Diamond-Blackfan anemia (DBA) is caused by aberrant ribosomal biogenesis due to ribosomal protein (RP) gene mutations. To develop mechanistic understanding of DBA pathogenesis, we studied CD34 + cells from peripheral blood of DBA patients carrying RPL11 and RPS19 ribosomal gene mutations and determined their ability to undergo erythroid differentiation in vitro . RPS19 mutations induced a decrease in proliferation of progenitor cells, but the terminal erythroid differentiation was normal with little or no apoptosis. This phenotype was related to a G 0 /G 1 cell cycle arrest associated with activation of the p53 pathway. In marked contrast, RPL11 mutations led to a dramatic decrease in progenitor cell proliferation and a delayed erythroid differentiation with a marked increase in apoptosis and G 0 /G 1 cell cycle arrest with activation of p53. Infection of cord blood CD34 + cells with specific short hairpin (sh) RNAs against RPS19 or RPL11 recapitulated the two distinct phenotypes in concordance with findings from primary cells. In both cases, the phenotype has been reverted by shRNA p53 knockdown. These results show that p53 pathway activation has an important role in pathogenesis of DBA and can be independent of the RPL11 pathway. These findings shed new insights into the pathogenesis of DBA.
Diamond-Blackfan anemia is a rare inherited bone marrow failure syndrome (five to seven cases per million live births) characterized by an aregenerative, usually macrocytic anemia with an absence or less than 5% of erythroid precursors (erythroblastopenia) in an otherwise normal bone marrow. The platelet and the white cell counts are usually normal but neutropenia, thrombopenia or thrombocytosis have been noted at diagnosis. In 40 to 50% of DBA patients, congenital abnormalities mostly in the cephalic area and in thumbs and upper limbs have been described. Recent analysis did show a phenotype/genotype correlation. Congenital erythroblastopenia of DBA is the first human disease identified to result from defects in ribosomal biogenesis. The first ribosomal gene involved in DBA, ribosomal protein (RP) gene S19 (RPS19 gene), was identified in 1999. Subsequently, mutations in 12 other RP genes out of a total of 78 RP genes have been identified in DBA. All RP gene mutations described to date are heterozygous and dominant inheritance has been documented in 40 to 45% of affected individuals. As RP mutations are yet to be identified in approximately 50% of DBA cases, it is likely that other yet to be identified genes involved in ribosomal biogenesis or other pathways may be responsible for DBA phenotype.
(2000). THROMBOCYTOPENIA WITH ABSENT RADII (TAR SYNDROME): New Advances in the Mechanism of Thrombocytopenia. Pediatric Hematology and Oncology: Vol. 17, No. 7, pp. 521-522.
Hereditary spherocytosis (HS) is the commonest inherited disorder of the erythrocyte membrane in Northern Europe and North America. It is marked by a regenerative anemia which varies widely from asymptomatic patients to severe hemolysis. In 75% of HS patients, inheritance is autosomal dominant. The diagnosis of HS is easily made when there are a family history, hemolytic anemia, reticulocytosis, spherocytes and increased hyperdense cells. Specialized testing to clarify the nature of membrane disorder is required when the film appearance is atypical without a positive family history, in the absence of a family history, in the newborn and before the splenectomy, to rule out the stomatocytosis which is contraindicated. The indication for splenectomy is dependent on the degree of anemia and its clinical manifestation.
Hereditary spherocytosis (HS) is the commonest inherited disorder of the erythrocyte membrane in Northern Europe and North America. It is marked by a regenerative anemia which varies widely from asymptomatic patients to severe hemolysis. In 75% of HS patients, inheritance is autosomal dominant. The diagnosis of HS is easily made when there are a family history, hemolytic anemia, reticulocytosis, spherocytes and increased hyperdense cells. Specialized testing to clarify the nature of membrane disorder is required when the film appearance is atypical without a positive family history, in the absence of a family history, in the newborn and before the splenectomy, to rule out the stomatocytosis which is contraindicated. The indication for splenectomy is dependent on the degree of anemia and its clinical manifestation.
La sphérocytose héréditaire (SH) est la maladie constitutionnelle du globule rouge (GR) la plus fréquente en Europe du Nord et en Amérique du Nord. Elle se manifeste par une anémie régénérative de gravité très variable selon les individus. Sa transmission est dominante dans 75 % des cas. Son diagnostic est aisé lorsqu’il existe des antécédents familiaux associés à une anémie régénérative hémolytique avec présence de sphérocytes et un excès de cellules hyperdenses. Un test spécifique de confirmation du diagnostic est nécessaire en cas : (1) d’antécédent familial de SH si le décompte des cellules hyperdenses n’est pas réalisable ; (2) en l’absence d’histoire familiale, devant toute atypie du frottis ; (3) chez le nouveau-né et avant splénectomie, notamment pour éliminer le diagnostic de stomatocytose héréditaire, contre-indiquant formellement la splénectomie. L’indication de la splénectomie dépend de l’importance de l’anémie et de sa tolérance clinique.
DMT1 deficiency causes microcytic hypochromic anemia due to decreased erythroid iron utilization. Anemia is present from birth. Transferrin saturation is high and serum ferritin is mildly elevated, despite liver iron overload. DMT1 deficiency must be considered in the differential diagnosis of microcytic hypochromic anemia observed in the newborn period.
OBJECTIVE:Maternal and fetal risk is often high during pregnancy in sickle cell disease. Our objective was to evaluate the benefits of a transfusion program adapted to each pregnant patient, either by red cell transfusion or by automated red cell exchange, in sickle cell patients with a history of serious obstetrical and/or sickling complications.STUDY DESIGN:We managed 18 pregnancies in 14 patients (12 SS, 1 SC, 1 S/b-thalassemia), seven of whom had a history of one or more pregnancies, with severe maternofetal complications in nine out of 10 cases. The other seven patients were pregnant for the first time and were in care because of a history of severe sickling complications. The aim was to achieve a proportion of abnormal hemoglobin (hemoglobin S or S+C) below 50% and a hemoglobin level between 9 and 11 g/dL. The choice between transfusion and red cell exchange was made in the light of the hemoglobin level. Red cell exchange was done using a Fresenius Com. Tec blood cell separator. Patients had red cell exchange in 10 cases, and transfusions in five cases. In three cases, patients had successive transfusions and red cell exchange.RESULTS:No serious maternal complication was observed. No fetal or perinatal death occurred. In one case, delivery was induced at 36 weeks of gestation because of fetal distress and hypotrophy.CONCLUSIONS:Our study suggests that women with severe sickle cell disease, even if they have a serious obstetrical history, can carry their pregnancy to term, without major obstetric complications, through a combination of early management by a multidisciplinary team and a suitable policy of prophylactic transfusion or automated red cell exchange.
Objective. - Maternal and fetal risk is often high during pregnancy in sickle cell disease. Our objective was to evaluate the benefits of a transfusion program adapted to each pregnant patient, either by red cell transfusion or by automated red cell exchange, in sickle cell patients with a history of serious obstetrical and/or sickling complications.Study design. - We managed 18 pregnancies in 14 patients (12 SS, 1 SC, 1 S/b-thalassemia), seven of whom had a history of one or more pregnancies, with severe maternofetal complications in nine out of 10 cases. The other seven patients were pregnant for the first time and were in care because of a history of severe sickling complications. The aim was to achieve a proportion of abnormal hemoglobin (hemoglobin S or S + C) below 50% and a hemoglobin level between 9 and 11 g/dL. The choice between transfusion and red cell exchange was made in the light of the hemoglobin level. Red cell exchange was done using a Fresenius Com. Tec blood cell separator. Patients had red cell exchange in 10 cases, and transfusions in five cases. In three cases, patients had successive transfusions and red cell exchange.Results. - No serious maternal complication was observed. No fetal or perinatal death occurred. In one case, delivery was induced at 36 weeks of gestation because of fetal distress and hypotrophy.Conclusions. - Our study suggests that women with severe sickle cell disease, even if they have a serious obstetrical history, can carry their pregnancy to term, without major obstetric complications, through a combination of early management by a multidisciplinary team and a suitable policy of prophylactic transfusion or automated red cell exchange. (C) 2007 Elsevier Masson SAS. Tous droits reserves.
Children find a rectal examination unpleasant and over a third experienced severe discomfort in this study. This is acceptable only if essential information affecting management is obtained. In this series, the diagnosis of acute appendicitis in over 90% of cases was made from the clinical history and abdominal examination. In two cases the rectal tenderness indicated the correct diagnosis. Rectal tenderness was present in 12%. of children who did not have acute appendicitis. It seems reasonable, therefore, to omit routine rectal examination in children in whom the diagnosis of acute appendicitis is obvious from the history and abdominal signs. It remains essential, however, in those with acute abdominal symptoms but with inconclusive or no abdominal signs. Pelvic appendicitis and abscess may yield very few abdominal signs. Our results show that the examination on discharge home seems to be a fruitless exercise; in no patient was any information gained that affected the decision already made that the child was fit to leave hospital. We conclude from this study that: (1) Rectal examination is unpleasant for children; (2) The diagnosis of acute appendicitis in children may be made in over 90% of cases without rectal examination; (3) When the diagnosis is uncertain a rectal examination is sometimes useful to diagnose pelvic appendicitis or other pelvic pathology; (4) Rectal examination is a very poor early indicator of pelvic sepsis after appendicectomy.
Defective apoptosis caused by mutations of the Fas gene can lead to an autoimmune lymphoproliferative syndrome (ALPS). The main autoimmune manifestations are haematological: hemolytic anemia, thrombocytopenia and neutropenia. We described 3 patients with ALPS presenting as a lymphoproliferative syndrome associated with a Coomb's negative autoimmune hemolytic anemia and dyserythropoiesis predominating on the more mature erythroblasts. Fas apoptosis deficiency was evidenced in the 3 patients by the demonstration of an increased number of CD4(-)CD8(-)TCR alpha beta(+) T cells, a decreased apoptotic response of activated T lymphocytes to anti-Apo 1-3 monoclonal antibody and the presence of a heterozygous mutation of the Fas receptor gene. (c) 2006 Elsevier SAS. Tous droits reserves
We report a patient in whom hepatosiderosis was diagnosed at the age of 55 years and who has since been treated by regular bleeding. The H63D mutation was found in the heterozygous state in the HFE gene. No mutation was recorded in the SLC11A3 gene (ferroportin). Hepatosiderosis did not seem primary, nevertheless its cause long remained elusive. Only 2 years ago did we find the responsible condition, a very mildly expressed form of dehydrated hereditary stomatocytosis (DHS). This genetic disease is a strongly iron-loading condition. Haemolysis was fully compensated. Kalaemia was slightly elevated, suggesting a pseudohyperkalaemia that may be associated with DHS. Osmotic gradient ektacytometry allowed to assess the diagnosis of DHS. The red cell monovalent Na+ and K+ concentrations were moderately elevated and reduced respectively. The temperature dependence of the ouabain + bumetanide-resistant K+ influx produced a shallow slope, above and parallel to the control curve. These features were consistent with the diagnosis of DHS. The pronounced hepatosiderosis contrasted with the mildly expressed DHS, and with the ferritinaemia that was slightly elevated, if at all, prior to bleeding. Bleeding caused ferritinaemia to decrease and hepatosiderosis to recede. The whole picture accounts for a misleading presentation of DHS, in which the primary condition long remained hidden behind one of its remotest complications, hepatosiderosis.
Defective apoptosis caused by mutations of the Fas gene can lead to an autoimmune lymphoproliferative syndrome (ALPS). The main autoimmune manifestations are haematological: hemolytic anemia, thrombocytopenia and neutropenia. We described 3 patients with ALPS presenting as a lymphoproliferative syndrome associated with a Coomb's negative autoimmune hemolytic anemia and dyserythropoiesis predominating on the more mature erythroblasts. Fas apoptosis deficiency was evidenced in the 3 patients by the demonstration of an increased number of CD4(-)CD8(-)TCRalphabeta(+) T cells, a decreased apoptotic response of activated T lymphocytes to anti-Apo 1-3 monoclonal antibody and the presence of a heterozygous mutation of the Fas receptor gene.
DMT1 mediates the pH-dependent uptake of Fe(2+) from the diet in duodenal enterocytes and in most other cells. It transfers iron from the endosomes to the cytosol following the uptake of the transferrin-transferrin receptor complex. DMT1 mutations are responsible for severe hypochromic microcytic anemia in rodents and in 2 human patients described recently. We report a compound heterozygote for 2 new DMT1 mutations, associated with microcytic anemia from birth and progressive liver iron overload. The first mutation is a GTG deletion in exon 5, leading to the V114 in-frame deletion in transmembrane domain 2, and the second is a G --> T substitution in exon 8 leading to the G212V replacement in transmembrane domain 5. Together with the 2 previously reported cases, this patient defines a new syndrome of congenital microcytic hypochromic anemia, poorly responsive to oral iron treatment, with liver iron overload associated paradoxically with normal to moderately elevated serum ferritin levels.
Human parvovirus B19 (PVB 19) is responsible for pure red cell aplasia in immunocompromised patients, and particularly solid organ recipients. Intravenous immunoglobulins (IVIG) have been shown to be efficient to achieve the correction of anemia in association with the reduction of immunosuppression. We report a case of kidney transplant recipient with PVB 19-induced anemia that did not respond to recombinant human erythropoietin (rHuEPO) and to a first course of IVIG. After discontinuation of rHuEPO, a second course of IVIG was successful with the resolution of anemia. We discuss the role of rHuEPO that may facilitate PVB 19 replication in erythropoietin-sensitive human erythroid progenitor cells.
Abstract: Treatment of auto‐immune cytopenia refractory to front line therapy with intravenous immunoglobulins and steroids is a matter of concern. We assessed the efficacy and safety of mycophenolate mofetil in a prospective open preliminary study. Study design: Adult patients with steroid refractory auto‐immune cytopenias were included. Mycophenolate mofetil (MMF) was added to treatment given at the time of inclusion, and efficacy was evaluated in term of improvement of platelet/haemoglobin levels and in term of reduction of previously given drugs, if any. All auto‐immune thrombocytopenic purpura (AITP) patients had serologic assessment for associated auto‐antibodies at the time of inclusion. Cytopenias associated with other auto‐immune diseases, lymphoproliferative diseases or HIV infection were excluded. Results: From November 1999 through November 2003, 13 patients were included (nine AITP, three auto‐immune haemolytic anaemia (AIHA), one Evans’ syndrome; four males, nine females; age: 35–72 yr). For AITP patients, an overall response of 78% was observed. Retrospective analysis showed no significant difference between patients having a short disease duration (<1 yr) and longer disease duration; between patients who previously received more or less than three treatments; and between patients for whom MMF was started as monotherapy or in association with prednisone, However, all AITP patients presenting associated auto‐antibodies responded to MMF, while only 50% of patients without associated antibodies were responders. All patients presenting AIHA and Evans’ syndrome were responders. The drug was well tolerated, with no significant side effects reported. The cumulative data suggest a potential place for MMF in the treatment arsenal of refractory cytopenias.
Objectives To study the frequency and risk factors of growth retardation (GR) in patients with Diamond-Blackfan anemia.Study design A cross-sectional survey including the 95 patients followed by hematologists affiliated with the French Society of Pediatric Hematology and Immunology for whom growth data were available; 43 patients were transfusion dependent, 32 were steroid dependent, and 20 patients were off treatment. GR was defined as height below 2 SD.Results Growth retardation was observed in 29.5% (28) patients. The proportion of GR increased significantly with age (16% < 10, 32% among 10 to 16, 47.6% among 17 to 25, 41.7% among > 16 years)and was higher in on-treatment than in off-treatment patients (35% among transfusion-dependent, 37% among steroid-dependent vs 5% among off-treatment). GR was significantly linked to associated malformations (OR, 2.3 [1.1 to 8.0]; P = .02) and intrauterine growth retardation (OR. 6.0 11.1 to 11.6]; P = .021). GR remained independently associated with age, malformations. and treatment in a logistic regression.Conclusions Our study showed that the risk of GR increases with age and is associated with treatment dependence. This result addresses the question of the respective part, in the pathogenesis of GR, of the disease severity. illustrated by treatment dependence on the one hand and of the deleterious effects of long-term treatments on the other hand.
Congenital dyserythropoietic anemia type I (CDA I) is a rare disorder of erythropoiesis. The objective of this study was to describe the clinical and laboratory manifestations, the diagnosis procedure, the therapeutic approaches and outcome in CDA I. The 12 patients included belong to the retrospective French Multicenter Study. Clinical and biologic data were compiled. Biologic tests included light and, in some cases, electron microscopy, ektacytometry, and red cell membrane protein electrophoresis. Neonatal manifestations (anemia, early jaundice, and/or splenomegaly) and bone abnormalities were present in 11 of the 12 and 6 of the 12 patients, respectively. CDA I was initially misdiagnosed in four children. By the time of diagnosis, anemia with reticulocytosis lower than expected in a hemolytic anemia was present in all patients. Bone marrow electron microscopy examination revealed characteristic findings in all nine children. Red cell membrane protein 4.1 was reduced in all five children. At least one transfusion was required in 11 of the 12 children. Interferon α2 corrected anemia in the three children who received monthly transfusions. CDA I is commonly misdiagnosed in children. It should be sought in patients with unexplained chronic anemia, especially when associated with neonatal manifestations, jaundice, splenomegaly, subnormal or low reticulocytosis, and congenital bone malformations.