Search PubMed⌕ Search

Biomedical subjects

D H Chui

Publications and source records attributed to D H Chui.

At least 109 records · Page 6Linked to original sources

An immunoassay to detect human embryonic epsilon globin chains by a murine monoclonal antibody.

Human embryonic epsilon globin chains were isolated from lysates of cultured human leukemic K562 cells induced with hemin. Mice were immunized with epsilon globin chains, and a murine hybridoma cell line was established that secreted monoclonal anti-epsilon globin antibody. A sensitive and specific slot blot immunoassay for epsilon globin chains has been developed. epsilon Globin chains were shown to be present in hemolysates from fetuses of 20 weeks' gestation but were not detected in normal cord blood hemolysates. This immunoassay is useful for the study of epsilon globin ontogeny during embryonic and fetal development as well as for searching for inappropriate epsilon globin chain expression in hematologic disorders resulting from genetic abnormalities or neoplastic processes.

Animals↗

Antithrombin-III-Hamilton: a gene with a point mutation (guanine to adenine) in codon 382 causing impaired serine protease reactivity.

Antithrombin-III-Hamilton is a structural mutant of antithrombin III with defective serine protease reactivity, demonstrable in three members of a French Canadian family. The propositus, a 54-year-old man with a history of recurrent thromboembolic events, and his two asymptomatic grown children are heterozygous for the mutant antithrombin III gene. In all three individuals, the immunoreactive antithrombin III level is normal, while the antithrombin and antifactor Xa activity is approximately 50% of the control value. Two dimensional immunoelectrophoresis of antithrombin-III-Hamilton in the presence of heparin is normal. Purified antithrombin-III-Hamilton did not form thrombin-antithrombin III complex when incubated with thrombin for up to 30 minutes. The normal and mutant antithrombin III alleles of the propositus could be distinguished by linkage to Pstl restriction fragment length polymorphisms (RFLP). Genomic DNA from the propositus was cloned into EMBL 3 phage vectors and two clones containing nearly complete copies of the antithrombin-III-Hamilton allele were identified. Exon 6 of both clones was subcloned into M13 phage vector and sequenced, revealing a G----A point mutation in the first base of codon 382. Codon 382 codes for alanine in the normal allele and for threonine in the antithrombin-III-Hamilton allele. Alanine-382, 12 residues from the reactive center, is a highly conserved amino acid in the family of serine protease inhibitors known as the serpins. We postulate that, as a result of the substitution of threonine for alanine in antithrombin-III-Hamilton, either the tertiary structure or the hydrophobicity of the thrombin-binding region is altered, causing aberrant conformation of the Arg-393-Ser-394 bond at the reactive center impairing the interaction between antithrombin-III-Hamilton and the activated serine proteases.

Alleles↗

A novel monoclonal antibody based diagnostic test for alpha-thalassemia-1 carriers due to the (-SEA/) deletion.

The presence of minute amounts of embryonic zeta-globin chains in adult hemolysates is a marker for carriers of alpha-thalassemia-1 resulting from (--SEA/) deletion. Recently, we developed a murine monoclonal antihuman embryonic zeta-globin chain antibody, 8E8. By using this antibody, we have now established a slot-blot immunobinding assay for the rapid detection of zeta-globin chains in adult hemolysates. zeta-globin chains were found to be present in 30 blood samples obtained from individuals who were carriers of alpha-thalassemia-1. In another 30 blood samples from individuals who were not carriers of the (--SEA/) deletion, zeta-globin chains were not detected. This simple diagnostic test can be used in appropriate populations to identify those couples at risk of conceiving fetuses afflicted with the Hb Bart's hydrops fetalis syndrome due to homozygous alpha-thalassemia.

Antibodies, Monoclonal↗

Hemophilia B (Christmas disease) variants and carrier detection analyzed by DNA probes.

We have used two strategies to study 14 hemophilia B families from 11 kindreds for possible carrier detection and prenatal diagnosis. First, we sequentially used the Factor IX probes (sequentially with restriction enzymes Taq I, Xmn I, and Dde I), and the linked probes p45h (Taq I), p45d (Pst I), and 52a (Taq I) for restriction fragment length polymorphism (RFLP) analysis. Second, we searched for useful variant Taq I digestion fragments using the Factor IX complementary DNA. Two separate new Taq I variants in exon VIII were identified. Using both strategies, 11 of 14 families (from 9 of 11 kindreds) were informative for further studies. In five kindreds studied in detail, the carrier status of all 11 at risk females was determined and prenatal diagnosis could be offered to the offsprings of each of the six carriers identified. Thus, in this study, we have identified a higher proportion of informative families than has previously been reported.

DNA↗

Hemoglobin barts hydrops fetalis syndrome.

A 25 year old Vietnamese-Canadian pregnant woman was referred to our regional perinatal center at 31 weeks gestation after a routine ultrasound examination showing fetal ascites. A diagnosis of non-immune hydrops fetalis was made, and a Caesarean section was performed two days after hospital admission. An infant with Hb Barts hydrops fetalis was delivered who expired one hour after birth. alpha-Globin gene mapping of fetal DNA confirmed the diagnosis of homozygous alpha-thalassemia with deletion of all four alpha-globin genes. Both parents were shown to have alpha-thalassemia trait with deletion of both alpha-globin genes on one chromosome. This report further illustrates the need for a simple screening test for couples at risk of giving birth to infants with homozygous alpha-thalassemia. The availability of such a test would facilitate genetic counselling and prenatal diagnosis, thereby improving the quality of obstetrical care provided to these women at risk.

Adult↗

Embryonic zeta-globin chains in adults: a marker for alpha-thalassemia-1 haplotype due to a greater than 17.5-kb deletion.

Hemolysates from adults with the alpha-thalassemia-1 haplotype due to the greater than 17.5-kb deletion of both alpha-globin genes from the same chromosome were found to contain embryonic zeta (zeta)-globin chains (alpha-globin-like chains), as determined by a specific and sensitive radioimmunoassay and an electrophoretic technique. zeta-Globin chains were not present in hemolysates from adults with deletion of a single alpha-globin gene from one or both chromosomes. These results indicate that zeta-globin chains, which can be assayed by immunologic techniques, can serve as markers for the alpha-thalassemia-1 haplotype due to the greater than 17.5-kb deletion. The ability to detect zeta-globin chains may be useful in populations in which the gene frequency of the greater than 17.5-kb deletion is high, for screening couples at risk of having offspring with homozygous alpha-thalassemia.

Adult↗

Properties of the earliest clonogenic hemopoietic precursors to appear in the developing murine yolk sac.

We have found that a variety of clonogenic hemopoietic cells can be obtained in a viable state from mouse conceptuses as early as day 7 of gestation when tissues are disaggregated in a crude collagenase solution containing fetal bovine serum. Examination of the time course of colony formation, and the ultimate size and lineages represented in colonies produced in semisolid medium containing methylcellulose, together with analysis of individual erythroid colonies stained with rabbit antisera specific for adult (HbA) and embryonic (HbE) mouse hemoglobins, revealed the presence on days 7 and 8 of gestation (but not later) of erythropoietic progenitors that give rise to mature erythroid colonies containing up to 100 HbE-containing erythroblasts after 4-6 days of growth in culture. These progenitors are highly sensitive to the disaggregation conditions used. Clonogenic progenitors of exclusively HbA-positive erythroblasts can also be detected in the day-7 conceptus. Assays of progenitors from separately disaggregated yolk sacs and embryos from day-8 conceptuses yielded colonies only from yolk sac suspensions, and again these contained either HbE- and HbA-positive erythroblasts or only HbA-positive erythroblasts. These findings demonstrate the very early appearance in the yolk sac of a population of erythroid progenitors with a number of unique properties. Although most of these yield HbE-positive erythroblasts in vitro, some produce erythroblasts containing HbA only. Such a developmental pattern is consistent with the hypothesis that definitive erythropoiesis in the mammalian fetal liver is derived from stem cells that originate in the yolk sac blood islands.

Animals↗

Hemoglobin switching during murine embryonic development: evidence for two populations of embryonic erythropoietic progenitor cells.

Explants of normal mouse embryonic tissues and disaggregated embryonic single cells were cultured in vitro to study the erythropoietic progenitor cells present during embryonic development. The results indicate that there are two populations of erythropoietic progenitor cells committed to different hemoglobin synthetic programs. These progenitor cells are present at an early gestational stage prior to the formation of the fetal hepatic primordium. One population of progenitors can be stimulated by erythropoietin alone to form usually small erythroid colonies after culture for six days in vitro. These erythroblasts primarily synthesize embryonic hemoglobins, but produce some adult hemoglobins as well. The other population of progenitors requires stimulation by both erythropoietin and adult spleen cell-conditioned medium, and usually forms large erythroid colonies after culture for six days in vitro. These erythroblasts produce only adult hemoglobins.

Animals↗

Ontogeny of the mouse hemopoietic system.

In summary, we have shown that clonogenic precursors of both primitive and definitive erythroblasts can be isolated from early stage mouse conceptuses and stimulated to form colonies in standard methylcellulose cultures containing Ep and SCCM. These two types of precursors appear to differ not only in their ability to produce HbE-synthesizing progeny, but also in their innate sensitivity to physical or enzymatic treatment, and in their maturation kinetics and differential responsiveness to SCCM. On the basis of sequential studies of the distribution of these precursors in the yolk sac, early circulation and fetal liver it appears most likely that in the mouse, both primitive and definitive hemopoietic cells originate extra-embryonically in the yolk sac blood islands. We suggest that commitment to primitive erythropoiesis is an early transient event that leads to the rapid and exclusive production of primitive erythroblasts. All other cells become committed to definitive erythropoiesis and this decision may precede actual restriction of differentiation potential to the erythroid lineage. As a result only definitive pluripotent stem cells enter the circulation and hence seed the other hemopoietic tissues.

Animals↗

Human embryonic zeta-globin chains in adult patients with alpha-thalassemias.

Human embryonic zeta-globin chains are alpha-globin-like chains that are normally present during the first three months of gestation. In this investigation, zeta-globin chains measured by a specific and sensitive radioimmunoassay and by an electrophoretic technique were found to be present in all 7 patients studied with hereditary Hb H disease, and in 8 out of 24 patients with alpha-thalassemia trait. zeta-Globin chains were not detected in 20 other patients with beta-thalassemia trait. These results suggest that the deletion of two alpha-globin genes on the same chromosome is accompanied by the continued expression of embryonic zeta-globin genes in adult individuals.

Adolescent↗

Anemia associated with rheumatoid disease. Inverse correlation between erythropoiesis and both IgM and rheumatoid factor levels.

Cell culture techniques were used to evaluate the number of erythroid colonies formed by circulating progenitor cells from 24 patients with rheumatoid disease and controls. A highly significant inverse correlation was demonstrated between erythroid colony counts and serum IgM and rheumatoid factor concentrations in the rheumatoid patients. The potential role of these factors in the pathogenesis of the anemia of rheumatoid disease is discussed.

Adolescent↗

Adult hemoglobins are synthesized in murine fetal hepatic erythropoietic cells.

The hemoglobins present in murine fetal hepatic erythroblasts on days 12-15 of gestation were studied by biochemical and immunocytologic techniques. In addition, fetal hepatic hemopoietic progenitor cells obtained from normal and mutant f/f mouse fetuses on days 11-13 of gestation were cultured in vitro with added erythropoietin and adult spleen cell conditioned medium to form large erythroid colonies. In all instances, adult hemoglobin synthesis was detected in the fetal hepatic erythroblasts and in the erythroid cell cultures in vitro. The tumor promoter, 12-O-tetradecanoylphorbol 13-acetate, enhanced the fetal hepatic erythroid colony growth in vitro, but did not alter the hemoglobin phenotypic expression.

Aging↗

Adult hemoglobins are synthesized in erythroid colonies in vitro derived from murine circulating hemopoietic progenitor cells during embryonic development.

Circulating peripheral blood cells and disaggregated yolk sac cells were obtained from normal mouse embryos as early as day 9 of gestation, prior to the formation of the fetal liver. These were cultured in vitro in plasma clots or methylcellulose, in the presence of either embryonic fluid or adult spleen cell-conditioned medium, with or without added erythropoietin. Large erythroid colonies were observed by the sixth day of culture. In all instances, these erythroid colonies synthesized adult hemoglobins. These results indicate that erythroid progenitor cells committed to adult hemoglobin synthesis are present in early embryonic circulation.

Animals↗

Abnormal erythroid progenitor cells in human preleukemia.

Ten patients with preleukemia were studied by the erythroid cell clonal culture technique. In nine of these patients, erythroid colonies derived from peripheral blood BFU-E were not observed, while the other patient had markedly decreased peripheral blood BFU-E-derived erythroid colonies in vitro. In three patients, marrow cells were also cultured and no BFU-E-derived erythroid colonies were detected. These studies indicate that immature erythroid progenitor cells, BFU-E, in patients with preleukemia are either markedly decreased in number or grossly defective in their proliferative or differentiative capacities.

Adult↗

Effect of modulators of erythropoiesis on the hemoglobinization of human erythroid cell cultures.

A rapid spectrophotometric assay capable of detecting the hemoglobin content of 1000 mature erythrocytes has been utilized to quantitate the total hemoglobin synthesized by the progeny of circulating human erythroid progenitors in both the plasma clot and methylcellulose culture systems. The pronounced variation in the effect of different erythropoietin preparations on the hemoglobin content of cultured human peripheral blood bursts, previously described in a subjective manner, has been objectively quantitated. Further experiments demonstrated that both lymphocyte conditioned media and dexamethasone substantially increased the total hemoglobin synthesized by the progeny of cultured erythroid progenitors. The elevated amount of hemoglobin present in erythroid cultures containing either lymphocyte conditioned media and/or dexamethasone was due to both increased colony numbers and colony size. Assay of the total hemoglobin content per erythroid culture is an accurate, sensitive, measure of erythropoiesis in vitro and should be a valuable adjunct to the enumeration of BFU-E-derived erythroid colonies.

Cells, Cultured↗

A molecular defect in two families with hemolytic poikilocytic anemia: reduction of high affinity membrane binding sites for ankyrin.

Patients from two families with chronic hemolytic anemia have been studied. The erythrocytes are very fragile and appear microcytic with a great variety of shapes. Clinical evaluation failed to identify traditionally recognized causes of hemolysis. Sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) showed no significant abnormality of the major polypeptide bands. Erythrocytes spectrin-ankyrin and ankyrin-membrane interactions were analyzed with 125I-labeled spectrin, 125I-labeled ankyrin, and inside-out vesicles. Patients' vesicles bound 125I-spectrin normally. Likewise, patients' spectrin and ankyrin competed normally for the binding sites on control membranes. None of the individual components appeared to have abnormal thermal sensitivity. Ankyrin-stripped, inside-out vesicles prepared from the patients bound less 125I-ankyrin than did vesicles prepared from normals (P less than 0.05 for all corresponding points in the high-affinity region). Scatchard analysis showed the most significant abnormality to be a 50% reduction in the high affinity ankyrin binding sites. Similar experiments were performed with blood from patients with spherocytosis and splenectomized controls, but no abnormalities were detected. The water soluble 43,000-dalton fragments of band 3 (the high-affinity ankyrin binding sites) were prepared from one of the patients and competed normally for 125I-ankyrin binding in solution. This suggests that the primary structural defect is a reduction in the number of high affinity membrane binding sites for ankyrin, and is consistent with an abnormal organization of band 3 in the membrane.

Adult↗

Proportion of fetal hemoglobin synthesis decreases during erythroid cell maturation.

Peripheral blood mononuclear cells from pregnant and postpartum women were cultured in vitro with erythropoietin. Burst-forming unit (BFU-E)-derived erythroid colonies composed of immature erythroblasts with low hemoglobin contents were observed by day 8 of culture. By day 12 of culture, numerous BFU-E-derived erythroid colonies with high hemoglobin contents were present. The gamma/(gamma + beta) globin synthetic ratio was approximately 12% in the early cultures and 6% in the late cultures, indicating that the proportion of fetal hemoglobin synthesis decreases during erythroid cell maturation. These studies also reveal that the capacity fof fetal hemoglobin production by peripheral blood BFU-E in vitro is not altered during pregnancy.

Cells, Cultured↗

Unequal alpha and beta globin mRNA in reticulocytes of normal and mutant f/f fetal mice.

Messenger RNA (mRNA) was isolated from adult as well as normal and mutant f/f fetal mouse reticulocytes by poly-U affinity chromatography. mRNA from normal adult reticulocytes directed equal synthesis of alpha and beta globin chains in wheat germ cell free translational system. mRNA from either normal or mutant f/f fetal reticulocytes directed 40% more alpha globin synthesis than beta globin synthesis. These observations are suggestive that there is significantly more alpha mRNA than beta mRNA in normal and mutant f/f fetal mouse reticulocytes.

Animals↗