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Biomedical subjects

W H Raskind

Publications and source records attributed to W H Raskind.

52 records · Page 3Linked to original sources

Clonal analysis of childhood acute lymphoblastic leukemia with "cytogenetically independent" cell populations.

Acute lymphoblastic leukemia (ALL) is generally regarded as a clonal disease in which a single abnormal progenitor cell gives rise to neoplastic progeny. Five of 463 cases of childhood ALL with adequately banded leukemic cells were found to have two cytogenetically independent cell populations. In addition, two of the four cases tested had more than two rearranged immunoglobulin genes and (or) T cell receptor genes. To investigate the clonality of these unusual leukemias, we examined the neoplastic cells for X-linked markers extrinsic to the disease. Leukemic cells from each of the three patients heterozygous for an X-linked, restriction fragment length polymorphism showed a single active parental allele, suggesting that both apparently independent cell populations developed from a common progenitor. These cases provide evidence that leukemogenesis involves a multistep process of mutation and suggest that karyotypic abnormalities may be a late event of malignant transformation.

Alleles↗

T(8;21) with a phenotype of chronic myeloid leukemia.

A myeloproliferative disorder having the phenotype of chronic myeloid leukemia (CML) with t(8;21) is reported. Neither t(9;22) nor a DNA rearrangement in the bcr region was detected. The presence of t(8;21), in contrast with previous experience, does not appear to prevent full maturation of the granulocytic series.

Aged↗

Host origin of marrow stromal cells obtained from marrow transplant recipients and transformed in vitro by simian virus-40.

We evaluated the karyotypes of marrow-derived stromal cell lines established by simian virus-40 (SV-40) transformation of long-term cultures from four men who received marrow transplants from women donors. In all cases a normal female karyotype was found in marrow cells. In contrast, a Y chromosome was identified in metaphase cells from the stromal lines, suggesting that following successful marrow transplantation, cells in the marrow microenvironment susceptible to SV-40 transformation remain host in origin.

Bone Marrow Cells↗

The effect of long-term marrow culture on the origin of colony-forming cells in acute myeloblastic leukemia: studies of two patients heterozygous for glucose-6-phosphate dehydrogenase.

Long-term marrow cultures (LTMCs) provide a selective growth advantage for cytogenetically normal cells in patients with acute and chronic myeloid leukemias. In the present study, LTMCs were established from two patients with newly diagnosed acute myeloid leukemia (AML) who were heterozygous for the X-linked enzyme glucose-6-phosphate dehydrogenase (G6PD). Initially only leukemic clusters grew from cells plated in semisolid medium, but after 1 or more weeks in LTMC, morphologically normal granulocyte-macrophage colonies were detected. Nonetheless, in one of the patients, more than 80% of these colonies expressed the G6PD type observed in the leukemic blast cells, indicating a probable neoplastic derivation for many of them. In the second patient, colonies cultured during the first 3 weeks of the LTMC were predominantly derived from clonal progenitors, whereas after week 4 the colonies were derived from normal stem cells. Colonies derived from clonal or normal stem cells were not morphologically distinguishable. These data support the conclusion that LTMC has a selective anti-leukemic effect on marrow cells from some patients. However, normalization of colony growth is by itself not a sufficient criterion for determination of whether committed progenitor cells from patients with AML are derived from normal or leukemic stem cells.

Bone Marrow↗

Clonal development, stem-cell differentiation, and clinical remissions in acute nonlymphocytic leukemia.

To determine whether acute nonlymphocytic leukemia develops clonally, to study the pattern of differentiation of the involved stem cells, and to determine whether clinical remissions are true remissions, we studied 27 patients with acute nonlymphocytic leukemia who were heterozygous for the X-chromosome-linked glucose-6-phosphate dehydrogenase. In each case, leukemic blast cells manifested only one type of glucose-6-phosphate dehydrogenase, indicating that the malignant process had developed from a single cell. In six elderly patients, circulating erythrocytes, platelets, or both expressed only the glucose-6-phosphate dehydrogenase found in blast cells, indicating that these leukemias had arisen from stem cells with multipotent differentiative expression. In 16 younger adults and children, erythroid cells and platelets were predominantly derived from normal stem cells. In three other cases, the stem cell that gave rise to leukemic blasts apparently also gave rise to erythroid progenitors but not to mature erythrocytes. Heterogeneity was also found during remissions. In 8 of 13 patients, restoration of nonclonal hemopoiesis and repopulation of the marrow by normal stem cells was observed during remission. In the other five patients, marrow stem cells remained partially or completely clonal, even during remission. These data indicate that acute nonlymphocytic leukemia is a heterogeneous disease with respect to differentiation of the stem cells involved by leukemia and the nature of remissions.

Acute Disease↗

Correlation between cytogenetic and molecular findings in human chronic myelogenous leukemia lines EM-2 and EM-3.

Few established cell lines derived from patients with chronic myelogenous leukemia have been reported. Cytogenetic examinations of two independently derived Philadelphia chromosome (Ph)-positive cell lines from a patient with chronic myelogenous leukemia were performed serially from their initiation in 1982 to the present. Subcultures of each of these lines maintained separately in two laboratories for over 2 years were compared for degree of divergence. The modal chromosome number declined substantially within the first few months and slowly thereafter. Despite hyperploidy, these lines have remained remarkably stable cytogenetically. For each line, the modal chromosome number is hypotetraploid, multiple copies of Ph are present and no normal chromosome #9 remains. Only a few marker chromosomes have arisen. Despite the multiple copies of Ph, a single bcr restriction pattern was seen, suggesting duplication of a single Ph, rather than independent translocation events. These lines should be very useful for in vitro studies of chronic myelogenous leukemia.

Cell Line↗

Polysymptomatic complaints and Briquet's syndrome in polycystic ovary disease.

To test the hypothesis that there is an association between polycystic ovary disease and Briquet's syndrome, the authors administered a health questionnaire to infertile women with polycystic ovary disease, infertile women with tubal disease, and normal women. The patients with polycystic ovary disease endorsed significantly more physical and psychological complaints than either control group. Structured interviews revealed that five of the 39 (13%) met diagnostic criteria for definite or probable Briquet's syndrome. This study gives support to an association between polysymptomatic complaints, Briquet's syndrome, and polycystic ovary disease.

Adult↗

Evidence for the involvement of B lymphoid cells in polycythemia vera and essential thrombocythemia.

Previous studies with the X-chromosome-linked glucose-6-phosphate dehydrogenase (G6PD) as a marker of cellular mosaicism demonstrated that polycythemia vera (PV) and essential thrombocythemia (ET) are clonal disorders of hematopoietic stem cells that can differentiate to erythrocytes, granulocytes, and platelets. To determine if the involved stem cells could also differentiate along the B-lymphoid pathway, we studied one woman with PV and one woman with ET. Of 117 Epstein-Barr virus-transformed B-lymphoblastoid lines expressing a single G6PD derived from the patient with PV, 108 expressed G6PD type A, the type characteristic of the abnormal clone. The ratio of 108:9 was significantly different from the one to one ratio predicted for this patient, which suggested that at least some circulating progenitors for B-lymphoid cell lines differentiate from the stem cell involved by the disease. Results obtained from the patient with ET were similar--104 of the 109 lymphoblastoid lines monotypic for G6PD expression displayed the enzyme type found in the abnormal clone of marrow cells. Therefore, in these patients, PV and ET, like chronic myelogenous leukemia, involve a stem cell pluripotent for the lymphoid as well as the myeloid series.

Adult↗

Heterogeneity of B cell involvement in acute nonlymphocytic leukemia.

In order to study the pattern of B cell involvement in acute nonlymphocytic leukemia (ANLL), multiple B lymphoid cell lines were established by Epstein-Barr virus transformation of peripheral blood mononuclear cells from two patients with the disease who were heterozygous for the X chromosome-linked glucose-6-phosphate dehydrogenase (G6PD). In one patient, the progenitor cells involved by the leukemia exhibited multipotent differentiative expression, whereas in the other patient the cells showed differentiative expression restricted to the granulocytic pathway. In the patient whose abnormal clone showed multipotent expression, the ratio of B-A G6PD in B lymphoid cell lines was skewed in the direction of type B (the enzyme characteristic of the leukemia clone) and significantly different from the 1:1 ratio expected. It is, therefore, likely that the neoplastic event occurred in a stem cell common to the lymphoid series as well as to the myeloid series. In contrast, evidence for B cell involvement was not detected in the patient whose ANLL progenitor cells exhibited restricted differentiative expression. These findings underscore the heterogeneity of ANLL. Clinically and morphologically similar malignancies in these two patients originated in progenitors with different patterns of stem cell differentiative expression. This difference may reflect differences in cause and pathogenesis.

Acute Disease↗

Pancytopenia as a clonal disorder of a multipotent hematopoietic stem cell.

Hematopoiesis was investigated in a 14-yr-old girl who had a 2-yr history of stable asymptomatic pancytopenia and who was also heterozygous at the structural locus for glucose-6-phosphate dehydrogenase (G-6-PD). There was no morphologic or cytogenetic evidence for preleukemia and no suggestion of Fanconi anemia. In the skin and sheep erythrocytes-rosetted T lymphocytes, the ratio of G-6-PD A/B activities was 1:1. However, only type B activity was found in peripheral blood erythrocytes, granulocytes, and platelets. Most erythroid bursts and all granulocyte/macrophage colonies formed in methylcellulose culture were derived from the abnormal clone. These findings demonstrate that (a) some cases of pancytopenia are stem cell diseases that apparently develop clonally; (b) circulating differentiated cells originate from this clone; (c) despite a hypoproliferative anemia, the in vivo expression of presumably normal (nonclonal) progenitors is suppressed. In this patient, the relationship between clonal dominance and possible malignancy may be assessed prospectively.

Bone Marrow↗

Evidence for a multistep pathogenesis of a myelodysplastic syndrome.

Somatic cell genetic approaches utilizing the cellular mosaicism present in women heterozygous for glucose-6-phosphate dehydrogenase (G6PD) have provided information relevant to the pathogenesis of some neoplastic disorders. With these techniques, we studied a 61-year-old woman with a myelodysplastic syndrome. GdB/GdA heterozygosity was demonstrated in skin and cultured T lymphocytes, which exhibited both A and B type G6PD. In contrast, erythrocytes, platelets, granulocytes, and marrow nucleated cells displayed almost exclusively G6PD type B. In addition, 21 of 24 Epstein-Barr virus-transformed B lymphoblastoid lines that expressed a single immunoglobulin light chain showed only type B G6PD, suggesting that the stem cells involved by this disease were clonal and could differentiate to B lymphocytes as well as to mature granulocytes, erythrocytes , and platelets. Cultured skin fibroblasts and phytohemagglutinin-stimulated lymphocytes were karyotypically normal, but two independent abnormalities were found in marrow--47,XX, +8 and 46,XX,del(11)(q23). None of 14 type B G6PD lymphoblastoid lines analyzed in detail contained these karyotypic abnormalities, which strongly suggests that a visible chromosomal alteration is not the sole step in the development of this disease. We hypothesize that at least two events are involved in the pathogenesis of this patient's myelodysplasia: one causing proliferation of a clone of genetically unstable pluripotent stem cells and another inducing chromosomal abnormalities in its descendants.

Bone Marrow Cells↗

Chronic lymphocytosis with neutropenia: evidence for a novel, abnormal T-cell population associated with antibody-mediated neutrophil destruction.

A 67-year-old man with stable chronic neutropenia, lymphocytosis, multiple auto-antibodies, and recurring infections was studied in order to characterize the abnormal lymphocytes and the mechanism of neutropenia. One-half of the circulating mononuclear leukocytes were large granular lymphocytes that did not rosette with sheep erythrocytes and did not have surface immunoglobulin or receptors for C3 or IgG Fc. Virtually all of the mononuclear leukocytes, however, reacted with three monoclonal antibodies specific for mature T lymphocytes--OKT3, 3A1, and 12.1--the latter with a bimodal pattern on FACS analysis. The nonadherent, non-E-rosetting lymphocytes consisted of a homogeneous population of T cells with a novel phenotype: 3A1+, OKT3+, OKT8+, Ia+, 12.1+, OKT4-, 9.6-, 10.2-, Fc gamma receptor-. The abnormal phenotype of these cells suggested that they may have developed clonally. In spite of their OKT8+ phenotype, these lymphocytes were functionally abnormal, since they did not suppress B-cell immunoglobulin production in vitro. A humoral immune mechanism of neutropenia was indicated by increased levels of neutrophil-reactive IgG and in vivo kinetic studies with autologous neutrophils demonstrating shortened intravascular survival. The granulocyte turnover was normal, however, suggesting a blunted marrow response to the neutropenia. Corroborating the kinetic data, in vitro cultures of the patient's blood and marrow cells showed reduced numbers of granulocytic progenitors (CFU-C). Neither blood lymphocytes nor serum from the patient suppressed growth of allogeneic CFU-C nor did removal of OKT8+ cells from the marrow increase CFU-C expression. Thus, the disorder in this patient is characterized by proliferation of abnormal OKT8+ lymphocytes with impaired suppressor function. Our findings suggest that the neutropenia was due to anti-neutrophil autoantibodies that may have resulted from abnormal T-cell immunoregulation.

Aged↗

X chromosome inactivaton and SV40 transformation of mammalian cells.

Five embryonic mouse cultures and one human fibroblast culture were transformed with SV40. The cultures were studied cytologically to see if the normal pattern of sex chromosome replication was maintained in SV40 transformed cells. Characteristic late replication patterns were observed for both the X and Y chromosomes, and there was no evidence for loss of the inactive X chromosome, even in cells with 4 or more X chromosomes. The human line was heterozygous at two X-linked loci and a clonal analysis showed that the expression of X-linked genes was not affected by SV40 transformation.

Animals↗

The relationship between induced mutation frequency and chromosome dosage in established mouse fibroblast lines.

The frequencies of induced mutation to ouabain (OUA) and 6-thioguanine (6TG) resistance were compared in two established mouse fibroblast lines with different doses of the active X chromosome. The activity states of the X chromosomes were determined by DNA replication studies. Mutation frequency to 6TG R, an X-linked recessive phenotype, was inversely related to dosage whereas OUA R, a codominant phenotpye, occurred with equal frequency in both lines. 6TG R clones isolated from the line containing a majority of cells with two active X chromosomes were monosomic for the active X chromosome. Enzyme activity studies of these cytologically monosomic lines yieled results that were consistent with the presence of a single active X chromosome. The findings strongly support the hypothesis that mutation frequency is dependent on gene dosage.

Alleles↗