Hemoglobin S polymerization. Fiber lengths, rheology, and pathogenesis

scientific article published on January 1989

Hemoglobin S polymerization. Fiber lengths, rheology, and pathogenesis is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

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P356DOI10.1111/J.1749-6632.1989.TB24177.X
P698PubMed publication ID2672966

P2093author name stringBriehl RW
Mann ES
P2860cites workThermodynamic studies of polymerization of deoxygenated sickle cell hemoglobinQ34994992
Supersaturation in sickle cell hemoglobin solutionsQ35022209
Kinetics and Mechanism of Deoxyhemoglobin S Gelation: A New Approach to Understanding Sickle Cell DiseaseQ35120085
Determination of deoxyhemoglobin S polymer in sickle erythrocytes upon deoxygenationQ36407284
Kinetics of sickle hemoglobin polymerization. III. Nucleation rates determined from stochastic fluctuations in polymerization progress curvesQ36480812
Tactoidal state and phase transitions in systems of linear polymers of variable lengthQ37333081
Structural analysis of polymers of sickle cell hemoglobin. I. Sickle hemoglobin fibers.Q38594658
Hard quasispherical model for the viscosity of hemoglobin solutionsQ39163501
Thermodynamics of gelation of sickle cell deoxyhemoglobinQ39176472
Crystallization of deoxyhemoglobin S by fiber alignment and fusionQ39300610
Thermodynamic study of the crystallization of sickle-cell deoxyhemoglobin (Hemoglobin S solubility/saturation concentration/enthalpy of crystallization/entropy of crystallization)Q41637343
Properties of sickle-cell haemoglobinQ41858893
Calorimetric and optical characterization of sickle cell hemoglobin gelationQ43455179
Gelation of sickle cell hemoglobin. IV. Phase transitions in hemoglobin S gels: separate measures of aggregation and solution--gel equilibriumQ44284629
Crystal structure of sickle-cell deoxyhemoglobin at 5 A resolution.Q44705262
Effects of pH, 2,3-diphosphoglycerate and salts on gelation of sickle cell deoxyhemoglobinQ45099703
Kinetics of protein subunit interactions: simulation of a polymerization overshootQ47880720
A thermodynamic model for gelation of sickle-cell hemoglobinQ47883770
Kinetics of sickle hemoglobin polymerization. II. A double nucleation mechanism.Q52430602
Three-dimensional reconstruction of the fibres of sickle cell haemoglobinQ53959077
The Effect of Shear Rate on the Kinetics of GelationQ54129763
P407language of work or nameEnglishQ1860
P921main subjectrheologyQ271707
P304page(s)295-307
P577publication date1989-01-01
P1433published inAnnals of the New York Academy of SciencesQ2431664
P1476titleHemoglobin S polymerization. Fiber lengths, rheology, and pathogenesis
P478volume565

Reverse relations

Q45961917Effect of hemoglobin concentration on nucleation and polymer formation in sickle red blood cells.cites workP2860