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Miharu Yabe

Publications and source records attributed to Miharu Yabe.

10 recordsLinked to original sources

Myeloid lineage-selective growth of revertant cells in Fanconi anaemia.

Fanconi anaemia (FA) is a genetically heterogeneous chromosome instability syndrome characterised by bone marrow failure and congenital anomalies. Although an increasing number of reports suggest that reversion mosaicism noted in peripheral blood lymphocytes (PBLs) is associated with mild haematopoietic failure in FA, myeloid cells are rarely directly examined. We here report a patient with prolonged mild pancytopenia in whom proliferation of revertant cells was detected in mature myeloid cells but not in PBLs. While this patient had inherited heterozygous mutations, 2546delC and 3720-3724del, in the major FA gene FANCA, Epstein-Barr virus-immortalised lymphoblastoid cells from the patient had 2546C > T instead of 2546delC, resulting in expression of a functional missense protein. As the identical reversion was detected in polymorphonuclear granulocytes and mononuclear phagocytes, sustained haematopoiesis in the patient can be attributed to a selective growth advantage of revertant myeloid cells. It is noteworthy that such a myeloid lineage-selective mosaicism is overlooked in routine examination of PBLs. Recognition of this status will expand the role of reversion mosaicism in the pathophysiology of FA.

Adult↗

Allogeneic haematopoietic cell transplantation from alternative donors with a conditioning regimen of low-dose irradiation, fludarabine and cyclophosphamide in Fanconi anaemia.

A pilot study was undertaken using a fludarabine-based conditioning regimen to improve haematopoietic cell transplantation (HCT) from alternative donors in 27 Fanconi anaemia (FA) patients. Patients were conditioned with 150-180 mg/m2 of fludarabine, 40 mg/kg of cyclophosphamide, 5-10 mg/kg of antithymocyte globulin, and 300-450 cGy of thoracoabdominal/total body irradiation. One patient who received unrelated cord blood transplantation failed to engraft, another patient died of sepsis. The 1-year overall survival was 96.3% (95% CI, 89-100). This conditioning regimen exerted an immunosuppressive effect that enabled durable engraftment in alternative donor HCT without severe toxicity.

Child↗

Fatal adenovirus infection indistinguishable from thrombotic microangiopathy after allogeneic CD34+ peripheral progenitor cell transplantation.

A 10-year-old boy with acute lymphoblastic leukemia in second relapse received CD34+ purified allogeneic peripheral blood stem cell transplantation (PBSCT) from his HLA-haploidentical father. The patient developed grade II acute GVHD and received high-dose methyl-prednisolone starting on day + 13 posttransplant. Renal dysfunction followed by massive gastrointestinal bleeding was observed from day + 14. The laboratory findings including elevated serum LDH, increased RBC fragmentation, higher level of thrombomodulin and undetectable haptoglobin corresponded with the diagnosis of thrombotic microangiopathy (TMA). In spite of various treatments, the patient died of multiple organ failure on day + 93. Post-mortem examination revealed systemic adenovirus infection without histological findings of TMA. Severe adenovirus infection may be confused with TMA, and should be distinguished by rapid virological assay.

Adenoviridae Infections↗

Secondary G-CSF mobilized blood stem cell transplantation without preconditioning in a patient with Gaucher disease: Report of a new approach which resulted in complete reversal of severe skeletal involvement.

Gaucher disease has been treated by allogeneic bone marrow transplantation (BMT), however, severe bone involvement that is probably the most disabling aspect of this disease is difficult to reverse. Other problem of BMT is the use of intensive preconditioning that adversely affects growth and development of the patients. In this study, a patient with type I Gaucher disease was treated by allogeneic BMT from HLA-matched sibling donor. However, the treatment resulted in late graft failure and the patient developed severe bone involvement. Fifty months after the first BMT, the patient was treated by allogeneic peripheral blood stem cell (PBSC) transplantation without preconditioning. Recombinant human granulocyte-colony stimulating factor (rhG-CSF) was used to mobilize PBSC. Cyclosporine A (CyA) was administered for the prophylaxis of graft-versushost disease (GVHD). Full donor-derived hematopoiesis was obtained, and clinical symptoms including severe bone involvement improved completely with increased glucocerebrosidase activity. It was shown that an engraftment could be obtained without intensive preconditioning when a recipient receives an rhG-CSF-mobilized PBSCs infusion as a secondary transplant. Another important finding of this study is the complete reversal of severe bone involvement by the supply of abundant glucocerebrosidase from high proliferating PBSC graft.

Bone Marrow Transplantation↗

Changes in thyroid function after bone marrow transplant in young patients.

BACKGROUND: Changes in thyroid function among young patients who received bone marrow transplantation (BMT) were evaluated. METHODS: The study included 91 patients (50 males) who underwent BMT from 1985 to 1995 at the age of 0.6-21 years. Sixty patients had neoplastic disease such as leukemia or lymphoma, and the remainder had non-neoplastic diseases. Preconditioning regimen for BMT included 12 Gy of fractionated-total body irradiation (TBI) for patients with neoplastic disease and 3-8 Gy of irradiation for the remaining patients, in addition to chemotherapy. Evaluation of thyroid function was performed by serial assessment of basal serum FT4, FT3, TSH concentrations as well as by TRH test. RESULTS: No patient had overt hypothyroidism or elevated basal TSH concentrations (>10 mU/L). However, 6 (7%) of patients experienced exaggerated peak TSH response to TRH stimulation several years after BMT. In 33 patients whose thyroid status was evaluated before, within 3 months, and 1 year after BMT, serum FT3 concentrations as well as peak TSH response to TRH stimulation significantly decreased immediately after BMT (<3 months) and normalized within 1 year. However, serum FT4 concentrations did not change significantly. One patient developed primary hypothyroidism and another developed follicular adenoma of the thyroid 5 and 12 years after BMT, respectively. CONCLUSION: Short-term changes in thyroid function after BMT can indicate euthyroid sick syndrome rather than tertiary hypothyroidism. It must be noted that overt hypothyroidism may occur several years after BMT, hence long-term follow-up of thyroid function is warranted.

Adolescent↗

Long-term follow-up of thyroid function in patients who received bone marrow transplantation during childhood and adolescence.

An increasing number of long-term surviving bone marrow transplant (BMT) recipients have recovered from their primary disease but are at risk of developing failure of endocrine organs. We investigated 147 patients who underwent allogeneic BMT. Thyroid function was evaluated by serial measurement of basal TSH and free T4 levels as well as by TRH provocative test. Thyroid ultrasound examination was performed for evaluation of thyroid tumor after BMT. Five patients were found to have overt thyroid dysfunction (hypothyroidism in four patients and hyperthyroidism in one patient). Twenty-three patients in the under 9-yr-old group at BMT and 16 patients in the over 10-yr-old group at BMT had subclinical compensated hypothyroidism. Younger age at BMT was the strongest factor for developing thyroid dysfunction, compared with older age (P < 0.001). Only in patients with subclinical compensated hypothyroidism did median basal and peak TSH increase to the upper half of the normal range by 8 yr after BMT and then returned slightly to the middle of the normal range spontaneously. These results suggest that thyroid dysfunction in long-term BMT survivors depends on age at BMT, with a greater risk among younger patients, indicating the need for life-long surveillance.

Adenoma↗

Unmanipulated HLA-haploidentical bone marrow transplantation for the treatment of fatal, nonmalignant diseases in children and adolescents.

Fetomaternal microchimerism has been demonstrated, and immunologic tolerance to unshared HLA antigens between mother and offspring may be suggested. We used T-cell-repleted bone marrow transplantation (BMT) from their HLA-haploidentical mothers to treat 6 patients with fatal nonmalignant diseases. The number of mismatched HLA loci in the graft-versus-host disease (GVHD) direction was 3 in 4 patients and 2 in 2 patients. The number in the host-versus-graft direction was 3 in 4 patients, 2 in 1 patient, and 1 in 1 patient. Microchimerism of inherited paternal antigens was demonstrated in 5 donors, and microchimerism of noninherited maternal antigens was detected in 3 recipients. GVHD prophylaxis consisted of short-course methotrexate, tacrolimus, and mycophenolate mofetil (3 patients) or short-course methotrexate, tacrolimus, and methylprednisolone (1 patient). Engraftment was achieved in 5 patients who had received preconditioning, and T-cell engraftment was confirmed in 1 patient with severe combined immunodeficiency. Acute GVHD developed in 3 patients: grade 1 in 2 patients and grade 2 in 1 patient. Chronic GVHD was observed in 5 patients: localized type in 3 patients and extended type in 2 patients. Five patients were alive 11 to 30 months after BMT and 1 patient died of chronic GVHD. Unmanipulated haploidentical BMT from a maternal donor may be the treatment of choice of poor-prognosis nonmalignant diseases.

Abnormalities, Multiple↗

Unrelated donor marrow transplantation for congenital immunodeficiency and metabolic disease: an update of the experience of the Japan Marrow Donor Program.

We retrospectively analyzed the clinical results of 81 patients with congenital genetic diseases who were treated with bone marrow transplantation (BMT) from unrelated donors identified through the Japan Marrow Donor Program. The patients were aged between 1 and 38 years (median, 4 years). Thirty-five patients underwent transplantation for metabolic disease (MD), ie, mucopolysaccharidosis (n = 25), adrenoleukodystrophy (n = 7), and others (n = 3). The remaining 46 patients had Wiskott-Aldrich syndrome (n = 16), hemophagocytic syndrome including the inherited type (n = 9), severe combined immunodeficiency (n = 6), hyper-IgM syndrome (n = 4), Chédiak-Higashi syndrome (n = 3), Kostmann syndrome (n = 3), and others (n = 5). Fifty-two donor-patient pairs were fully matched at HLA-A, HLA-B, and HLA-DRB1 alleles. The remaining 24 patients received allele-mismatched grafts (20 matched at 5 of 6 loci and 4 matched at 4 of 6 loci). Engraftment occurred in 82.4% of the MD group and 90.7% of the other genetic disease (OGD) group; however, 14 patients (18.2%) experienced either early or late graft failure. The cumulative incidence of grade II to IV acute graft-versus-host disease (GVHD) was 35.5% - 9.8% in the MD group and 47.3% - 9.5% in the OGD group, and the rate of chronic GVHD was 20% in both groups. Forty-nine patients have survived for 3 to 96 months (median, 20 months). The probabilities of 5-year overall survival and event-free survival were 72.6% - 11.5% and 65.3% - 8.6%, respectively, for MD (n = 35) and 72.5% - 7.3% and 63.6% - 7.3% for OGD (n = 46). Although patient status before BMT and the occurrence of grade III to IV acute GVHD significantly affected outcome, unrelated BMT is a curative therapeutic option for children with congenital genetic diseases who have no HLA-matched family donors.

Adolescent↗

The kinetics of immune reconstitution after cord blood transplantation and selected CD34+ stem cell transplantation in children: comparison with bone marrow transplantation.

The present study compares immune reconstitution after allogeneic cord blood transplantation (CBT) and CD34+ stem cell transplantation (CD34-SCT) with that after bone marrow transplantation (BMT). Eighty-eight children who underwent CBT (20 patients), BMT (58), and CD34-SCT (10) were enrolled, and lymphocytes and T-, B-, and natural killer-lymphocyte subsets were monitored for more than 5 years after transplantation. CBT recipients showed significant ircreases in (1) total lymphocyte counts (P < .001), (2) CD4+/CD8+ cell ratios (P < .01), (3) CD4+ and CD4+CD45RA+ cells (P < .001), (4) CD8+CD11b+ cells (P < .001), and (5) CD19+ and CD19+CD5+ cells (P < .0001) and marked decreases in the frequencies of CD8+ and CD8+CD11b- cells (P < .0001). CD34-SCT recipients showed lower lymphocyte counts in the first 6 months and an emergence of lymphocyte and CD4+CD45RA+ cells at approximately 9 months and 1 year. Both CBT and CD34-SCT recipients showed increased frequencies of CD56+ cells at 1 month (CD34-SCT versus BMT, P < .001) but decreased frequencies after 6 months (CBT versus BMT, P < .001). Lymphoproliferative responses to exogenous interleukin 2 were constantly lower in CBT and CD34-SCT recipients than in BMT recipients. These results suggest that the delay in immune reconstitution after CBT in the early phase was mainly qualitative and related to the immaturity of cells, whereas the delay in CD34-SCT was mainly quantitative in the first several months.

Adolescent↗

Low natural killer activity and central nervous system disease as a high-risk prognostic indicator in young patients with hemophagocytic lymphohistiocytosis.

BACKGROUND: Familial hemophagocytic lymphohistiocytosis HLH (FHL) is fatal, unless patients are rescued with hematopoietic stem cell transplantation (SCT). Although the molecular identification of FHL now is possible at least in part from perforin gene study, many cases escape detection or never are tested due to the lack of specific hallmarks, making diagnosis difficult. To the authors' knowledge, it remains to be determined whether persistently low natural killer cell (NK) activity and a high incidence of central nervous system (CNS) disease increase the probability of FHL. METHODS: The authors analyzed 42 HLH patients age < 2 years, 13 of whom developed overt CNS disease and 5 of whom demonstrated persistently deficient NK activity (Group 1). The remaining 24 patients had no CNS disease and had NK activity of moderate decrease to within the normal range (Group 2). RESULTS: In Group 1, CNS symptoms were detected in 6 cases within 1 month and between 4.5-9 months in 6 other patients. In these cases, spotty lesions demonstrating a high T2 signal in the white matter were noted on brain magnetic resonance imaging. The survival was significantly poor for patients in Group 1 unless they were rescued with SCT, which was performed in 5 of the 13 patients with CNS disease and in all 5 patients with persistent NK activity deficiency. SCT was successful in 9 patients, with no CNS sequelae reported after the transplantation. Conversely, the prognosis of the 24 patients in Group 2 was better and only 1 patient required SCT. CONCLUSIONS: Very young HLH patients (age < 2 years) who are at high risk of fatal FHL with persistently deficient NK activity and/or overt CNS disease require appropriate SCT to reverse CNS disease and achieve a complete cure.

Age of Onset↗