PubMed Health⌕ Search

Biomedical subjects

Reinhard Seger

Publications and source records attributed to Reinhard Seger.

12 recordsLinked to original sources

Correction of X-linked chronic granulomatous disease by gene therapy, augmented by insertional activation of MDS1-EVI1, PRDM16 or SETBP1.

Gene transfer into hematopoietic stem cells has been used successfully for correcting lymphoid but not myeloid immunodeficiencies. Here we report on two adults who received gene therapy after nonmyeloablative bone marrow conditioning for the treatment of X-linked chronic granulomatous disease (X-CGD), a primary immunodeficiency caused by a defect in the oxidative antimicrobial activity of phagocytes resulting from mutations in gp91(phox). We detected substantial gene transfer in both individuals' neutrophils that lead to a large number of functionally corrected phagocytes and notable clinical improvement. Large-scale retroviral integration site-distribution analysis showed activating insertions in MDS1-EVI1, PRDM16 or SETBP1 that had influenced regulation of long-term hematopoiesis by expanding gene-corrected myelopoiesis three- to four-fold in both individuals. Although insertional influences have probably reinforced the therapeutic efficacy in this trial, our results suggest that gene therapy in combination with bone marrow conditioning can be successfully used to treat inherited diseases affecting the myeloid compartment such as CGD.

Adult↗

Characterization of 17 new cases of X-linked chronic granulomatous disease with seven novel mutations in the CYBB gene.

OBJECTIVE: Molecular identification and clinical characterization of genetic mutations in patients with X-linked chronic granulomatous disease (CGD). PATIENTS AND METHODS: Genomic DNA from 17 male patients with proven X-linked CGD based on clinical history, clinical examination, and specific granulocyte function tests were amplified by polymerase chain reaction (PCR) for sequences of the CYBB gene encoding gp91-phox. Mutations in the resulting PCR products were identified by DNA sequencing. RESULTS: Sequence analysis revealed four deletions (453_454delAG; 802delC; 962delG; 993delG), one combined deletion/insertion/duplication [156_173delTCAGCACTGGCACTGGCC/174_175insT/175_176insCCTGCCTGAATTTCT(dupl187_200)]; one insertion (574_575insCCTCAT), four nonsense mutations (332G > A; 402C > T; 690C > T; 1340C>G), two missense mutations (933A > C; 1041A > C) and four potential splice-site mutations (5'intron1 gt-->at; 3'intron1ag-->at; 5'intron3 gtaag-->gtaaa; 5'intron4 gtaa-->ctaa). Seven of these mutations were indeed novel, whereas four mutations not previously reported to the X-CGDbase were found to be of the same type as database reports of unrelated families. The six remaining mutations have been reported previously to the X-CGDbase but have as yet not been described in detail. CONCLUSION: Our findings underline the great heterogeneity of mutations involving the CYBB gene. Neither a mutational hot spot in the gp91-phox gene nor a clear correlation between molecular defect and clinical manifestation in unrelated families could be demonstrated. Remarkable is a splice-site mutation (5'intron3 gtaag-->gtaaa) identified in a 40-year-old patient with late onset "adult" CGD and residual nicotinamide adenine dinucleotide phosphate reduced oxidase activity. The enormous delay of clinical symptoms of this particular mutation could be explained by an age-related variable sensitivity of the splicing machinery to the present splice-site mutation.

Adult↗

Primary immunodeficiency diseases: an update from the International Union of Immunological Societies Primary Immunodeficiency Diseases Classification Committee Meeting in Budapest, 2005.

Although relatively rare, primary immunodeficiency diseases (PIDs) provide an excellent window into the functioning of the immune system. In the late 1960s, observations on these diseases, with their associated infections and genetics, bisected the immune system into humoral immunity and cell-mediated immunity. These diseases also represent a challenge in their diagnosis and treatment. Beginning in 1970, a unified nomenclature for the then-known PIDs was created by a committee convoked by the World Health Organization. Since then, and later under the aegis of the International Union of Immunological Societies, an international committee of experts has met every 2 to 3 years to update the classification of PIDs. During the past 15 years, the molecular basis of more than 120 PIDs has been elucidated. This update results from the latest meeting of this committee in Budapest, Hungary, in June 2005, which followed 2 1/2 days of scientific discussions. As a result of this work, new entities have been included, and the nomenclature of some PIDs (specifically of the various forms of class-switch recombination defects, previously known as hyper-IgM syndromes) has been changed.

B-Lymphocytes↗

Hepatic veno-occlusive disease in pediatric stem cell transplantation: impact of pre-emptive antithrombin III replacement and combined antithrombin III/defibrotide therapy.

BACKGROUND AND OBJECTIVES: Hepatic veno-occlusive disease (VOD) remains a serious complication after hematopoietic stem cell transplantation (HSCT). Based on a protective effect of antithrombin III (ATIII) on endothelial cells, we assessed the incidence of VOD after pre-emptive ATIII replacement and the outcome of VOD after combined high dose defibrotide (DF) and ATIII therapy. DESIGN AND METHODS: This prospective case series comprised two phases. In the first phase 71 children did not receive any specific VOD prophylaxis or therapy (controls). In the second phase 91 children were given pre-emptive ATIII replacement in case of decreased ATIII activity (< or =70%). If VOD was diagnosed clinically (according to modified Seattle criteria), high dose defibrotide (60 mg/day) and ATIII replacement therapy were combined. The severity of VOD was determined according to the degree of multiple organ dysfunction. RESULTS: The incidence of VOD was similar in both groups (13/71, 18% vs. 14/91, 15%). All 14 patients in the second group who developed VOD showed decreased ATIII activity not more than 1 day prior to the clinical diagnosis of VOD. The resulting short duration of pre-emptive ATIII therapy failed to prevent VOD (OR 0.96). None of the patients (n=72) maintaining normal ATIII levels developed VOD. All 14 patients with VOD who received combined therapy achieved complete remission and 93 % (13/14) survived until day +100, compared to six survivors (46%) in the first group. INTERPRETATION AND CONCLUSIONS: Pre-emptive ATIII administration did not alter the incidence of VOD. Combination treatment with ATIII and defibrotide was safe and yielded excellent remission and survival rates.

Adolescent↗

Gene therapy for chronic granulomatous disease.

Chronic granuloniatous disease (CGD) is a rare inherited imnunodeficiency characterized by recurrent, often life threatening bacterial and fungal infections due to a functional defect in the microbial-killing activity of phagocytic neutrophils. If regular care and conventional therapy fail, tile disease can be cured by bone marrow transplantation. This treatment is, however, only available to patients with human leukocyte antigen-identical sibling or matched unrelated donors. One therapeutic option for patients lacking suitable donors is the genetic modification of autologous hematopoietic stem cells. This review discusses the developments that have led to the realization of a successful gene therapy protocol for the correction of CGD.

Bone Marrow Transplantation↗

Successful low toxicity hematopoietic stem cell transplantation for high-risk adult chronic granulomatous disease patients.

BACKGROUND: Allogeneic hematopoietic stem cell transplantation for chronic granulomatous disease (CGD) is associated with a significant risk of transplant-related mortality. Adult age, overt infection, and residual inflammatory disease at transplant are major risk factors. METHODS: Here we report the favorable outcome after bone marrow transplantation in three high-risk adult CGD patients (ages 18, 35, and 39) with severe disease-related complications (overt pneumonia, liver abscess, steroid-dependent granulomatous colitis, diabetes, restrictive lung disease, renal insufficiency, epilepsia). Bone marrow donors were human leukocyte antigen-matched related or unrelated. The conditioning regimen consisted of 2 x 4 mg/kg oral busulphan (d -3, -2), fludarabine 6 x 30 mg/qm (d -7 to -2), rabbit anti-T-cell-globulin (Fresenius) 4 x 10 mg/kg (d -4 to -1). Graft versus host disease prophylaxis consisted of cyclosporine A and mycophenolate-mofetil. RESULTS: Mean neutrophil and platelet engraftment was observed at day +18.5 and +22.5, respectively. All infectious and inflammatory lesions resolved and restrictive lung disease improved. No signs of grade II-IV acute or chronic graft versus host disease were observed. With a follow-up of 12 to 27 months, all patients are alive and well with full donor chimerism, normalized superoxide production, and documented T- and B-cell function. CONCLUSION: This modified reduced intensity conditioning protocol is a promising treatment modality for high-risk adult CGD patients.

Adolescent↗

Siglec-9 transduces apoptotic and nonapoptotic death signals into neutrophils depending on the proinflammatory cytokine environment.

We report about new apoptotic and non-apoptotic death pathways in neutrophils that are initiated via the surface molecule sialic acid-binding immunoglobulin-like lectin (Siglec)-9. In normal neutrophils, Siglec-9 ligation induced apoptosis. Inflammatory neutrophils obtained from patients with acute septic shock or rheumatoid arthritis demonstrated increased Siglec-9, but normal Fas receptor-mediated cytotoxic responses when compared with normal blood neutrophils. The increased Siglec-9-mediated death was mimicked in vitro by short-term preincubation of normal neutrophils with proinflammatory cytokines, such as granulocyte/macrophage colony-stimulating factor (GM-CSF), interferon-alpha (IFN-alpha), and IFN-gamma, and was demonstrated to be caspase independent. Experiments using scavengers of reactive oxygen species (ROS) or neutrophils unable to generate ROS indicated that both Siglec-9-mediated caspase-dependent and caspase-independent forms of neutrophil death depend on ROS. Interestingly, the caspase-independent form of neutrophil death was characterized by cytoplasmic vacuolization and several other nonapoptotic morphologic features, which were also seen in neutrophils present in joint fluids from rheumatoid arthritis patients. Taken together, these data suggest that apoptotic (ROS- and caspase-dependent) and nonapoptotic (ROS-dependent) death pathways are initiated in neutrophils via Siglec-9. The new insights have important implications for the pathogenesis, diagnosis, and treatment of inflammatory diseases such as sepsis and rheumatoid arthritis.

Antigens, CD↗

Primary immunodeficiency diseases: an update.

Although relatively rare, primary immune deficiency diseases (PIDs) provide an excellent window into the functioning of the immune system. In the late 1960s, observations on these diseases, with their associated infections and genetics, bisected the immune system into humoral immunity and cell-mediated immunity. These diseases also represent a challenge in their diagnosis and treatment. Beginning in 1970, a unified nomenclature for the then-known primary immunodeficiency diseases was created by a committee convened by the World Health Organization. Since then, and later under the aegis of the International Union of Immunological Societies, an international committee of experts has met every 2 to 3 years to update the classification of PIDs. During the past 15 years, the molecular basis of more than 100 PIDs has been elucidated. This update results from the latest meeting of this committee in Sintra, Portugal, June 2003, which followed 2(1/2) days of scientific discussions.

Animals↗

Long-term survival and transplantation of haemopoietic stem cells for immunodeficiencies: report of the European experience 1968-99.

BACKGROUND: Transplantation of allogeneic haemopoietic stem cells can cure several primary immunodeficiencies. This European report focuses on the long-term results of such procedures done between 1968 and December, 1999, for primary immunodeficiencies. METHODS: The report includes data from 37 centres in 18 countries, which participated in a European registry for stem-cell transplantation in severe combined immuno deficiencies (SCID) and in other immunodeficiency disorders (non-SCID). 1082 transplants in 919 patients were studied (566 in 475 SCID patients, 512 in 444 non-SCID patients; four procedures excluded owing to insufficient data). Minimum follow-up of 6 months was required. FINDINGS: In SCID, 3-year survival with sustained engraftment was significantly better after HLA-identical than after mismatched transplantation (77% vs 54%; p=0.002) and survival improved over time. In HLA-mismatched stem-cell transplantation, B(-) SCID had poorer prognosis than B(+) SCID. However, improvement with time occurred in both SCID phenotypes. In non-SCID, 3-year survival after genotypically HLA-matched, phenotypically HLA-matched, HLA-mismatched related, and unrelated-donor transplantation was 71%, 42%, 42%, and 59%, respectively (p=0.0006). Acute graft versus host disease predicted poor prognosis whatever the donor origin except in related HLA-identical transplantation in SCID. INTERPRETATION: The improvement in survival over time indicates more effective prevention and treatment of disease-related and procedure-related complications--eg, infections and graft versus host disease. An important factor is better prevention of graft versus host disease in the HLA-non-identical setting by use of more efficient methods of T-cell depletion. For non-SCID, stem-cell transplantation can provide a cure, and grafts from unrelated donors are almost as beneficial as those from genetically HLA-identical relatives.

Child, Preschool↗

Mobilization and transduction of CD34(+) peripheral blood stem cells in patients with X-linked chronic granulomatous disease.

As a single-gene defect in phagocytes, the X-linked form of chronic granulomatous disease (X-CGD) is a disorder potentially amenable to gene therapy by transfer of a functional copy of the gp91(phox) gene into hematopoietic stem cells (HSC). Although antimicrobial agents and interferon-gamma (IFN-gamma) have significantly improved its prognosis, CGD is still associated with high morbidity and mortality. The disease can be cured by bone marrow transplantation (BMT); however, BMT in CGD has been associated with unacceptably high rates of morbidity, mortality, and graft failure, except in very selected cases in which an HLA-identical donor is available. Prerequisites for a clinical gene therapy of CGD are an efficient mobilization of peripheral blood stem cells (PBSC) as well as the preservation of their viability and hematopoietic potential following transduction and ex vivo culture. We show that (i) mobilization and collection of CD34(+) cells after a 4-week IFN-gamma-free period by G-CSF results in sufficient numbers of cells for transplantation; (ii) the quality of collected stem cells is not altered in comparison to cells obtained from healthy volunteers as assessed by long-term culture initiating cells (LTC-IC) and progenitor cell expansion; (iii) retroviral transfer of the gp91(phox) gene under defined, serum-free conditions leads to high and stable reconstitution of the respiratory burst activity in X-CGD neutrophils derived from transduced CD34(+) progenitor and LTC-IC. Withdrawal of IFN-gamma in CGD patients may improve mobilization of CD34(+) stem cells by G-CSF. The gene transfer conditions established here are applicable to a clinical approach for gene therapy of X-CGD.

Adolescent↗