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Biomedical subjects

D Rund

Publications and source records attributed to D Rund.

At least 19 recordsLinked to original sources

Therapy-related leukemia: clinical characteristics and analysis of new molecular risk factors in 96 adult patients.

Therapy-related leukemia or myelodysplasia (t-leuk/MDS) is a serious problem that is increasing in frequency. We studied the clinical characteristics of 96 patients (pts) with a mean age of 48 years, and analyzed the molecular parameters that could predispose to t-leuk/MDS. Hematological malignancies were the most common primary (53%), followed by breast and ovarian cancer (30% combined). The mean latency until the development of t-AML was 45.5 months. Median survival was 10 months. Cytogenetics was abnormal in 89% of pts. FLT3 internal tandem duplications were found in six of 41 (14.6%) pts, of whom four had an abnormal karyotype. Analysis of drug metabolism and disposition genes showed a protective effect of the CYP3A4 1*B genotype against the development of t-leuk/MDS, whereas the CC genotype of MDR1 C3435T and the NAD(P)H:quinone oxidoreductase1 codon 187 polymorphism were both noncontributory. Microsatellite instability (MSI) analysis using fluoresceinated PCR with ABI sequence analyzer demonstrated that 41% of pts had high levels of MSI in four or more of 10 microsatellite loci. Immunohistochemistry demonstrated reduced expression of MSH2 and MLH1 in 6/10 pts with MSI as compared to 0/5 of pts without MSI. In conclusion, genetic predisposition as well as epigenetic events contribute to the etiology of t-AML/MDS.

Adaptor Proteins, Signal Transducing↗

Plasma chitotriosidase activity in patients with beta-thalassemia.

Variable increases in chitotriosidase levels have been reported in Italian patients with beta-thalassemia major and intermedia. We measured plasma chitotriosidase levels in Israeli patients with beta-thalassemia to ascertain its use as a universal marker of disease and/or response to therapy. Chitotriosidase levels in 39 adults (16-53 years; 30 with beta-thalassemia major, 9 with intermedia), and in 14 children (0.7-15 years; 12 with beta-thalassemia major, 2 with intermedia) were compared with other measures of disease, such as ferritin, hemoglobin, liver function tests, and genotype. Plasma chitotriosidase levels were normal (0.37 +/- 0.04 mU/mL) in all children. Twelve adults (31%) had elevated levels (>1.33 mU/mL): 11 patients (37%) with thalassemia major and 1 patient (11%) with thalassemia intermedia. A significant correlation was only found between plasma chitotriosidase levels and ferritin levels, and with mean number of transfusions per year. The patient with the highest chitotriosidase (1,440 nmol/mL/hr) had the highest ferritin (5,175 microg/L), required the most transfusions per year (40), and had abnormal liver tests. Normal chitotriosidase levels in the pediatric cohort and increased levels in only some adults may reflect status of iron overload in macrophages; thus there may be a role for monitoring chitotriosidase in patients with beta-thalassemia. Our results confirm results of the Italian cohort; however, in the latter, a more universal correlation was noted and chitotriosidase levels were much higher.

Adolescent↗

Pathophysiology of alpha- and beta-thalassemia: therapeutic implications.

At the molecular level, the underlying cause of thalassemia is any of a number of genetic lesions that reduce or abolish the production of the globin chains of hemoglobin. The resulting chain imbalance is the key factor initiating the damage to the red blood cell (RBC) and it is the major pathophysiological event in all forms of the thalassemia syndromes. In this review we will outline some of the cellular and systemic processes that have been implicated in the development of the disease. When relevant, we will discuss the ways in which these processes can be altered in a therapeutic manner.

Erythrocyte Membrane↗

Diversity of alpha-globin mutations and clinical presentation of alpha-thalassemia in Israel.

Alpha-thalassemia is among the world's most common single gene disorders, caused primarily by gene deletions. In Israel, where alpha(o)-trait thalassemia is uncommon, it is of particular importance because of its phenotypic interactions with beta-thalassemia in hetero- and homozygotes. In a study of 232 individuals referred for molecular evaluation of anemia, 303 chromosomes carried alpha-globin gene abnormalities; 6 gene rearrangements and 11 point mutations were identified. This unexpected heterogeneity is in part due to the many ethnic subgroups represented by these patients. Our findings include nine unique Israeli alleles, 3 of which are described here for the first time. An equal number of point mutations was found in the alpha2-globin gene as compared to alpha1. A threonine deletion in codon 39 of the alpha1-globin gene, found frequently in Arabs, is unique to Israel and probably represents one of several indigenous alleles. Among Arabs, point mutations were more frequent than large deletions. Surprisingly, in Ashkenazi Jews, who resided for many centuries in a nonmalarial environment, a single alpha-globin gene deletion -alpha(3.7) was found in many cases. The clinical presentation of individuals carrying two or more alpha-globin lesions was highly variable. In general, the severity correlated inversely with the number of functional alpha-globin genes. In some cases, impairment of two alpha-globin genes by point mutations led to a thalassemia-intermedia-like picture which could be misdiagnosed as beta-thalassemia. We conclude that alpha-thalassemia is phenotypically and genotypically more heterogeneous than previously recognized. DNA analysis is invaluable as it provides a specific diagnosis and enables reliable genetic counseling.

Ethnicity↗

New trends in the treatment of beta-thalassemia.

Thalassemia is the world's most common hereditary disease, and is a paradigm of monogenic genetic diseases. Because of increased population mobility, the disease is found today throughout the world, even in places far from the tropical areas in which it arose. Therapy of thalassemia has in the past been confined to transfusion and chelation. Recently, novel modes of therapy have been developed for thalassemia, based on the pathophysiology and molecular pathology of the disease, both of which have been extensively studied. This review will discuss the therapeutic modalities currently in use for the supportive treatment of thalassemia, both those that are standard therapy and those that are in clinical trials. We will include transfusion, chelation (intravenous and oral), antioxidants and various inducers of fetal hemoglobin (hydroxyurea, erythropoietin, butyrates, hemin). Most of the newer therapies are suitable primarily for thalassemia intermedia patients. In addition, the treatment modalities currently in use for the curative treatment of thalassemia major will be discussed, including bone marrow transplantation in its various forms. Experimental therapeutic methods, such as intrauterine bone marrow transplantation and gene therapy, are included. Physicians caring for thalassemia patients have an increasing variety of treatment options available. Future clinical studies will determine the place of newer agents and modalities in improving the quality of life as well as the life expectancy of thalassemia patients.

Humans↗

6;9 translocation in myelodysplastic syndrome.

The 6;9 chromosomal translocation [t(6;9)] is usually associated with acute nonlymphocytic leukemia, and carries a poor prognosis. We present a case of refractory anemia with excess of blasts (RAEB) accompanied by t(6;9). Review of the literature revealed an additional ten patients in which myelodysplastic syndrome (MDS) was associated with the chromosomal translocation 6;9. The patients tend to be younger then the average MDS patient and, unlike leukemia, in which this translocation is associated with a poor prognosis, these patients tend to have the same overall RAEB and refractory anemia with excess of blasts in transformation (RAEBt) prognosis. It is therefore possible that this chromosomal aberration should not be considered as an unfavorable prognostic factor in MDS.

Adolescent↗

A mutation in the promoter of the multidrug resistance gene (MDR1) in human hematological malignancies may contribute to the pathogenesis of resistant disease.

The overexpression of the multidrug resistance gene MDR1 has been found to be associated with therapy-resistance in hematological malignancies. Yet the cellular mechanisms underlying this increased expression are completely unknown. Point mutations in the MDR1 promoter have been found in osteogenic sarcoma (Stein et al., Eur J of Cancer, 30A: 1541-1545, 1994). We therefore analyzed DNA from hematological malignancies for MDR1 promoter point mutations. Two pairs of overlapping PCR primers were designed which did not amplify the MDR3 gene. Amplified DNA was screened using single strand conformation polymorphism (SSCP). 139 patients and 93 normal controls were studied. Fifteen patients (11%) were found to have abnormal bands on the SSCP analysis. Of these, 9 had acute myeloid leukemia (AML), 4 chronic lymphocytic leukemia (CLL), 1 acute lymphocytic leukemia (ALL), and 1 nonHodgkin's lymphoma (NHL). Sequence analysis revealed that all patients were heterozygous for a point mutation in the promoter (T-C transition at +8). Four normals (4%) were found to be heterozygous for the mutation. Confirmation of the mutation was performed by oligonucleotide probe hybridization. All but two of the AML patients have died due to chemoresistant disease (one is lost to followup). Of the CLL patients, one is alive with progressive disease, and the others have died. Further studies will assess the effect of this mutation on MDR1 gene transcription.

ATP Binding Cassette Transporter, Subfamily B↗

Expression of beta-globin in primary erythroid progenitors of beta-thalassemia patients using an SV40-based gene delivery system.

SV40-based vectors are very efficient in gene delivery into human hematopoietic cells. In the present work, we investigated the expression of constructs carrying the human beta-globin gene that were delivered as beta-globin pseudovirions. Expression studies were performed by RNA analysis of primary human erythroid progenitors cultivated from peripheral blood of beta(0)-thalassemia patients who are unable to produce normal beta-globin RNA. This erythroid culture system recapitulates in vitro the process of growth, differentiation, and maturation of authentic erythroid precursors. The progenitors were induced to differentiate by the addition of erythropoietin (EPO). Five days later, the cells were infected with pseudovirions containing the normal beta-globin gene, and RNA was harvested on day 8. The results showed significant levels of normal beta-globin gene mRNA. A small DNA fragment derived from the 5'-region of the HSII element of the human beta-globin locus control region (LCR) enhanced expression of the linked beta-globin gene 20-30-fold. Normal beta-globin mRNA expression was in direct correlation to the multiplicity of infection. These studies suggest the potential feasibility of using the beta-globin delivery system for gene therapy of beta-thalassemia.

Cell Differentiation↗

Efficient transduction of human hematopoietic cells with the human multidrug resistance gene 1 via SV40 pseudovirions.

Transduction of MDR1 may be of use in chemoprotection of normal bone marrow (BM) cells during treatment of malignancies, or as a selectable marker for the transfer of other genes into the BM, a critical target for the cure of many diseases. To that aim, the human multidrug resistance gene MDR1 was cloned into an SV40 pseudoviral vector containing the SV40 origin of replication (ori) and encapsidation signal (ses), and the plasmid was encapsidated in COS cells as SV40/MDR1 pseudovirions. Expression of the human MDR1 gene was demonstrated in murine MEL cells infected with SV40/MDR1 pseudovirions, using a monoclonal antibody (MPK16) specific for the human 170-kD P-glycoprotein. Functional P-glycoprotein was demonstrated by resistance to colchicine in NIH-3T3 cells infected with SV40/MDR1 pseudovirions. Activity of P-glycoprotein was assayed by rhodamine-123 dye exclusion and fluorescence-activated cell sorter analysis (FACS) in various cell types including hematopoietic cells. Highly efficient gene transfer and expression was demonstrated in all murine and human cell types tested, including primary human BM cells. Using multiplicities of infection (moi) of 1-2, over 95% of cells were found to become MDR1+. The percent of MDR1+ cells was proportional to the moi. We conclude that the SV40 pseudoviral vector is efficient for gene transmission into human hematopoietic cells.

3T3 Cells↗

Rapid detection of the common Mediterranean alpha-globin deletions/rearrangements using PCR.

The most frequent molecular lesions causing alpha-thalassemia are deletions of one or more alpha-globin genes. Detection of these deletions generally requires genomic Southern analysis, which is cumbersome and time consuming. We have designed new sets of primers for PCR identification of the common Mediterranean alpha-globin gene rearrangements, including the -alpha3.7 deletion and the alphaalphaalpha(anti3.7) triplication, the -alpha4.2 deletion, and the --Med allele. We have established reaction conditions that provide easily interpretable, unambiguous diagnoses. Some of the PCR reactions are multiplex, simultaneously identifying several genotypes, thus reducing the time and cost of screening and prenatal testing. The use of these methods should facilitate carrier screening and identification of couples at risk for alpha-thalassemia.

Alleles↗

Differences in rhodamine-123 efflux in B-type chronic lymphocytic leukemia suggest possible gender and stage variations in drug-resistance gene activity.

Peripheral blood samples from 61 patients (36 male, 25 female) with all stages of B-type chronic lymphocytic leukemia (CLL) were studied for MDR1 phenotype using monoclonal antibodies and rhodamine-123 dye exclusion, a functional assay of MDR1 expression. The duration of the disease varied from 1 month to 22 years at the time of initial study. Overall, 74% of the patients were positive for rhodamine-123 exclusion. When analyzed by gender, significantly more men than women were positive (89% versus 48%, p<0.001). There were more positive men than women for every stage of the disease. Female patients were found to be either MDR1 phenotype positive or negative at any stage of the disease. In contrast, all male patients with early (stages 0-II) disease were MDR1 phenotype positive. One early-stage (stage II) male patient converted from rhodamine-efflux positive to rhodamine-efflux negative as he progressed from stage-II to stage-IV disease. We suggest that some of the differences in disease biology of male versus female CLL patients (women having a more benign course) may be due to gender-dependent differences in drug-resistance gene activity, including MDR1. Our results also emphasize the need to take into account gender in evaluating the clinical course of patients with CLL.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Heme arginate therapy for beta thalassemia: in vitro versus in vivo effects.

Hemin has a profound effect on erythroid cell maturation and promotes fetal hemoglobin synthesis in vitro. In beta-thalassemia, increasing fetal hemoglobin levels can ameliorate the anemia. We administered heme arginate, a novel stable form of hemin, to 4 patients with thalassemia intermedia and studied the in vitro versus in vivo effects. In erythroid cultures, there was a marked rise in total hemoglobin and hemoglobin F. In vivo, 3 of 4 patients had a rise in hemoglobin levels (from 0.4 to 1.1 g%), which was statistically significant in 1 patient. There were no serious adverse effects. Heme arginate may be useful in the treatment of thalassemia intermedia.

Adult↗

Candida abscess of the thyroid in a patient with acute lymphocytic leukemia.

A case of Candida abscess of the thyroid in a patient with acute lymphoblastic leukemia is described. The patient developed this rare complication after treatment with steroids and combination chemotherapy, during therapy with broad spectrum antibiotics for febrile neutropenia. Prior to the thyroiditis the patient had pulmonary aspergillosis. The abscess developed during treatment with high dose Amphotericin B. Unlike previous cases, the Candida was isolated to the thyroid, with no evidence of Candidemia or Candida infection in other sites.

Abscess↗

Genetic analysis of beta-thalassemia intermedia in Israel: diversity of mechanisms and unpredictability of phenotype.

Molecular analysis was performed on 95 Israeli patients with thalassemia intermedia, representing 60 families of Arab (Moslem and Christian), Jewish, Druze, and Samaritan origin. There was a wide range of phenotypic severity, with baseline hemoglobin levels ranging from 5.5 to 10.7. Eighteen thalassemia mutations were found (29 genotypes), which were subdivided into groups, according to the severity of mutations. A consistently mild phenotype (10 families) was caused by compound heterozygosity for a silent mutation, such as -101 C-T or by coexistence of triplicated alpha-globin genes with thalassemia trait. In 39 thalassemia intermedia families, the genotype which was found was one which led to severe thalassemia intermedia, or, in other families, was associated with thalassemia major. Elevated hemoglobin F ameliorated the disease in some patients with a severe genotype. We did not find a beneficial effect of concurrent alpha-thalassemia in any of the families studied. In 11 families, only one beta-thalassemia allele was identified. One was a dominant thalassemia intermedia allele. Three additional families with heterozygous beta-thalassemia had excess alpha-globin genes (5 or 6 total). In 7 of these heterozygotes, no explanation was found for the thalassemia intermedia phenotype. Our results suggest a substantial influence of as yet unknown genetic modifiers. These findings have important implications for prenatal diagnosis and for the genetic counseling of families with thalassemia intermedia.

Alleles↗

Intensive plasmapheresis for severe thrombotic thrombocytopenic purpura: long-term clinical outcome.

Plasma exchange is of proven efficacy in the treatment of thrombotic thrombocytopenic purpura (TTP). In most series, less than 40 plasma exchanges (PE) were required for treatment and as many as two thirds of patients had permanent residual organ damage. We report on 4 patients who required very intensive PE for the resolution of TTP (37, 68, 102 and 108 procedures, respectively). The maximum number of PE procedures per attack was 102. None of these patients has any permanent sequellae of TTP (other than those associated with splenectomy, which was performed on all patients). Two of the female patients had uncomplicated pregnancies since resolution of the disease. We conclude that even highly refractory cases of TTP can have an excellent clinical outcome with intense PE therapy.

Adult↗

A novel mechanism generating short deletion/insertions following slippage is suggested by a mutation in the human alpha2-globin gene.

A novel mechanism generating short deletion/insertions is described based on a mutation in the human alpha2-globin gene. A deletion of 9 bp (codons 39-41) is replaced by an eight nucleotide insertion, duplicating the adjacent downstream sequence. We propose that the mutation arose by slipped strand mispairing (SSM), creating a single-stranded loop, followed by DNA elongation, strand breathing and the formation of a mismatch bubble. An extensive literature search has revealed six additional deletion/insertion mutations in humans in which the inserted nucleotides come from the same DNA strand. Our model explains all six mutations, suggesting that rearrangement of a mismatch loop or bubble during DNA replication may be not uncommon.

Adolescent↗