN-gamma secretion was reduced by 50-99% in normal donors and by between 11% and 99% in patients (P less than 0.001). TNF levels induced by IL-2 were similarly reduced by IL-4 both in normal donors (P less than 0.003) and in patients (P less than 0.01). These inhibitory effects were produced by IL-4 at doses of IL-2 attainable in vivo. Inhibition appears to represent a homeostatic regulatory mechanism which may limit recruitment of fresh activated killer (AK) cells. When endogenous IL-4 activity in IL-2-activated lymphocytes was blocked by anti-IL-4 antibody, significantly higher levels of IFN-gamma and TNF were secreted (P less than 0.05). Since both TNF and IFN-gamma may contribute to the anti-neoplastic action of IL-2, manipulating the level of IL-4 activity in vivo could augment the benefits of IL-2 immunotherapy.

Bone Marrow Transplantation↗

Immunity against Pseudomonas aeruginosa adoptively transferred to bone marrow transplant recipients.

Infection is a common problem for bone marrow transplant (BMT) recipients during the period of neutropenia that immediately follows the procedure. Gram-negative infections present a particular hazard in these immunocompromised hosts. To augment host defenses against one such pathogen, Pseudomonas aeruginosa, we immunized bone marrow transplant donors and/or recipients with a polyvalent O-polysaccharide-toxin A conjugate vaccine. When either donor or recipient alone was vaccinated before transplant, no increase in specific antibody titers to any of the vaccine components was observed in the recipient. However, when both donor and recipient were vaccinated before transplant, increases in antibody titers to all polysaccharide components occurred to levels shown to be protective in animal models of gram-negative sepsis. Specific antibodies were primarily of the IgG1 and IgG2 subclass even though IgG2 subclass deficiency is common after BMT. The requirement for both donor and recipient immunization reflects the need for primed donor B lymphocytes in the marrow inoculum to be transferred into an antigen-containing environment so that maximum B-cell proliferation and antibody secretion can occur. Adoptive transfer of antibody responses to Pseudomonas aeruginosa and other common bacterial pathogens has the potential to reduce infection-related morbidity and mortality after allogeneic bone marrow transplantation.

Adolescent↗

Gamma-interferon and tumor necrosis factor production after bone marrow transplantation is augmented by exposure to marrow fibroblasts infected with cytomegalovirus.

After bone marrow transplantation (BMT), mortality from viral infections such as cytomegalovirus (CMV) remains high. Gamma-Interferon (gamma IFN) and tumor necrosis factor (TNF) are produced constitutively after BMT and have anti-viral properties. To study the effects of these cytokines on CMV interaction with host cells, we have used patient marrow fibroblasts since marrow stroma is a target for CMV infection correlating with myelosuppression in vivo. Both gamma IFN and TNF are constitutively produced by recipient CD3+ and CD16+ lymphocytes, but not by their marrow fibroblasts. Secretion by peripheral blood mononuclear cells is increased if they are cultured with host fibroblasts infected with CMV in vitro and the levels of gamma IFN and TNF produced are within the range that protects fresh fibroblasts from CMV infection. Constitutive secretion of cytokines by lymphocytes declines by 8 weeks after BMT, a time when the risk of CMV disease increases sharply. The in vitro phenomenon that we have described needs to be evaluated in correlative studies on individual BMT recipients to determine whether such a cytokine-mediated defense mechanism against CMV may operate in vivo.

Antigens, CD↗

Requirements for the adoptive transfer of antibody responses to a priming antigen in man.

Antibody responses to recall vaccines can be adoptively transferred after marrow transplantation in man. Transfer of responses to priming Ag has not been successful, although this would broaden the range of organisms to which recipients could be protected. To investigate the importance of T cells and Ag in such transfer we primed marrow donors with keyhole limpet hemocyanin (KLH) 1 or 3 wk before marrow harvesting. B cells secreting IgM and IgG anti-KLH antibody were present in donor marrow at both 1 and 3 wk after immunization. After T cell depletion, donor marrow was infused into chemo-irradiated recipients, half of whom were immunized pretransplant with KLH. We found no evidence for the transfer of the IgM component of the response. Clonal expansion of the transferred IgG antibody-secreting cells with a corresponding rise in recipient serum IgG antibody levels was seen only when donors were primed 3 wk before marrow harvest and when the recipients were also immunized. IEF and immunoblotting demonstrated that successful transfer coincided with maturation of the IgG primary response from a polyclonal to an oligoclonal pattern and confirmed that donor oligoclonal bands appeared in the recipient serum. We conclude that the immunization protocols required for the transfer of antibody responses to priming Ag reflect the initial dependence of unprimed B cells on T cell help and on prolonged Ag stimulation. Ag-stimulated primary B cells in T cell-depleted marrow respond only to the noncognate growth and differentiation signals available in the chemo-irradiated recipient after an initial period of clonal selection and expansion in the donor which is both T cell and Ag dependent. Even after this initial selection, continued expansion of antibody-secreting clones in recipients retains an absolute dependence on Ag stimulation. Immunization techniques to protect transplant recipients against organisms such as Pseudomonas and CMV may need to be modified accordingly.

Antibody Formation↗

Tumor necrosis factor mediates autocrine growth inhibition in a chronic leukemia.

Autocrine production of growth factors may contribute to the rapid and fatal proliferation of acute hematologic malignancies. We have investigated whether the more controlled growth of less aggressive malignancies such as chronic myeloid leukemia (CML) may be associated with autocrine production of growth inhibitory factors. TNF inhibits the growth of both normal and leukemic hemopoietic progenitor cells. We find that exogenous TNF reduces the viability and DNA synthesis of purified myeloid cells from patients with CML and inhibits myeloid colony formation by patient progenitor cells. However, unlike progenitor cells from normal donors, patient myeloid progenitor cells also constitutively express mRNA for TNF and secrete functional TNF protein in culture. This endogenous TNF impedes the growth of CML cells because anti-TNF mAb shown to neutralize bioactive human TNF increases CML cell DNA synthesis whereas non-neutralizing anti-TNF mAb has no effect. Production of TNF by CML cells is not associated with production of lymphotoxin (TNF-beta), IL-1 or IL-6. TNF-mediated autocrine growth inhibition may contribute to the maintenance of the stable, chronic phase of this disease and similar mechanisms may operate in other malignancies to limit tumor proliferation. Competition between autocrine growth promoting and inhibiting factors may underlie the observed differences in biologic behavior between acute and chronic malignancies.

Antibodies, Monoclonal↗

Intravenous immunoglobulin therapy in thrombocytopenic infectious mononucleosis.

Severe haemorrhagic thrombocytopenia in infectious mononucleosis with positive Epstein-Barr virus (EBV) serology remains a threatening clinical problem. Although rare, fatalities have been reported. We present clinical, haematological and serological details of two patients with diffuse bleeding associated with this disease who failed conventional steroid treatment and who both responded promptly and effectively to infusions of intravenous immunoglobulin (i.v. Ig). A platelet immunofluorescence test was used to detect platelet antibodies in acute and recovery phase patient sera against autologous recovery platelets and against normal allogeneic group O platelets. In one patient, indirect immunofluorescence using recovery platelets detected an IgG platelet autoantibody with acute phase autologous serum. No platelet antibody was detected in the second patient. The data presented demonstrate that response to i.v. Ig is independent of serological detection of platelet autoantibodies. Therapy with i.v. Ig should be considered in any case of haemorrhagic thrombocytopenia associated with EBV infection shown to be refractory to steroid treatment.

Adult↗