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The Influence of Vasodilators on Rheological Properties of Blood. C. 63–69

Версия для печати

Section:

UDC

612.117.2

Authors

Tikhomirova Irina Aleksandrovna
Yaroslavl State Pedagogical University named after K.D. Ushinsky (Yaroslavl, Russia)
Oslyakova Anna Olegovna
Yaroslavl State Pedagogical University named after K.D. Ushinsky (Yaroslavl, Russia)

Abstract

The paper studied the effect of vasoactive substances increasing the level of cGMP (nitric oxide donor, nitroglycerine and PDE 5 inhibitor zaprinast) on rheological properties of blood in healthy persons and in patients with cardiac failure. Red blood cells were incubated in saline (control) and in the presence of the investigated substances (experiment). We evaluated blood viscosity as well as red blood cells aggregability and deformability. Higherblood fluidity due to optimization of erythrocyte cellular properties (decreased agggregability and increased deformability) was observed in the presence of these substances both in healthy subjects and in patients with cardiac failure. The similarity between the effects of nitric oxide donor, nitroglycerine and PDE 5 inhibitor zaprinast proves that cGMP of erythrocytes is involved in the mechanism of their microrheological properties modification.

Keywords

rheological properties of blood, vasoactive substances, effect of vasodilators
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References

  1. Kamenskaya O.V., Bulatetskaya L.M., Chernyavskiy A.M., et al. Vliyanie disfunktsii endoteliya i kureniya na testirovanie luchevoy arterii, ispol’zuemoy v kachestve konduita pri operatsiyakh koronarnogo shuntirovaniya [Impact of Endothelial Dsfunction and Smoking on Testing of Radial Artery Used as a Conduit in Coronary Bypass Grafting]. Kardiologiya i serdechno-sosudistaya khirurgiya, 2010, no. 6, pp. 32–36. 
  2. Kukes V.G., Gyamdzhyan K.A., Maksimov M.L. Rol’ disfunktsii endoteliya v progressirovanii khronicheskoy serdechnoy nedostatochnosti. Vozmozhnosti effektivnoy farmakoterapii blokatorom retseptorov angiotenzina valsartanom [Role of Endothelium Dysfunction in Progressing of CHF. Possibilities of Effective Drug Therapy with AII Blocker Valsartan]. Serdechnaya nedostatochnost’, 2012, vol. 13, no. 3, pp. 184–187. 
  3. Trubacheva O.A., Petrova I.V., Kremeno S.V., et al. Oksid azota kak regulyator Сa2+-zavisimoy kalievoy pronitsaemosti membrany eritrotsitov zdorovykh donorov [Nitric Oxide as a Regulator of Ca2+-Dependent Potassium Permeability of Erythrocytes in Healthy Donors]. Neyrogumoral’nye mekhanizmy regulyatsii vistseral’nykh organov i sistem v norme i pri patologii: materialy nauch. konf. s mezhdunar. uchastiem [Neurohumoral Mechanisms of Regulation of Visceral Organs and Systems in Health and Disease: Proc. Sci. Conf. with Int. Participation]. Tomsk, 2009, pp. 98–100. 
  4. Sivokhina N.Yu. Sovremennyy vzglyad na problemu disfunktsii arterial’nogo endoteliya [Modern Approach to the Problem of Arterial Endothelium Dysfunction]. Klinicheskaya fiziologiya krovoobrashcheniya, 2009, no. 2, pp. 19–23. 
  5. Baskurt O.K., Meiselmam H.J. Blood Rheology and Hemodynamics. Semin. Thromb. Hemost., 2003, vol. 29, no. 5, pp. 435–450. 
  6. Qin X., Zheng X., Qi H., et al. cGMP-Dependent Protein Kinase in Regulation of Basal Tone and in Nitroglycerinand Nitric-Oxide-Induced Relaxation in Porcine Coronary Artery. Eur. J. Physiol. (Pflugers Arch.), 2007, vol. 454, pp. 913–923. 
  7. Fike C.D., Kaplowitz M., Zhang Y., et al. Effect of a Phosphodiesterase 5 Inhibitor on Pulmonary and Cerebral Arteries of Newborn Piglets with Chronic Hypoxia-Induced Pulmonary Hypertension. Neonatology, 2012, vol. 101, pp. 28–39. 
  8. Polcari A.J., Farooq A.V., Woods M.E., et al. Effect of the Phosphodiesterase-5 Inhibitor Zaprinast on Ischemia- Reperfusion Injury in Rats. J. Endourol., 2013, vol. 27 (3). pp. 338–342. 
  9. Adderley S.P., Thuet K.M., Sridharan M., et al. Identification of Cytosolic Phosphodiesterases in the Erythrocyte: A Possible Role for PDE5. Med. Sci. Monit., 2011, vol. 17 (5), pp. CR241–247. 
  10. Cohen R.A., Weisbrod R.M., Gericke M., et al. Mechanism of Nitric Oxide-Induced Vasodilatation: Refilling of Intracellular Stores by Sarcoplasmic Reticulum Ca2+ATPase and Inhibition of Store-Operated Ca2+ influx. Circ. Res., 1999, vol. 84, pp. 210–219. 
  11. Olearczyk J., Stephenson A.H., Lonigro A.J., et al. NO Inhibits Signal Transduction Pathway for ATP Release from Erythrocytes via Its Action on Heterotrimeric G Protein Gi. Am. J. Physiol. Heart Circ. Physiol., 2004, vol. 287, pp. H748–H754. 
  12. Kass D.A., Takimoto E., Nagayama T., et al. Phosphodiesterase Regulation of Nitric Oxide Signaling. Cardiovasc. Res., 2007, vol. 75, pp. 303–314. 
  13. Lochner A., Marais E., Genade S. et al. Protection of the Ischemic Heart: Investigations into the Phenomenon of Ischemic Preconditioning. Cardiovasc. J. Afr., 2009, vol. 20 (1), pp. 43–51. 
  14. Walford G., Loscalzo J. Nitric Oxide in Vascular Biology. J. Thromb. Haemost., 2003, no. 1 (10), pp. 2112–2118.



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