scholarly journals Erythrocyte cellular and membrane deformability in hereditary spherocytosis

Blood ◽  
1979 ◽  
Vol 53 (3) ◽  
pp. 481-485 ◽  
Author(s):  
K Nakashima ◽  
E Beutler

In order to determine whether the relative rigidity of the hereditary spherocytosis (HS) red cell is due to membrane rididity or merely to an altered surface/volume ratio, we investigated the deformability of resealed red cell membranes from patients with HS. Whereas the osmotic fragility of intact red cells of HS patients showed the expected increase, the osmotic fragility of resealed HS membranes was normal, thus indicating that their surface/volume ratio was normal. Measurements with an ektacytometer showed that deformability of intact HS cells was markedly diminished, whereas deformability of resealed HS membranes was normal. These findings indicate that the HS red cell membrane is not intrinsically abnormally rigid, as has been suggested, but that the lack of deformability of the erythrocyte is primarily a function of the altered surface/volume ratio.

Blood ◽  
1979 ◽  
Vol 53 (3) ◽  
pp. 481-485 ◽  
Author(s):  
K Nakashima ◽  
E Beutler

Abstract In order to determine whether the relative rigidity of the hereditary spherocytosis (HS) red cell is due to membrane rididity or merely to an altered surface/volume ratio, we investigated the deformability of resealed red cell membranes from patients with HS. Whereas the osmotic fragility of intact red cells of HS patients showed the expected increase, the osmotic fragility of resealed HS membranes was normal, thus indicating that their surface/volume ratio was normal. Measurements with an ektacytometer showed that deformability of intact HS cells was markedly diminished, whereas deformability of resealed HS membranes was normal. These findings indicate that the HS red cell membrane is not intrinsically abnormally rigid, as has been suggested, but that the lack of deformability of the erythrocyte is primarily a function of the altered surface/volume ratio.


Blood ◽  
1981 ◽  
Vol 58 (2) ◽  
pp. 317-325
Author(s):  
RA Streuli ◽  
JR Kanofsky ◽  
RB Gunn ◽  
S Yachnin

Oxygenated sterol compounds (OSC), when incubated for 1 hr with human erythrocytes in lipoprotein-depleted medium at concentrations of 0.625- 5 X 10(-5) M, are inserted into the cell membrane and remain there despite subsequent washing of the cells. The insertion results in expansion of the surface area of the red cell ghost membrane, an increase in critical hemolytic volume, and as a consequence, in diminished osmotic fragility of the erythrocytes. This effect is seen with echinocyte-forming as well as with non-echinocyte-forming OSC. Erythrocytes treated with OSC do not differ from control cells with respect to their mean cell volume (MCV) in isotonic solution, water content, ion fluxes, and filterability through polycarbonate filters. The shift of the osmotic fragility curve toward lower NaCl concentrations is proportional to the amount of OSC inserted into the red cell membrane. 7 beta-Hydroxycholesterol, 22-ketocholesterol, and 20 alpha-hydroxycholesterol are the most potent inhibitors of osmotic lysis. The effect of OSC on osmotic fragility is diminished if the erythrocytes are incubated in a lipoprotein-containing medium; free cholesterol, however, does not change this effect. Various progesterones also protect red cell from osmotic lysis, but only if the erythrocytes are directly exposed to the compounds present in the hypotonic NaCl solutions used for measurement of their osmotic fragility. Progesterones do not remain in the membrane after the cells have been washed. The OSC are also capable of correcting the osmotic fragility curve of red cells from patients with hereditary spherocytosis. These experiments may suggest an approach to the pharmacologic treatment of hereditary spherocytosis.


Blood ◽  
1981 ◽  
Vol 58 (2) ◽  
pp. 317-325 ◽  
Author(s):  
RA Streuli ◽  
JR Kanofsky ◽  
RB Gunn ◽  
S Yachnin

Abstract Oxygenated sterol compounds (OSC), when incubated for 1 hr with human erythrocytes in lipoprotein-depleted medium at concentrations of 0.625- 5 X 10(-5) M, are inserted into the cell membrane and remain there despite subsequent washing of the cells. The insertion results in expansion of the surface area of the red cell ghost membrane, an increase in critical hemolytic volume, and as a consequence, in diminished osmotic fragility of the erythrocytes. This effect is seen with echinocyte-forming as well as with non-echinocyte-forming OSC. Erythrocytes treated with OSC do not differ from control cells with respect to their mean cell volume (MCV) in isotonic solution, water content, ion fluxes, and filterability through polycarbonate filters. The shift of the osmotic fragility curve toward lower NaCl concentrations is proportional to the amount of OSC inserted into the red cell membrane. 7 beta-Hydroxycholesterol, 22-ketocholesterol, and 20 alpha-hydroxycholesterol are the most potent inhibitors of osmotic lysis. The effect of OSC on osmotic fragility is diminished if the erythrocytes are incubated in a lipoprotein-containing medium; free cholesterol, however, does not change this effect. Various progesterones also protect red cell from osmotic lysis, but only if the erythrocytes are directly exposed to the compounds present in the hypotonic NaCl solutions used for measurement of their osmotic fragility. Progesterones do not remain in the membrane after the cells have been washed. The OSC are also capable of correcting the osmotic fragility curve of red cells from patients with hereditary spherocytosis. These experiments may suggest an approach to the pharmacologic treatment of hereditary spherocytosis.


2018 ◽  
Vol 6 (1) ◽  
pp. 41-43
Author(s):  
Surendra Koju ◽  
Ramesh Makaju

Introduction: Hereditary spherocytosis is a red cell membrane disorder that causes hemolytic anemia. Due to defective cell membrane, red cells are spherical shaped and result in their early lysis. Osmotic fragility of spherocytic red cell is increased. Case report: A 22 year old female presented with chief complain of abdominal pain. Initially she was diagnosed as cholelithiasis. Under laboratory evaluation she was found to be anemic with reticulocytosis. In peripheral blood smear, spherocytes were moderately distributed. Antihuman globulin test was negative but osmotic fragility was high. Hence, she was confirmed as case of hereditary spherocytosis. Conclusion: Hereditary spherocytosis is a rare red cell disorder and its diagnosis can be made by osmotic fragility test.


Blood ◽  
2011 ◽  
Vol 118 (21) ◽  
pp. 5272-5272
Author(s):  
Cristina Vercellati ◽  
Anna Paola Maria Luisa Marcello ◽  
Elisa Fermo ◽  
Paola Bianchi ◽  
Carla Boschetti ◽  
...  

Abstract Abstract 5272 Pyruvate kinase (PK) deficiency, transmitted as an autosomal recessive trait, is the most common erythroenzymopathy of glycolytic pathway (prevalence of 1:20,000) associated with chronic non spherocytic hemolytic anemia from mild to severe. More than 180 mutations in the PK-LR gene have been so far reported, and genotype-phenotype correlation has been established for some of them. Hereditary Spherocytosis (HS) is the most common congenital hemolytic anemia in Caucasians, with an estimated prevalence ranging from 1:2000 to 1:5000. The main clinical features are hemolytic anemia from compensated to severe, variable jaundice, splenomegaly and cholelythiasis. The molecular defect is highly heterogeneous, caused by proteins involved in the attachment of cytoskeleton to the membrane integral domain (spectrin, ankyrin, band 3 and protein 4.2). We describe a case of PK deficiency associated with HS. The propositus was a 13 years-old Italian male with neonatal jaundice and need of blood transfusion (Hb 5.8 g/dL) during an infectious episode. At the time of the study Hb was 13.9 g/dL, MCV 81.8 fL, reticulocytes 207×109/L, unconjugated bilirubin 2.16 mg/dL, LDH 605 U/L, haptoglobin <20 mg/dL. The peripheral blood smear examination showed the presence of spherocytes (16%) and some ovalocytes (2%). The study of the most important red cell enzymes revealed reduced PK activity (59% of normal). Direct sequencing of PK-LR gene showed compound heterozygosity for the 994A mutation (Gly332Ser) and the −148T variant localized the erythroid specific promoter region. The presence of spherocytes in peripheral blood smear prompted us to investigate for the coexistence of HS. Erythrocyte osmotic fragility was decreased and SDS–PAGE analysis of red cell membrane proteins revealed a 30% spectrin reduction. Family study demonstrated a heterozygous condition for the 994A mutation in the father, who also displayed comparable enzyme deficiency, whereas promoter variant −148T was detected in the mother and in the brother. No red cell membrane abnormalities were present in the family members, although positive EMA binding test and increased osmotic fragility were found in the father and brother. The co-existence of HS and PK deficiency is very rare event, only few cases are described to date. Clinical, family and molecular studies allowed the determination of the interrelationship between the two RBC abnormalities in the patient and his relatives. The reduced PK activity in the propositus and his father is justified by heterozygous 994A mutation. The more severe clinical picture in the propositus could be caused by the coexistence of HS and by the presence of −148T mutation, that although it seems not to have effects on PK-LR mRNA expression, is often detected in PK deficient subjects with heterozygous PK mutations. Disclosures: No relevant conflicts of interest to declare.


Blood ◽  
1976 ◽  
Vol 48 (2) ◽  
pp. 259-263 ◽  
Author(s):  
SR McCann ◽  
HS Jacob

Abstract Two unrelated patients with hereditary spherocytosis developed idiopathic spinal cord dysfunction. This coincidence, combined with similar individual case reports in the older European literature, suggests that abnormalities may exist in constituents common to red cell membranes and nerve tissue. A similar conclusion has been proposed to explain red cell membrane abnormalities in some of the muscular dystrophies.


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