CC..png    

Legal and postal addresses of the publisher: office 1336, 17 Naberezhnaya Severnoy Dviny, Arkhangelsk, 163002, Russian Federation, Northern (Arctic) Federal University named after M.V. Lomonosov

Phone: (818-2) 21-61-21
E-mail: vestnik_med@narfu.ru
https://vestnikmed.ru/en/

ABOUT JOURNAL

Lanthanum- and Flow-Induced Erythrocyte Aggregation at Burn Disease. P. 66–74

Версия для печати

Section: Medical and biological sciences

UDC

612.111.6:616-001.17

Authors

Aleksandra N. Popovicheva*
*Privolzhsky Federal Research Medical Centre (Nizhny Novgorod, Russian Federation)
Corresponding author: Aleksandra Popovicheva, address: Verkhne-Volzhskaya nab. 18/1, Nizhny Novgorod, 603155, Russian Federation; e-mail: alexandra.popovichus@yandex.ru

Abstract

Structural and functional abnormalities in erythrocytes changing their hemorheological parameters (deformability and aggregation) occupy an important place in the pathogenesis of various diseases. In burn disease, from the first hours after the injury, significant disorders of hemostasis and microcirculation are observed. This is partly due to increased erythrocyte aggregation. This paper aimed to study the relationship between spontaneous and lanthanum-induced erythrocyte aggregation in burn disease. We used the blood of healthy donors and patients in the first three days and on the 7th and 14th day following the thermal trauma. It was established that much lower lanthanum concentration is required to induce erythrocyte aggregation in acute periods of burn disease than in healthy subjects. During the first 7 days after the burn, induced aggregation increases, while on the 14th day, it decreases. Spontaneous erythrocyte aggregation in burn patients remained elevated throughout the study period. Taking into account the difference in the mechanisms of spontaneous and lanthanum-induced erythrocyte aggregation, we can assume that the use of lanthanum as aggregation inducer makes it possible to detect improved properties of erythrocyte membrane by the 14th day after thermal trauma and thereby assess the effectiveness of the therapy. In addition, the research into both spontaneous and induced erythrocyte aggregation allows us to clarify the mechanism of hyperaggregation development in burn disease.

Keywords

spontaneous erythrocyte aggregation, induced erythrocyte aggregation, lanthanum, burn disease
Download (pdf, 1.3MB )

References

  1. Shilov A.M., Avshalumov A.S., Sinitsina E.N., Markovskiy V.B., Poleshchuk O.I. Izmeneniya reologicheskikh svoystv krovi u bol’nykh s metabolicheskim sindromom [Changes in Blood Rheological Properties in Patients with Metabolic Syndrome]. Russkiy meditsinskiy zhurnal, 2008, vol. 16, no. 4, pp. 200–204.
  2. Kodin A.V., Berezin M.V., Berezina A.M., Arkhipova S.L., Lutay A.V., Pakhrova O.A., Grineva M.R., Akayzin E.S. Narusheniya reologicheskikh svoystv eritrotsitov u bol’nykh stenokardiey napryazheniya III funktsional’nogo klassa v sochetanii s gipertonicheskoy bolezn’yu i ikh korrektsiya [Disorders of Erythrocyte Rheological Properties in Patients with Stenocardia of Tension (III Functional Class) in Combination with Hypertensive Disease and Their Correction]. Vestnik Ivanovskoy meditsinskoy akademii, 2008, vol. 13, no. 1-2, pp. 40–45.
  3. Zarubina E.G., Milyakova M.N. Izmeneniya membran eritrotsitov u bol’nykh infarktom miokarda [Changes of Erythrocyte Membranes in Patients with Myocardial Infarction]. Kazanskiy meditsinskiy zhurnal, 2002, vol. 83, no. 1, pp. 20–22.
  4. Kamzeev V.D., Sokolova A.A., Reykhert L.I., Bychenko S.M., Kicherova O.A., Markina O.L., Zamyatina E.A. Membrano-destabiliziruyushchie protsessy i sostoyanie antioksidantnoy zashchity v eritrotsitakh bol’nykh rasseyannym sklerozom [Peculiarities of Membrane-Destabilising Processes and the Antioxidant Defence Status of Erythrocytes in Patients with Multiple Sclerosis]. Kazanskiy meditsinskiy zhurnal, 2005, vol. 86, no. 5, pp. 375–379.
  5. Lippi G., Ippolito L., Cervellin G. Disseminated Intravascular Coagulation in Burn Injury. Semin. Thromb. Hemost., 2010, vol. 36, no. 4, pp. 429–436.
  6. Milner S.M., Bhat S., Gulati S., Gherardini G., Smith C.E., Bick R.J. Observations on the Microcirculation of the Human Burn Wound Using Orthogonal Polarization Spectral Imaging. Burns, 2005, vol. 31, no. 3, pp. 316–319.
  7. Litvitskiy P.F. Ekstremal’nye sostoyaniya: shok [Extreme States: A Shock]. Voprosy sovremennoy pediatrii, 2010, vol. 9, no. 4, pp. 85–93.
  8. Shtykhno Yu.M., Nedoshivina R.V. Narushenie mikrotsirkulyatsii, uroven’ toksemii i funktsional’noe sostoyanie pri ozhogovom shoke [Disturbance of Microcirculation, Level of Toxemia and Functional State in Burn Shock]. Patologicheskaya fiziologiya i eksperimental’naya terapiya, 1977, no. 3, pp. 10–14.
  9. Isachenkova O.A., Levin G.Ya. Detoksikatsionnaya terapiya pri ozhogovoy bolezni s pomoshch’yu giperbaricheskoy oksigenatsii [Detoxication Therapy for Burn Disease with the Help of Hyperbaric Oxygenation]. Travmatologiya i ortopediya Rossii, 1996, no. 1, pp. 9–13.
  10. Egorikhina M.N., Izumrudov M.R., Gaynutdinova L.I. Agregatsiya eritrotsitov v ostryy period ozhogovoy bolezni [Erythrocyte Aggregation During the Acute Period of Burn Disease]. Tromboz, gemostaz i reologiya, 2007, no. 1, pp. 56–63.
  11. Levin G.Y., Egorihina M.N. Aggregation of Erythrocytes in Burn Disease. Int. J. Burns Trauma, 2011, vol. 1, no. 1, pp. 34–41.
  12. Baskurt O.K., Meiselman H.J. Blood Rheology and Hemodynamics. Semin. Thromb. Hemost., 2003, vol. 29, no. 5, pp. 435–450.
  13. Schmid-Schönbein H., von Gosen J., Heinich L., Klose H.J., Volger E. A Counter-Rotating “Rheoscope Chamber” for Study of the Microrheology of Blood Cell Aggregation by Microscopic Observation and Microphotometry. Microvasc. Res., 1973, vol. 6, no. 3, pp. 366–376.
  14. Sheremet’ev Yu.A., Suslov F.Yu. Ispol’zovanie ionov lantana dlya otsenki sostoyaniya membran eritrotsitov [Use of Lanthanum Ions for Assessment of the state of erythrocyte membranes]. Gematologiya i transfuziologiya, 1993, no. 5, pp. 35–36.
  15. Ryazantseva N.V., Stepovaya E.A., Kolosova M.V., Novitskiy V.V. Tipovaya reaktsiya perifericheskogo zvena eritrona pri patologicheskikh protsessakh [Typical Reaction of Peripheral Link of Erythron in the Pathological Processes]. Byulleten’ sibirskoy meditsiny, 2002, vol. 1, no. 1, pp. 29–35.
  16. Saavedra A.P., Warth J.A., Burke J.F., Norton K.J., Gelfand J.A. Increased Dense Erythrocytes in Flame-Burned Patients. Clin. Hemorheol. Microcirc., 2013, vol. 53, no. 4, pp. 349–356.
  17. Reinhart W.H., Singh A., Straub P.W. Red Blood Cell Aggregation and Sedimentation: The Role of the Cell Shape. Br. J. Haematol., 1989, vol. 73, no. 4, pp. 551–556.
  18. Ramakrishnan S., Grebe R., Singh M., Schmid-Schönbein H. Aggregation of Shape-Altered Erythrocytes: An in vitro Study. Curr. Sci., 1999, vol. 77, no. 6, pp. 805–808.
  19. Levin G.Ya., Modin A.P., Kudritskiy S.Yu., Sosnina L.N. Ustroystvo dlya issledovaniya agregatsii trombotsitov [Device for the Study of Platelet Aggregation]. Patent RF no. 2278381, 2006.
  20. Schwarz S., Deuticke B., Haest C.W.M. Passive Transmembrane Redistribution of Phospholipids as Determination of Erythrocyte Shape Change. Studies on Electroporated Cells. Mol. Membr. Biol., 1999, vol. 16, no. 3, pp. 247–255.
  21. Ermakov Y.A., Kamarajau K., Sengupta K., Sukharev S. Gadolinium Ions Block Mechanosensitive Channels by Altering the Packing and Lateral Pressure of Anionic Lipids. Biophys. J., 2010, vol. 98, no. 6, pp. 1018–1027.
  22. Horton J.W. Free Radicals and Lipid Peroxidation Mediated Injury in Burn Trauma: The Role of Antioxidant Therapy. Toxicology, 2003, vol. 189, no. 1-2, pp. 75–88.
  23. Lang K.S., Lang P.A., Bauer C., Duranton C., Wieder T., Huber S.M., Lang F. Mechanisms of Suicidal Erythrocyte Death. Cell Physiol. Biochem., 2005, vol. 15, no. 5, pp. 195–202.
  24. Tyurina Y.Y., Serinkan F.B., Tyurin V.A., Kini V., Yalowich J.C., Schroit A.J., Fadeel B., Kagan V.E. Lipid Antioxidant, Etoposide, Inhibits Phosphatidylserine Externalization and Macrophage Clearance of Apoptotic Cells by Preventing Phosphatidylserine Oxidation. J. Biol. Chem. 2004, vol. 279, no. 7, pp. 6056–6064.
  25. Yakovlev A.Yu., Ulitin D.N. Reamberin: rezul’taty klinicheskikh issledovaniy v khirurgii i intensivnoy terapii za poslednie pyat’ let (obzor) [Reamberin: Results of Clinical Trials in Surgery and Intensive Care for the Last Five Years (Review)]. Meditsinskiy alfavit. Neotlozhnaya meditsina, 2012, no. 3, pp. 54–58.
  26. Egorikhina M.N., Levin G.Ya. Obosnovanie ispol’zovaniya efferentnoy terapii dlya korrektsii gemoreologicheskikh i gemostaziologicheskikh narusheniy v ostryy period ozhogovoy bolezni [Substantiation of the Use of Efferent Therapy for Correcting Haemoreological and Haemostasiological Disorders in the Acute Period of Burn Injury]. Skoraya meditsinskaya pomoshch’, 2011, vol. 12, no. 3, pp. 13–17.
  27. Bozhedomov A.Yu., Gumanenko E.K., Morrison V.V. Razlichiya kliniko-laboratornykh pokazateley bol’nykh s raznymi iskhodami termicheskoy travmy [Differences in Clinico-Laboratory Parameters in Patients with Different Outcomes of Thermal Trauma]. Vestnik Sankt-Peterburgskogo universiteta. Ser. 11: Meditsina, 2013, no. 4, pp. 137–144.
  28. Presnyakova M.V., Sidorkina A.N., Sidorkin V.G. Narusheniya sistemy gemostaza v ostryy period ozhogovoy bolezni [Disturbances of the Hemostatic System in the Acute Period of Burn Disease]. Tromboz, gemostaz i reologiya, 2005, no. 3, pp. 44–51.
  29. Egorikhina M.N. Deystvie faktorov plazmy na agregatsiyu kletok krovi v norme i patologii (na modeli termicheskoy travmy) [The Effect of Plasma Factors on the Blood Cells Aggregation in Health and Disease (on the Model of Thermal Trauma)]. Nizhny Novgorod, 2011. 26 p.



Make a Submission


INDEXED IN: 

DOAJ_logo-colour.png

Elibrary.ru

logotype.png

infobaseindex

Логотип.png




Лань

OTHER NArFU JOURNALS: 

Vestnik of NArFU.
Series "Humanitarian and Social Sciences"

Forest Journal 
Лесной журнал 

Arctic and North