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Biomedical subjects

K M Shannon

Publications and source records attributed to K M Shannon.

At least 19 recordsLinked to original sources

Monosomy 7 myeloproliferative disease in children with neurofibromatosis, type 1: epidemiology and molecular analysis.

Loss of constitutional heterozygosity is a common molecular feature of cancers in which inactivation of one or more tumor suppressor genes is thought to contribute to tumorigenesis. Recent evidence suggests that the gene responsible for neurofibromatosis, type 1 (NF-1), belongs to this class of heritable cancer genes. Children with NF-1 show an increased incidence of myeloid leukemia, including juvenile chronic myelogenous leukemia (JCML) and, perhaps, the myeloproliferative syndrome (MPS) associated with bone marrow monosomy 7 (Mo 7). We have investigated five children with Mo 7: three with NF-1 and two others with suggestive evidence of NF-1. Southern blotting experiments performed in four patients showed no loss of heterozygosity in bone marrow specimens using probes linked to the NF-1 locus on the long arm of chromosome 17. Both of our patients with familial NF-1 inherited the disease from their mothers, as did 14 of 19 other cases of myeloid leukemia in children with familial NF-1. Seventeen of these 21 children were boys. Myeloid leukemia developed in 12 boys and four girls who inherited NF-1 from their mothers, and in five boys who inherited the disease from their fathers. Father-to-daughter transmission was not observed. Taken together, the presence of chromosome 7 deletions in the leukemias of children with NF-1, a pattern of inheritance favoring maternal transmission of NF-1, and the marked predilection for boys to develop JCML and Mo 7 suggest a multistep mechanism of oncogenesis in which epigenetic factors might play a role. Further investigation is required to determine if the NF-1 genes in the leukemic bone marrows of these patients have acquired point mutations or small deletions.

Blotting, Southern

Enhancement of erythropoiesis by recombinant human erythropoietin in low birth weight infants: a pilot study.

We randomly assigned eight concurrently symptom-free premature infants (birth weight less than or equal to 1250 gm) at high risk of requiring erythrocyte transfusions for anemia of prematurity to 6 weeks of intensive treatment with either subcutaneous recombinant human erythropoietin (r-HuEPO group) or a placebo (control group). Treatment with r-HuEPO was initiated at a dose of 100 units/kg per day 5 days a week, and was increased to 200 units/kg per day after 2 or 3 weeks if target reticulocyte counts were not achieved. All patients were given supplemental oral iron therapy at a dose of 6 mg/kg per day, as tolerated. Mean reticulocyte counts in r-HuEPO-treated and control infants were 64,600 versus 67,500 cells/mm3 at entry; were 245,600 versus 78,000 cells/mm3 after 1 week; and averaged 262,600 versus 136,400 cells/mm3 during the study. Mean reticulocyte counts in r-HuEPO-treated infants were 251,200 cells/mm3 during the week when r-HuEPO, 100 units/kg per day, was given, and were 269,500 cells/mm3 after the dose was increased to 200 units/kg per day. Mean hematocrit values at entry were 33.4% in babies who received r-HuEPO versus 33.6% in the control subjects, and were 31.4% in r-HuEPO-treated and 25.2% in the control subjects at the end of treatment. One r-HuEPO-treated and three control babies received transfusions during the study; the total volume of blood given was 17 ml in the r-HuEPO group and 101 ml in the control subjects. The percentage of hemoglobin F increased in infants not given transfusions. We conclude that r-HuEPO stimulates endogenous erythropoiesis in small premature babies who are receiving supplemental oral iron therapy. A controlled multicenter trial has been undertaken to confirm these promising preliminary observations.

Anemia, Neonatal

Evidence implicating heterozygous deletion of chromosome 7 in the pathogenesis of familial leukemia associated with monosomy 7.

Complete or partial monosomy 7 is a recurring cytogenetic abnormality in acute myelogenous leukemia (AML) and myeloproliferative syndromes (MPS) and is particularly common in patients with Fanconi's anemia and in secondary AML. A familial form of monosomy 7 has been recognized in which two or more siblings develop MPS or AML before age 20. We tested the hypothesis that a recessive cancer susceptibility locus on chromosome 7 was important in the pathogenesis of leukemia in familial monosomy 7 by determining the parental origins of the chromosome 7 retained in the bone marrows of three pairs of affected siblings. We found no overlapping region where all three pairs retained DNA derived from the same paternal or maternal chromosome. These data suggest that inactivation of a single allele of a putative tumor-suppressor gene may be sufficient to contribute to leukemic transformation in familial monosomy 7.

Adolescent

Potential for treatment of anaemia of prematurity with recombinant human erythropoietin: preliminary results.

There is a high level of erythropoiesis in the growing fetus. In utero relative hypoxia results in a relatively high haematocrit and predominant synthesis of haemoglobin F, with erythropoietin (EPO) produced in the liver regulating erythropoiesis. At birth after full-term pregnancy, fetal EPO concentrations are high, but decline progressively thereafter. In pre-term infants the expected postnatal decline in haemoglobin is more prolonged than in full-term infants and the premature infants may become anaemic. It has been shown in a randomized, double-blinded, placebo-controlled trial that recombinant human erythropoietin (r-HuEPO) at a dose of 100 U/kg given intravenously twice weekly for 6 weeks to infants with anaemia of prematurity produced an earlier increase in reticulocyte counts compared with placebo; however, the difference between treatments was not significant. r-HuEPO therapy did not suppress subsequent release of endogenous EPO. It is concluded that a higher dose of r-HuEPO may be required to treat anaemic premature infants.

Anemia

Recombinant human erythropoietin in the anemia of prematurity: results of a placebo-controlled pilot study.

Experimental and clinical data implicate inadequate erythropoietin production as an important reason that infants acquire this anemia and suggest that recombinant human erythropoietin (r-HuEPO) might be used to treat or prevent it. We therefore randomly assigned 20 small premature infants (birth weight less than or equal to 1250 gm) who were highly likely to require erythrocyte transfusions for anemia of prematurity to receive 6 weeks of treatment with either intravenously administered r-HuEPO (at a dose of 100 units/kg twice each week) or a placebo. Hematologic measurements, transfusion requirements, and growth were followed during therapy and for 6 months thereafter. Treated (EPO) and control babies did not differ with respect to weight, hematocrit, overall mean absolute reticulocyte count, calculated erythrocyte mass, or rate of growth. However, reticulocyte counts increased earlier in patients given r-HuEPO. Six of ten babies in the EPO group, and 8 of 10 assigned to the control group, received at least one erythrocyte transfusion during treatment. For all infants the amount of blood sampled for laboratory tests was strongly predictive of the volume of packed erythrocytes transfused (r = 0.890; p = 0.0001). Of nine infants who had less than 20 ml packed erythrocytes removed for laboratory tests, none of four given r-HuEPO received a transfusion, whereas three of five infants assigned to the placebo group received one. No toxic effects were attributable to r-HuEPO, and no significant changes in leukocyte or platelet counts occurred during treatment. Reticulocyte counts were correlated with simultaneous platelet counts and were inversely related to absolute neutrophil counts in both study groups. We conclude that r-HuEPO administration is safe and feasible at the dose studied. Additional controlled trials utilizing higher doses of r-HuEPO and larger numbers of patients are justified.

Anemia, Neonatal

Inhibition of hematopoietic progenitor colony growth by a monoclonal antibody against the transferrin receptor: comparison of unconjugated antibody with an immunotoxin containing recombinant ricin A chain.

We studied an immunotoxin consisting of recombinant ricin A chain (rRA) conjugated to 454A12 MoAb, a monoclonal antibody which recognizes an epitope on the human transferrin receptor, and compared the ability of 454A12 MoAb-rRA immunotoxin to inhibit the growth of erythroid burst-forming units (BFU-e) and myeloid colony-forming units (CFU-c) with unconjugated 454A12 MoAb. A significant reduction in BFU-e colony growth was observed at 0.001 microgram/ml of 454A12 MoAb-rRA versus 0.1 microgram/ml of unconjugated 454A12 MoAb (p = 0.005). Comparison of the effects of 454A12 MoAb-rRA and 454A12 MoAb on myeloid colony development gave markedly different results. Unconjugated antibody had no effect on CFU-c colony growth; in contrast, 0.01 microgram/ml of 454A12 MoAb-rRA reduced the number of colonies from 139 per 1 X 10(5) to 75 per 1 X 10(5) cells plated (p = 0.0005). No myeloid progenitor colonies developed at 0.1 microgram/ml of immunotoxin. These observations suggest that 454A12 MoAb-rRA inhibits growth by a potent, ricin A chain-mediated toxic effect on any proliferating cells expressing transferrin receptors, whereas the 454A12 MoAb exerts a selective inhibitory effect primarily on erythroid progenitors by perturbing the transferrin cycle. While growth factor receptors expressed on hematopoietic cells represent promising targets for immunotoxin therapy, our data indicate that an immunotoxin could inhibit cellular proliferation by a different mechanism than the corresponding unconjugated MoAb. Depending on the antibody used, these differences may be important in trials using immunotoxins for in vivo treatment or in vitro purging of malignant hematopoietic cells.

Antibodies, Monoclonal

Hemiballismus.

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Animals

Anemia of prematurity: progress and prospects.

Recombinant human erythropoietin (r-HuEPO) is of interest to pediatric hematologists and neonatologists because it may prove to be an effective alternative to blood transfusions in preventing and treating anemia in premature infants. The anemia of prematurity is the most promising setting for initial clinical trials. However, it is conceivable that recombinant erythropoietin will be given at birth to low-birth-weight infants in an effort to stimulate endogenous erythropoiesis and thereby prevent some of the erythrocyte transfusions required to replace blood sampled for laboratory tests. Beyond its appeal as a therapeutic alternative to red blood cell transfusions, recombinant human erythropoietin is likely to be the first member of an entirely new class of drugs to be used widely in neonatal medicine. These are drugs produced by cloning normal human genes and expressing them in the laboratory. Because many of the problems of premature birth are caused by developmental immaturity, transiently replacing crucial proteins with exact copies produced by the techniques of recombinant DNA technology is an approach that may have a major impact on morbidity and mortality of neonates. Carefully designed, controlled clinical trials will be essential to determine the role of new agents like r-HuEPO in the treatment of medical problems of premature infants.

Anemia

Age-related differences in erythropoietic response to recombinant human erythropoietin: comparison in adult and infant rhesus monkeys.

Human recombinant erythropoietin (r-HuEPO) was given i.v. to rhesus monkeys to compare its safety, erythropoietic effects, and pharmacokinetics in healthy adult and infant animals. Eighteen adult and 18 infant (9- to 15-d-old) monkeys were divided into three groups each of six animals. One group was given 250 U/kg twice weekly, another was given 100 U/kg twice weekly, and a control group was given the drug vehicle for 6 wk. All animals were healthy throughout this period, and for 10 wk after that. Administration of r-HuEPO at these dosages did not produce any changes in leukocytes, platelets, urea nitrogen, bilirubin, creatinine, alkaline phosphatase, alanine amino transferase, gamma-glutamyl transferase, and blood pressure in either age group. At 6 wk, both adult treatment groups had statistically significant increases in Hb concentration. The same dosages that produced these increases in Hb concentration in adults produced no changes in Hb concentration in infant monkeys. Despite active erythropoiesis, as determined by reticulocytosis and increased total body Hb, Hb concentration decreased similarly in the infant treatment and control groups. Pharmacokinetic profiles were obtained at 5 wk of dosing. One h after administration, both doses of r-HuEPO produced significantly lower serum r-HuEPO concentration in the infant monkeys compared with the adults. These differences appeared to be due to a larger volume of distribution of r-HuEPO in the infant monkeys. The t1/2 of r-HuEPO in circulation was the same in both age groups.

Age Factors

Adrenal medullary transplant to the striatum of patients with advanced Parkinson's disease: 1-year motor and psychomotor data.

We studied motor and psychomotor changes over 1 year after surgery in 7 patients with severe idiopathic Parkinson's disease (PD) who underwent intrastriatal autologous adrenal medulla transplant. Significant clinical improvements were present 1 year after surgery and primarily involved increased quantity of "on" time and increased quality of "off" time: "on" time increased from a mean 60.7% of the waking day to 82.7%, and "off" function improved. In contrast, although "on" function also improved, statistically significant improvement occurred in only 1 measure, the Unified Parkinson's Disease Rating Scale activities of daily living subscale. Medications did not change, and motor fluctuations persisted. Improvement began several weeks after surgery, was maximal at 4 to 6 months, and was sustained thereafter. There was significant group improvement in quality of life measures of sleep and rest, social isolation, and ambulation. One patient had severe, recurrent depression postoperatively. The efficacy of adrenal transplant surgery is not transient, and specific functional improvements can be prolonged.

Activities of Daily Living

Recombinant erythropoietin in pediatrics: a clinical perspective.

Recombinant human erythropoietin represents a potential therapeutic alternative to red blood cell transfusions in a number of pediatric anemias. It is effective in correcting anemia associated with chronic renal failure and may significantly reduce the morbidity associated with childhood CRF. Most exposures to allogeneic blood products in pediatrics for treatment of anemia with blood transfusions occur in neonatal intensive care units. If proven effective in treating anemia in premature babies, r-HuEPO will be responsible for a major reduction in the use of blood transfusions in clinical neonatology. Carefully designed, placebo-controlled clinical trials will be required to establish the role of r-HuEPO in anemia of prematurity. Recombinant human erythropoietin also may be useful to increase the amount of blood that can be collected before elective surgical procedures. Another potential indication is to raise the hematocrits of infants with large intracardiac shunts who develop congestive heart failure coincident with the developmental fall in hemoglobin concentration after birth. Finally, r-HuEPO may one day play a role in modifying the expression of globin genes and, thereby, ameliorate the course of sickle cell disease and beta thalassemia. Many questions surrounding the use of r-HuEPO in infancy and childhood are being addressed in ongoing clinical trials.

Anemia

Multicenter study of autologous adrenal medullary transplantation to the corpus striatum in patients with advanced Parkinson's disease.

In 19 patients with severe Parkinson's disease, we replicated the surgical procedures developed by Madrazo et al. for transplantation of the adrenal medulla to the striatum, and followed them for six months after operation. We monitored their motor function with the use of standardized scales and determined the amount and quality of "on" and "off" time (the hours of the waking day when the antiparkinsonian medications were effective and ineffective, respectively). We found significant improvement in focal areas of motor function. The mean percentage of on time during the day increased from 47.6 percent to 75.0 percent (P = 0.012); the mean percentage of on time without chorea increased from 26.6 percent to 59.2 percent (P = 0.006); the mean severity of off time decreased as assessed by both the Activities of Daily Living subscale of the Unified Parkinson's Disease Scale (P = 0.002) and the Schwab and England scale (P = 0.037). In contrast to the finding of Madrazo et al., however, the dosages of antiparkinsonian medications could not be decreased and postoperative morbidity was substantial. Despite cautious optimism, we conclude that the widespread use of this procedure outside of research centers is premature, since the improvement we found was slighter than in the previous cases.

Activities of Daily Living

Familial bone marrow monosomy 7. Evidence that the predisposing locus is not on the long arm of chromosome 7.

Loss of expression of a tumor-suppressing gene is an attractive model to explain the cytogenetic and epidemiologic features of cases of myelodysplasia and acute myelogenous leukemia (AML) associated with bone marrow monosomy 7 or partial deletion of the long arm (7q-). We used probes from within the breakpoint region on 7q-chromosomes (7q22-34) that detect restriction fragment length polymorphisms (RFLPs) to investigate three families in which two siblings developed myelodysplasia with monosomy 7. In the first family, probes from the proximal part of this region identified DNA derived from the same maternal chromosome in both leukemias. The RFLPs in these siblings diverged at the more distal J3.11 marker due to a mitotic recombination in one patient, a result that suggested a critical region on 7q proximal to probe J3.11. Detailed RFLP mapping of the implicated region was then performed in two additional unrelated pairs of affected siblings. In these families, DNA derived from different parental chromosome 7s was retained in the leukemic bone marrows of the siblings. We conclude that the familial predisposition to myelodysplasia is not located within a consistently deleted segment on the long arm of chromosome 7. These data provide evidence implicating multiple genetic events in the pathogenesis of myelodysplasia seen in association with bone marrow monosomy 7 or 7q-.

Adolescent

Agonist substitution in advanced Parkinson's disease.

We studied whether Parkinson's disease patients who had lost efficacy from pergolide (PERG) could benefit if transferred to bromocriptine (BCT) therapy. Using paired t-tests, we compared motor scores at baseline (when patients were still on PERG) and after 6 months of BCT therapy in 11 patients. No significant improvement occurred in any measure on BCT therapy (mean dose 33.6 mg/day), although patients remained stable. In 6 patients on whom "on/off" data were obtained, decreased "off" time and increased "on" time without chorea occurred, but these changes were not statistically significant. The side effect profile was similar with the 2 drugs.

Aged

Spontaneous resolution of primary erythrocytosis in two girls.

We report two girls with primary erythrocytosis in whom extensive diagnostic studies revealed no underlying cause. Normal growth of colonies derived from erythroid burst forming units (BFU-E) was observed, and serum erythropoietin concentrations were within or below the normal range. The absence of a rise in serum erythropoietin levels after isovolemic phlebotomy implicated the erythroid marrow as the site of the pathophysiologic abnormality in both patients. Spontaneous resolution of erythrocytosis occurred during the second decade of life. Our experience suggests that primary erythrocytosis may be self-limited in some children. In these cases, the proliferative abnormality may be sufficiently subtle as to not be detected by standard in vitro culture systems, which support the growth of colonies derived from erythroid progenitors.

Aging

Rejection of bone marrow transplant and resistance of alloantigen reactive cells to in vivo deoxyadenosine in adenosine deaminase deficiency.

Severe combined immunodeficiency disease (SCID) in patients with adenosine deaminase (ADA) deficiency is thought to result from increased levels of purine metabolites. We attempted to immunosuppress a patient with ADA deficiency and SCID using a continuous infusion of deoxyadenosine to obtain engraftment of a T cell-depleted haplocompatible parental bone marrow graft. Before administering the drug in vivo, we investigated hematopoietic colony formation in two children with ADA deficiency (including the potential recipient), the obligate heterozygote donor (father), and normal controls using deoxyadenosine and erythro-9-(2-hydroxy-3-nanyl)adenosine (EHNA), and inhibitor of ADA. Deoxyadenosine alone in concentrations as high as 100 microM had no significant affect on erythroid (BFU-E) or myeloid (CFU-c) colony formation. However, in the presence of EHNA there was a significant reduction in BFU-E and CFU-c growth in all subjects and controls. Increasing doses of deoxyadenosine were given to one patient with ADA deficiency and SCID as a continuous 24-hr intravenous infusion. We found that there was a linear relationship between the dose administered and the plasma level; however, doses greater than 100 mg/day were required to increase erythrocyte dATP levels. We were able to raise intracellular dATP levels to more than three times baseline with doses of deoxyadenosine of 200 mg/day. However, there were no significant effects on the absolute lymphocyte counts or the lymphocyte responses to mitogen or alloantigen, and the haploidentical marrow failed to engraft. Our results suggest that the bone marrow of ADA-deficient patients is normal with respect to standard colony formation, that inhibitors of ADA do not adequately model the deficient state, and that the immunodeficiency in ADA deficiency is not proportionately related to either the deoxyadenosine or dATP levels, both of which were significantly elevated at the time of transplantation.

Adenosine Deaminase