Literature DB >> 12367581

Analyzing red blood cell-deformability distributions.

J G G Dobbe1, M R Hardeman, G J Streekstra, J Strackee, C Ince, C A Grimbergen.   

Abstract

BACKGROUND: Red blood cells (RBCs) must deform to pass the smallest capillaries of the microcirculation. Available techniques for measuring RBC deformability often provide an indication of the mean deformability. The latter may be decreased either by a slight overall deformability reduction or by the presence of a small fraction of rigid cells. A distinction between these two cases can be made with a RBC-deformability distribution (RBC-DD).
METHODS: This paper explores RBC-DDs of healthy individuals and of cells with anomalous mechanical properties (sickle cell disease, dialysis patients, elliptocytosis, and cultivated malaria tropica). The distributions were measured with an automated rheoscope, which uses advanced image analysis techniques to obtain the deformability index of a large number of individual cells subjected to simple shear flow.
RESULTS: The RBC-DD of healthy volunteers is close to a normal distribution. In the investigated patients, distributions were markedly different and yielded significant changes in the mean, in the standard deviation, or in both. The presence of hypodeformable and hyperdeformable cell fractions can qualitatively and quantitatively be assessed from the deformability distribution (DD). In elliptocytosis, cells orient differently with respect to the streamlines, compared to normal cells. This causes the DD to be biased.
CONCLUSIONS: The RBC-DD is a powerful representation to establish subpopulations with anomalous deformability. Fractions of hypodeformable and hyperdeformable cells and the standard deviation of the DD are new and excellent quantitative parameters to assess alterations in RBC deformability.

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Year:  2002        PMID: 12367581     DOI: 10.1006/bcmd.2002.0528

Source DB:  PubMed          Journal:  Blood Cells Mol Dis        ISSN: 1079-9796            Impact factor:   3.039


  14 in total

1.  Human red blood cell behavior under homogeneous extensional flow in a hyperbolic-shaped microchannel.

Authors:  T Yaginuma; M S N Oliveira; R Lima; T Ishikawa; T Yamaguchi
Journal:  Biomicrofluidics       Date:  2013-09-24       Impact factor: 2.800

2.  Vascular-targeted particle binding efficacy in the presence of rigid red blood cells: Implications for performance in diseased blood.

Authors:  Mario Gutierrez; Lauro Sebastian Ojeda; Omolola Eniola-Adefeso
Journal:  Biomicrofluidics       Date:  2018-06-25       Impact factor: 2.800

3.  The mechanical properties of stored red blood cells measured by a convenient microfluidic approach combining with mathematic model.

Authors:  Ying Wang; Guoxing You; Peipei Chen; Jianjun Li; Gan Chen; Bo Wang; Penglong Li; Dong Han; Hong Zhou; Lian Zhao
Journal:  Biomicrofluidics       Date:  2016-03-11       Impact factor: 2.800

4.  Measuring Deformability and Red Cell Heterogeneity in Blood by Ektacytometry.

Authors:  Nermi L Parrow; Pierre-Christian Violet; Hongbin Tu; James Nichols; Corinne A Pittman; Courtney Fitzhugh; Robert E Fleming; Narla Mohandas; John F Tisdale; Mark Levine
Journal:  J Vis Exp       Date:  2018-01-12       Impact factor: 1.355

5.  Integrated automated particle tracking microfluidic enables high-throughput cell deformability cytometry for red cell disorders.

Authors:  Puneeth Guruprasad; Robert G Mannino; Christina Caruso; Hanqing Zhang; Cassandra D Josephson; John D Roback; Wilbur A Lam
Journal:  Am J Hematol       Date:  2018-11-28       Impact factor: 10.047

6.  Assessment of erythrocyte shape by flow cytometry techniques.

Authors:  M Piagnerelli; K Zouaoui Boudjeltia; D Brohee; A Vereerstraeten; P Piro; J-L Vincent; M Vanhaeverbeek
Journal:  J Clin Pathol       Date:  2006-06-14       Impact factor: 3.411

Review 7.  Biophotonic techniques for the study of malaria-infected red blood cells.

Authors:  Jakob M A Mauritz; Alessandro Esposito; Teresa Tiffert; Jeremy N Skepper; Alice Warley; Young-Zoon Yoon; Pietro Cicuta; Virgilio L Lew; Jochen R Guck; Clemens F Kaminski
Journal:  Med Biol Eng Comput       Date:  2010-07-27       Impact factor: 2.602

8.  Fibrin network structure and clot mechanical properties are altered by incorporation of erythrocytes.

Authors:  Kathryn C Gersh; Chandrasekaran Nagaswami; John W Weisel
Journal:  Thromb Haemost       Date:  2009-12       Impact factor: 5.249

Review 9.  Atomic force microscopy probing in the measurement of cell mechanics.

Authors:  Dimitrios Kirmizis; Stergios Logothetidis
Journal:  Int J Nanomedicine       Date:  2010-04-07

10.  Hereditary spherocytosis and elliptocytosis associated with prosthetic heart valve replacement: rheological study of erythrocyte modifications.

Authors:  Patrizia Caprari; Anna Tarzia; Giorgio Mojoli; Paolo Cianciulli; Emilio Mannella; Maria Cristina Martorana
Journal:  Int J Hematol       Date:  2009-03-24       Impact factor: 2.490

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