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Biomedical subjects

R E Ware

Publications and source records attributed to R E Ware.

At least 55 records · Page 3Linked to original sources

Paroxysmal nocturnal hemoglobinuria: molecular pathogenesis and molecular therapeutic approaches.

Paroxysmal nocturnal hemoglobinuria (PNH) is an acquired clonal hematologic stem cell disorder classified as an intravascular hemolytic anemia. Abnormal blood cells are deficient in glycosylphosphatidyl inositol (GPI)-anchored proteins. Deficiencies of GPI-anchored complement regulatory proteins, such as decay accelerating factor (DAF) and CD59, render red cells very sensitive to complement and result in complement-mediated hemolysis and hemoglobinuria. In the affected hematopoietic cells from patients with PNH, the first step in biosynthesis of the GPI anchor is defective. Three genes are involved in this reaction step and one of them, an X-linked gene termed PIG-A, is mutated in affected cells. Granulocytes and lymphocytes from the same patient have the same mutation, indicating that a somatic PIG-A mutation occurs in hematopoietic stem cells. The PIG-A gene is mutated in all patients with PNH reported to date. We review these recent advances in the understanding of the molecular pathogenesis of PNH. Furthermore, we present an hypothesis regarding the predominance of the PNH clone, caused by positive selection by hematopoietic suppressive cytokines, such as transforming growth factor (TGF)-beta. In addition, we discuss the possibility of cure for PNH through molecular therapeutic strategy using gene transfer techniques. (Key words: paroxysmal nocturnal hemoglobinuria, glycosylphosphatidylinositol-anchored proteins, PIG-A, clonal dominance, growth advantage, transforming growth factor-beta, gene therapy, molecular therapeutic approach).

Hemoglobinuria, Paroxysmal↗

Quantitative analysis of erythrocytes containing fetal hemoglobin (F cells) in children with sickle cell disease.

Variation in the level of fetal hemoglobin (HbF) accounts for much of the clinical heterogeneity observed in patients with sickle cell disease (SCD). The HbF level has emerged as an important prognostic factor in both sickle cell pain and mortality, and a % HbF of 10-20% has been suggested as a threshold level for diminished clinical severity. The number of erythrocytes that contain HbF (termed F cells) may also be critically important, as F cells resist intravascular sickling and have preferential in vivo survival. Since F cells can be enumerated with high accuracy using flow cytometry methods, we prospectively studied a cohort of 242 children with SCD. Children with HbS and hereditary persistence of fetal hemoglobin (S/HPFH) had essentially 100% F cells. In contrast, children with homozygous sickle cell anemia (HbSS), HbS/beta0 thalassemia, or HbS/beta+ thalassemia had significantly lower mean % F cell values (55.9, 61.6, and 51.3%, respectively; P < 0.001), and children with HbSC had even fewer F cells (27.0%; P < 0.001). There was a highly significant correlation between the % F cells and the log (% HbF), which was observed for the total population of children (r = 0.95, P < 0.001), as well as for each of the individual subgroups of children with HbSS (r = 0.94, P < 0.001), HbSC (r = 0.89, P < 0.001), or HbS/beta0 thalassemia and HbS/beta+ thalassemia (r = 0.95, P <0.001). This logarithmic correlation between % F cells and % HbF has not been previously described and has important implications for the pharmacologic manipulation of HbF in patients with SCD.

Adolescent↗

Tumor necrosis factor-alpha suppresses hematopoiesis in children with myelodysplasia.

The term myelodysplasia (MDS) refers to a group of bone marrow failure syndromes which are relatively rare in childhood. The pathogenesis of MDS is unknown, but a variety of chromosomal, molecular, and cytochemical abnormalities have been reported. We describe a 4-month-old female with MDS who presented with severe neutropenia and refractory anemia with excess blasts (RAEB). Bone marrow progenitor cell assays showed decreased erythroid and myeloid colony formation as compared to normal marrow, and the patient's serum further diminished colony formation of both her own and control marrow. These observations suggested the presence of a soluble factor inhibitory to hematopoiesis. Reverse transcriptase-polymerase chain reaction (RT-PCR) analysis of total RNA derived from the patient's bone marrow mononuclear cells revealed highly elevated tumor necrosis factor-alpha (TNF-alpha) mRNA levels. Using a similar RT-PCR profile, TNF-alpha mRNA levels were found to be elevated in two other children with myelodysplasia. We conclude that TNF-alpha is produced in large amounts by bone marrow mononuclear cells of children with MDS, and we hypothesize that TNF-alpha plays an important role in the pathophysiology of the ineffective hematopoiesis observed in MDS.

Adolescent↗

Structural and functional analysis of the Pig-a protein that is mutated in paroxysmal nocturnal hemoglobinuria.

There is now convincing evidence that the Pig-a gene is mutated in patients with paroxysmal nocturnal hemoglobinuria (PNH), a disease in which one or more clones of hematopoietic cells have incomplete assembly of glycosylphosphatidylinositol (GPI) anchors and absence of GPI-linked protein expression on the cell surface. Little is known, however, about the Pig-a protein product that is necessary for GPI anchor bioassembly. Relatively few substitution (missense) Pig-a gene mutations have been identified, but we noted two apparent clusters at codons 128-129 and 151-156 and hypothesized that these might represent critical regions of the Pig-a protein. We therefore used site-directed mutagenesis to create conservative mutations in the Pig-a protein, then performed structural and functional analysis. Each Pig-a mutation generated a Pig-a protein of normal size and stability, but certain mutations had substantial deleterious effects on protein function. Conservative mutation of codons histidine 128 (H128), serine 129 (S129), and serine 155 (S155) had greatly diminished function, while mutations of flanking residues had no effect on function. Our results represent the first structure/function analysis of the Pig-a protein, and suggest that codons H128, S129, and S155 represent critical regions of the Pig-a protein. Our results also suggest a means by which transgenic mice with a "partial knock-out" of Pig-a function could be generated, which would allow investigation of PNH in an animal model.

Amino Acid Substitution↗

Glucose-6-phosphate dehydrogenase Durham: a de novo mutation associated with chronic hemolytic anemia.

Glucose-6-phosphate dehydrogenase (G6PD) deficiency is a common X-linked enzyme defect. We report a new variant, G6PD Durham713G, that is associated with chronic nonspherocytic hemolytic anemia. The G6PD Durham713G variant has a unique biochemical and enzymatic profile and a novel A-->G substitution mutation at nucleotide 713, changing lysine to arginine at amino acid 238. This mutation was not found in the mother of our patient, indicating that G6PD Durham713G resulted from a de novo mutation.

Adenine↗

Oligoclonal expansion of CD45RO+ T lymphocytes in Omenn syndrome.

Omenn syndrome comprises a rare form of combined immunodeficiency with TH2-type features of eosinophilia and elevated IgE. Previous studies have led to reports of restricted heterogeneity in the T lymphocyte repertoire, and in vitro cloned T lymphocytes have been shown to produce IL-4 and IL-5. We hypothesized that (1) T cell receptor beta V(D)J DNA sequence analysis would confirm and further define the putative restricted heterogeneity, and (2) increased production of IL-4 and IL-5 should be found in nonstimulated T lymphocytes, if the molecular pathogenesis of Omenn syndrome is an uncontrolled TH2 state. We report the results of molecular analyses of T lymphocytes from an untreated 3-month-old patient. Oligoclonal T cell receptor beta variable gene usage was found. Sequence analysis revealed sets of identical V(D)J sequences, each in-frame, with apparently normal N-diversification and no obvious antigen combining site motif. From fresh, nonstimulated lymphocytes, proinflammatory TH1 cytokines could be detected, but TH2 cytokines could not, so that a simple TH1/TH2 paradigm cannot explain the eosinophilia and elevated IgE in Omenn syndrome. Our studies fully document for the first time at the molecular level that clonally expanded populations of T lymphocytes are present in Omenn syndrome.

Amino Acids↗

Molecular basis of the heterogeneity of expression of glycosyl phosphatidylinositol anchored proteins in paroxysmal nocturnal hemoglobinuria.

The purpose of these studies was to determine the molecular basis of the phenotypic mosaicism that is a defining feature of paroxysmal nocturnal hemoglobinuria (PNH). Analysis of T cell clones from a female patient revealed four distinct phenotypes based on surface expression of glycosyl phosphatidylinositol-anchored proteins (GPI-AP). When PIG-A (the gene that is mutant in PNH) from these clones was analyzed, four discrete somatic mutations were identified. Analysis of X chromosomal inactivation among the abnormal T cell clones was consistent with polyclonality. Together, these studies demonstrate that the phenotypic mosaicism that is characteristic of PNH is a consequence of genotypic mosaicism and that, at least in this case, PNH is a polyclonal rather than a monoclonal disease. That four distinct somatic mutations were present in a single patient suggests that in conditions that predispose to PNH PIG-A may be hypermutable.

Adult↗

Elevated levels of tumor necrosis factor-beta, gamma-interferon, and IL-6 mRNA in Castleman's disease.

Castleman's disease (CD) is a lymphoproliferative disorder characterized by enlarged hyperplastic lymph nodes. CD may be localized or multifocal, and is often associated with signs and symptoms of generalized inflammation. The systemic manifestations of CD have been previously attributed to an overproduction of interleukin-6 (IL-6) by the tumor, although there is evidence that IL-6 is not responsible for all of the symptoms. We describe a 9-year-old boy who developed Castleman's disease with systemic findings of hypochromic microcytic anemia, growth arrest, inflammation, and hyperimmunoglobulinemia. Following surgical resection, all of the symptoms and laboratory abnormalities resolved. Using reverse transcriptase polymerase chain reaction (RT-PCR) analysis of the tumor, we found elevated levels of IL-6 mRNA as expected, but also elevated levels of tumor necrosis factor beta (TNF-beta) and gamma interferon (gamma-IFN) mRNA. Because these cytokines are mediators of immune regulation and inflammation, we propose that TNF-beta and gamma-IFN also play an important role in the pathophysiology of Castleman's disease.

Castleman Disease↗

Regulation of expression of the human erythropoietin receptor gene.

Interactions between erythropoietin (Epo) and its receptor (EpoR) are critical for the normal proliferation and differentiation of erythroid progenitor cells. EpoR is expressed in low numbers during early stages of erythroid maturation, while higher levels are expressed during later stages, suggesting that the expression of the EpoR gene is tightly regulated throughout erythropoiesis. We used the TF-1 erythroleukemia cell line to analyze the effects of various cytokines and reagents on the regulation of human EpoR gene expression. Human EpoR gene expression was significantly upregulated by IL-1 alpha and the protein inhibitor cycloheximide, but significantly downregulated by the calcium ionophore ionomycin and the phorbol ester PMA. These effects on EpoR gene expression were not due to changes in EpoR mRNA stability, suggesting that these agents directly affected EpoR gene transcription. The selective in vitro modification of EpoR expression by these agents highlights the complexity of human EpoR gene expression, and provides clues to its in vivo regulation.

Antigens, Surface↗

Structure-function relationships of the complement regulatory protein, CD59.

CD59 (membrane inhibitor of reactive lysis, protectin) is a membrane protein whose functions include the inhibition of the insertion of the ninth component of complement into the target membrane. It belongs to a superfamily of proteins including Ly-6, elapid snake venom toxins, and urokinase receptor (UPAR); the members of the superfamily have a similar structure that includes four (in mammals five) disulfide bridges that maintain a three-dimensional conformation consisting of a central core, three finger-like "loops" extending from it and a small loop near the coboxyl end. We have used site directed mutagenesis to explore three aspects of the structure of CD59: 1) the role of the disulfide bridges in expression and function of the molecule; 2) the location of epitopes reacting with monoclonal antibodies to the molecule; and 3) the parts of the molecule that are critical to its function in inhibiting complement lysis. Mutant molecules in which the disulfides maintaining the finger-like loops (Cys3-Cys26, Cys19-Cys39, and Cys45-Cys63) were removed were not expressed on the cell surface. The mutation of the disulfide (Cys6-Cys13) resulted in no change in expression or function. The mutation of Cys64-Cys69 maintaining the small loop resulted in an expressed molecule with increased functional activity. The major epitope for 6 of 7 monoclonal antibodies was centered on Arg53 as the mutation 53Arg-->Ser resulted in a loss of interaction with these antibodies, as did the deletion of four nearby residues (Leu54-Asn57). The alteration 55Arg-->Ser resulted in loss of reactivity for some but not other antibodies. The reactivity with one monoclonal antibody, H19, was abrogated by the mutations 61Tyr-->Gly and 61Tyr-->Ala. Functional activity of the molecule was not adversely altered by mutations in the first and second loops; however, the 61Tyr-->Gly mutation was non-functional. The mutation of 61Tyr-->His diminished function but changes 61Tyr-->Ala and 61Tyr-->Phe had no effect on function. We conclude that the functional site of CD59 is located in this region of the molecule.

Animals↗

High-dose oral dexamethasone therapy for chronic childhood idiopathic thrombocytopenic purpura.

Because high-dose oral dexamethasone therapy has been reported to be effective for adults with idiopathic thrombocytopenic purpura, we assessed the short-term efficacy and toxicity of dexamethasone in seven children with chronic or refractory idiopathic thrombocytopenic purpura. Dexamethasone therapy was effective and well tolerated; further long-term studies are warranted.

Adolescent↗

The adolescent with sickle cell anemia.

Adolescence is a time of intense change and turmoil. Helping patients with sickle cell disease have a smooth transition from the pediatric to adult health care environment is an important and meaningful experience. Facilitating the patient's transition, however, takes time and effort. Pediatricians must compile accurate medical summaries transmitting the details and nuances of the patient's history and care. Effort must be expended to ensure that details related to alloimmunization are not omitted. The pediatrician must be careful that the transfer does not create feelings of rejection and abandonment in the patient and the family. Physicians accepting the patient in transfer must devote time to educating and counseling the new patient. A relationship of trust and respect must be built. The physician should work with the patient to explore feelings of distrust and to uncover any concerns and fears, which should be dealt with proactively to avoid major conflicts later. Working closely with the adolescent patient can have many rewards, including helping the patient through a difficult period of adjustment. Helping the patient negotiate this difficult period can have many positive consequences. It is essential that both the pediatrician and internist work closely with the patient and family during the transfer process. Failure to do so can have disastrous consequences. When the collaboration is successful, however, the rewards for patients, families, and providers are great.

Adolescent↗

Resolution of Budd-Chiari syndrome following bone marrow transplantation for paroxysmal nocturnal haemoglobinuria.

Thrombosis of the hepatic veins (Budd-Chiari syndrome) is a life-threatening thrombotic complication which can occur in patients with paroxysmal nocturnal haemoglobinuria (PNH). Despite aggressive medical and surgical therapy, mortality from Budd-Chiari syndrome remains high. We report a boy with PNH who developed Budd-Chiari syndrome and underwent syngeneic bone marrow transplantation (BMT). Now, 3 years following BMT, he has had dramatic clinical and radiographic evidence of resolution of the thrombosis. We suggest that BMT for PNH can successfully correct life-threatening thrombosis in patients with PNH.

Bone Marrow Transplantation↗

Identification and characterization of an inherited mutation of PIG-A in a patient with paroxysmal nocturnal haemoglobinuria.

Analysis of the X-linked gene PIG-A from haemopoietic cells of a female PNH patient showed a homozygous C-55-T substitution that caused replacement of arginine with tryptophan at codon 19. Aval restriction analysis of PIG-A cDNA demonstrated that the patient was homozygous for this mutation, whereas her mother was heterozygous and her father was hemizygous. Flow cytometry, however, showed normal expression of glycosyl phosphatidylinositol anchored proteins on blood cells of the patient's mother and father. Therefore the C-55-T mutation is an inherited sequence variant that does not account for the PNH phenotype of this patient.

DNA↗

Erythrocytapheresis can reduce iron overload and prevent the need for chelation therapy in chronically transfused pediatric patients.

PURPOSE: This research was undertaken to determine the advantages, complications, costs, and efficacy of erythrocytapheresis in young pediatric patients who receive chronic erythrocyte transfusion therapy. PATIENTS AND METHODS: We retrospectively analyzed data for 10 children who received erythrocytapheresis for an average of 16 months. Erythrocytapheresis was compared to simple transfusion therapy with respect to annual blood unit exposure, occurrence of alloimmunization, and costs. Serum ferritin levels were compared before and after the period of erythrocytapheresis. RESULTS: Erythrocytapheresis was well tolerated, even in children as young as 5 years or as small as 20 kg. It required a greater annual unit exposure than simple transfusions, but did not increase alloimmunization. Ferritin levels decreased significantly in children receiving concurrent deferoxamine, and decreased or stabilized in those not on chelation therapy. Children started on erythrocytapheresis soon after stroke have not developed iron overload. Although the costs of erythrocytapheresis exceed that of simple transfusion, the substantial costs of deferoxamine therapy should be considered; one child on erythrocytapheresis has been able to discontinue chelation therapy following normalization of his ferritin level. CONCLUSION: Erythrocytapheresis is a safe and effective method for young patients receiving chronic erythrocyte transfusions. Erythrocytapheresis can reduce total iron burden and may obviate the need for expensive chelation therapy.

Adolescent↗

Delayed development of sensorineural hearing loss after neonatal hyperbilirubinemia: a case report with brain magnetic resonance imaging.

Sensorineural hearing loss has long been known to be a clinical consequence of kernicterus. Brainstem auditory evoked potentials (BAEPs) that occur in hyperbilirubinemic infants, can be reversed in the neonatal period by exchange transfusion. The case was reported in an infant with neonatal hyperbilirubinemia from hemolysis due to glucose-6-phosphate dehydrogenase (G6PD) deficiency and napthalene exposure. BAEPs showed that the baby had normal hearing at 30 decibels at 13 days of age, after exchange transfusions, but had developed profound bilateral sensorineural hearing loss by 7 months of age. The brain magnetic resonance imaging (MRI) findings at 7 months are also presented.

Cochlea↗