Агрегация эритроцитов: некоторые вопросы и гипотезы

Автор: Соколова И.А., Рыкова С.Ю., Шахназаров А.А., Гафарова М.Э., Краснова Т.Н., Хохлова М.Д., Любин Е.В., Скрябина М.Н., Жданов А.Г., Федянин А.А.

Журнал: Российский журнал биомеханики @journal-biomech

Статья в выпуске: 1 (51) т.15, 2011 года.

Бесплатный доступ

Обсуждаются некоторые проблемы, связанные с вопросами о механизмах и последствиях агрегации эритроцитов. Приводятся данные, согласующиеся с представлением об исходно компенсаторной природе увеличенного агрегатообразования при заболевании. Представлены характеристики взаимодействия индивидуальных эритроцитов, полученные с помощью метода оптического пинцета. Произведено сравнение экспериментальных и модельных данных, свидетельствующее о том, что при формировании эритроцитарных агрегатов возможно одновременное действие и осмотических сил, и сил, создаваемых молекулярными «мостиками».

Агрегация эритроцитов, гидродинамическое сопротивление, системная красная волчанка, метод оптического пинцета

Короткий адрес: https://sciup.org/146216017

IDR: 146216017

Список литературы Агрегация эритроцитов: некоторые вопросы и гипотезы

  • Муравьев А.В., Муравьев А.А. Вне-и внутриклеточные механизмы изменения агрегации эритроцитов//Физиология человека. -2005. -Т. 31, № 4. -С. 108-112.
  • Петрищев Н.Н., Шляхто Е.В., Власов Т.Д., Галагудза М.М. Ишемическая адаптация миокарда: патофизиологические механизмы и возможные перспективы практического применения (обзор литературы)//Российский физиологический журнал им. И.М. Сеченова. -2001. -Т. 87, № 5. -С. 688-705.
  • Самойленкова Н.С., Гаврилова С.А., Кошелев В.Б. Нейропротекторный и ангиопротекторный эффекты ишемического/гипоксического прекондиционирования мозга//Регионарное кровообращение и микроциркуляция. -2008. -Т. 1, № 25. -С. 82-92.
  • Фирсов Н.Н., Джанашия П.Х. Введение в экспериментальную и клиническую гемореологию. -М: РГМУ, 2004. -280 с.
  • Accorsi P., Passeri C., Onofrillo D., Iacone A. Hyperviscosity syndrome in hematological diseases and therapeutic apheresis//The International Journal of Artificial Organs. -2005. -Vol. 28, No. 10. -P. 1032-1038.
  • Adams B.D., Baker R., Lopez J.A., Spencer S. Myeloproliferative disorders and the hyperviscosity syndrome//Emergency Medicine Clinics of North America. -2009. -Vol. 27, No. 3. -P. 459-476.
  • Armstrong J.K., Meiselman H.J., Fisher T.C. Evidence against macromolecular "bridging" as the mechanism of red blood cell aggregation induced by nonionic polymers//Biorheology. -1999. -Vol. 36, No. 5-6. -P. 433-437.
  • Asakura S., Oosawa F. On interaction between two bodies immersed in a solution of macromolecules//Journal of Chemial Physics. -1954. -Vol. 22. -P. 1255-1256.
  • Ashkin A. Acceleration and trapping of particles by radiation pressure//Physical Review Letters. -1970. -Vol. 24, No. 4. -P. 156-159.
  • Bagchi P., Johnson P.C., Popel A.S. Computational fluid dynamic simulation of aggregation of deformable cells in a shear flow//Journal of Biomechanical Engineering. -2005. -Vol. 127, No. 7. -P. 1070-1080.
  • Baskurt O.K., Meiselman H.J. Blood rheology and hemodynamics//Seminars in Thrombosis and Hemostasis. -2003. -Vol. 29, No. 5. -P. 435-450.
  • Ben-Ami R., Barshtein G., Mardi T., Deutch V., Elkayam O., Yedgar S., Berliner S. A synergistic effect of albumin and fibrinogen on immunoglobulin-induced red blood cell aggregation//American Journal of Physiology. Heart and Circulatory Physiolology. -2003. -Vol. 285, No. 6. -P. H2663-H2669.
  • Bishop J.J., Nance P.R., Popel A.S., Intaglietta M., Johnson P.C. Effect of erythrocyte aggregation on velocity profiles in venules//American Journal of Physiology. Heart and Circulatory Physiolology. -2001. -Vol. 280, No. 1. -P. H222-H236.
  • Bishop J.J., Popel A.S., Intaglietta M., Johnson P.C. Rheological effects of red blood cell aggregation in the venous network: a review of recent studies//Biorheology. -2001. -Vol. 38, No. 2-3. -P. 263-270.
  • Bloch E.H. Principles of the microvascular system//Investigative Ophthalmology. -1966. -Vol. 5, No. 3. -P. 250-256.
  • Bronkhorst P.J.H., Grimbergen J., Brakenhoff G.J., Heethaar R.M., Sixma J.J. The mechanism of red cell (dis)aggregation investigated by means of direct cell manipulation using multiple optical trapping//British Journal of Haematology. -1997. -Vol. 96, No. 2. -P. 256-258.
  • Chien S., Jan K.M. Ultrastructure basis of the mechanism of rouleaux formation//Microvascular Research. -1973. -Vol. 5, No. 2. -P. 155-166.
  • Chung B., Johnson P.C., Popel A.S. Application of chimera grid to modeling cell motion and aggregation in a narrow tube//International Journal for Numerical Methods in Fluids. -2006. -Vol. 53, No. 1. -P. 105-128.
  • Donner M., Siadat M., Stoltz J.F. Erythrocyte aggregation: approach by light scattering determination//Biorheology. -1988. -Vol. 25, No. 1-2. -P. 367-375.
  • Duling B.R., Berne R.M. Longitudinal gradients in periarteriolar oxygen tension. A possible mechanism for the participation of oxygen in local regulation of blood flow//Circulation Research. -1970. -Vol. 27, No. 5. -P. 669-678.
  • Fåhræus R.S. The suspension-stability of the blood//Acta Medica Scandinavica. -1921. -Vol. 55. -P. 1-228.
  • Forsdyke D.R., Ford P.M. Segregation into separate rouleaux of erythrocytes from different species//Biochemical Journal. -1983. -Vol. 214, No. 1. -P. 257-260.
  • Golub A.S., Pitman R.N. PO2 measurements in the microcirculation using phosphorescence quenching microscopy at high magnification//American Journal of Physiology. Heart and Circulatory Physiolology. -2008. -Vol. 294, No. 6. -P. H2905-H2916.
  • Henon S., Lenormand G., Richert A., Gallet F. A new determination of the shear modulus of the human erythrocyte membrane using optical tweezers//Biophysical Journal. -1999. -Vol. 76, No. 2. -P. 1145-1151.
  • Hewson W. On the figure and composition of the red particles of the blood, commonly called the red globules//Philosophical Transactions of the Royal Society, London. -1773. -Vol. 63. -P. 303-323.
  • Intaglietta M., Johnson P.C., Winslow R.M. Microvascular and tissue oxygen distribution//Cardiovascular Research. -1996. -Vol. 32, No. 4. -P. 632-643.
  • Katchalsky A., Danon D., Nevo A., de Vries A. Interactions of basic polyelectrolytes with the red blood cell. II Agglutination of red blood cells by polymeric bases//Biochimica et Biophysica Acta. -1959. -Vol. 33, No. 1. -P. 120-138.
  • Kim S., Popel A.S., Intaglietta M., Johnson P.C. Aggregate formation of erythrocytes in postcapillary venules//American Journal of Physiology. Heart and Circulatory Physiolology. -2005. -Vol. 288, No. 2. -P. H584-H590.
  • Kim S., Popel A.S., Intaglietta M., Johnson P.C. Effect of erythrocyte aggregation at normal human levels on functional capillary density in rat spinotrapezius muscle//American Journal of Physiology. Heart and Circulatory Physiolology. -2006. -Vol. 290, No. 3. -P. H941-H947.
  • Knisely M.H., Bloch E.H., Eliot T.S., Warner L. Sludged blood//Science. -1947. -Vol. 106, No. 2758. -P. 431-440.
  • Korotaeva T.V., Firsov N.N., Bjelle A., Vishlova M.A. Erythrocytes aggregation in healthy donors at native and standard hematocrit: the influence of sex, age, immunoglobulins and fibrinogen concentrations. Standardization of parameters//Clinical Hemorheology and Microcirculation. -2007. -Vol. 36, No. 4. -P. 335-343.
  • Merrill E.W., Cokelet G., Britten A., Wells R.E. Jr. Rheology of human blood and the red cell plasma membrane//Bibliotheca Anatomica. -1965. -No. 7. -P. 11-17.
  • Nakano A., Sugii Y., Minamiyama M., Niimi H. Measurement of red cell velocity in microvessels using particle image velocimetry (PIV)//Clinical Hemorheology and Microcirculation. -2003. -Vol. 29, No. 3-4. -P. 445-455.
  • Neu B., Meiselman H.J. Depletion-mediated red blood cell aggregation in polymer solutions//Biophysical Journal. -2002. -Vol. 83, No. 5. -P. 2482-2490.
  • Neu B., Sowemimo-Coker S.O., Meiselman H.J. Cell-cell affinity of senescent human erythrocytes//Biophysical Journal. -2003. -Vol. 85, No. 1. -P. 75-84.
  • van Oss C.J., Absolom D.R. Zeta potentials, van der Waals forces and hemagglutination//Vox Sanguinis. -1983. -Vol. 44, No. 3. -P. 183-190.
  • Pearson M.J., Lipowsky H.H. Effect of fibrinogen on leukocyte margination and adhesion in postcapillary venules//Microcirculation. -2004. -Vol. 11, No. 3. -P. 295-306.
  • Popel A.S., Johnson P.C. Microcirculation and hemorheology//Annual Review of Fluid Mechanics. -2005. -Vol. 37. -P. 43-69.
  • Pribush A., Zilberman-Kravits D., Meyerstein N. The mechanism of the dextran-induced red blood cell aggregation//European Biophysics Journal. -2007. -Vol. 36, No. 2. -P. 85-94.
  • Rampling M.W. Hyperviscosity as a complication in a variety of disorders//Seminars in Thrombosis and Hemostasis. -2003. -Vol. 29, No. 5. -P. 459-465.
  • Rampling M.W., Meiselman H.J., Neu B., Baskurt O.K. Influence of cell-specific factors on red blood cell aggregation//Biorheology. -2004. -Vol. 41, No 2. -P. 91-112.
  • Schmid-Schonbein H., Rieger H., Gallasch G., Schachtner H. Pathological red cell aggregation (clump aggregation). Molecular and electrochemical factors//Bibliotheca Anatomica. -1977. -No. 16, Pt. 2. -P. 484-489.
  • Skalak R., Zarda P.R., Jan K.M., Chien S. Mechanics of rouleau formation//Biophysical Journal. -1981. -Vol. 35, No. 3. -P. 771-781.
  • Tateishi N. Suzuki Y., Cicha I., Maeda N. O(2) release from erythrocytes flowing in a narrow O(2)-permeable tube: effects of erythrocyte aggregation//American Journal of Physiology. Heart and Circulatory Physiolology. -2001. -Vol. 281, No. 1. -P. H448-H456.
  • Zhang J., Johnson P.C., Popel A.S. Red blood cell aggregation and dissociation in shear flows simulated by lattice Boltzmann method//Journal of Biomechanics. -2008. -Vol. 41, No. 1. -P. 47-55.
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