Thermodynamic study of the crystallization of sickle-cell deoxyhemoglobin (Hemoglobin S solubility/saturation concentration/enthalpy of crystallization/entropy of crystallization)

1979 ◽  
Vol 129 (1) ◽  
pp. 83-91 ◽  
Author(s):  
Maryann McD. Jones ◽  
Jacinto Steinhardt
Blood ◽  
1963 ◽  
Vol 22 (3) ◽  
pp. 334-341 ◽  
Author(s):  
RICHARD D. LEVERE ◽  
HERBERT C. LICHTMAN ◽  
Joan Levine

Abstract The relative rates of incorporation of Fe59 into heterogenic hemoglobins was studied in four patients with sickle cell trait. Three of the patients were free of superimposed disease, while one had active pulmonary tuberculosis. In all subjects there was a significantly greater incorporation of radioiron, per milligram of hemoglobin, into hemoglobin S than into hemoglobin A. The data indicate that in sickle cell trait the rates of synthesis of the heterogenic hemoglobins are not proportional to their circulating concentrations. Two interpretations appear possible. Since the size of the intra-marrow pool of hemoglobin S was not known, it is possible that there exists a smaller preformed pool of the abnormal hemoglobin, with the isotope making its appearance first in hemoglobin S. However, it is also possible that hemoglobin S is synthesized at a rate which is greater than that reflected by its circulating concentration. This implies that the relative concentrations of hemoglobin S and hemoglobin A vary from erythrocyte to erythrocyte, and that those cells with the greatest proportion of hemoglobin S are selectively destroyed.


PEDIATRICS ◽  
1974 ◽  
Vol 54 (4) ◽  
pp. 438-441
Author(s):  
Gerald Erenberg ◽  
Steven S. Rinsler ◽  
Bernard G. Fish

Four cases of lead neuropathy in children with hemoglobin S-S or S-C disease are reported. Neuropathy is a rare manifestation of lead poisoning in children, and only ten other cases have been well documented in the pediatric literature. The last previous case report of lead neuropathy was also in a child with hemoglobin S-S disease. The neuropathy seen in the children with sickle cell disease was clinically similar to that seen in the previously reported cases in nonsicklers, but differed in both groups from that usually seen in adult cases. It is, therefore, postulated that children with sickle cell disease have an increased risk of developing neuropathy with exposure to lead. The exact mechanism for this association remains unknown, but in children with sickle cell disease presenting with symptoms or signs of peripheral weakness, the possibility of lead poisoning must be considered.


2018 ◽  
Vol 50 (12) ◽  
pp. 2488-2493 ◽  
Author(s):  
BRYANT J. WEBBER ◽  
COLBY C. UPTEGRAFT ◽  
NATHANIEL S. NYE ◽  
Francis G. O’Connor

2012 ◽  
Vol 2012 ◽  
pp. 1-3 ◽  
Author(s):  
Donovan Calder ◽  
Maryse Etienne-Julan ◽  
Marc Romana ◽  
Naomi Watkins ◽  
Jennifer M. Knight-Madden

A patient who presented with sickle retinopathy and hemoglobin electrophoresis results compatible with sickle cell trait was found, on further investigation, to be a compound heterozygote with hemoglobin S and hemoglobin New York disease. This recently reported form of sickle cell disease was not previously known to cause retinopathy and surprisingly was observed in a non-Asian individual. The ophthalmological findings, the laboratory diagnosis, and possible pathophysiology of this disorder are discussed. Persons diagnosed with sickle cell trait who present with symptoms of sickle cell disease may benefit from specific screening for this variant.


PEDIATRICS ◽  
1988 ◽  
Vol 81 (6) ◽  
pp. 749-755
Author(s):  
Elliott Vichinsky ◽  
Deborah Hurst ◽  
Ann Earles ◽  
Klara Kleman ◽  
Bertram Lubin

Newborn screening for sickle cell disease has been recommended as a method of decreasing patient mortality. However, its effectiveness in accomplishing this has not been reliably measured. To help determine the effectiveness, 10 years of experience in newborn screening have been summarized. The effects of early patient enrollment in a comprehensive treatment program on long-term morbidity and mortality are reported. From 1975 to 1985, 84,663 newborns were screened regardless of race or ethnic background. Bart's hemoglobin was present in 5%, hemoglobin AS in 2.6%, and hemoglobin AC in 0.75%. Excluding Bart's, approximately 3.6% of all newborns were carriers for hemoglobinopathy. Sickle cell disease occurred in 1:951 births (58 hemoglobin SS, 25 hemoglobin FSC, three hemoglobin S-β+-thalassemia, and three hemoglobin S-β°-thalassemia). In addition, one in every 4,233 newborns had a clinically significant thalassemia syndrome (eight hemoglobin FE, ten hemoglobin F only, two hemoglobin H). Compared with other newborn screening programs in California, (congenital hypothyroidism, 1:3,849; phenylketonuria 1:22,474, galactosemia 1:74,103), hemoglobinopathies are the most prevalent congenital disease. Eighty-one newborns with sickle cell disease were followed for 7.2 years. Patients experienced 513 hospitalizations, including 13 episodes of sepsis with or without meningitis and ten acute sequestration crises. The overall mortality rate for patients with sickle cell anemia diagnosed in the newborn period was 1.8%. In comparison, the clinical course of 64 patients with sickle cell anemia diagnosed after 3 months of age and followed for an average of 9.4 years was analyzed. Five of these patients died. In two of these, sickle cell anemia was diagnosed at the time of the death. Overall mortality rate in this group was 8%. In summary, the data indicate that newborn screening, when coupled with extensive follow-up and education, will significantly decrease patient mortality.


1999 ◽  
Vol 1 (2) ◽  
pp. 74-74
Author(s):  
C R Lopez ◽  
A Rodriguez ◽  
E Rivera-Caragol ◽  
P J Santiago-Borrero ◽  
C L Cadilla

Blood ◽  
1994 ◽  
Vol 84 (9) ◽  
pp. 3182-3188 ◽  
Author(s):  
M Maier-Redelsperger ◽  
CT Noguchi ◽  
M de Montalembert ◽  
GP Rodgers ◽  
AN Schechter ◽  
...  

Abstract Intracellular hemoglobin S (HbS) polymerization is most likely to be the primary determinant of the clinical and biologic manifestations of sickle cell disease (SCD). Fetal hemoglobin (HbF) does not enter the HbS polymer and its intracellular expression in sickle erythrocytes inhibits polymerization. HbF levels, high at birth but decreasing thereafter, protect the newborn from the clinical manifestations of this hemoglobinopathy. We have measured the sequential changes in HbF, F reticulocytes, and F cells in the first 2 years of life in 25 children with SCD and compared the results with those obtained in 30 normal children (AA). We have also calculated HbF per F cell (F/F cell), the preferential survival of F cells versus non-F cells, as measured by the ratio F cells versus F reticulocytes (FC/FR) and polymer tendency at 40% and 70% oxygen saturation. HbF levels decreased from about 80.4% +/- 4.0% at birth to 9.2% +/- 2.9% at 24 months. During this time, we observed a regular decrease of the F reticulocytes and the F cells. The kinetics of the decline of F/F cell was comparable with the decline of HbF, rapid from birth (mean, 27.0 +/- 3.6 pg) to 12 months of age (mean, 8.5 +/- 1.5 pg) and then slower from 12 to 24 months of age (mean, 6.2 +/- 1.0 pg) in the SCD children. In the AA children, the decrease in HbF, due to changes in both numbers of F cells and F/F cell, was more precipitous, reaching steady-state levels by 10 months of age. Calculated values for mean polymer tendency in the F-cell population showed that polymerization should begin to occur at 40% oxygen saturation at about 3 months and increase progressively with age, whereas polymerization at 70% oxygen saturation would not occur until about 24 months. These values correspond to HbF levels of 50.8% +/- 10.8% and 9.2% +/- 2.9%, respectively, and F/F cell levels of 15.6 +/- 4.5 pg and 6.2 +/- 1.0 pg, respectively. In the non--F-cell population, polymerization was expected at birth at both oxygen saturation values. Three individuals had significantly greater predicted polymerization tendency than the remainder of the group because of early decreases in HbF. These individuals in particular, the remainder of the cohort, as well as other recruited newborns, will be studied prospectively to ascertain the relationship among hematologic parameters, which determine polymerization tendency and the various clinical manifestations of SCD.


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 4799-4799
Author(s):  
Angela Zanette ◽  
Karla O. Mota ◽  
Marilda Souza Goncalves ◽  
Laise Vilasboas Schettini ◽  
Lais Magalhaes Aguiar ◽  
...  

Abstract Introduction: The hemoglobinopathies are the most common monogenic disorders known. A mutation in the gene for β globin gave origin to hemoglobin S, an abnormal hemoglobin originated in Africa. Sickle cell disease (SCD) is characterized by the presence of hemoglobin S, which results in vasoocclusion episodes and hemolytic anemia throughout patients life. Vascular occlusion leads to acute events and progressive disabling organ damage. Sickle cell anemia is the homozygous state SS, while hemoglobinopathy SC is a doubly heterozygous state, where hemoglobin S occurs in combination with hemoglobin C. Brazil has a prominent African ancestry and SCD is highly prevalent in some regions of the country. In Bahia State, for example, neonatal screening data have shown that, from every 650 children born alive, one has SCD, mostly homozygous SS. Among other therapeutic measures, packed red blood cells (RBC) play a prominent role in SCD management. In situations such as acute chest syndrome (ACS), primary and secondary prevention of stroke, splenic or hepatic sequestration crisis, severe anemia, complicated pregnancy, isquemic organ damages and others, the transfusions may save lives. Although RBC may contribute to reduce morbidity and improve quality of life in SCD patients, there still are risks. Among other risk categories, alloimmunization may result from transfusions and occurs in 5 % to 50 % of SCD patients. It is still not known whether allosensibilization significantly affects the clinical outcomes in SCD. Objecive: The purpose of this study was to compare the clinical profile of multitransfused adult SCD patients who developed alloantibodies (ALO) to patients with the same disease, coming from the same population who did not become alloimmunized (non-ALO). Methods: This is a cross sectional study where medical records of SCD patients, referred to a reference center of Salvador, the capital of Bahia State, Brazil, were reviewed. Only SCD patients 18 years of age or older were included. They had received at least 3 RBC transfusions from 2004 to 2007, or had any alloantibody identified during this period. Patient characteristics, clinical findings, number of transfusions, frequency and specificity of alloantibodies, laboratory data, and the main clinical outcomes were reviewed. Results: a hundred and eight patients were included: 105 SS and 3 SC. The pre-transfusional RBC matching was done to ABH, D,C,c,E,e and Kell antigens. 56 patients developed alloantibodies (53 SS and 3 SC). Anti-E, anti-K, and anti-C were the most prevalent alloantibodies identified (39,3 %, 21,4 % and 16,1 %, respectively). Among the variables addressed in this study, age (higher in non-ALO, .041) and antiglobulin test positivity, more prevalente in ALO (.0001), depicted statistically significant difference. A few patients developed immune hemolysis, controlled successfully with corticosteroids. Alloimmunization was more prevalent among women, although no statistically significant difference was reached between ALO and non-ALO Other variables such as number of transfusions, hematological profile, biochemical data and complications such as stroke, leg ulcers, osteonecrosis, renal disease, abnormal cardiac features, and pulmonary hypertension did not show significant difference between both groups. Conclusion: his study shows that, although alloimmunization is a potential dangerous consequence of RBC transfusions, it did not modify the clinical profile of SCD alloimmunized patients. The concomitance of allosensibilization and autoantibodies in SCD leads to additional difficulties in the RBC matching for transfusion and may exacerbate hemolysis. In order to address autoimmunity in SCD, prospective studies with larger samples are needed.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 3020-3020
Author(s):  
Jose R. Romero ◽  
Corey Hoehn ◽  
Jessica Alves ◽  
Alicia Rivera

Abstract Abstract 3020 Poster Board II-996 In Sickle Cell Disease, K+ efflux and osmotically induced water loss leads to erythrocyte dehydration, an important step in the formation of hemoglobin S polymers and irreversible sickle cells. We have previously reported that activation of sickle erythrocyte endothelin-1 (ET-1) receptors is partially responsible for dense irreversible sickle cell formation thru mechanisms that are still undefined. Casein Kinase II (CK2), a serine/threonine kinase that phosphorylates acidic proteins, has been shown to regulate calmodulin activity and cytoskeletal proteins. Thus, we posit that CK2 may regulate cellular hydration status. CK2 activity is modulated by apigenin, emodin, heparin, and ornithine decarboxylase. Our results indicate that CK2 activity in erythrocyte membranes increases in the presence of ET-1 (2.8 ± 0.1 to 4.9 ± 0.01 nmol/min/mL * 106 cell) an event that is blunted by pre-incubation with the ET-1 B receptor blocker, BQ788 (2.5 ± 0.1 nmol/min/mL * 106 cell). Our data also indicate that 20 μM apigenin blocks ET-1 induced CK2 activity in sickle erythrocytes (2.8 ± 0.1 to 2.7 ± 0.4 nmol/min/mL * 106 cell). We then examined the role of CK2 activation in cellular dehydration. We incubated sickle erythrocytes for 3 hours in deoxygenation-oxygenation cycles in the presence or absence of 20μM apigenin or 2μM 4,5,6,7-tetrabromobenzotriazole (TBB), another specific CK2 inhibitor, and measured the changes in erythrocyte density by the phthalate oil method. We observed that inhibition of CK2 led to the inhibition of deoxygenation-stimulated cellular dehydration in sickle erythrocytes by apigenin (D50= 1.106 to 1.100 g/mL) or TBB (D50 =1.097 g/mL). Apigenin also inhibited the volume-stimulated K+ efflux in a dose-dependent manner (IC50 = 18 ± 1 μM). These results strongly implicate CK2 as an intermediate of the ET-1 stimulated cellular volume regulatory systems in erythrocytes and suggest that regulation of CK2 activity may lead to reduction of hemoglobin S polymerization in vivo. Supported by NIH R01-HL09632 to AR. Disclosures No relevant conflicts of interest to declare.


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